US3805300A - Tendon prosthesis - Google Patents

Tendon prosthesis Download PDF

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US3805300A
US3805300A US00275932A US27593272A US3805300A US 3805300 A US3805300 A US 3805300A US 00275932 A US00275932 A US 00275932A US 27593272 A US27593272 A US 27593272A US 3805300 A US3805300 A US 3805300A
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tendon
end portion
prosthesis
elongated
central portion
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US00275932A
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Alonso M Tascon
J Stubstad
J Doyle
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Bayer Corp
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Cutter Laboratories Inc
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F2/00Filters implantable into blood vessels; Prostheses, i.e. artificial substitutes or replacements for parts of the body; Appliances for connecting them with the body; Devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents
    • A61F2/02Prostheses implantable into the body
    • A61F2/08Muscles; Tendons; Ligaments
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S128/00Surgery
    • Y10S128/14Polytetrafluoroethylene, i.e. PTFE
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S128/00Surgery
    • Y10S128/21Silicone

Definitions

  • ABSTRACT A tendon prosthesis for repair or replacement of a damaged or diseased natural tendon which comprises an elongated member made of biocompatible material having a central portion and two end sections at least ,one of which has a plurality of longitudinally arranged fenestrations for interweaving with a resected tendon to provide a strong, functional anastomosis.
  • the second end section of the prosthesis is formed of a pair of flexible cord-like members adapted to anchor the prosthesis to bone structure.
  • both end sections include fenestrations allowing each end section to be secured to interwoven segments of a resected tendon.
  • a great many artificial tendons have been devised in an attempt to improve tendon restoration. Generally, they all have an elongated flexible central section for bridging the gap between resected tendon ends. This central position is made of biocompatible material which inhibits or resists tissue ingrowth.
  • the means for attachment of the ends of the artificial tendons to the ends of tendon or bone have been the principal area of investigation.
  • Some prostheses have a loop at one (or both ends) around which the end of the natural tendon is looped and sutured.
  • Other prostheses have a tubular cloth end into which the end of the resected tendon is placed and sutured.
  • Still another prosthesis has two flaps at each end with tissue ingrowth material on the inside of the flaps.
  • Tendon ends are layered between the flaps and are retained by sutures running through the flaps. Both the tubular and flap ended types are designed to permit tendon tissue ingrowth to occur into the receptive surface of the prosthesis encasing the tendon and provide strength to the attachment.
  • the flap and the loop designs in particular create bulkiness at the attachment site tending to comprise motion within the sheath.
  • This invention relates to improvements of artificial tendons'havingas a primary object a tendon prosthesis which provides an immediate and long lasting strong functional union between the prosthesis and tendon.
  • a further object is a tendon prosthesis which permits immediate mobility following surgery and essentially eliminates adhesions.
  • Another object is a tendon prosthesis which permits extensive anastomotic union without compromising the nutrient supply to the tendon.
  • Another object is a tendon prosthesis which provides minimal bulk at the anastomotic site.
  • the present invention which accomplishes these objects comprises a somewhat narrow, rather flat, tape-
  • An artificial tendon should have the capability for being connected to natural tendon so as to create a strong attachment which will withstand both normal stress over a prolonged period and intense stressfor shorter periods without breaking the attachment or causing injury to the natural tendon.
  • the means for attachment should be such that immediate mobility of the repaired tendon is possible following surgery so as to minimize or avoid the formation of restricting adhesions.
  • Each of the prior artificial tendons fails to provide like structure made of bicompatible material capable of withstanding functionally physiological forces exerted at each end without breaking or stretching significantly.
  • the internal strength-imparting framework of the prosthesis may be made of non-stretching material such as braided, woven or standard fabric cords, metal wire, or other strong flexible filaments.
  • the framework is coated with a biocompatible material, such as Teflon, silicone, polyurethane or other suitable flexible polymer, over the entire central portion and a part of the end sections so as to prevent ingrowth of tissue into the prosthesis except at certain desired areas at the end portions. At least in one end section there are a series of holes or fenestrations centrally located and running longitudinally on the flatter sideof the end section.
  • the surfaces lying centrally between the holes are of such material and/or structure that they allow ingrowth of tissue to occur.
  • the other end section may also be similarly constructed or it may have means, such as cords or small tapes extending beyond that end for tying or otherwise securing that end to bone.
  • a resected end of a tendon preferably one which is first split down the middle, is interwoven through the fenestrations at the end section of the prosthetic tendon and secured by several sutures.
  • the other end of the prosthesis may be similarly anastomosed to a resected tendon when a tendon prosthesis is used which has both end sections fenestrated.
  • the attachment of the natural tendon to the prosthetic tendon by this means gives immediate strength and security to the attachment somewhat in the manner of a spliced rope.
  • This means of attachment also permits the natural tendon in the area of attachment to externally envelop the prosthesis so that the tendon can continue to be nourished by the'surrounding tissues and necrosis of the tendon is avoided.
  • the resected end (or ends of the split tendon as the case may be) may be readily contained within the prosthesis and thus the problem of adhesion to surrounding tissue is essentially avoided.
  • FIG. 1 is a top plan view of a tendon prosthesis in accordance with a first embodiment of this invention, partly broken away;
  • FIG. 2 is an enlarged cross-sectional view of the prosthesis of FIG. 1, taken on line 2-2;
  • FIG. 3 is an enlarged cross-sectonal view of the prosthesis of FIG. 1, taken on line 3-3;
  • FIG. 4 is a view of a modified portion of the prosthesis of FIG. 1, showing an integrally attached sleeve at position A of the prosthesis;
  • FIG. 5 is top elevational view of a'second embodiment of the invention.
  • FIG. 6 is a perspective view showing the interweaving of a tendon into the end portion of a prosthesis formed in accordance with this invention.
  • a tendon prosthesis 10 as shown in'FIGS. 1 through 4 comprises a central portion 12 and two end portions 14 and 16.
  • the entire prosthesis 10 is made of biocompatible material and may be constructed by the same material or a combination of materials.
  • the central portion 12 is a somewhat flat or tape-like structure as shown in this embodi ment or it may be ovoid in cross-section or it may be more circular. A variety of shapes may be manufactured to conform more or less to the cross-sectional shape of the natural tendon to which the artificial tendon is to be attached.
  • the length of the central portion 12 may vary, depending upon the length of damaged or diseased tendon to be replaced. 7
  • the end section 14 is integral with the central portion 12 and has essentially the same cross-sectional dimensions as the central portion 12. Located centrally and arranged longitudinally in end 14 are a series of openings or fenestrations 18, at least two and preferably three or four in number. These openings 18 may take a variety of shapes, preferably somewhat oval, and are more or less uniformly spaced apart to provide surfaces 20 in between each opening 18. These surfaces 20 have structure which is receptive to ingrowth of tissue.
  • tissue ingrowth surfaces 20 may comprise a favric such as Dacron velour or woven mesh which may fabric secured to the desired areas by applying an adhesive such as silicone adhesive between the body of the prosthesis and the fabric and by vulcanizing the resulting structure to achieve a firm bond.
  • the velour or mesh with an unvulcanized silicone backing may be compressed onto the silicone body and vulcanized.
  • the ingrowth surface also extends inwardly on the surfaces within the openings 18 as shown in FIG. 2.
  • the ingrowth surface 20 may also be of polyurethane having an open pore structure.
  • the polyurethane may be molded into the desired shape to form the body with its fenestrations and then an overlayer of polyurethane having open pore structure may be secured to those areas where tissue ingrowth is desired.
  • the prosthesis may be made of metal. and if made from woven or twisted strands of metal wire, such as titanium wire, the woven or twisted structure has crevices into which tissue may grow and one needs only to coat the central portion 12 and outer edges 22 of the end section 14 with a suitable material, for example, silicone, to provide a surface which prevents tissue ingrowth as may be required.
  • the surfaces 20 may be more or less flat, it is preferable that these surfaces be somewhat depressed, resulting in the dumbell cross sectional configuration illustrated in FIGS. 2 and 3. Providing depressions in these areas of the end section 14 serves to decrease further the bulkiness of the anastomotic union between the natural tendon and the prosthetic tendon as will be discussed later in greater detail.
  • a cuff 24 illustrated in FIG. 4 may be included at the junction between the central portion 12 and the end section 14 as indicated at position A of FIG. 1.
  • cuff 24 fits snugly around the peripheral surface of the prosthesis.
