US20050242579A1 - Connector for catheter attachment to an implantable pump - Google Patents

Connector for catheter attachment to an implantable pump Download PDF

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Publication number
US20050242579A1
US20050242579A1 US10/514,600 US51460005A US2005242579A1 US 20050242579 A1 US20050242579 A1 US 20050242579A1 US 51460005 A US51460005 A US 51460005A US 2005242579 A1 US2005242579 A1 US 2005242579A1
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Prior art keywords
diameter
catheter
stem
pump
connection device
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US10/514,600
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Jeffrey Bright
Robert Gailey
Stephen Calder
Paul Burke
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InSet Technologies Inc
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Individual
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Priority to US10/514,600 priority Critical patent/US20050242579A1/en
Publication of US20050242579A1 publication Critical patent/US20050242579A1/en
Assigned to INFUMEDICS, INC. reassignment INFUMEDICS, INC. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: BARD ACCESS SYSTEMS, INC.
Assigned to INSET TECHNOLOGIES INCORPORATED reassignment INSET TECHNOLOGIES INCORPORATED ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: INFUMEDICS, INC.
Assigned to SILICON VALLEY BANK reassignment SILICON VALLEY BANK INTELLECTUAL PROPERTY SECURITY AGREEMENT Assignors: FLOWONIX MEDICAL INCORPORATED
Assigned to FLOWONIX MEDICAL INCORPORATED reassignment FLOWONIX MEDICAL INCORPORATED RELEASE BY SECURED PARTY (SEE DOCUMENT FOR DETAILS). Assignors: SILICON VALLEY BANK
Abandoned legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L33/00Arrangements for connecting hoses to rigid members; Rigid hose connectors, i.e. single members engaging both hoses
    • F16L33/20Undivided rings, sleeves or like members contracted on the hose or expanded in the hose by means of tools; Arrangements using such members
    • F16L33/207Undivided rings, sleeves or like members contracted on the hose or expanded in the hose by means of tools; Arrangements using such members only a sleeve being contracted on the hose
    • F16L33/2071Undivided rings, sleeves or like members contracted on the hose or expanded in the hose by means of tools; Arrangements using such members only a sleeve being contracted on the hose the sleeve being a separate connecting member
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/10Tube connectors; Tube couplings
    • A61M39/12Tube connectors; Tube couplings for joining a flexible tube to a rigid attachment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M5/00Devices for bringing media into the body in a subcutaneous, intra-vascular or intramuscular way; Accessories therefor, e.g. filling or cleaning devices, arm-rests
    • A61M5/14Infusion devices, e.g. infusing by gravity; Blood infusion; Accessories therefor
    • A61M5/142Pressure infusion, e.g. using pumps
    • A61M5/14244Pressure infusion, e.g. using pumps adapted to be carried by the patient, e.g. portable on the body
    • A61M5/14276Pressure infusion, e.g. using pumps adapted to be carried by the patient, e.g. portable on the body specially adapted for implantation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L33/00Arrangements for connecting hoses to rigid members; Rigid hose connectors, i.e. single members engaging both hoses
    • F16L33/30Arrangements for connecting hoses to rigid members; Rigid hose connectors, i.e. single members engaging both hoses comprising parts inside the hoses only
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L47/00Connecting arrangements or other fittings specially adapted to be made of plastics or to be used with pipes made of plastics
    • F16L47/06Connecting arrangements or other fittings specially adapted to be made of plastics or to be used with pipes made of plastics with sleeve or socket formed by or in the pipe end
    • F16L47/12Connecting arrangements or other fittings specially adapted to be made of plastics or to be used with pipes made of plastics with sleeve or socket formed by or in the pipe end with additional locking means
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/10Tube connectors; Tube couplings
    • A61M2039/1044Verifying the connection, e.g. audible feedback, tactile feedback, visual feedback, using external light sources
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/10Tube connectors; Tube couplings
    • A61M2039/1072Tube connectors; Tube couplings with a septum present in the connector
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/02Access sites
    • A61M39/0208Subcutaneous access sites for injecting or removing fluids
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M39/00Tubes, tube connectors, tube couplings, valves, access sites or the like, specially adapted for medical use
    • A61M39/10Tube connectors; Tube couplings
    • A61M39/1011Locking means for securing connection; Additional tamper safeties