  • Cuff 24 is secured to the prosthesis, by sutures and/or adhesive applied near edge 26 of the cuff closest to the central portion, and is capable of being rolled back prior to the installation of the natural tendon.
  • the cuff 24 is made of cloth, preferably Dacron velour and its exterior surface is coated with material, such as silicone, which resists ingrowth of tissue.
  • the length of cuff 24 is usually of sufficient length to extend over a good portion of the innermost fenestration 18 in the end section 14.
  • end section 16 is different from end section 14 and is designed to be used to anchor end section 16 of the prosthesis to other more rigid tissue such as bone.
  • End section 16 in this embodiment comprises a cord-like extension 18, preferably two in number, although one or more than two may provide the function for which the extension 28 is intended.
  • the extension 28 may be made of fabric preferably in the shape of a cord.
  • the extension 28 may be made of metal wire, advantageously several small strands of wire twisted together, and is particularly useful when the body of the prosthesis is made of flexible 1 metal.
  • the extension 28 comprises several strands of cord 30, preferably braided, snugly covered by a woven cloth tube 32.
  • Both cord 30 and tube 32 are made of material receptive to ingrowth of tissue, such as Dacron. Although it is not essential for cord 30 to be covered by tube 32, the tube helps to preserve cord 30 from abrasion on sharp edges which may be present at the point where extension 28 enters and leaves bone as will be explained below.
  • pads 40 may be present. These pads 40 are of such material or structure, such as Dacron velour, as to permit ingrowth of tissue.
  • the prosthesis 10 is made of plastic, for example, silicone, it is preferable to have internal reinforcement to add strength to the prosthesis.
  • Reinforcing cords 34 preferably of braided non-extensible strands of suitable material such as Dacron strands may be incorporated at the time of molding.
  • the cords 34 are integral with the extensions 28 of end section 16 and run through the entire length of the prosthesis.
  • the cords 34 may run through any part of the central portion 12 and near the outer edges 22 of end section 14 or they may extend more or less in the middle of central portion 12 and criss-cross between fenestrations 18 as shown in FIG. 1.
  • Prosthesis may be made in various lengths depending on where the prosthesis is to be used to effect a repair or replacement. Generally the length can be varied merely by. making the central portion 12 longer or shorter at the time of manufacture to provide a variety of sizes for a particular use.
  • the width of prosthesis 10 also may vary depending on which particular tendon is to be replaced. The width selected should generally be slightly smaller than the width of the natural tendon.
  • fenestrated section 14 isusually about 2 to 3 inches in length.
  • Woven Dacron tubing is next slipped over the two extensions 28 and secured at each end by stitching.
  • the assembly is coated with a silicone primer, arranged on an appropriate mold piece and sandwiched between two layers of unvulcanized silicone sheets.
  • a mating mold piece is placed on top and the sandwich is hydraulically compressed.
  • the article while still in the clamped mold, is vulcanized above 100 C. then 9- moved from the mold and trimmed of any flashing.
  • a strip of Dacron velour with unvulcanized silicone backing and having fenestrations approximating those of the molded piece is placed on each side of the fenestrated end section and vulcanized to this section.
  • the velour pads 40 are likewiseincorporated at this stage.
  • the prosthesis is washed, sterilized and is ready for use.
  • a prosthesis formed in accordance with this invention may include a pair of fenesment, identical in all other respects with the embodiment illustrated in FlGS. 14, is adapted to bridge the gap between two resected ends of a tendon.
  • Theprosthesis is then led through or placed within the natural tendon sheath for joining in the palm to the resected end of the flexor tendon of the appropriate digit.
  • the primary object is to reconstruct the long flexor or profundus tendon. (The surgeon may at his option elect to also join the sublimis tendon with the trated end sections 114 and 116 attached at one end,
  • the other end of the prosthesis is attached to a tendon 36 in this case the profundus tendon which is resected just proximially of the tendon sheath near the metacarpal head and the end is divided by scalpel into two tendon segments 38 over a distance of approximately 2 inches up to the entrance of the carpal tunnel or sheath.
  • the two tendon segments 38 are then interwoven through the series of fenestrations 18 provided in end section 14 of the prosthesis taking care to lay the split surfaces of the tendon against the ingrowth surfaces 20.
  • the wrist and finger are placed in full extension and the tendon interweaving is adjusted to provide light tension. Care is taken to insure'that the anastomosed portion lies in the more open zone of the palm and does not enter or come too close to the more restricted sheathed areas.
  • the resected end of the two tendon segments 38 are then abutted and sutured within the distal fenestration.
  • the tendon may be additionally sutured at several points along the anastomosis.
  • the surgeon has the option of choosing an alternative anastomotic site just proximal of the carpal tunnel at the flexion crease of the wrist. In this situation the prosthesis 10 has a suitably longer central portion 12.
  • the individual tendon segments 38 are abutted and sutured within the distal fenestration as previously described.
  • the cuff 24 is then rolled over that portion of the sutured tendon ends and the cuff optionally secured by sutures. With either procedure, the problem of adhesion between the resected end of the tendon and the surrounding tissues is greatly reduced.
  • the fenestrated end section 14 is generally intended to be interwoven with a tendon alone, in certaincases it may be desirable to incorporatethe muscle adjacent the musculotendon junction along with the tendon into the interweaving with the prosthesis. In this situation, the outer end of the end section 14 is generally broader and the outermost fenestrations are somewhat larger so as to accommodate to the larger crosssectional size of the muscle.
  • the prosthetic tendon of this invention Immediate mobility of the tendon is thus achieved by the use of the prosthetic tendon of this invention.
  • the anastomotic union is not bulky so that motion may be maintained even within the restricted fibrotic sheath which develops later around the repaired tendon and prosthesis.
  • the prosthesis of this invention allows the natural tendon at the anastomotic site to be exteriorized, i.e., to lie outside of the prosthetic member so that the nutrient supply to the tendon in this area is readily available for maintaining the integrity of the natural tendon.
  • a tendon prosthesis as defined in claim 1 including reinforcement means for reinforcing said elongated central portion and said first and second end portions.
  • a tendon prosthesis for repair or replacement of a natural tendon comprising an elongated central portion formed of flexible, biocompatible material, a first end portion integral with a first end of said central portion, said first end portion including first connective means for securing said first end portion, and a second end portion integral with a second end of said central portion, said second end portion including second connective means for securing said second end to a segment of a natural tendon, said second connective means including aplurality of longitudinally spaced fenestrations formed in said second end portion for receiving the tendon segment, wherein the surface of said second end portion extending longitudinally between said fenestrations includes means receptive to tissue ingrowth.
  • a tendon prosthesis for repair or replacement of a natural tendon comprising an elongated central portion formed of flexible biocompatible material, a first end portion integral with a first end of said central portion, said first end portion including first connective means for securing said first end portion; a second end portion integral with a second end of said central portion, said second end portion including second connective means for securing said second end to a segment of a natural tendon, said second connective means including a plurality of longitudinally spaced fenestrations formed in said second end portion for receiving the tendon segment; and a cuff member surrounding the adjacent outer surfaces of said central portion and said second end portion, said cuff member being secured to said central portion and extending a sufficient distance over said second end portion to cover at least a substantial portion of the innermost fenestration formed therein, said cuff member having an outer surface which includes means resistant to tissue ingrowth.
  • a tendon prosthesis as defined in claim 19 which includes a cuff member surrounding the adjacent outer surfaces of said central portion and said second end portion, said cuff member being secured at one end to said central portion and extending a sufficient distance over said second end portion to cover at least a substantial portion of the innermost fenestration formed therein, said cuff member having an outer surface which includes means resistant to tissue ingrowth.
  • a method for repairing a natural tendon within a living organism comprising the steps of I l. forming an elongated tendon prosthesis of biocompatible material;
  • step 4 further includes the step of forming at least one additional elongated segment of natural tendon having a free end with a cross section sufficiently small to pass through each fenestration and wherein step 5 includes the step of interweaving the additional elongated segment of natural tendon with the one end portion of the prosthesis by passing the free end of the additional elongated end segment back and forth through the fenestrations.
  • the method of claim 25 further including the step of forming surfaces receptive to tissue ingrowth between the fenestrations and wherein the step of interweaving the elongated segments of natural tendon with the one end portion of the prosthesis includes the step of placing the split surfaces of the elongated segments in contact with the surfaces receptive to tissue ingrowth.