Definitions

  • the present invention relates to a catheter system and more particularly to a catheter flushing and locking system for use with an implantable pump.
  • Implantable pump technology can be divided into two primary categories, namely constant flow and programmable. Both technologies incorporate an indwelling catheter to establish a fluid path from a pump disposed subcutaneously to a desired anatomical site, including but not limited to, arterial or venous locations, the epidural space and the intrathecal space of the spine. Some of the reported complications with implanted pumps deal with the connection between the pump and the catheter, including leaks, disconnect and reduced flow. Other reported complications involve the catheter itself, which include but are not limited to, kinking, occlusion, disconnect, malposition, migration and reduced flow. Thus, the success of an implanted pump system is dependent in large part on a successful and dependable connection between the pump and the catheter as well as the design of the catheter and the introduction techniques utilized.
  • a prior art approach to attaching the catheter to the pump has been to utilize a barbed stem connector.
  • the pump is fit with a barbed or flared outer stem for the catheter to be placed therearound.
  • the problem with these designs, which are common in subcutaneous access ports, is a connection that is relatively unsecured and potential damage to the catheter caused by the barbed section.
  • Another related problem is that it is often difficult to ascertain whether a positive connection between the pump and catheter has been established. This can lead to catheter and/or pump damage as undue force is placed on the attachment system in order to get verification of the connection.
  • one of the primary concerns to overcome in developing a successful and reliable attachment system is that the catheters are generally very small in diameter while the pumps to which they are connected are relatively large. Thus, it is often physically difficult to make the connection between the pump and the catheter.
  • a catheter system for locking a catheter to an implantable pump and for effectively flushing a catheter after implantation within a body.
  • a locking component comprises an extension boot and catheter lock that together fluidly connect the catheter to the pump in a secure, safe and effective manner.
  • a catheter component comprises a design having kink-resistant walls and a unique tip.
  • a flushing component comprises a hub and stylet combination characterized by a hydrophilic coating on the stylet and a flush through hub to allow flushing of the stylet while inside the catheter.
  • connection device for attaching a catheter to an implantable port or pump, wherein the catheter is in fluid communication with said port or pump, comprising a coupling device extending from said port or pump, comprising an arm portion and a stem, wherein the shape of the aim portion is substantially similar to an outer contour of said port or pump, and wherein the stem comprises a base portion and a tip portion and a locking device slideable along a length of the catheter, comprising varying diameter portions that communicate directly with diameters of the base portion and tip portion of the stem, wherein a locking connection is established therebetween.
  • FIG. 1 is a perspective view of an implantable pump with attached boot and stem according to the present invention.
  • FIG. 2 is a side view of the boot and stem according to the present invention.
  • FIG. 3 is an enlarged view of the stem in FIG. 2 .
  • FIG. 4 is a cross-sectional view of a stem according to the present invention.
  • FIG. 5 is a cross-sectional view of a subassembly according to the present invention, including the stem of FIG. 4 .
  • FIG. 6 is a cross-sectional view of a boot according to the present invention, including the subassembly of FIG. 5 .
  • FIG. 7 is a longitudinal cross-sectional view of a catheter lock according to the present invention.
  • FIG. 8 is an end view of the catheter lock in FIG. 4 .
  • FIG. 9 is a side view of a catheter and flushing hub of the present invention.
  • FIG. 10 is a side view of a hub and stylet of the present invention.
  • FIG. 11 is perspective view of the hub, stylet and catheter of FIGS. 6 and 7 .
  • FIG. 12 is a cross-sectional view of the hub and stylet of FIG. 7 .
  • FIG. 13 is a cut away view of a distal end of a catheter of the present invention.
  • the present invention is directed to a novel attachment device for securely connecting a catheter to a pump, which can be used in a variety of applications to optimize efficiency and effectiveness.
  • the present invention is also directed to a unique catheter configuration, along with means for introduction and positioning thereof within the body, which offers several advantages over prior art catheters and introducing systems and can be used in various applications.
  • Implantable pump 10 could be any medical device that is implanted subcutaneously to deliver a steady stream of drugs or other fluids to the body.
  • the implanted medical device will contain a septum through which an inner chamber to hold and dispense the drug or fluid can be accessed via a needle.
  • the medical device will also have some type of mechanism to release the drug or fluid at predetermined intervals or in a steady stream at a given flow rate. This timed interval or flow rate can be regulated via mechanism within the medical device or outside of the body using other known means.
  • the implantable pump 10 is shown in FIG. 1 with an inventive boot 20 containing a stem 30 according to the present invention, which is shown in more detail in FIGS. 2 and 3 .
  • the boot 20 has an arm 24 that is curved to conform to the outside of the pump 10 so that the overall profile thereof is minimized to facilitate implantation and compatibility within the body. While the boot 20 is shown as curved to conform to the shape of the pump 10 , in an alternate embodiment a boot would take on any shape of the outer contour of a port or pump to realize the advantages mentioned above.
  • the boot 20 attaches to the implantable pump 10 via connector tube 22 , which has a lumen 26 that fluidly connects the inner chambers of the implantable pump 10 (not shown) with the stem outlet 38 .
  • the boot 20 can be adapted further to connect to various shapes and sizes of pumps other than implantable pump 10 .
  • the boot 20 could be fashioned to replace the straight stem to reduce port profile, or in the case of a dual port system, the boot could likewise be fashioned to accommodate the shape of the housing to reduce the overall space occupied by the port or pump.
  • the boot is made of a flexible material (such as silicone or a compliant polymer) so that it can be pulled away from the port or pump to which it is attached.
  • a flexible material such as silicone or a compliant polymer
  • the catheters are extremely small, meaning that a physician or medical technician can often find it very difficult to push the catheter onto a stem extending from the port or pump.
  • the physician or medical technician can pull the boot away from the port or pump, thereby facilitating attachment of the catheter to the stem. After the catheter is sufficiently attached and the boot is released, it will snap back into place, conforming once again to the shape of the port or pump.
  • the stem 30 contains a base portion 32 and a tip portion 34 and is made of titanium.
  • the base portion 32 includes a forward portion 36 and an engaging lock portion 33 .
  • the engaging lock portion 33 is shown as a larger diameter in a wing configuration near a connecting portion 35 that attaches to the arm 24 of the boot 20 .
  • the engaging lock portion 33 is configured to communicate with the geometry of a locking mechanism (see FIG. 4 ) to secure the catheter 120 to the boot 20 .
  • the engaging lock portion 33 can take on various shapes and sizes and is not confined to the embodiment shown Indeed, other types of engaging devices could be employed that would certainly be within the scope of the present invention, including twist locks, spring locks, etc.
  • the tip 34 is configured to receive the catheter 120 such that the lumen 122 of the catheter 120 fits over the tip 34 and is expanded by a tip end 39 .
  • the size of the tip 34 can vary, but generally, the diameter of a main body 37 of the tip 34 will be slightly larger than the lumen of the catheter so that a tight friction fit between the two is realized.
  • tip end 39 has a conical shape with a base portion attached to the main body 37 to further ensure a tight fit between the catheter 120 and the tip 34 .
  • the diameter of the base portion of the tip end 39 is larger than the diameter of the main body 37 to make disengagement difficult, but not so large that undue stress and resultant damage occurs to the catheter 120 as a result of compression to the wall thereof.
  • the tip end 39 can also take on different forms other than the conical shape shown that will permit the catheter 120 to slide onto the stem 34 , while ensuring that sliding off of the stem is unlikely.
  • a subassembly comprising a sleeve and a collar is attached onto a rear of the stem.
  • FIG. 4 shows a stem 230 prior to attachment of a subassembly.
  • Stem 230 has a rear portion 240 with a barbed end 242 that extends from a base portion 232 .
  • Stem 230 also contains a lumen therethrough, having three different sections.
  • the first and largest diameter lumen section 222 is at barbed end 242 , which is connected to a second diameter lumen section 224 by transition region 223 , which in turn is connected to a third diameter lumen section 226 by transition region 225 .
  • the lumen sections decrease in diameter from the first to the third section.
  • the sections increase in size, the sections remain constant in size, or the sections have varying diameters).
  • FIG. 5 illustrates subassembly 250 in cross-section, including the stem 230 , a sleeve 260 and a collar 270 .
  • the sleeve 260 is made of silicone or like material, while the collar 270 is made of stainless steel. Certainly, however, other materials are possible and would be equally within the scope of the present invention.
  • the sleeve 260 has a length 262 , which in one embodiment is in the range of approximately 0.5 in to 1.0 in. Of course, a length shorter than 0.5 in and longer than 1.0 in would also be within the scope of the present invention.
  • the subassembly is constructed by sliding the sleeve 260 over the rear portion 240 of the stem 230 until a proximal end of the sleeve 260 abuts a flange 234 of the base portion 232 .
  • the collar 270 is then crimped into place around the sleeve 260 between the barb 242 and the flange 234 to secure the sleeve 260 to the stem 230 .
  • the length of the collar 270 in this embodiment should be long enough to tightly secure the sleeve 260 to the stem 230 to prevent relative movement, but short enough to lie in its crimped state between the barb 242 and the flange 234 . It should be appreciated, however, that the length of the collar 270 can vary depending on the application and materials involved. It should also be appreciated that sleeve 260 could be secured to stem 230 in other ways, such as through the use of adhesives, etc.
  • a boot 280 is illustrated in cross-section, including the subassembly 250 .
  • the subassembly 250 is overmolded to form the boot 280 , using a molding process as is well-known and understood in the art (although other means of forming a boot around subassembly 250 are also possible).
  • the boot 280 is made of silicone. It is important to note that by utilizing a silicone or like material, a silicone to silicone bond is formed along a majority of the overmolded segment, providing a superior mechanical bond in which stem 230 is secured within boot 280 . Such a construction prevents the possibility of delamination of the stem 230 from the boot 280 and leaks associated therewith.
  • FIG. 7 illustrates a longitudinal cross-sectional view of the catheter lock 40 , which in the preferred embodiment is made of a hard shell construction (for example, polyacetal resin, polycarbonate or polysulfones) to positively fit over the catheter 120 to secure in place and provide an audible and tactile lock and to provide added security against inadvertent needle sticks.
  • FIG. 8 shows an end view of the catheter lock 40 from the locking end thereof, which is the end that engages with the base portion 32 of the stem 30 .
  • an optional radiopaque feature which can be a metal ring, ink or other material on the distal end of the catheter lock 40 , providing easy visualization under x-ray or fluoroscopy to verify lock engagement and position.
  • a radiopaque section could be added to many different portions of the catheter lock 40 for accomplishing the same objective.
  • the catheter lock of the present invention provides an easy, one-step connection mechanism to secure a catheter to an extension of a port or pump, eliminating the need for cumbersome suturing, which may cause damage to the catheter and/or the connection. While a preferred embodiment of the catheter lock is described herein, it should be appreciated that many configurations are possible that would certainly be within the scope of the present invention.
  • the catheter lock 40 has five distinct diameter portions each having a particular function with respect to the locking of the catheter 120 to the stem 30 .
  • a middle portion 42 of the catheter lock 40 contains the smallest diameter d 1 , which is sized slightly larger than the outside diameter of the catheter 120 so that the catheter lock 40 can slide freely along the length thereof.
  • a distal portion 44 of the catheter lock 40 has a slightly larger diameter d 2 to allow the catheter 120 to move freely after the catheter lock 40 is secured to the boot 20 .
  • the front portion of the catheter lock has three diameter portions 46 , 48 and 49 , having respective diameters d 3 d 4 and d 5 , designed to mate with the base portion 32 of the stem 30 , and thereby providing a secondary tactile locking mechanism as will be explained in more detail below. Also positioned in the front portion of the catheter lock 40 are slits 50 positioned on opposite sides thereof to facilitate the movement of the diameter portion 49 of the catheter lock 40 over the engaging portion 33 of the stem 30 and the subsequent locking action therebetween.
  • the advantage of the catheter boot and locking system as described herein is the ease of connection in combination with the difficult disengagement of the catheter after assembly is complete (will not disengage at clinical loads/extensions).
  • a catheter connection in a preferred embodiment will be described. After the catheter 120 has been established within the body, for example having an end established in the spine as described above, and is tunneled or otherwise delivered to the location of the pump or port, the catheter connection thereto takes place.
  • the catheter lock 40 is configured to slide freely along the catheter 120 and therefore can be threaded onto the end of the catheter 120 quite easily just prior to connection to the boot 20 .
  • the lumen 122 of the catheter 120 is first slid onto the tip portion 34 of the stem 30 until the catheter 120 is midway along the section 37 .
  • the catheter lock 40 is then slid onto the stem 30 and pressed in a direction toward the boot 20 until an audible clicking sound is heard and a positive connection is felt
  • the slits 50 enable the catheter lock 40 to flex outward slightly when pressed over the engaging portion 33 to facilitate the connection.
  • the forward portion 36 having a diameter substantially equal to d 3 is within portion 46 and the engaging portion 33 , having its largest diameter substantially equal to d 4 is within portion 48 .
  • portion 49 has a diameter d 5 slightly smaller than that of the largest diameter of the engaging portion 33 , once a connection has been established, the catheter lock cannot be pulled off of the stem 30 .
  • Portion 42 having diameter d 1 , is superimposed over the catheter on section 37 of the stem 30 , preventing movement of the catheter within the lock due to the compression applied thereon and providing a primary obstacle for removal of the catheter 120 from the stem 30 .
  • this arrangement acts to seal the connection against fluid leakages between the various interfaces.
  • Portion 49 with diameter d 5 provides a secondary obstacle by preventing movement of the catheter lock in a direction away from the boot
  • the inventive catheter lock can be used in conjunction with various pumps and ports as mentioned, as well as with a host of different catheters and catheter systems.
  • Examples of intended uses for the catheter system described herein is to deliver pain medicating drug(s) to a patient at locations in the body including the intrathecal space, the epidural space, arterial and venous areas and directly into tissue.
  • a preferred embodiment of the catheter system of the present invention can be seen in FIGS. 9-13 .
  • a catheter system 110 has a flushing hub 140 for flushing a catheter 120 during placement thereof in a patient's body, including a main hub body 154 .
  • a flushing hub 140 for flushing a catheter 120 during placement thereof in a patient's body, including a main hub body 154 .
  • an opening 158 provides access to an inner lumen 152 (see FIG. 12 ).
  • a cannula 156 extends therefrom and is in communication with the inner lumen 152 .
  • the cannula 156 surrounds a stylet 160 , which can be seen in phantom within the catheter 120 , and which is attached to the main hub body 154 .
  • the relation between the stylet 160 and the cannula 156 and main hub body 154 can be better seen in FIGS. 10 and 11 .
  • FIG. 11 shows the flushing hub 140 and stylet 160 along the length of the catheter 120 .
  • the flushing hub 140 allows catheter flushing without removal of the stylet 160 as well as the withdrawal of bodily fluid to confirm catheter location.
  • the stylet 160 provides internal rigidity to the catheter 120 and allows for maneuverability via torque transmission down the stylet 160 from the proximal end of the catheter system 100 to facilitate precise placement of the tip.
  • the stylet 160 is coated with a hydrophillic coating for ease of removal from the catheter 120 .
  • the coating reduces catheter bunching that can compromise the physical properties of the catheter 120 by leading to destructive forces on the catheter 120 .
  • the coating further reduces traction internal to the catheter 120 during stylet withdrawal and reduces the potential of tip and/or catheter malposition.
  • the catheter 120 is closely fitted over the cannula 156 to provide a continuous pathway from the inner lumen 152 of the flushing hub 140 into the lumen 122 of the catheter 120 , thereby allowing for the flushing of fluid from the cannula 156 through the lumen of the catheter 120 around the stylet 160 to wet the stylet surface before exiting from the holes 126 at the distal end of the catheter 120 (see FIG. 13 ).
  • FIG. 12 shows a cross-sectional view of the flushing hub 140 .
  • the inner lumen 152 of the main hub body 154 can be seen, with opening 158 at the proximal end thereof.
  • the stylet 160 is shown affixed to the body 154 and extends through the inner lumen 152 , leaving a channel 153 on either side of the stylet 160 for fluid flow.
  • the stylet 160 could be affixed in other locations not directly within the center of the inner lumen 152 of the main hub body 154 .
  • the inner lumen 152 could be differently configured, depending on the features desired in a given catheter system.
  • catheter 120 has a lumen 122 and walls 124 made of high durometer silicone for kink resistance and its beneficial properties with regard to biocompatibility and biodurability, though other materials are certainly possible that would similarly afford the advantages of the preferred material, such as polyethylene and polyurethane.
  • the walls 124 in the preferred embodiment are relatively thick to further the goal of kink resistance, together comprising approximately half of the external diameter of the catheter (ie., if the catheter 120 had an outside diameter of nominally 0.055 inches, each wall 124 in cross-section would have a thickness of at least 0.014 inches).
  • a tip 130 is rounded in the form of a bullet and made of a highly radiopaque material to provide a dual advantage of a geometry that is less traumatic to bodily tissues and anatomical structures and an enhanced visibility, which facilitates location determination during and after introduction to the patient's body.
  • the radiopaque material utilized for the tip 130 in a preferred embodiment is a combination of cured liquid silicone and tungsten powder in approximately 50% by weight of each component.
  • a set of side holes 126 are provided to allow passage of fluid to and from the lumen 122 .
  • the side holes are drilled perpendicular to the surface thereof to limit surface area anomolies that may result in tissue trauma and/or catheter damage upon placement.
  • a catheter segment 128 between the tip 130 and a side hole 126 is filled with similar material as the tip 130 to form plug 132 .
  • one application of the present invention is for use along with an implantable pump to deliver medication to the intrathecal space in a patient's spine.
  • An indwelling catheter such as catheter 120
  • catheter 120 is utilized to establish a fluid path from a subcutaneous pump through the dura membrane.
  • the procedure generally consists first of embedding the catheter in the spine (5 to 10 cm). A drop of the spinal fluid is then allowed to form at the proximal end of the catheter 120 to confirm catheter location, after which the catheter is clamped. A tunnel is formed from the spine to the area of the abdomen, where the pump will be implanted, and the catheter is pulled through and cut to length.
  • the catheter is then attached to the pump as described above through the use of an inventive boot and catheter lock.
  • the pump is placed in a previously created pocket in the area of the abdomen and the pocket is closed. Implantation of the described system is relatively quick and easy and provides for prolonged delivery of drugs or medication to the spine.

Abstract

A catheter system for locking a catheter to an implantable pump and for effectively flushing a catheter after implantation within a body. A locking component comprises an extension boot and catheter lock that together fluidly connect the catheter to the pump in a secure, safe and effective manner. A catheter component comprises a design having kink-resistant walls and a unique tip. A flushing component comprises a hub and stylet combination characterized by a hydrophilic coating on the stylet and a flush through hub to allow flushing of the stylet while inside the catheter.

Description

    FIELD OF THE INVENTION
  • The present invention relates to a catheter system and more particularly to a catheter flushing and locking system for use with an implantable pump.
  • BACKGROUND OF THE INVENTION
  • Use of implantable pumps for treating chronic pain conditions has become widely accepted practice when more conservative means of relieving pain have failed. Implantable pump technology can be divided into two primary categories, namely constant flow and programmable. Both technologies incorporate an indwelling catheter to establish a fluid path from a pump disposed subcutaneously to a desired anatomical site, including but not limited to, arterial or venous locations, the epidural space and the intrathecal space of the spine. Some of the reported complications with implanted pumps deal with the connection between the pump and the catheter, including leaks, disconnect and reduced flow. Other reported complications involve the catheter itself, which include but are not limited to, kinking, occlusion, disconnect, malposition, migration and reduced flow. Thus, the success of an implanted pump system is dependent in large part on a successful and dependable connection between the pump and the catheter as well as the design of the catheter and the introduction techniques utilized.
  • Prior art implantable pumps employ relatively tedious and often complicated means for attaching the catheter to the pump, which also may promote problems for the entire pump and catheter system. For example, screw driven clamping connections are both complicated and unreliable as the required clamping action on the outer diameter of an unsupported catheter increases the risk of collapsing the inner lumen of the catheter. Stent based designs that do utilize internal support solve the problem of internal collapse, but require the additional step of attachment involving multiple sutures around the connection area. The suturing process, as well as the sutures themselves, can lead to broken or severed catheters at the suture site where the suture cuts through the catheter or surrounding support members. Also, variability in suture tying and force applied by the user leads to variability in attachment. Thus, a prior art approach to attaching the catheter to the pump has been to utilize a barbed stem connector. The pump is fit with a barbed or flared outer stem for the catheter to be placed therearound. The problem with these designs, which are common in subcutaneous access ports, is a connection that is relatively unsecured and potential damage to the catheter caused by the barbed section. Another related problem is that it is often difficult to ascertain whether a positive connection between the pump and catheter has been established. This can lead to catheter and/or pump damage as undue force is placed on the attachment system in order to get verification of the connection.
  • In addition to these drawbacks of the prior art systems, one of the primary concerns to overcome in developing a successful and reliable attachment system is that the catheters are generally very small in diameter while the pumps to which they are connected are relatively large. Thus, it is often physically difficult to make the connection between the pump and the catheter.
  • Accordingly, it is an object of the present invention, in a system involving an implantable pump and catheter, to provide a catheter system for use with implantable pumps and other known catheter-based systems that will maintain the effectiveness and longevity of the connection and system following implantation thereof.
  • It is also an object of the present invention to provide a connection between the catheter and the pump which eliminates the need for suturing around the catheter, avoids potential collapse of the catheter or other attendant damage thereto.
  • It is a further object of the present invention to provide a connection system for an implantable pump and catheter that overcomes the difficulty arising from the size difference between the catheter and pump.
  • It is yet a further object of the present invention to provide a flexible interface between the catheter and pump body to facilitate attachment of the catheter and minimize strains on the connection.
  • It is still a further object of the present invention to provide a connection system for an implantable pump and catheter, which is very easy and quick to implement.
  • It is also an object of the present invention to provide a connection system for an implantable pump and catheter that confirms a secure connection.
  • It is another object of the present invention to provide a connection system for an implantable pump and catheter that is reliable and long-lasting.
  • It is yet another object of the present invention to provide a catheter with minimal contained dead space at the tip to minimize possible complications from static fluid in the system.
  • It is still another object of the present invention to provide a stiffening stylet to facilitate positioning of the catheter that is easy to remove and minimizes bunching and displacement of the catheter tip during removal of the stylet.
  • Further objects and advantages of the present invention will become apparent from the ensuing description and drawings.
  • BRIEF SUMMARY OF THE INVENTION
  • In accordance with the present invention, a catheter system for locking a catheter to an implantable pump and for effectively flushing a catheter after implantation within a body is provided. A locking component comprises an extension boot and catheter lock that together fluidly connect the catheter to the pump in a secure, safe and effective manner. A catheter component comprises a design having kink-resistant walls and a unique tip. A flushing component comprises a hub and stylet combination characterized by a hydrophilic coating on the stylet and a flush through hub to allow flushing of the stylet while inside the catheter.
  • What is claimed is a connection device for attaching a catheter to an implantable port or pump, wherein the catheter is in fluid communication with said port or pump, comprising a coupling device extending from said port or pump, comprising an arm portion and a stem, wherein the shape of the aim portion is substantially similar to an outer contour of said port or pump, and wherein the stem comprises a base portion and a tip portion and a locking device slideable along a length of the catheter, comprising varying diameter portions that communicate directly with diameters of the base portion and tip portion of the stem, wherein a locking connection is established therebetween.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • FIG. 1 is a perspective view of an implantable pump with attached boot and stem according to the present invention.
  • FIG. 2 is a side view of the boot and stem according to the present invention.
  • FIG. 3 is an enlarged view of the stem in FIG. 2.
  • FIG. 4 is a cross-sectional view of a stem according to the present invention.
  • FIG. 5 is a cross-sectional view of a subassembly according to the present invention, including the stem of FIG. 4.
  • FIG. 6 is a cross-sectional view of a boot according to the present invention, including the subassembly of FIG. 5.
  • FIG. 7 is a longitudinal cross-sectional view of a catheter lock according to the present invention.
  • FIG. 8 is an end view of the catheter lock in FIG. 4.
  • FIG. 9 is a side view of a catheter and flushing hub of the present invention.
  • FIG. 10 is a side view of a hub and stylet of the present invention.
  • FIG. 11 is perspective view of the hub, stylet and catheter of FIGS. 6 and 7.
  • FIG. 12 is a cross-sectional view of the hub and stylet of FIG. 7.
  • FIG. 13 is a cut away view of a distal end of a catheter of the present invention.
  • DETAILED DESCRIPTION OF THE INVENTION
  • The following detailed description illustrates the invention by way of example, not by way of limitation of the principles of the invention. This description will clearly enable one skilled in the art to make and use the invention, and describes several embodiments, adaptations, variations, alternatives and uses of the invention, including what we presently believe is the best mode of carrying out the invention.
  • The present invention is directed to a novel attachment device for securely connecting a catheter to a pump, which can be used in a variety of applications to optimize efficiency and effectiveness. The present invention is also directed to a unique catheter configuration, along with means for introduction and positioning thereof within the body, which offers several advantages over prior art catheters and introducing systems and can be used in various applications.
  • One example of a suitable pump for use with the present invention can be seen in FIG. 1 as implantable pump 10. Implantable pump 10 could be any medical device that is implanted subcutaneously to deliver a steady stream of drugs or other fluids to the body. Generally, the implanted medical device will contain a septum through which an inner chamber to hold and dispense the drug or fluid can be accessed via a needle. The medical device will also have some type of mechanism to release the drug or fluid at predetermined intervals or in a steady stream at a given flow rate. This timed interval or flow rate can be regulated via mechanism within the medical device or outside of the body using other known means.
  • Examples of implantable medical devices that would be suitable for use in conjunction with the present invention can be found in U.S. application Ser. No. 09/481,298, filed Jan. 11, 2000, entitled “Implantable refillable infusion device and septum replacement kit” and in U.S. Pat. Nos. 6,287,293, entitled “Method and apparatus for locating the injection point of an implanted medical device;” 6,213,973, entitled “Vascular access port with elongated septum;” 6,086,555, entitled “Dual reservoir vascular access port with: two-piece housing and compound septum;” 5,833,654, entitled “Longitudinally aligned dual reservoir access port;” 5,049,141, entitled “Programmable valve pump;” and 4,838,887, entitled “Programmable valve pump,” all of which are incorporated by reference herein.
  • The implantable pump 10 is shown in FIG. 1 with an inventive boot 20 containing a stem 30 according to the present invention, which is shown in more detail in FIGS. 2 and 3. The boot 20 has an arm 24 that is curved to conform to the outside of the pump 10 so that the overall profile thereof is minimized to facilitate implantation and compatibility within the body. While the boot 20 is shown as curved to conform to the shape of the pump 10, in an alternate embodiment a boot would take on any shape of the outer contour of a port or pump to realize the advantages mentioned above. The boot 20 attaches to the implantable pump 10 via connector tube 22, which has a lumen 26 that fluidly connects the inner chambers of the implantable pump 10 (not shown) with the stem outlet 38. Of course, the boot 20 can be adapted further to connect to various shapes and sizes of pumps other than implantable pump 10. For instance, in the case of a conventional port with a straight stem, the boot 20 could be fashioned to replace the straight stem to reduce port profile, or in the case of a dual port system, the boot could likewise be fashioned to accommodate the shape of the housing to reduce the overall space occupied by the port or pump.
  • Among the many advantages of the conformal shape of the boot are less tissue trauma and reduced force on the catheter and catheter interface with the port or pump (i.e. a stem). Also, in a preferred embodiment of the present invention, the boot is made of a flexible material (such as silicone or a compliant polymer) so that it can be pulled away from the port or pump to which it is attached. This is important because in many applications, the catheters are extremely small, meaning that a physician or medical technician can often find it very difficult to push the catheter onto a stem extending from the port or pump. By providing a flexible boot, the physician or medical technician can pull the boot away from the port or pump, thereby facilitating attachment of the catheter to the stem. After the catheter is sufficiently attached and the boot is released, it will snap back into place, conforming once again to the shape of the port or pump.
  • In a preferred embodiment of the present invention, the stem 30 contains a base portion 32 and a tip portion 34 and is made of titanium. As shown in more detail in FIG. 3, the base portion 32 includes a forward portion 36 and an engaging lock portion 33. The engaging lock portion 33 is shown as a larger diameter in a wing configuration near a connecting portion 35 that attaches to the arm 24 of the boot 20. The engaging lock portion 33 is configured to communicate with the geometry of a locking mechanism (see FIG. 4) to secure the catheter 120 to the boot 20. Of course, the engaging lock portion 33 can take on various shapes and sizes and is not confined to the embodiment shown Indeed, other types of engaging devices could be employed that would certainly be within the scope of the present invention, including twist locks, spring locks, etc.
  • The tip 34 is configured to receive the catheter 120 such that the lumen 122 of the catheter 120 fits over the tip 34 and is expanded by a tip end 39. Depending on the size of the catheter 120, the size of the tip 34 can vary, but generally, the diameter of a main body 37 of the tip 34 will be slightly larger than the lumen of the catheter so that a tight friction fit between the two is realized. In addition to the friction fit between the main body 37 of the tip 34 and the catheter 120, tip end 39 has a conical shape with a base portion attached to the main body 37 to further ensure a tight fit between the catheter 120 and the tip 34. The diameter of the base portion of the tip end 39 is larger than the diameter of the main body 37 to make disengagement difficult, but not so large that undue stress and resultant damage occurs to the catheter 120 as a result of compression to the wall thereof. The tip end 39 can also take on different forms other than the conical shape shown that will permit the catheter 120 to slide onto the stem 34, while ensuring that sliding off of the stem is unlikely.