Abstract

A tendon prosthesis for repair or replacement of a damaged or diseased natural tendon which comprises an elongated member made of biocompatible material having a central portion and two end sections at least one of which has a plurality of longitudinally arranged fenestrations for interweaving with a resected tendon to provide a strong, functional anastomosis. In one embodiment, the second end section of the prosthesis is formed of a pair of flexible cord-like members adapted to anchor the prosthesis to bone structure. In a second embodiment, both end sections include fenestrations allowing each end section to be secured to interwoven segments of a resected tendon.

Description

United States Patent [191 Tascon-Alonso et al,
[58] Field Inventors:
Assignee:
Filed:
TENDON PRosTuEsIs Manuel Tascon-Alonso, Oakland; James A. Stubstad, Lafayette; James R. Doyle, Woodside, all of Calif.
Cutter Laboratories, lnc., Berkeley, Calif.
July 28, 1972 128/DIG. 21
Int. Cl. A6lf 1/24 of Search 3/1; 128/334 R, DIG. 14, 128/DIG. 21
References Cited UNITED STATES PATENTS 3,123,077 3/1964 Alcamo 128/3355 Primary Examiner--Richard A. Gaudet Assistant Examiner-Ronald L. Frinks Attorney, Agent, or FirmGardiner, Sixbey, Bradford & Carlson [57] ABSTRACT A tendon prosthesis for repair or replacement of a damaged or diseased natural tendon which comprises an elongated member made of biocompatible material having a central portion and two end sections at least ,one of which has a plurality of longitudinally arranged fenestrations for interweaving with a resected tendon to provide a strong, functional anastomosis. In one embodiment, the second end section of the prosthesis is formed of a pair of flexible cord-like members adapted to anchor the prosthesis to bone structure. In a second embodiment, both end sections include fenestrations allowing each end section to be secured to interwoven segments of a resected tendon.
26 Claims, 6 Drawing Figures l TENDON PROSTHESIS BACKGROUND OF THE INVENTION This invention relates to an improvement in an artificial tendon for replacement of natural tendon damaged or destroyed by such events as injury, infection, burns, disease and surgical resection.
Numerous techniques designed to restore the function of a damaged or diseased tendon by reconstruction or replacement of the affected member are known to the priorvart. One of the most frequently affected and yet often the most difficult to repair successfully are the flexor tendons of the hand. Approaches toward surgical repair by suturing severed ends of tendon or replace ment of a damaged segment with an autologous tendon graft often result in failure to establish motion of the tendon since post-operative adhesions in the area of the sutured ends with surrounding tissue almost always occur with concommitant immobilization of the tendon. A recent advance in graft repair involves an initial surgery in which a silicone rod is implanted in the area where the graft is to be installed. After a natural nonadherent sheath has developed around" the rod for several weeks or months, the rod is removed and an autoiogous tendon graft is made within the tunnel of the sheath. Although reasonably good tendon function is restored in some few cases, the problem of subsequent adhesion still remains in many instancesThis approach leaves much to be desired since two surgical procedures are required and the hand must be immobilized for a good portion of time following both surgeries.
A great many artificial tendons have been devised in an attempt to improve tendon restoration. Generally, they all have an elongated flexible central section for bridging the gap between resected tendon ends. This central position is made of biocompatible material which inhibits or resists tissue ingrowth. The means for attachment of the ends of the artificial tendons to the ends of tendon or bone have been the principal area of investigation. Some prostheses have a loop at one (or both ends) around which the end of the natural tendon is looped and sutured. Other prostheses have a tubular cloth end into which the end of the resected tendon is placed and sutured. Still another prosthesis has two flaps at each end with tissue ingrowth material on the inside of the flaps. Tendon ends are layered between the flaps and are retained by sutures running through the flaps. Both the tubular and flap ended types are designed to permit tendon tissue ingrowth to occur into the receptive surface of the prosthesis encasing the tendon and provide strength to the attachment.
means to accomplish one or more of the above requirements. Those with looped ends cannot prevent the formation of adhesions and the high concentration of stresses on the small portion of tendon in contact with the loop produces trauma to that portion of the tendon. Those prosthetic tendons with tubular ends or flaps on the ends cannot envelop the resected end of the tendon for much more than one centimeter without interferring seriously with the blood supply to the tendon. Such limited area for subsequent firmer attachment by tissue ingrowth would be inadequately strong both to achieve the desired goals of immediate mobility and to withstand intense stress imposed on the area of attachment.
Furthermore, the flap and the loop designs in particular create bulkiness at the attachment site tending to comprise motion within the sheath.
SUMMARY OF THE INVENTION This invention relates to improvements of artificial tendons'havingas a primary object a tendon prosthesis which provides an immediate and long lasting strong functional union between the prosthesis and tendon. A further object is a tendon prosthesis which permits immediate mobility following surgery and essentially eliminates adhesions. Another object is a tendon prosthesis which permits extensive anastomotic union without compromising the nutrient supply to the tendon. Another object is a tendon prosthesis which provides minimal bulk at the anastomotic site.
The present invention which accomplishes these objects comprises a somewhat narrow, rather flat, tape- An artificial tendon should have the capability for being connected to natural tendon so as to create a strong attachment which will withstand both normal stress over a prolonged period and intense stressfor shorter periods without breaking the attachment or causing injury to the natural tendon. Preferably, the means for attachment should be such that immediate mobility of the repaired tendon is possible following surgery so as to minimize or avoid the formation of restricting adhesions. There should also be means for attachment such that the blood supply to the natural tendon may be maintained and means for positioning the ends of the natural tendon so as to minimize the possibility for formation of adhesions to surrounding tissue. Each of the prior artificial tendons fails to provide like structure made of bicompatible material capable of withstanding functionally physiological forces exerted at each end without breaking or stretching significantly. The internal strength-imparting framework of the prosthesis may be made of non-stretching material such as braided, woven or standard fabric cords, metal wire, or other strong flexible filaments. The framework is coated with a biocompatible material, such as Teflon, silicone, polyurethane or other suitable flexible polymer, over the entire central portion and a part of the end sections so as to prevent ingrowth of tissue into the prosthesis except at certain desired areas at the end portions. At least in one end section there are a series of holes or fenestrations centrally located and running longitudinally on the flatter sideof the end section. The surfaces lying centrally between the holes are of such material and/or structure that they allow ingrowth of tissue to occur. The other end section may also be similarly constructed or it may have means, such as cords or small tapes extending beyond that end for tying or otherwise securing that end to bone. A resected end of a tendon, preferably one which is first split down the middle, is interwoven through the fenestrations at the end section of the prosthetic tendon and secured by several sutures. The other end of the prosthesis may be similarly anastomosed to a resected tendon when a tendon prosthesis is used which has both end sections fenestrated. The attachment of the natural tendon to the prosthetic tendon by this means gives immediate strength and security to the attachment somewhat in the manner of a spliced rope. This means of attachment also permits the natural tendon in the area of attachment to externally envelop the prosthesis so that the tendon can continue to be nourished by the'surrounding tissues and necrosis of the tendon is avoided. The resected end (or ends of the split tendon as the case may be) may be readily contained within the prosthesis and thus the problem of adhesion to surrounding tissue is essentially avoided.
The advantages of the prosthetic tendon of this invention will be more readily understood from a consideration of the following specification and claims in light of a detailed description of an embodiment and of the accompanying drawings in which:
FIG. 1 is a top plan view of a tendon prosthesis in accordance with a first embodiment of this invention, partly broken away;
FIG. 2 is an enlarged cross-sectional view of the prosthesis of FIG. 1, taken on line 2-2;
FIG. 3 is an enlarged cross-sectonal view of the prosthesis of FIG. 1, taken on line 3-3;
FIG. 4 is a view of a modified portion of the prosthesis of FIG. 1, showing an integrally attached sleeve at position A of the prosthesis;
FIG. 5 is top elevational view of a'second embodiment of the invention; and
FIG. 6 is a perspective view showing the interweaving of a tendon into the end portion of a prosthesis formed in accordance with this invention.