  • In one embodiment of the present invention, a subassembly comprising a sleeve and a collar is attached onto a rear of the stem. FIG. 4 shows a stem 230 prior to attachment of a subassembly. Stem 230 has a rear portion 240 with a barbed end 242 that extends from a base portion 232. Stem 230 also contains a lumen therethrough, having three different sections. The first and largest diameter lumen section 222 is at barbed end 242, which is connected to a second diameter lumen section 224 by transition region 223, which in turn is connected to a third diameter lumen section 226 by transition region 225. As is apparent from FIG. 4, the lumen sections decrease in diameter from the first to the third section. However, as should be appreciated, other possibilities exist which would be equally within the scope of the present invention (e.g., the sections increase in size, the sections remain constant in size, or the sections have varying diameters).
  • FIG. 5 illustrates subassembly 250 in cross-section, including the stem 230, a sleeve 260 and a collar 270. In this embodiment, the sleeve 260 is made of silicone or like material, while the collar 270 is made of stainless steel. Certainly, however, other materials are possible and would be equally within the scope of the present invention. The sleeve 260 has a length 262, which in one embodiment is in the range of approximately 0.5 in to 1.0 in. Of course, a length shorter than 0.5 in and longer than 1.0 in would also be within the scope of the present invention. The subassembly is constructed by sliding the sleeve 260 over the rear portion 240 of the stem 230 until a proximal end of the sleeve 260 abuts a flange 234 of the base portion 232. The collar 270 is then crimped into place around the sleeve 260 between the barb 242 and the flange 234 to secure the sleeve 260 to the stem 230. The length of the collar 270 in this embodiment should be long enough to tightly secure the sleeve 260 to the stem 230 to prevent relative movement, but short enough to lie in its crimped state between the barb 242 and the flange 234. It should be appreciated, however, that the length of the collar 270 can vary depending on the application and materials involved. It should also be appreciated that sleeve 260 could be secured to stem 230 in other ways, such as through the use of adhesives, etc.
  • Referring to FIG. 6, a boot 280 is illustrated in cross-section, including the subassembly 250. In this embodiment, the subassembly 250 is overmolded to form the boot 280, using a molding process as is well-known and understood in the art (although other means of forming a boot around subassembly 250 are also possible). While certainly many different materials are possible for the boot 280, in this embodiment, the boot 280 is made of silicone. It is important to note that by utilizing a silicone or like material, a silicone to silicone bond is formed along a majority of the overmolded segment, providing a superior mechanical bond in which stem 230 is secured within boot 280. Such a construction prevents the possibility of delamination of the stem 230 from the boot 280 and leaks associated therewith.
  • Referring now to FIGS. 7 and 8, a catheter lock 40 is shown. FIG. 7 illustrates a longitudinal cross-sectional view of the catheter lock 40, which in the preferred embodiment is made of a hard shell construction (for example, polyacetal resin, polycarbonate or polysulfones) to positively fit over the catheter 120 to secure in place and provide an audible and tactile lock and to provide added security against inadvertent needle sticks. FIG. 8 shows an end view of the catheter lock 40 from the locking end thereof, which is the end that engages with the base portion 32 of the stem 30. Not shown in either view is an optional radiopaque feature, which can be a metal ring, ink or other material on the distal end of the catheter lock 40, providing easy visualization under x-ray or fluoroscopy to verify lock engagement and position. Of course, a radiopaque section could be added to many different portions of the catheter lock 40 for accomplishing the same objective. The catheter lock of the present invention provides an easy, one-step connection mechanism to secure a catheter to an extension of a port or pump, eliminating the need for cumbersome suturing, which may cause damage to the catheter and/or the connection. While a preferred embodiment of the catheter lock is described herein, it should be appreciated that many configurations are possible that would certainly be within the scope of the present invention.
  • Referring again to FIGS. 7 and 8, the catheter lock 40 has five distinct diameter portions each having a particular function with respect to the locking of the catheter 120 to the stem 30. A middle portion 42 of the catheter lock 40 contains the smallest diameter d1, which is sized slightly larger than the outside diameter of the catheter 120 so that the catheter lock 40 can slide freely along the length thereof. A distal portion 44 of the catheter lock 40 has a slightly larger diameter d2 to allow the catheter 120 to move freely after the catheter lock 40 is secured to the boot 20. The front portion of the catheter lock has three diameter portions 46, 48 and 49, having respective diameters d3 d4 and d5, designed to mate with the base portion 32 of the stem 30, and thereby providing a secondary tactile locking mechanism as will be explained in more detail below. Also positioned in the front portion of the catheter lock 40 are slits 50 positioned on opposite sides thereof to facilitate the movement of the diameter portion 49 of the catheter lock 40 over the engaging portion 33 of the stem 30 and the subsequent locking action therebetween.
  • The advantage of the catheter boot and locking system as described herein is the ease of connection in combination with the difficult disengagement of the catheter after assembly is complete (will not disengage at clinical loads/extensions). With reference to FIGS. 3 and 7, a catheter connection in a preferred embodiment will be described. After the catheter 120 has been established within the body, for example having an end established in the spine as described above, and is tunneled or otherwise delivered to the location of the pump or port, the catheter connection thereto takes place. As mentioned, the catheter lock 40 is configured to slide freely along the catheter 120 and therefore can be threaded onto the end of the catheter 120 quite easily just prior to connection to the boot 20.
  • The lumen 122 of the catheter 120 is first slid onto the tip portion 34 of the stem 30 until the catheter 120 is midway along the section 37. The catheter lock 40 is then slid onto the stem 30 and pressed in a direction toward the boot 20 until an audible clicking sound is heard and a positive connection is felt The slits 50 enable the catheter lock 40 to flex outward slightly when pressed over the engaging portion 33 to facilitate the connection. After connection has been established between the catheter lock 40 and the stem 30, the forward portion 36, having a diameter substantially equal to d3 is within portion 46 and the engaging portion 33, having its largest diameter substantially equal to d4 is within portion 48. Because portion 49 has a diameter d5 slightly smaller than that of the largest diameter of the engaging portion 33, once a connection has been established, the catheter lock cannot be pulled off of the stem 30. Portion 42, having diameter d1, is superimposed over the catheter on section 37 of the stem 30, preventing movement of the catheter within the lock due to the compression applied thereon and providing a primary obstacle for removal of the catheter 120 from the stem 30. In addition, this arrangement acts to seal the connection against fluid leakages between the various interfaces. Portion 49 with diameter d5 provides a secondary obstacle by preventing movement of the catheter lock in a direction away from the boot
  • The inventive catheter lock can be used in conjunction with various pumps and ports as mentioned, as well as with a host of different catheters and catheter systems. Examples of intended uses for the catheter system described herein is to deliver pain medicating drug(s) to a patient at locations in the body including the intrathecal space, the epidural space, arterial and venous areas and directly into tissue. A preferred embodiment of the catheter system of the present invention can be seen in FIGS. 9-13.
  • Referring to FIG. 9, a catheter system 110 has a flushing hub 140 for flushing a catheter 120 during placement thereof in a patient's body, including a main hub body 154. At a proximal end of the flushing hub 140, an opening 158 provides access to an inner lumen 152 (see FIG. 12). At a distal end of the flushing hub 140, a cannula 156 extends therefrom and is in communication with the inner lumen 152. The cannula 156 surrounds a stylet 160, which can be seen in phantom within the catheter 120, and which is attached to the main hub body 154. The relation between the stylet 160 and the cannula 156 and main hub body 154 can be better seen in FIGS. 10 and 11.
  • FIG. 11 shows the flushing hub 140 and stylet 160 along the length of the catheter 120. The flushing hub 140 allows catheter flushing without removal of the stylet 160 as well as the withdrawal of bodily fluid to confirm catheter location. The stylet 160 provides internal rigidity to the catheter 120 and allows for maneuverability via torque transmission down the stylet 160 from the proximal end of the catheter system 100 to facilitate precise placement of the tip. In the preferred embodiment, the stylet 160 is coated with a hydrophillic coating for ease of removal from the catheter 120. The coating reduces catheter bunching that can compromise the physical properties of the catheter 120 by leading to destructive forces on the catheter 120. The coating further reduces traction internal to the catheter 120 during stylet withdrawal and reduces the potential of tip and/or catheter malposition.
  • The catheter 120 is closely fitted over the cannula 156 to provide a continuous pathway from the inner lumen 152 of the flushing hub 140 into the lumen 122 of the catheter 120, thereby allowing for the flushing of fluid from the cannula 156 through the lumen of the catheter 120 around the stylet 160 to wet the stylet surface before exiting from the holes 126 at the distal end of the catheter 120 (see FIG. 13).
  • FIG. 12 shows a cross-sectional view of the flushing hub 140. From this view, the inner lumen 152 of the main hub body 154 can be seen, with opening 158 at the proximal end thereof. In this particular embodiment, the stylet 160 is shown affixed to the body 154 and extends through the inner lumen 152, leaving a channel 153 on either side of the stylet 160 for fluid flow. Of course, the stylet 160 could be affixed in other locations not directly within the center of the inner lumen 152 of the main hub body 154. Also, the inner lumen 152 could be differently configured, depending on the features desired in a given catheter system.
  • Turning now to FIG. 13, a cut-away view of a distal end of the catheter 120 is shown In the preferred embodiment, catheter 120 has a lumen 122 and walls 124 made of high durometer silicone for kink resistance and its beneficial properties with regard to biocompatibility and biodurability, though other materials are certainly possible that would similarly afford the advantages of the preferred material, such as polyethylene and polyurethane. The walls 124 in the preferred embodiment are relatively thick to further the goal of kink resistance, together comprising approximately half of the external diameter of the catheter (ie., if the catheter 120 had an outside diameter of nominally 0.055 inches, each wall 124 in cross-section would have a thickness of at least 0.014 inches). At the distal end of the catheter 120, a tip 130 is rounded in the form of a bullet and made of a highly radiopaque material to provide a dual advantage of a geometry that is less traumatic to bodily tissues and anatomical structures and an enhanced visibility, which facilitates location determination during and after introduction to the patient's body. The radiopaque material utilized for the tip 130 in a preferred embodiment is a combination of cured liquid silicone and tungsten powder in approximately 50% by weight of each component.
  • In the walls 124 of the catheter 120, a set of side holes 126 are provided to allow passage of fluid to and from the lumen 122. The side holes are drilled perpendicular to the surface thereof to limit surface area anomolies that may result in tissue trauma and/or catheter damage upon placement. A catheter segment 128 between the tip 130 and a side hole 126 is filled with similar material as the tip 130 to form plug 132. This feature, combined with the closed-ended geometry of the catheter 120 eliminates dead space that can host proteinaceous material and the like, which, if present within a catheter lumen, can propogate into an occlusion thereof.
  • As mentioned, one application of the present invention is for use along with an implantable pump to deliver medication to the intrathecal space in a patient's spine. An indwelling catheter, such as catheter 120, is utilized to establish a fluid path from a subcutaneous pump through the dura membrane. The procedure generally consists first of embedding the catheter in the spine (5 to 10 cm). A drop of the spinal fluid is then allowed to form at the proximal end of the catheter 120 to confirm catheter location, after which the catheter is clamped. A tunnel is formed from the spine to the area of the abdomen, where the pump will be implanted, and the catheter is pulled through and cut to length. The catheter is then attached to the pump as described above through the use of an inventive boot and catheter lock. The pump is placed in a previously created pocket in the area of the abdomen and the pocket is closed. Implantation of the described system is relatively quick and easy and provides for prolonged delivery of drugs or medication to the spine.
  • The present invention has been described above in terms of a presently preferred embodiment so that an understanding of the present invention can be conveyed However, there are many alternative arrangements for a catheter system not specifically described herein but with which the present invention is applicable. For example, there are many different applications and configurations for a catheter locking system that would be within the scope of the present invention and similarly, there are many applications for a catheter and flushing system other than those specifically described. Although specific features have been given, the catheter system for locking a catheter to an implantable pump and for effectively flushing a catheter after implantation within a body of the present invention would equally be embodied by other configurations not specifically recited herein. The scope of the present invention should therefore not be limited by the embodiments illustrated, but rather it should be understood that the present invention has wide applicability with respect to catheter systems generally. All modifications, variations, or equivalent elements and implementations that are within the scope of the appended claims should therefore be considered within the scope of the invention.