DETAILED DESCRIPTION OF THE INVENTION In an embodiment of this invention, a tendon prosthesis 10 as shown in'FIGS. 1 through 4 comprises a central portion 12 and two end portions 14 and 16. The entire prosthesis 10 is made of biocompatible material and may be constructed by the same material or a combination of materials. The central portion 12 is a somewhat flat or tape-like structure as shown in this embodi ment or it may be ovoid in cross-section or it may be more circular. A variety of shapes may be manufactured to conform more or less to the cross-sectional shape of the natural tendon to which the artificial tendon is to be attached. The length of the central portion 12 may vary, depending upon the length of damaged or diseased tendon to be replaced. 7
The end section 14 is integral with the central portion 12 and has essentially the same cross-sectional dimensions as the central portion 12. Located centrally and arranged longitudinally in end 14 are a series of openings or fenestrations 18, at least two and preferably three or four in number. These openings 18 may take a variety of shapes, preferably somewhat oval, and are more or less uniformly spaced apart to provide surfaces 20 in between each opening 18. These surfaces 20 have structure which is receptive to ingrowth of tissue. For example, when the body of the prosthesis is made of silicone, tissue ingrowth surfaces 20 may comprise a favric such as Dacron velour or woven mesh which may fabric secured to the desired areas by applying an adhesive such as silicone adhesive between the body of the prosthesis and the fabric and by vulcanizing the resulting structure to achieve a firm bond. Alternatively, the velour or mesh with an unvulcanized silicone backing may be compressed onto the silicone body and vulcanized. The ingrowth surface also extends inwardly on the surfaces within the openings 18 as shown in FIG. 2. When the body of the prosthesis is made of polyurethane, for example, the ingrowth surface 20 may also be of polyurethane having an open pore structure. The polyurethane may be molded into the desired shape to form the body with its fenestrations and then an overlayer of polyurethane having open pore structure may be secured to those areas where tissue ingrowth is desired. The prosthesis may be made of metal. and if made from woven or twisted strands of metal wire, such as titanium wire, the woven or twisted structure has crevices into which tissue may grow and one needs only to coat the central portion 12 and outer edges 22 of the end section 14 with a suitable material, for example, silicone, to provide a surface which prevents tissue ingrowth as may be required.
Although the surfaces 20 may be more or less flat, it is preferable that these surfaces be somewhat depressed, resulting in the dumbell cross sectional configuration illustrated in FIGS. 2 and 3. Providing depressions in these areas of the end section 14 serves to decrease further the bulkiness of the anastomotic union between the natural tendon and the prosthetic tendon as will be discussed later in greater detail.
A cuff 24 illustrated in FIG. 4 may be included at the junction between the central portion 12 and the end section 14 as indicated at position A of FIG. 1. When provided, cuff 24 fits snugly around the peripheral surface of the prosthesis. Cuff 24 is secured to the prosthesis, by sutures and/or adhesive applied near edge 26 of the cuff closest to the central portion, and is capable of being rolled back prior to the installation of the natural tendon. The cuff 24 is made of cloth, preferably Dacron velour and its exterior surface is coated with material, such as silicone, which resists ingrowth of tissue. The length of cuff 24 is usually of sufficient length to extend over a good portion of the innermost fenestration 18 in the end section 14.
In the embodiment shown in FIG. I, end section 16 is different from end section 14 and is designed to be used to anchor end section 16 of the prosthesis to other more rigid tissue such as bone. End section 16 in this embodiment comprises a cord-like extension 18, preferably two in number, although one or more than two may provide the function for which the extension 28 is intended. The extension 28 may be made of fabric preferably in the shape of a cord. The extension 28 may be made of metal wire, advantageously several small strands of wire twisted together, and is particularly useful when the body of the prosthesis is made of flexible 1 metal. In the embodiment shown in FIG. 1, the extension 28 comprises several strands of cord 30, preferably braided, snugly covered by a woven cloth tube 32. Both cord 30 and tube 32 are made of material receptive to ingrowth of tissue, such as Dacron. Although it is not essential for cord 30 to be covered by tube 32, the tube helps to preserve cord 30 from abrasion on sharp edges which may be present at the point where extension 28 enters and leaves bone as will be explained below. For a short distance on the surface of both sides of the central portion 12 adjacent to extensions 28, pads 40 may be present. These pads 40 are of such material or structure, such as Dacron velour, as to permit ingrowth of tissue.
When the prosthesis 10 is made of plastic, for example, silicone, it is preferable to have internal reinforcement to add strength to the prosthesis. Reinforcing cords 34, preferably of braided non-extensible strands of suitable material such as Dacron strands may be incorporated at the time of molding. The cords 34 are integral with the extensions 28 of end section 16 and run through the entire length of the prosthesis. The cords 34 may run through any part of the central portion 12 and near the outer edges 22 of end section 14 or they may extend more or less in the middle of central portion 12 and criss-cross between fenestrations 18 as shown in FIG. 1.
Prosthesis may be made in various lengths depending on where the prosthesis is to be used to effect a repair or replacement. Generally the length can be varied merely by. making the central portion 12 longer or shorter at the time of manufacture to provide a variety of sizes for a particular use. The width of prosthesis 10 also may vary depending on which particular tendon is to be replaced. The width selected should generally be slightly smaller than the width of the natural tendon.
-form the two reinforcing cords for end section 14. The
fenestrated section 14 isusually about 2 to 3 inches in length. Woven Dacron tubing is next slipped over the two extensions 28 and secured at each end by stitching.
The assembly is coated with a silicone primer, arranged on an appropriate mold piece and sandwiched between two layers of unvulcanized silicone sheets. A mating mold piece is placed on top and the sandwich is hydraulically compressed. The article, while still in the clamped mold, is vulcanized above 100 C. then 9- moved from the mold and trimmed of any flashing. A strip of Dacron velour with unvulcanized silicone backing and having fenestrations approximating those of the molded piece is placed on each side of the fenestrated end section and vulcanized to this section. The velour pads 40 are likewiseincorporated at this stage. The prosthesis is washed, sterilized and is ready for use.
As illustrated in FIG. 5, a prosthesis formed in accordance with this invention may include a pair of fenesment, identical in all other respects with the embodiment illustrated in FlGS. 14, is adapted to bridge the gap between two resected ends of a tendon.
In the clinical application of the prosthesis 10, to make the anastomotic union between a resected tendon and the prosthetic tendon of this invention, as for example in the repair of a flexor tendon in the hand, the prosthesis 10 is first anchored to either the distalor middle phalanx. This may be done by drilling two small holes into that member, running extensions 28 through the holes and tying on the dorsal, or media] side of the bone. In addition, a short stub of the natural tendon where the tendon joins the phalanx may be retained and sutured to the velour pad 40 portion of the prosthesis. Theprosthesis is then led through or placed within the natural tendon sheath for joining in the palm to the resected end of the flexor tendon of the appropriate digit. The primary object is to reconstruct the long flexor or profundus tendon. (The surgeon may at his option elect to also join the sublimis tendon with the trated end sections 114 and 116 attached at one end,
respectively, to a central portion 112. This embodiprofundus into a common anastomosis with the end 6 section 14 of the prosthesis). As illustrated in FIG. 6, the other end of the prosthesis is attached to a tendon 36 in this case the profundus tendon which is resected just proximially of the tendon sheath near the metacarpal head and the end is divided by scalpel into two tendon segments 38 over a distance of approximately 2 inches up to the entrance of the carpal tunnel or sheath. The two tendon segments 38 are then interwoven through the series of fenestrations 18 provided in end section 14 of the prosthesis taking care to lay the split surfaces of the tendon against the ingrowth surfaces 20. The wrist and finger are placed in full extension and the tendon interweaving is adjusted to provide light tension. Care is taken to insure'that the anastomosed portion lies in the more open zone of the palm and does not enter or come too close to the more restricted sheathed areas. The resected end of the two tendon segments 38 are then abutted and sutured within the distal fenestration. The tendon may be additionally sutured at several points along the anastomosis. The surgeonhas the option of choosing an alternative anastomotic site just proximal of the carpal tunnel at the flexion crease of the wrist. In this situation the prosthesis 10 has a suitably longer central portion 12. To make use of the cuff 24 when provided, the individual tendon segments 38 are abutted and sutured within the distal fenestration as previously described. The cuff 24 is then rolled over that portion of the sutured tendon ends and the cuff optionally secured by sutures. With either procedure, the problem of adhesion between the resected end of the tendon and the surrounding tissues is greatly reduced.
Whereas the fenestrated end section 14 is generally intended to be interwoven with a tendon alone, in certaincases it may be desirable to incorporatethe muscle adjacent the musculotendon junction along with the tendon into the interweaving with the prosthesis. In this situation, the outer end of the end section 14 is generally broader and the outermost fenestrations are somewhat larger so as to accommodate to the larger crosssectional size of the muscle.