Claims (32)

1. A connection device for attaching a catheter to an implantable port or pump, wherein the catheter is in fluid communication with said port or pump, comprising:
a coupling device extending from said port or pump, comprising an arm portion and a stem, wherein the shape of the arm portion is substantially similar to an outer contour of said port or pump, and wherein the stem comprises a base portion and a tip portion; and
a locking device slideable along a length of the catheter, comprising varying diameter portions that communicate directly with diameters of the base portion and tip portion of the stem, wherein a locking connection is established therebetween.
2. The connection device according to claim 1, wherein the base portion of the stem comprises a body portion and an engaging portion, wherein the engaging portion has a diameter that is greater than a diameter of the body portion.
3. The connection device according to claim 2, wherein the diameter of the body portion is constant.
4. The connection device according to claim 2, wherein the diameter of the engaging portion tapers down to the diameter of the body portion.
5. The connection device according to claim 1, wherein the tip portion of the stem comprises a barbed end, having a diameter larger than a lumen of the catheter.
6. The connection device according to claim 1, wherein an audible confirmation is provided upon establishment of said locking connection.
7. The connection device according to claim 1, wherein a tactile confirmation is provided upon establishment of said locking connection.
8. The connection device according to claim 1, wherein the arm portion is comprised of a flexible material and is biased to a resting position in close proximity to said port or pump, wherein said arm portion is movable to a connecting position away from said port or pump, and wherein said arm portion retracts to said resting position upon release from said connecting position.
9. The connection device according to claim 1, wherein said stem further comprises a rear portion.
10. The connection device according to claim 9, wherein said rear portion comprises a barbed end.
11. The connection device according to claim 9, further comprising a sleeve attached to said stem, covering said rear portion.
12. The connection device according to claim 11, further comprising a collar positioned around said sleeve, said collar securing said sleeve to said stem.
13. The connection device according to claim 12, wherein said collar is positioned between said base portion and a barbed end of said rear portion.
14. The connection device according to claim 1, wherein the stem is comprised of titanium.
15. The connection device according to claim 1, wherein the stem is comprised of stainless steel.
16. The connection device according to claim 1, wherein the locking device is comprised of plastic.
17. The connection device according to claim 1, wherein the locking device comprises a radiopaque portion.
18. The connection device according to claim 17, wherein the radiopaque portion comprises a metal ring.
19. The connection device according to claim 17, wherein the radiopaque portion comprises radiopaque ink.
20. A connection device for attaching a catheter to an implantable port or pump, comprising:
a coupling device extending from the implantable port or pump, comprising an arm portion and a stem, wherein the shape of the arm portion is substantially similar to an outer contour of the implantable port or pump, and wherein the stem comprises a base portion and a tip portion; and
a locking device slideable over the catheter, comprising varying diameter portions that communicate directly with diameters of the base portion and tip portion, wherein a locking connection is established therebetween,
wherein the base portion of the stem comprises a body portion and an engaging portion, wherein the engaging portion has a diameter that is greater than a diameter of the body portion, and wherein the tip portion of the stem comprises a barbed end, having a diameter larger than a lumen of the catheter.
21. The connection device according to claim 15, wherein the locking device comprises a first diameter portion that is approximately equivalent to the diameter of the barbed end.
22. The connection device according to claim 16, wherein the locking device further comprises a second diameter portion adjacent the first diameter portion that is approximately equivalent to the diameter of the tip portion of the stem.
23. The connection device according to claim 17, wherein the locking device further comprises a third diameter portion adjacent the second diameter portion that is approximately equivalent to the diameter of the body portion of the base portion.
24. The connection device according to claim 18, wherein the locking device further comprises a fourth diameter portion adjacent the third diameter portion that is approximately equivalent to the largest diameter of the engaging portion.
25. The connection device according to claim 19, wherein the locking device further comprises a fifth diameter portion adjacent the fourth diameter portion, wherein the diameter of the fifth diameter portion is less than the diameter of the fourth diameter portion.
26. A locking device for securing a catheter to a stem of an extension device, wherein the stem comprises a base portion and a tip portion, the base portion comprising a body portion and an engaging portion and the tip portion comprising a barbed end, comprising:
a first diameter portion that is approximately equivalent to the diameter of said barbed end;
a second diameter portion adjacent the first diameter portion that is approximately equivalent to the diameter of said tip portion;
a third diameter portion adjacent the second diameter portion that is approximately equivalent to the diameter of said body portion;
a fourth diameter portion adjacent the third diameter portion that is approximately equivalent to the largest diameter of the engaging portion; and
a fifth diameter portion adjacent the fourth diameter portion having a diameter less than the diameter of the fourth diameter portion.
27. A coupling device for attachment of an implantable port or pump to a catheter, comprising:
an arm portion having a proximal end that is fixedly attached to said port or pump and a distal end, said arm portion comprising a flexible material and shaped substantially similar to an outer contour of said implantable port or pump, said arm portion being biased to a resting position in close proximity to said port or pump, wherein said arm portion is movable to a connecting position away from said port or pump, and wherein said arm portion retracts to said resting position upon release from said connecting position; and
a stem positioned at a distal end of said arm portion.
28. The coupling device according to claim 27, wherein said stem comprises a rear portion, a base portion and a tip portion, wherein said rear portion is substantially covered by said arm portion.
29. The coupling device according to claim 28, further comprising a sleeve attached to said stem, covering said rear portion.
30. The coupling device according to claim 29, further comprising a collar positioned around said sleeve, said collar securing said sleeve to said stem.
31. The coupling device according to claim 30, wherein said collar is positioned between said base portion and a barbed end of said rear portion.
32. The coupling device according to claim 29, wherein said arm portion and said sleeve are comprised of silicone.
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Cited By (28)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060266421A1 (en) * 2005-04-08 2006-11-30 Kevin Chilvers Check valve
US20090292259A1 (en) * 2007-11-21 2009-11-26 Becton, Dickinson And Company Stylet Handle Attachment Device
US20100076409A1 (en) * 2008-09-19 2010-03-25 Lawrence Scott Ring Catheter connectors, connector assemblies and implantable infusion devices including the same
US20100076410A1 (en) * 2008-09-19 2010-03-25 Lawrence Scott Ring Catheter connectors, connector assemblies and implantable infusion devices including the same
USD645547S1 (en) 2007-11-19 2011-09-20 Value Plastics, Inc. Male quick connect fitting
USD649240S1 (en) 2009-12-09 2011-11-22 Value Plastics, Inc. Male dual lumen bayonet connector
USD650478S1 (en) 2009-12-23 2011-12-13 Value Plastics, Inc. Female dual lumen connector
USD652510S1 (en) 2011-02-11 2012-01-17 Value Plastics, Inc. Connector for fluid tubing
USD652511S1 (en) 2011-02-11 2012-01-17 Value Plastics, Inc. Female body of connector for fluid tubing
US8113546B2 (en) 2005-06-10 2012-02-14 Value Plastics, Inc. Latching female fluid tubing coupler
USD655393S1 (en) 2009-06-23 2012-03-06 Value Plastics, Inc. Multi-port valve
US20120123198A1 (en) * 2010-11-16 2012-05-17 Marcotte Amy L Port with conduit wraparound feature
USD663022S1 (en) 2011-02-11 2012-07-03 Nordson Corporation Male body of connector for fluid tubing
US8235426B2 (en) 2008-07-03 2012-08-07 Nordson Corporation Latch assembly for joining two conduits
US8397756B2 (en) 2006-01-20 2013-03-19 Nordson Corporation Fluid conduit couplers with depressible latch mechanism
USD698440S1 (en) 2011-07-29 2014-01-28 Nordson Corporation Connector for fluid tubing
USD699840S1 (en) 2011-07-29 2014-02-18 Nordson Corporation Male body of connector for fluid tubing
USD699841S1 (en) 2011-07-29 2014-02-18 Nordson Corporation Female body of connector for fluid tubing
USD709612S1 (en) 2011-12-23 2014-07-22 Nordson Corporation Female dual lumen connector
US9046205B2 (en) 2009-12-09 2015-06-02 Nordson Corporation Fluid connector latches with profile lead-ins
USD743510S1 (en) * 2013-10-31 2015-11-17 Nordson Corporation High pressure fluid conduit connector components and connector assembly
US20160025233A1 (en) * 2008-01-21 2016-01-28 Ausco, Inc. Pressure relief valve with singular body
WO2016081343A1 (en) * 2014-11-21 2016-05-26 Meacham G B Kirby Implanted medical driveline strain relief device
US9388929B2 (en) 2009-12-09 2016-07-12 Nordson Corporation Male bayonet connector
US9464741B2 (en) 2009-12-09 2016-10-11 Nordson Corporation Button latch with integrally molded cantilever springs
USD785790S1 (en) 2009-12-09 2017-05-02 General Electric Company Male dual lumen bayonet connector
USD838366S1 (en) 2016-10-31 2019-01-15 Nordson Corporation Blood pressure connector
US10711930B2 (en) 2009-12-09 2020-07-14 Nordson Corporation Releasable connection assembly