Immediate mobility of the tendon is thus achieved by the use of the prosthetic tendon of this invention. In addition, it can be readily seen that the anastomotic union is not bulky so that motion may be maintained even within the restricted fibrotic sheath which develops later around the repaired tendon and prosthesis. Furthermore, the prosthesis of this invention allows the natural tendon at the anastomotic site to be exteriorized, i.e., to lie outside of the prosthetic member so that the nutrient supply to the tendon in this area is readily available for maintaining the integrity of the natural tendon.
While preferred embodiments of the invention have been shown and described, other variations and modifications may be made in the structures without departing from underlying principles of the invention.
We claim:
1. A tendon prosthesis for repair of a resected tendon within a living organism wherein the tendon is characterized by an elongated segment having a free end, comprising a. an elongated central portion formed of flexible, bi-
ocompatible material;
b. a first end portion connected with one end of said elongated central portion, said first end portion including first connective means for securing said first end portion within the living organism; and c. a second end portion connected with the other end of said elongated central portion, said second end portion including second connective means for connecting the second end portion with the resected tendon by permitting the elongated segment of the resected tendon to be interwoven through said second end portion, said second connective means including a plurality of longitudinally spaced fenestrations formed in said second end portion, each said fenestration passing completely through said second end portion from one side to the other, each said fenestration further being of sufficient size to permit the elongated segment of the resected tendon to pass therethrough, whereby the free end of the elongated segment may be interwoven with said second connective means by being passed back and forth through said longitudinally spaced fenestrations of said second end portion. 2. A tendon prosthesis as defined in claim 1 wherein the surface of said elongated central portion includes means resistant to living tissue ingrowth.
3. A tendon prosthesis as defined in claim 1 including reinforcement means for reinforcing said elongated central portion and said first and second end portions.
4. A tendon prosthesis as defined in claim 3, wherein said reinforcement means includes fibers within said central portion and said first and second end portions.
5. A tendon prosthesis as defined in claim 4, wherein said fibers are formed of polyethylene terephthalate cord extending substantially the entire longitudinal length of said central portion and said first and second end portions.
6. A tendon prosthesis for repair or replacement of a natural tendon comprising an elongated central portion formed of flexible, biocompatible material, a first end portion integral with a first end of said central portion, said first end portion including first connective means for securing said first end portion, and a second end portion integral with a second end of said central portion, said second end portion including second connective means for securing said second end to a segment of a natural tendon, said second connective means including aplurality of longitudinally spaced fenestrations formed in said second end portion for receiving the tendon segment, wherein the surface of said second end portion extending longitudinally between said fenestrations includes means receptive to tissue ingrowth.
7. A tendon prosthesis as defined in claim 4, wherein said first connective means is formed by an extension of said fibers beyond said first end portion.
8. A tendon prosthesis as defined in claim 7, wherein the portions of said fibers forming said extension are formed into at least one cord-like member.
9. A tendon prosthesis as defined in claim 8, wherein at least a portion of the surface of said cord-like member is receptive to tissue ingrowth.
10. A tendon prosthesis as defined in claim 7, wherein said fibers are separated into groups, said groups being combined to form a pair of cord-like extensions extending from said first end portion, a single reinforcing strand extending through said central portion and a pair of reinforcing strands extending through said second end portion.
11. A tendon prosthesis as defined in claim 1, wherein said first connective means includes a plurality of longitudinally spaced fenestrations formed in said first end portion for receiving a segment of natural tendon.
12. A tendon prosthesis as defined in claim 1, wherein said first connective means includes at least one cord-like extension secured at one end to said first end portion.
13. A tendon prosthesis as defined in claim 12, wherein said cord-like extension includes a plurality of strands and a woven cloth tube surrounding at least a portion of said strands, said woven cloth tube being receptive to tissue ingrowth. Y
14. A tendon prosthesis as defined in claim 13, including at least one pad secured to said first end portion adjacent the terminal end thereof, said pad being formed of material receptive to tissue ingrowth.
15. A tendon prosthesis for repair or replacement of a natural tendon comprising an elongated central portion formed of flexible biocompatible material, a first end portion integral with a first end of said central portion, said first end portion including first connective means for securing said first end portion; a second end portion integral with a second end of said central portion, said second end portion including second connective means for securing said second end to a segment of a natural tendon, said second connective means including a plurality of longitudinally spaced fenestrations formed in said second end portion for receiving the tendon segment; and a cuff member surrounding the adjacent outer surfaces of said central portion and said second end portion, said cuff member being secured to said central portion and extending a sufficient distance over said second end portion to cover at least a substantial portion of the innermost fenestration formed therein, said cuff member having an outer surface which includes means resistant to tissue ingrowth.
16. A tendon prosthesis as defined in claim 2 wherein said first and second end portions include surfaces which includes means receptive to the ingrowth of tissue.
17. A tendon prosthesis as defined in claim 16 wherein said fenestrations are centrally located with respect to the side edges of said second end portion, said fenestrations being oval in shape.
18. A tendon prosthesis as defined in claim 17 wherein said central and first and second end portions form a unitary molded body of plastic material and fiber reinforcing means are provided which extend essentially longitudinally within said molded body.
19. A tendon prosthesis as defined in claim 18 wherein said first connective means is formed by an extension of said fiber reinforcing means beyond said first end portion.
20. A tendon prosthesis as defined in claim 18 wherein said first connective means is formed by oval shaped fenestrations formed in said first end portion and centrally located with respect to the side edges thereof, said means receptive to tissue ingrowth being positioned to extend between said fenestrations.
21. A tendon prosthesis as defined in claim 19 which includes a cuff member surrounding the adjacent outer surfaces of said central portion and said second end portion, said cuff member being secured at one end to said central portion and extending a sufficient distance over said second end portion to cover at least a substantial portion of the innermost fenestration formed therein, said cuff member having an outer surface which includes means resistant to tissue ingrowth.
22. A tendon prosthesis as defined in claim 18 wherein said second end section has a dumbell cross sectional configuration with edge sections extending on either side of a center section, said edge sections being of greater thickness than said center section.
23. A method for repairing a natural tendon within a living organism comprising the steps of I l. forming an elongated tendon prosthesis of biocompatible material;
2. forming a plurality of longitudinally spaced fenestrations within one end portion of the prosthesis;
3. anchoring the other end portion of the prosthesis within the living organism;
4. preparing the remaining portion of natural tendon by forming at least one elongated end segment of natural tendon having a free end with a cross section sufficiently small to pass through each fenestration; and
5. interweaving the elongated end segment with the one end portion of the prosthesis by passing the free end of the elongated end segment back and forth through the fenestratiozns.
24. The method as claimed in claim 23 wherein step 4 further includes the step of forming at least one additional elongated segment of natural tendon having a free end with a cross section sufficiently small to pass through each fenestration and wherein step 5 includes the step of interweaving the additional elongated segment of natural tendon with the one end portion of the prosthesis by passing the free end of the additional elongated end segment back and forth through the fenestrations.
25. The method of claim 24 wherein elongated segments of natural tendon are formed by splitting the natural tendon longitudinally.
26. The method of claim 25 further including the step of forming surfaces receptive to tissue ingrowth between the fenestrations and wherein the step of interweaving the elongated segments of natural tendon with the one end portion of the prosthesis includes the step of placing the split surfaces of the elongated segments in contact with the surfaces receptive to tissue ingrowth.
UNITED S'IATES PATEN'I (WW4 1E CERTIFICATE OF CORRECTION Patent No. 3 a 805 a 300 dilated P Z3 74 Manuel Tascon-Alonso et a1 Inventor(s) It is cex tified that error appears in the above-identified patent and that said Letters Patent are hereby corrected as shown below:
; Column 2 line 15, "comprise should read compromise line 32, "bicompatible" should read biocompatible line 37, "standard" should read stranded Column 3, line 51 r' "favric" should read fabric line 53, "fabric" should read Signedand sealed this 24th day of September 1974.
(SEAL) Attest:
McCOY M. GIBSON JR. C. MARSHALL DANN Attesting Officer Commissioner of Patents FORM PC4050 USCOMM-DC 60376-P69 [L5, GOVERNMENT PRINTING OFFICE; '9, 0-386-33,

Claims (30)

1. A tendon prosthesis for repair of a resected tendon within a living organism wherein the tendon is characterized by an elongated segment having a free end, comprising a. an elongated central portion formed of flexible, biocompatible material; b. a first end portion connected with one end of said elongated central portion, said first end portion including first connective means for securing said first end portion within the living organism; and c. a second end portion connected with the other end of said elongated central portion, said second end portion including second connective means for connecting the second end portion with the resected tendon by permitting the elongated segment of the resected tendon to be interwoven through said second end portion, said second connective means including a plurality of longitudinally spaced fenestrations formed in said second end portion, each said fenestration passing completely through said second end portion from one side to the other, each said fenestration further being of sufficient size to permit the elongated segment of the resected tendon to pass therethrough, whereby the free end of the elongated segment may be interwoven with said second connective means by being passed back and forth through said longitudinally spaced fenestrations of said second end portion.
2. A tendon prosthesis as defined in claim 1 wherein the surface of said elongated central portion includes means resistant to living tissue ingrowth.
2. forming a plurality of longitudinally spaced fenestrations within one end portion of the prosthesis;
3. anchoring the other end portion of the prosthesis within the living organism;
3. A tendon prosthesis as defined in claim 1 including reinforcement means for reinforcing said elongated central portion and said first and second end portions.
4. A tendon prosthesis as defined in claim 3, wherein said reinforcement means includes fibers within said central portion and said first and second end portions.
4. preparing the remaining portion of natural tendon by forming at least one elongated end segment of natural tendon having a free end with a cross section sufficiently small to pass through each fenestration; and
5. interweaving the elongated end segment with the one end portion of the prosthesis by passing the free end of the elongated end segment back and forth through the fenestrations.
5. A tendon prosthesis as defined in claim 4, wherein said fibers are formed of polyethylene terephthalate cord extending substantially the entire longitudinal length of said central portion and said first and second end portions.
6. A tendon prosthesis for repair or replacement of a natural tendon comprising an elongated central portion formed of flexible, biocompatible material, a first end portion integral with a first end of said central portion, said first end portion including first connective means for securing said first end portion, and a second enD portion integral with a second end of said central portion, said second end portion including second connective means for securing said second end to a segment of a natural tendon, said second connective means including a plurality of longitudinally spaced fenestrations formed in said second end portion for receiving the tendon segment, wherein the surface of said second end portion extending longitudinally between said fenestrations includes means receptive to tissue ingrowth.
7. A tendon prosthesis as defined in claim 4, wherein said first connective means is formed by an extension of said fibers beyond said first end portion.
8. A tendon prosthesis as defined in claim 7, wherein the portions of said fibers forming said extension are formed into at least one cord-like member.
9. A tendon prosthesis as defined in claim 8, wherein at least a portion of the surface of said cord-like member is receptive to tissue ingrowth.
10. A tendon prosthesis as defined in claim 7, wherein said fibers are separated into groups, said groups being combined to form a pair of cord-like extensions extending from said first end portion, a single reinforcing strand extending through said central portion and a pair of reinforcing strands extending through said second end portion.
11. A tendon prosthesis as defined in claim 1, wherein said first connective means includes a plurality of longitudinally spaced fenestrations formed in said first end portion for receiving a segment of natural tendon.
12. A tendon prosthesis as defined in claim 1, wherein said first connective means includes at least one cord-like extension secured at one end to said first end portion.
13. A tendon prosthesis as defined in claim 12, wherein said cord-like extension includes a plurality of strands and a woven cloth tube surrounding at least a portion of said strands, said woven cloth tube being receptive to tissue ingrowth.
14. A tendon prosthesis as defined in claim 13, including at least one pad secured to said first end portion adjacent the terminal end thereof, said pad being formed of material receptive to tissue ingrowth.
15. A tendon prosthesis for repair or replacement of a natural tendon comprising an elongated central portion formed of flexible biocompatible material, a first end portion integral with a first end of said central portion, said first end portion including first connective means for securing said first end portion; a second end portion integral with a second end of said central portion, said second end portion including second connective means for securing said second end to a segment of a natural tendon, said second connective means including a plurality of longitudinally spaced fenestrations formed in said second end portion for receiving the tendon segment; and a cuff member surrounding the adjacent outer surfaces of said central portion and said second end portion, said cuff member being secured to said central portion and extending a sufficient distance over said second end portion to cover at least a substantial portion of the innermost fenestration formed therein, said cuff member having an outer surface which includes means resistant to tissue ingrowth.
16. A tendon prosthesis as defined in claim 2 wherein said first and second end portions include surfaces which includes means receptive to the ingrowth of tissue.
17. A tendon prosthesis as defined in claim 16 wherein said fenestrations are centrally located with respect to the side edges of said second end portion, said fenestrations being oval in shape.
18. A tendon prosthesis as defined in claim 17 wherein said central and first and second end portions form a unitary molded body of plastic material and fiber reinforcing means are provided which extend essentially longitudinally within said molded body.
19. A tendon prosthesis as defined in claim 18 wherein said first connective means is formed by an extension of said fiber reinforcing means beyond said first end portion.
20. A tendon prosthesis as defIned in claim 18 wherein said first connective means is formed by oval shaped fenestrations formed in said first end portion and centrally located with respect to the side edges thereof, said means receptive to tissue ingrowth being positioned to extend between said fenestrations.
21. A tendon prosthesis as defined in claim 19 which includes a cuff member surrounding the adjacent outer surfaces of said central portion and said second end portion, said cuff member being secured at one end to said central portion and extending a sufficient distance over said second end portion to cover at least a substantial portion of the innermost fenestration formed therein, said cuff member having an outer surface which includes means resistant to tissue ingrowth.
22. A tendon prosthesis as defined in claim 18 wherein said second end section has a dumbell cross sectional configuration with edge sections extending on either side of a center section, said edge sections being of greater thickness than said center section.
23. A method for repairing a natural tendon within a living organism comprising the steps of
24. The method as claimed in claim 23 wherein step 4 further includes the step of forming at least one additional elongated segment of natural tendon having a free end with a cross section sufficiently small to pass through each fenestration and wherein step 5 includes the step of interweaving the additional elongated segment of natural tendon with the one end portion of the prosthesis by passing the free end of the additional elongated end segment back and forth through the fenestrations.
25. The method of claim 24 wherein elongated segments of natural tendon are formed by splitting the natural tendon longitudinally.
26. The method of claim 25 further including the step of forming surfaces receptive to tissue ingrowth between the fenestrations and wherein the step of interweaving the elongated segments of natural tendon with the one end portion of the prosthesis includes the step of placing the split surfaces of the elongated segments in contact with the surfaces receptive to tissue ingrowth.