Families Citing this family (53)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8177762B2 (en) 1998-12-07 2012-05-15 C. R. Bard, Inc. Septum including at least one identifiable feature, access ports including same, and related methods
JP2007512102A (en) 2003-11-20 2007-05-17 ザ ヘンリー エム. ジャクソン ファウンデーション フォー ザ アドヴァンスメント オブ ミリタリー メディシン, インク. Portable manual pump for fluid suction
US8337475B2 (en) 2004-10-12 2012-12-25 C. R. Bard, Inc. Corporeal drainage system
US9474888B2 (en) 2005-03-04 2016-10-25 C. R. Bard, Inc. Implantable access port including a sandwiched radiopaque insert
US7947022B2 (en) 2005-03-04 2011-05-24 C. R. Bard, Inc. Access port identification systems and methods
JP5484674B2 (en) 2005-03-04 2014-05-07 シー・アール・バード・インコーポレーテッド Access port and identification method
US8029482B2 (en) 2005-03-04 2011-10-04 C. R. Bard, Inc. Systems and methods for radiographically identifying an access port
EP2308547B1 (en) 2005-04-27 2014-09-17 C.R. Bard, Inc. High pressure access port with septum
WO2006116613A1 (en) 2005-04-27 2006-11-02 C.R. Bard, Inc. Infusion apparatuses
US10307581B2 (en) 2005-04-27 2019-06-04 C. R. Bard, Inc. Reinforced septum for an implantable medical device
US8177772B2 (en) 2005-09-26 2012-05-15 C. R. Bard, Inc. Catheter connection systems
US20070100322A1 (en) * 2005-10-31 2007-05-03 Ramakrishna Venugopalan Method of removing a stylette from a catheter
MX344665B (en) * 2006-10-18 2017-01-04 Medical Components Inc Venous access port assembly with radiopaque indicia.
US9642986B2 (en) 2006-11-08 2017-05-09 C. R. Bard, Inc. Resource information key for an insertable medical device
US9265912B2 (en) 2006-11-08 2016-02-23 C. R. Bard, Inc. Indicia informative of characteristics of insertable medical devices
ATE507511T1 (en) * 2006-12-22 2011-05-15 Eta Sa Mft Horlogere Suisse ELECTRONIC CLOCK WITH DISPLAY OF THE DIRECTION OF A PRE-PROGRAMMED GEOGRAPHIC LOCATION
DE102007010760B4 (en) * 2007-03-06 2015-03-05 Tricumed Medizintechnik Gmbh Implantable infusion pump
US8696647B2 (en) 2007-06-19 2014-04-15 Medical Components, Inc. Catheter-to-device locking system
US20080319398A1 (en) 2007-06-19 2008-12-25 Medical Components, Inc. Catheter-to-Device Locking System
ES2651269T3 (en) 2007-06-20 2018-01-25 Medical Components, Inc. Venous reservoir with molded indications and / or radiopacas
WO2009012395A1 (en) 2007-07-19 2009-01-22 Innovative Medical Devices, Llc Venous access port assembly with x-ray discernable indicia
EP3311877A1 (en) 2007-07-19 2018-04-25 Medical Components, Inc. Venous access port assembly with x-ray discernable indicia
US9579496B2 (en) 2007-11-07 2017-02-28 C. R. Bard, Inc. Radiopaque and septum-based indicators for a multi-lumen implantable port
US11890443B2 (en) 2008-11-13 2024-02-06 C. R. Bard, Inc. Implantable medical devices including septum-based indicators
US8932271B2 (en) 2008-11-13 2015-01-13 C. R. Bard, Inc. Implantable medical devices including septum-based indicators
US9125982B2 (en) * 2009-09-09 2015-09-08 Flowonix Medical Incorporated Methods and systems for providing metered doses of a compound to an individual
US8092435B2 (en) * 2009-10-16 2012-01-10 Smiths Medical Asd, Inc. Portal with septum embedded indicia
JP2013510652A (en) 2009-11-17 2013-03-28 シー・アール・バード・インコーポレーテッド Overmolded access port including locking feature and identification feature
US8377034B2 (en) 2009-12-04 2013-02-19 Std Med, Inc. Vascular access port
US8657795B2 (en) * 2009-12-30 2014-02-25 Cook Medical Technologies Llc Vascular port
US11628267B2 (en) 2010-08-04 2023-04-18 Medline Industries, Lp Universal medical gas delivery system
US10420923B1 (en) 2010-08-10 2019-09-24 Amiram Katz Method and device for intrathecal administering of immunoglobulin
CA2808051C (en) 2010-08-10 2018-06-12 Medical Components, Inc. Collet lock
USD676955S1 (en) 2010-12-30 2013-02-26 C. R. Bard, Inc. Implantable access port
USD682416S1 (en) 2010-12-30 2013-05-14 C. R. Bard, Inc. Implantable access port
EP2481966A1 (en) * 2011-02-01 2012-08-01 Uponor Innovation AB Clamping ring
US9764124B2 (en) 2014-03-31 2017-09-19 Versago Vascular Access, Inc. Vascular access port
US10369345B2 (en) 2014-03-31 2019-08-06 Versago Vascular Access, Inc. Medical access port, systems and methods of use thereof
WO2015153976A1 (en) 2014-04-03 2015-10-08 Versago Vascular Access, Inc. Devices and methods for installation and removal of a needle tip of a needle
JP6673919B2 (en) 2014-12-18 2020-03-25 ヴェルサゴ ヴァスキュラー アクセス インコーポレイテッド Devices, systems, and methods for removal and replacement of catheters for implantable access ports
CA2971215A1 (en) 2014-12-18 2016-06-23 Versago Vascular Access, Inc. Catheter patency systems and methods
USD791092S1 (en) * 2015-03-30 2017-07-04 Perouse Medical Medical port
WO2017011652A1 (en) 2015-07-14 2017-01-19 Versago Vascular Access, Inc. Medical access ports, transfer devices and methods of use thereof
AU201610626S (en) * 2015-08-14 2016-04-22 Fresenius Kabi Deutschland Gmbh Venous access port
USD830547S1 (en) 2016-01-21 2018-10-09 Becton, Dickinson And Company Adhesive liner for wearable drug delivery device
USD829894S1 (en) * 2016-01-21 2018-10-02 Becton, Dickinson And Company Wearable drug delivery device baseplate
ITUA20163823A1 (en) * 2016-05-26 2017-11-26 Adria Med S R L DEVICE FOR THE INFUSION OF MEDICAL SOLUTIONS
JP7066642B2 (en) 2016-07-18 2022-05-13 メリット・メディカル・システムズ・インコーポレイテッド Inflatable radial artery compression device
US20180214680A1 (en) * 2017-02-01 2018-08-02 Pfm Medical, Inc. Identification system for injectable access ports
USD895109S1 (en) * 2017-10-18 2020-09-01 Roche Diabetes Care, Inc. Inserter for an infusion set
WO2019126306A1 (en) 2017-12-21 2019-06-27 Versago Vascular Access, Inc. Medical access ports, transfer devices and methods of use thereof
CN112714660B (en) * 2018-09-12 2023-07-04 费森尤斯卡比德国有限公司 Port for a catheter subcutaneously implanted in a patient
USD896365S1 (en) * 2019-06-24 2020-09-15 Mark Sipe Medical port disc