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Cited By (56)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3886600A (en) * 1971-07-15 1975-06-03 Cutter Lab Joint prosthesis
US3896500A (en) * 1973-01-17 1975-07-29 Andre Rambert Method of and prosthesis for restoring ligaments of a joint
US3971670A (en) * 1974-07-17 1976-07-27 Homsy Charles A Implantable structure and method of making same
US3987497A (en) * 1974-03-29 1976-10-26 Ceskoslovenska Akademie Ved Tendon prosthesis
US4127902A (en) * 1976-06-07 1978-12-05 Homsy Charles A Structure suitable for in vivo implantation
US4143426A (en) * 1977-03-30 1979-03-13 The United States Of America As Represented By The Administrator Of Veterans Affairs Permanently attached artificial limb
US4187558A (en) * 1977-10-25 1980-02-12 Cutter Laboratories, Inc. Prosthetic ligament
US4209859A (en) * 1978-03-29 1980-07-01 Meadox Medicals, Inc. Ligament and tendon prosthesis of polyethylene terephthalate and method of preparing same
US4246660A (en) * 1978-12-26 1981-01-27 Queen's University At Kingston Artificial ligament
US4255820A (en) * 1979-07-24 1981-03-17 Rothermel Joel E Artificial ligaments
EP0041111A2 (en) * 1980-06-03 1981-12-09 GebràœDer Sulzer Aktiengesellschaft Artificial tendon and/or ligament
EP0067929A2 (en) * 1981-06-24 1982-12-29 GebràœDer Sulzer Aktiengesellschaft Tendon and/or ligament prosthesis
US4455690A (en) * 1980-11-06 1984-06-26 Homsy Charles A Structure for in vivo implanation
US4483023A (en) * 1981-08-21 1984-11-20 Meadox Medicals, Inc. High-strength ligament prosthesis
US4605414A (en) * 1984-06-06 1986-08-12 John Czajka Reconstruction of a cruciate ligament
US4662886A (en) * 1984-06-04 1987-05-05 A. W. Showell (Surgicraft) Limited Surgical element
US4713075A (en) * 1981-06-10 1987-12-15 Kurland Kenneth Z Method for the repair of connective tissue
EP0249346A2 (en) * 1986-05-15 1987-12-16 Jonathan Paul Beacon A prosthetic ligamentary device
EP0255408A1 (en) * 1986-05-07 1988-02-03 Jacques-Philippe Laboureau Synthetic artificial ligament impregnated and coated with an elastic resin, and its coating process
WO1989001320A1 (en) * 1987-08-19 1989-02-23 E.I. Du Pont De Nemours And Company Soft tissue prosthesis
US4863444A (en) * 1985-09-19 1989-09-05 Bloemer Alois Antibiotic-containing agent and its use as a surgical plastic material
US4979956A (en) * 1987-10-30 1990-12-25 Pfizer Hospital Products Group, Inc. Device and method for tendon and ligament repair
US4990158A (en) * 1989-05-10 1991-02-05 United States Surgical Corporation Synthetic semiabsorbable tubular prosthesis
US5009666A (en) * 1988-09-30 1991-04-23 Syckle Peter B Van Plug and method of use
US5049155A (en) * 1982-09-10 1991-09-17 W. L. Gore & Associates, Inc. Prosthesis for tensile-load-carrying tissue and method of manufacture
US5061283A (en) * 1987-10-30 1991-10-29 Pfizer Hospital Products Group, Inc. Method for tendon and ligament repair
US5147400A (en) * 1989-05-10 1992-09-15 United States Surgical Corporation Connective tissue prosthesis
US5197983A (en) * 1988-04-19 1993-03-30 W. L. Gore & Associates, Inc. Ligament and tendon prosthesis
US5217495A (en) * 1989-05-10 1993-06-08 United States Surgical Corporation Synthetic semiabsorbable composite yarn
US5217494A (en) * 1989-01-12 1993-06-08 Coggins Peter R Tissue supporting prosthesis
US5258040A (en) * 1982-09-10 1993-11-02 W. L. Gore & Associates Prosthesis for tensile load-carrying tissue and method of manufacture
US5356431A (en) * 1990-11-16 1994-10-18 Pierce Frank C Connective tissue stabilizer and method of use
US5376118A (en) * 1989-05-10 1994-12-27 United States Surgical Corporation Support material for cell impregnation
US5660187A (en) * 1988-11-17 1997-08-26 Hoechst Aktiengesellshaft Process for preparing an intravaginal application system
US5800544A (en) * 1994-12-02 1998-09-01 Omeros Medical Systems, Inc. Tendon and ligament repair system
WO1999055258A1 (en) * 1998-04-29 1999-11-04 Michel Merle Element assisting in the restoration of a flexor tendon, in particular a finger tendon
US6045530A (en) * 1998-10-14 2000-04-04 Heyer-Schulte Neurocare Inc. Adjustable angle catheter
WO2000023005A1 (en) * 1998-10-20 2000-04-27 Surgicraft Limited Artificial ligament or biological tissue fixation devices
US6106556A (en) * 1994-12-02 2000-08-22 Omeros Medical Systems, Inc. Tendon and ligament repair system
US6383199B2 (en) 1993-08-25 2002-05-07 Inlet Medical, Inc. Devices for investing within ligaments for retracting and reinforcing the same
US20050038437A1 (en) * 1990-09-24 2005-02-17 Ethicon, Inc. Methods and apparatus for preventing migration of sutures through transosseous tunnels
US20050273165A1 (en) * 2004-06-04 2005-12-08 Bryan Griffiths Soft tissue spacer
US20070162122A1 (en) * 2005-12-20 2007-07-12 Whittaker Gregory R Methods for ligament reconstruction
US20070162022A1 (en) * 2005-12-23 2007-07-12 Howmedica Osteonics Corp. Porous tendon anchor
US20080300683A1 (en) * 2007-03-20 2008-12-04 Altman Gregory H Prosthetic device and method of manufacturing the same
US20100106254A1 (en) * 2008-10-23 2010-04-29 Delsignore Jeanne L Surgical implantable stabilizer sling for basal joint arthroplasty
US20100286775A1 (en) * 2007-10-11 2010-11-11 Tavor [I.T.N] Ltd., Ligament and Tendon Prosthesis
US20150100121A1 (en) * 2007-02-12 2015-04-09 The Trustees Of Columbia University In The City Of New York Biomimmetic nanofiber scaffold for soft tissue and soft tissue-to-bone repair, augmentation and replacement
US9351719B2 (en) 2012-11-01 2016-05-31 Zone 2 Surgical, Inc. Self locking knotless suture
US9539004B2 (en) 2013-03-08 2017-01-10 Zone 2 Surgical, Inc. Collapsible locking suture
US9788838B2 (en) 2011-10-11 2017-10-17 Zone 2 Surgical, Inc. Tissue device
US10278692B2 (en) 2008-10-23 2019-05-07 CMC Group LLC Sling suspension system for supporting the thumb of a patient after basal joint arthroplasty
IT201800002536A1 (en) * 2018-02-09 2019-08-09 Antonio Sambusseti SEMI-ABSORBABLE CROSS LIGAMENT FOR REVISION IMPLANTS
US10653515B2 (en) 2016-05-16 2020-05-19 Medstar Health Tendon repair apparatus and method
US11484301B2 (en) 2014-01-14 2022-11-01 Simparo Inc. Suture-locking washer for use with a bone anchor, and method for supporting the thumb of a patient after basal joint arthroplasty, and other novel orthopedic apparatus and other novel orthopedic procedures
US11826489B2 (en) 2013-02-01 2023-11-28 The Children's Medical Center Corporation Collagen scaffolds

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3123077A (en) * 1964-03-03 Surgical suture
US3176316A (en) * 1963-01-07 1965-04-06 Bruce R Bodell Plastic prosthetic tendon
US3545008A (en) * 1968-05-27 1970-12-08 Karl F Bader Jr Tendon prosthesis
US3613120A (en) * 1969-10-21 1971-10-19 Research Corp Flexor tendon prosthesis
US3646615A (en) * 1970-01-26 1972-03-07 Richard A Ness Reinforcing element for muscles

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3123077A (en) * 1964-03-03 Surgical suture
US3176316A (en) * 1963-01-07 1965-04-06 Bruce R Bodell Plastic prosthetic tendon
US3545008A (en) * 1968-05-27 1970-12-08 Karl F Bader Jr Tendon prosthesis
US3613120A (en) * 1969-10-21 1971-10-19 Research Corp Flexor tendon prosthesis
US3646615A (en) * 1970-01-26 1972-03-07 Richard A Ness Reinforcing element for muscles

Cited By (78)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3886600A (en) * 1971-07-15 1975-06-03 Cutter Lab Joint prosthesis
US3896500A (en) * 1973-01-17 1975-07-29 Andre Rambert Method of and prosthesis for restoring ligaments of a joint
US3987497A (en) * 1974-03-29 1976-10-26 Ceskoslovenska Akademie Ved Tendon prosthesis
US3971670A (en) * 1974-07-17 1976-07-27 Homsy Charles A Implantable structure and method of making same