Citations (63)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2393003A (en) * 1944-05-03 1946-01-15 Smith Minton Larkin Kidney catheter
US3419010A (en) * 1966-01-17 1968-12-31 Cordis Corp Catheter
US3840009A (en) * 1971-12-27 1974-10-08 Alza Corp Self-powered vapor pressure delivery device
US3951147A (en) * 1975-04-07 1976-04-20 Metal Bellows Company Implantable infusate pump
US4257421A (en) * 1979-01-10 1981-03-24 Health Development Corporation Gastro-intestinal tube guide and stiffener
US4310001A (en) * 1980-04-21 1982-01-12 Medtronic, Inc. Connector assembly for body implantable medical systems
US4388076A (en) * 1981-02-11 1983-06-14 Biosearch Medical Products Inc. Intubating device
US4548607A (en) * 1983-04-13 1985-10-22 Cordis Corporation Implantable manually actuated medication dispensing system
US4559046A (en) * 1979-08-20 1985-12-17 Catheter Technology Corporation Apparatus for intravenous therapy and hyperalimentation
US4583968A (en) * 1983-10-03 1986-04-22 Mahurkar Sakharam D Smooth bore double lumen catheter
US4692147A (en) * 1980-04-02 1987-09-08 Medtronic, Inc. Drug administration device
US4723948A (en) * 1986-11-12 1988-02-09 Pharmacia Nu Tech Catheter attachment system
US4749217A (en) * 1986-11-03 1988-06-07 Bridges Corporation Pty. Ltd. Pipe fittings
US4772276A (en) * 1987-06-18 1988-09-20 Catheter Technology Corp. Catheter tube coupling assembly and methods
US4838887A (en) * 1987-12-15 1989-06-13 Shiley Infusaid Inc. Programmable valve pump
US4880414A (en) * 1987-12-31 1989-11-14 Pharmacia Nu Tech Catheter attachment system
US4929236A (en) * 1988-05-26 1990-05-29 Shiley Infusaid, Inc. Snap-lock fitting catheter for an implantable device
US4963133A (en) * 1987-12-31 1990-10-16 Pharmacia Deltec, Inc. Catheter attachment system
US5015238A (en) * 1989-06-21 1991-05-14 Becton, Dickinson And Company Expandable obturator and catheter assembly including same
US5045064A (en) * 1990-06-01 1991-09-03 Infusaid, Inc. Constant pressure implantable pump reservoir
US5049141A (en) * 1990-04-25 1991-09-17 Infusaid, Inc. Programmable valve pump
US5129891A (en) * 1989-05-19 1992-07-14 Strato Medical Corporation Catheter attachment device
US5167633A (en) * 1990-11-29 1992-12-01 Pacesetter Infusion, Ltd. Liquid-vapor pressure reservoir for medication infusion pump
US5197951A (en) * 1983-12-14 1993-03-30 Mahurkar Sakharam D Simple double lumen catheter
US5221255A (en) * 1990-01-10 1993-06-22 Mahurkar Sakharam D Reinforced multiple lumen catheter
US5295968A (en) * 1992-08-19 1994-03-22 Wilson-Cook Medical Inc. Stylet wire assembly
US5328465A (en) * 1992-10-30 1994-07-12 Medtronic, Inc. Apparatus and method for limiting access to septum
US5357961A (en) * 1993-05-12 1994-10-25 Hdc Corporation Catheter guidewire and flushing apparatus and method of insertion
US5395324A (en) * 1991-06-07 1995-03-07 Anschutz + Co., GmbH Apparatus for the reliable filling of the container of an infusion pump
US5472435A (en) * 1993-05-21 1995-12-05 Navarre Biomedical, Ltd. Drainage catheter
US5514103A (en) * 1994-06-14 1996-05-07 Minimed Inc. Medication infusion pump with improved pressure reservoir
US5527307A (en) * 1994-04-01 1996-06-18 Minimed Inc. Implantable medication infusion pump with discharge side port
US5575770A (en) * 1995-04-05 1996-11-19 Therex Corporation Implantable drug infusion system with safe bolus capability
US5632729A (en) * 1994-01-21 1997-05-27 Sims Deltec, Inc. Catheter connector
US5637102A (en) * 1995-05-24 1997-06-10 C. R. Bard, Inc. Dual-type catheter connection system
US5700251A (en) * 1994-12-02 1997-12-23 Nissho Corporation Epidural catheter
US5702372A (en) * 1995-02-08 1997-12-30 Medtronic, Inc. Lined infusion catheter
US5752930A (en) * 1995-04-28 1998-05-19 Medtronic, Inc. Implantable techniques for infusing equal volumes of agents to spaced sites
US5769823A (en) * 1995-03-23 1998-06-23 Tricumed Gmbh Implantable infusion pump
US5792104A (en) * 1996-12-10 1998-08-11 Medtronic, Inc. Dual-reservoir vascular access port
US5823961A (en) * 1993-05-12 1998-10-20 Hdc Corporation Catheter guidewire and flushing apparatus and method of insertion
US5833654A (en) * 1997-01-17 1998-11-10 C. R. Bard, Inc. Longitudinally aligned dual reservoir access port
US5908414A (en) * 1995-05-03 1999-06-01 Tricumed Gmbh Implantable infusion pump
US5925030A (en) * 1994-08-15 1999-07-20 Elan Corporation, Plc Orally administrable delivery device
US5925017A (en) * 1995-10-11 1999-07-20 Science Incorporated Fluid delivery device with bolus injection site
US6003906A (en) * 1997-11-04 1999-12-21 Terence M. Fogarty Connector for elastomeric conduit
US6039712A (en) * 1997-11-04 2000-03-21 Terence M. Fogarty Implantable injection port
US6045530A (en) * 1998-10-14 2000-04-04 Heyer-Schulte Neurocare Inc. Adjustable angle catheter
US6050987A (en) * 1998-09-21 2000-04-18 The United States Of America As Represented By The Administrator Of The National Aeronautics And Space Administration Tubular coupling
US6086555A (en) * 1997-01-17 2000-07-11 C. R. Bard, Inc. Dual reservoir vascular access port with two-piece housing and compound septum
US6113572A (en) * 1995-05-24 2000-09-05 C. R. Bard, Inc. Multiple-type catheter connection systems
US6126650A (en) * 1998-06-30 2000-10-03 Cordis Corporation Flow directed catheter having radiopaque strain relief segment
US6213973B1 (en) * 1998-01-12 2001-04-10 C. R. Bard, Inc. Vascular access port with elongated septum
US6217565B1 (en) * 1998-07-16 2001-04-17 Mark Cohen Reinforced variable stiffness tubing
US6221064B1 (en) * 1998-07-27 2001-04-24 B. Braun Celsa Tube coupling device for connecting a tubular rigid stem to a flexible catheter tube
US6231085B1 (en) * 1997-04-21 2001-05-15 Irrigation Development Company Tubing coupling and hose end combination, and related method
US6234973B1 (en) * 1998-04-30 2001-05-22 Medtronic, Inc. Implantable medical device for sensing absolute blood pressure and barometric pressure
US6245029B1 (en) * 1995-02-21 2001-06-12 Nissho Corporation Stylet and connector therefor
US6287293B1 (en) * 1999-09-28 2001-09-11 C. R. Bard, Inc. Method and apparatus for locating the injection point of an implanted medical device
US6562023B1 (en) * 1999-04-23 2003-05-13 Deltec Inc. Catheter connector including seal ring and method
US6575959B1 (en) * 1999-12-27 2003-06-10 Scimed Life Systems, Inc. Catheter incorporating an insert molded hub and method of manufacturing
US6641177B1 (en) * 2000-08-25 2003-11-04 Precision Design Concepts, Llc Quick connect tube coupling and method of assembling the same
US6743873B2 (en) * 2002-05-28 2004-06-01 Rohm And Haas Company Olefin polymerization catalyst composition and preparation thereof

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US538465A (en) * 1895-04-30 Dental chair
DE3027342C2 (en) * 1980-07-18 1982-08-19 Maschinenbau Oppenweiler Binder GmbH & Co, 7155 Oppenweiler Device for pivoting the sword in its longitudinal axis and for adjusting the depth of the sword on knife folding machines
USH150H (en) * 1984-08-03 1986-11-04 Medtronic, Inc. Accessory module for implantable fluid dispensing device
IT223227Z2 (en) 1991-07-17 1995-06-13 Saiag Ind Spa SEALING TIGHTENING DEVICE OF A FLEXIBLE FLEXIBLE HOSE ON A TUBULAR AGREEMENT.
US5833275A (en) 1994-11-29 1998-11-10 Corpak, Inc. Locking medical connector
US5810768A (en) * 1995-06-07 1998-09-22 Icu Medical, Inc. Medical connector
FR2750055B1 (en) 1996-06-20 1998-08-07 Braun Celsa Sa MEDICAL ASSEMBLY OF REMOVABLE LINK BETWEEN A TUBE AND A ROD
JP3536577B2 (en) * 1997-03-28 2004-06-14 ミノルタ株式会社 Cartridge and image forming apparatus using the same

Patent Citations (64)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2393003A (en) * 1944-05-03 1946-01-15 Smith Minton Larkin Kidney catheter
US3419010A (en) * 1966-01-17 1968-12-31 Cordis Corp Catheter
US3840009A (en) * 1971-12-27 1974-10-08 Alza Corp Self-powered vapor pressure delivery device
US3951147A (en) * 1975-04-07 1976-04-20 Metal Bellows Company Implantable infusate pump
US4257421A (en) * 1979-01-10 1981-03-24 Health Development Corporation Gastro-intestinal tube guide and stiffener
US4559046A (en) * 1979-08-20 1985-12-17 Catheter Technology Corporation Apparatus for intravenous therapy and hyperalimentation
US4692147A (en) * 1980-04-02 1987-09-08 Medtronic, Inc. Drug administration device
US4310001A (en) * 1980-04-21 1982-01-12 Medtronic, Inc. Connector assembly for body implantable medical systems
US4388076A (en) * 1981-02-11 1983-06-14 Biosearch Medical Products Inc. Intubating device
US4548607A (en) * 1983-04-13 1985-10-22 Cordis Corporation Implantable manually actuated medication dispensing system
US4583968A (en) * 1983-10-03 1986-04-22 Mahurkar Sakharam D Smooth bore double lumen catheter
US5197951A (en) * 1983-12-14 1993-03-30 Mahurkar Sakharam D Simple double lumen catheter
US4749217A (en) * 1986-11-03 1988-06-07 Bridges Corporation Pty. Ltd. Pipe fittings
US4723948A (en) * 1986-11-12 1988-02-09 Pharmacia Nu Tech Catheter attachment system
US4772276A (en) * 1987-06-18 1988-09-20 Catheter Technology Corp. Catheter tube coupling assembly and methods
US4838887A (en) * 1987-12-15 1989-06-13 Shiley Infusaid Inc. Programmable valve pump
US4880414A (en) * 1987-12-31 1989-11-14 Pharmacia Nu Tech Catheter attachment system
US4963133A (en) * 1987-12-31 1990-10-16 Pharmacia Deltec, Inc. Catheter attachment system
US4929236A (en) * 1988-05-26 1990-05-29 Shiley Infusaid, Inc. Snap-lock fitting catheter for an implantable device
US5129891A (en) * 1989-05-19 1992-07-14 Strato Medical Corporation Catheter attachment device
US5015238A (en) * 1989-06-21 1991-05-14 Becton, Dickinson And Company Expandable obturator and catheter assembly including same
US5221255A (en) * 1990-01-10 1993-06-22 Mahurkar Sakharam D Reinforced multiple lumen catheter
US5049141A (en) * 1990-04-25 1991-09-17 Infusaid, Inc. Programmable valve pump
US5045064A (en) * 1990-06-01 1991-09-03 Infusaid, Inc. Constant pressure implantable pump reservoir
US5312337A (en) * 1990-10-10 1994-05-17 Strato Medical Corporation Catheter attachment device
US5167633A (en) * 1990-11-29 1992-12-01 Pacesetter Infusion, Ltd. Liquid-vapor pressure reservoir for medication infusion pump
US5395324A (en) * 1991-06-07 1995-03-07 Anschutz + Co., GmbH Apparatus for the reliable filling of the container of an infusion pump
US5295968A (en) * 1992-08-19 1994-03-22 Wilson-Cook Medical Inc. Stylet wire assembly
US5328465A (en) * 1992-10-30 1994-07-12 Medtronic, Inc. Apparatus and method for limiting access to septum
US5357961A (en) * 1993-05-12 1994-10-25 Hdc Corporation Catheter guidewire and flushing apparatus and method of insertion
US5823961A (en) * 1993-05-12 1998-10-20 Hdc Corporation Catheter guidewire and flushing apparatus and method of insertion
US5472435A (en) * 1993-05-21 1995-12-05 Navarre Biomedical, Ltd. Drainage catheter
US5632729A (en) * 1994-01-21 1997-05-27 Sims Deltec, Inc. Catheter connector
US5527307A (en) * 1994-04-01 1996-06-18 Minimed Inc. Implantable medication infusion pump with discharge side port
US5514103A (en) * 1994-06-14 1996-05-07 Minimed Inc. Medication infusion pump with improved pressure reservoir
US5925030A (en) * 1994-08-15 1999-07-20 Elan Corporation, Plc Orally administrable delivery device
US5700251A (en) * 1994-12-02 1997-12-23 Nissho Corporation Epidural catheter
US5702372A (en) * 1995-02-08 1997-12-30 Medtronic, Inc. Lined infusion catheter
US6245029B1 (en) * 1995-02-21 2001-06-12 Nissho Corporation Stylet and connector therefor
US5769823A (en) * 1995-03-23 1998-06-23 Tricumed Gmbh Implantable infusion pump
US5575770A (en) * 1995-04-05 1996-11-19 Therex Corporation Implantable drug infusion system with safe bolus capability
US5752930A (en) * 1995-04-28 1998-05-19 Medtronic, Inc. Implantable techniques for infusing equal volumes of agents to spaced sites
US5908414A (en) * 1995-05-03 1999-06-01 Tricumed Gmbh Implantable infusion pump
US5637102A (en) * 1995-05-24 1997-06-10 C. R. Bard, Inc. Dual-type catheter connection system
US6113572A (en) * 1995-05-24 2000-09-05 C. R. Bard, Inc. Multiple-type catheter connection systems
US5925017A (en) * 1995-10-11 1999-07-20 Science Incorporated Fluid delivery device with bolus injection site
US5792104A (en) * 1996-12-10 1998-08-11 Medtronic, Inc. Dual-reservoir vascular access port
US6086555A (en) * 1997-01-17 2000-07-11 C. R. Bard, Inc. Dual reservoir vascular access port with two-piece housing and compound septum
US5833654A (en) * 1997-01-17 1998-11-10 C. R. Bard, Inc. Longitudinally aligned dual reservoir access port
US6231085B1 (en) * 1997-04-21 2001-05-15 Irrigation Development Company Tubing coupling and hose end combination, and related method
US6039712A (en) * 1997-11-04 2000-03-21 Terence M. Fogarty Implantable injection port
US6003906A (en) * 1997-11-04 1999-12-21 Terence M. Fogarty Connector for elastomeric conduit
US6213973B1 (en) * 1998-01-12 2001-04-10 C. R. Bard, Inc. Vascular access port with elongated septum
US6234973B1 (en) * 1998-04-30 2001-05-22 Medtronic, Inc. Implantable medical device for sensing absolute blood pressure and barometric pressure
US6126650A (en) * 1998-06-30 2000-10-03 Cordis Corporation Flow directed catheter having radiopaque strain relief segment
US6217565B1 (en) * 1998-07-16 2001-04-17 Mark Cohen Reinforced variable stiffness tubing
US6221064B1 (en) * 1998-07-27 2001-04-24 B. Braun Celsa Tube coupling device for connecting a tubular rigid stem to a flexible catheter tube
US6050987A (en) * 1998-09-21 2000-04-18 The United States Of America As Represented By The Administrator Of The National Aeronautics And Space Administration Tubular coupling
US6045530A (en) * 1998-10-14 2000-04-04 Heyer-Schulte Neurocare Inc. Adjustable angle catheter
US6562023B1 (en) * 1999-04-23 2003-05-13 Deltec Inc. Catheter connector including seal ring and method
US6287293B1 (en) * 1999-09-28 2001-09-11 C. R. Bard, Inc. Method and apparatus for locating the injection point of an implanted medical device
US6575959B1 (en) * 1999-12-27 2003-06-10 Scimed Life Systems, Inc. Catheter incorporating an insert molded hub and method of manufacturing
US6641177B1 (en) * 2000-08-25 2003-11-04 Precision Design Concepts, Llc Quick connect tube coupling and method of assembling the same
US6743873B2 (en) * 2002-05-28 2004-06-01 Rohm And Haas Company Olefin polymerization catalyst composition and preparation thereof

Cited By (42)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20060266421A1 (en) * 2005-04-08 2006-11-30 Kevin Chilvers Check valve
US8113546B2 (en) 2005-06-10 2012-02-14 Value Plastics, Inc. Latching female fluid tubing coupler
US8397756B2 (en) 2006-01-20 2013-03-19 Nordson Corporation Fluid conduit couplers with depressible latch mechanism
USD645547S1 (en) 2007-11-19 2011-09-20 Value Plastics, Inc. Male quick connect fitting
USD654573S1 (en) 2007-11-19 2012-02-21 Value Plastics, Inc. Female quick connect fitting
US20090292259A1 (en) * 2007-11-21 2009-11-26 Becton, Dickinson And Company Stylet Handle Attachment Device
US9259553B2 (en) 2007-11-21 2016-02-16 Becton, Dickinson And Company Stylet handle attachment device
US9371926B2 (en) * 2008-01-21 2016-06-21 Ausco, Inc. Pressure relief valve with singular body
US20160025233A1 (en) * 2008-01-21 2016-01-28 Ausco, Inc. Pressure relief valve with singular body
US8235426B2 (en) 2008-07-03 2012-08-07 Nordson Corporation Latch assembly for joining two conduits
US8596688B2 (en) 2008-07-03 2013-12-03 Nordson Corporation Latch assembly for joining two conduits
US8448994B2 (en) 2008-07-03 2013-05-28 Nordson Corporation Latch assembly for joining two conduits
US20100076409A1 (en) * 2008-09-19 2010-03-25 Lawrence Scott Ring Catheter connectors, connector assemblies and implantable infusion devices including the same
US20100076410A1 (en) * 2008-09-19 2010-03-25 Lawrence Scott Ring Catheter connectors, connector assemblies and implantable infusion devices including the same
USD655393S1 (en) 2009-06-23 2012-03-06 Value Plastics, Inc. Multi-port valve
US9046205B2 (en) 2009-12-09 2015-06-02 Nordson Corporation Fluid connector latches with profile lead-ins
USD649240S1 (en) 2009-12-09 2011-11-22 Value Plastics, Inc. Male dual lumen bayonet connector
US10711930B2 (en) 2009-12-09 2020-07-14 Nordson Corporation Releasable connection assembly
US10001236B2 (en) 2009-12-09 2018-06-19 General Electric Company Male bayonet connector
US9732891B2 (en) 2009-12-09 2017-08-15 General Electric Company Male bayonet connector
USD785790S1 (en) 2009-12-09 2017-05-02 General Electric Company Male dual lumen bayonet connector
US9464741B2 (en) 2009-12-09 2016-10-11 Nordson Corporation Button latch with integrally molded cantilever springs
US9388929B2 (en) 2009-12-09 2016-07-12 Nordson Corporation Male bayonet connector
USD650478S1 (en) 2009-12-23 2011-12-13 Value Plastics, Inc. Female dual lumen connector
US9050446B2 (en) * 2010-11-16 2015-06-09 Ethicon Endo-Surgery, Inc. Port with conduit wraparound feature
US20120123198A1 (en) * 2010-11-16 2012-05-17 Marcotte Amy L Port with conduit wraparound feature
WO2012068190A1 (en) * 2010-11-16 2012-05-24 Ethicon Endo-Surgery, Inc. Port with conduit wraparound feature
USD652510S1 (en) 2011-02-11 2012-01-17 Value Plastics, Inc. Connector for fluid tubing
USD663022S1 (en) 2011-02-11 2012-07-03 Nordson Corporation Male body of connector for fluid tubing
USD652511S1 (en) 2011-02-11 2012-01-17 Value Plastics, Inc. Female body of connector for fluid tubing
USD699841S1 (en) 2011-07-29 2014-02-18 Nordson Corporation Female body of connector for fluid tubing
USD699840S1 (en) 2011-07-29 2014-02-18 Nordson Corporation Male body of connector for fluid tubing
USD698440S1 (en) 2011-07-29 2014-01-28 Nordson Corporation Connector for fluid tubing
USD712537S1 (en) 2011-07-29 2014-09-02 Nordson Corporation Connector for fluid tubing
USD709612S1 (en) 2011-12-23 2014-07-22 Nordson Corporation Female dual lumen connector
USD743510S1 (en) * 2013-10-31 2015-11-17 Nordson Corporation High pressure fluid conduit connector components and connector assembly
WO2016081343A1 (en) * 2014-11-21 2016-05-26 Meacham G B Kirby Implanted medical driveline strain relief device
USD838366S1 (en) 2016-10-31 2019-01-15 Nordson Corporation Blood pressure connector
USD961070S1 (en) 2016-10-31 2022-08-16 Nordson Corporation Blood pressure connector
USD964557S1 (en) 2016-10-31 2022-09-20 Nordson Corporation Blood pressure connector
USD964558S1 (en) 2016-10-31 2022-09-20 Nordson Corporation Blood pressure connector
USD967955S1 (en) 2016-10-31 2022-10-25 Nordson Corporation Blood pressure connector

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US20040002693A1 (en) 2004-01-01
AU2003248768A1 (en) 2004-01-19
WO2004002555A1 (en) 2004-01-08
DE60332246D1 (en) 2010-06-02
WO2004002555B1 (en) 2004-03-04
US7452354B2 (en) 2008-11-18
EP1534364B1 (en) 2010-04-21
ATE464925T1 (en) 2010-05-15
US20050096635A1 (en) 2005-05-05
EP1534364A1 (en) 2005-06-01
US7927325B2 (en) 2011-04-19

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