US4127902A (en) * 1976-06-07 1978-12-05 Homsy Charles A Structure suitable for in vivo implantation
US4143426A (en) * 1977-03-30 1979-03-13 The United States Of America As Represented By The Administrator Of Veterans Affairs Permanently attached artificial limb
US4187558A (en) * 1977-10-25 1980-02-12 Cutter Laboratories, Inc. Prosthetic ligament
US4209859A (en) * 1978-03-29 1980-07-01 Meadox Medicals, Inc. Ligament and tendon prosthesis of polyethylene terephthalate and method of preparing same
US4246660A (en) * 1978-12-26 1981-01-27 Queen's University At Kingston Artificial ligament
US4255820A (en) * 1979-07-24 1981-03-17 Rothermel Joel E Artificial ligaments
US4345339A (en) * 1980-06-03 1982-08-24 Sulzer Brothers Limited Biologically implantable member for a tendon and/or ligament
EP0041111A2 (en) * 1980-06-03 1981-12-09 GebràœDer Sulzer Aktiengesellschaft Artificial tendon and/or ligament
EP0041111A3 (en) * 1980-06-03 1981-12-16 Gebruder Sulzer Aktiengesellschaft Artificial tendon and/or ligament
US4455690A (en) * 1980-11-06 1984-06-26 Homsy Charles A Structure for in vivo implanation
US4713075A (en) * 1981-06-10 1987-12-15 Kurland Kenneth Z Method for the repair of connective tissue
EP0067929A3 (en) * 1981-06-24 1983-01-05 Gebruder Sulzer Aktiengesellschaft Tendon and/or ligament prosthesis
EP0067929A2 (en) * 1981-06-24 1982-12-29 GebràœDer Sulzer Aktiengesellschaft Tendon and/or ligament prosthesis
US4483023A (en) * 1981-08-21 1984-11-20 Meadox Medicals, Inc. High-strength ligament prosthesis
US5258040A (en) * 1982-09-10 1993-11-02 W. L. Gore & Associates Prosthesis for tensile load-carrying tissue and method of manufacture
US5049155A (en) * 1982-09-10 1991-09-17 W. L. Gore & Associates, Inc. Prosthesis for tensile-load-carrying tissue and method of manufacture
US4662886A (en) * 1984-06-04 1987-05-05 A. W. Showell (Surgicraft) Limited Surgical element
US4605414A (en) * 1984-06-06 1986-08-12 John Czajka Reconstruction of a cruciate ligament
US4863444A (en) * 1985-09-19 1989-09-05 Bloemer Alois Antibiotic-containing agent and its use as a surgical plastic material
EP0255408A1 (en) * 1986-05-07 1988-02-03 Jacques-Philippe Laboureau Synthetic artificial ligament impregnated and coated with an elastic resin, and its coating process
EP0249346A2 (en) * 1986-05-15 1987-12-16 Jonathan Paul Beacon A prosthetic ligamentary device
EP0249346A3 (en) * 1986-05-15 1988-11-30 Jonathan Paul Beacon A prosthetic ligamentary device
WO1989001320A1 (en) * 1987-08-19 1989-02-23 E.I. Du Pont De Nemours And Company Soft tissue prosthesis
US4979956A (en) * 1987-10-30 1990-12-25 Pfizer Hospital Products Group, Inc. Device and method for tendon and ligament repair
US5061283A (en) * 1987-10-30 1991-10-29 Pfizer Hospital Products Group, Inc. Method for tendon and ligament repair
US5197983A (en) * 1988-04-19 1993-03-30 W. L. Gore & Associates, Inc. Ligament and tendon prosthesis
US5009666A (en) * 1988-09-30 1991-04-23 Syckle Peter B Van Plug and method of use
US5660187A (en) * 1988-11-17 1997-08-26 Hoechst Aktiengesellshaft Process for preparing an intravaginal application system
US5217494A (en) * 1989-01-12 1993-06-08 Coggins Peter R Tissue supporting prosthesis
US5217495A (en) * 1989-05-10 1993-06-08 United States Surgical Corporation Synthetic semiabsorbable composite yarn
US5147400A (en) * 1989-05-10 1992-09-15 United States Surgical Corporation Connective tissue prosthesis
US5376118A (en) * 1989-05-10 1994-12-27 United States Surgical Corporation Support material for cell impregnation
US4990158A (en) * 1989-05-10 1991-02-05 United States Surgical Corporation Synthetic semiabsorbable tubular prosthesis
US8062295B2 (en) 1990-09-24 2011-11-22 Depuy Mitek, Inc. Methods and apparatus for preventing migration of sutures through transosseous tunnels
US20100100128A1 (en) * 1990-09-24 2010-04-22 Ethicon, Inc. Methods and apparatus for preventing migration of sutures through transosseous tunnels
US7651495B2 (en) 1990-09-24 2010-01-26 Ethicon, Inc. Methods and apparatus for preventing migration of sutures through transosseous tunnels
US20050038437A1 (en) * 1990-09-24 2005-02-17 Ethicon, Inc. Methods and apparatus for preventing migration of sutures through transosseous tunnels
US5356431A (en) * 1990-11-16 1994-10-18 Pierce Frank C Connective tissue stabilizer and method of use
US6383199B2 (en) 1993-08-25 2002-05-07 Inlet Medical, Inc. Devices for investing within ligaments for retracting and reinforcing the same
US5800544A (en) * 1994-12-02 1998-09-01 Omeros Medical Systems, Inc. Tendon and ligament repair system
US6106556A (en) * 1994-12-02 2000-08-22 Omeros Medical Systems, Inc. Tendon and ligament repair system
US6080192A (en) * 1994-12-02 2000-06-27 Omeros Medical Systems, Inc. Tendon and ligament repair system
WO1999055258A1 (en) * 1998-04-29 1999-11-04 Michel Merle Element assisting in the restoration of a flexor tendon, in particular a finger tendon
FR2778092A1 (en) * 1998-04-29 1999-11-05 Michel Merle ASSISTANCE ELEMENT FOR THE RESTORATION OF A TENDON, IN PARTICULAR OF A FINGER OF A HAND
US6045530A (en) * 1998-10-14 2000-04-04 Heyer-Schulte Neurocare Inc. Adjustable angle catheter
WO2000023005A1 (en) * 1998-10-20 2000-04-27 Surgicraft Limited Artificial ligament or biological tissue fixation devices
US7887587B2 (en) 2004-06-04 2011-02-15 Synthes Usa, Llc Soft tissue spacer
WO2005117760A3 (en) * 2004-06-04 2006-09-14 Hfsc Co Soft tissue spacer
US8945220B2 (en) 2004-06-04 2015-02-03 DePuy Synthes Products, LLC Soft tissue spacer
US20050273165A1 (en) * 2004-06-04 2005-12-08 Bryan Griffiths Soft tissue spacer
US20110098760A1 (en) * 2004-06-04 2011-04-28 Bryan Griffiths Soft Tissue Spacer
US9011535B2 (en) 2005-12-20 2015-04-21 Depuy Mitek, Llc Methods for ligament reconstruction
US9241785B2 (en) 2005-12-20 2016-01-26 Depuy Mitek, Llc Methods for ligament reconstruction
US9931194B2 (en) 2005-12-20 2018-04-03 Depuy Mitek, Llc Ligament grafts for ligament reconstruction
US8435292B2 (en) * 2005-12-20 2013-05-07 Depuy Mitek, Inc. Methods for ligament reconstruction
US20070162122A1 (en) * 2005-12-20 2007-07-12 Whittaker Gregory R Methods for ligament reconstruction
US7648524B2 (en) * 2005-12-23 2010-01-19 Howmedica Osteonics Corp. Porous tendon anchor
US20070162022A1 (en) * 2005-12-23 2007-07-12 Howmedica Osteonics Corp. Porous tendon anchor
US10265155B2 (en) * 2007-02-12 2019-04-23 The Trustees Of Columbia University In The City Of New York Biomimmetic nanofiber scaffold for soft tissue and soft tissue-to-bone repair, augmentation and replacement
US20150100121A1 (en) * 2007-02-12 2015-04-09 The Trustees Of Columbia University In The City Of New York Biomimmetic nanofiber scaffold for soft tissue and soft tissue-to-bone repair, augmentation and replacement
US8172901B2 (en) 2007-03-20 2012-05-08 Allergan, Inc. Prosthetic device and method of manufacturing the same
US9060854B2 (en) 2007-03-20 2015-06-23 Allergan, Inc. Prosthetic device and method of manufacturing the same
US20080300683A1 (en) * 2007-03-20 2008-12-04 Altman Gregory H Prosthetic device and method of manufacturing the same
US20100286775A1 (en) * 2007-10-11 2010-11-11 Tavor [I.T.N] Ltd., Ligament and Tendon Prosthesis
US9707090B2 (en) 2008-10-23 2017-07-18 CMC Group LLC Surgical implantable stabilizer sling for basal joint arthroplasty
US20100106254A1 (en) * 2008-10-23 2010-04-29 Delsignore Jeanne L Surgical implantable stabilizer sling for basal joint arthroplasty
US10278692B2 (en) 2008-10-23 2019-05-07 CMC Group LLC Sling suspension system for supporting the thumb of a patient after basal joint arthroplasty
US9788838B2 (en) 2011-10-11 2017-10-17 Zone 2 Surgical, Inc. Tissue device
US9351719B2 (en) 2012-11-01 2016-05-31 Zone 2 Surgical, Inc. Self locking knotless suture
US11826489B2 (en) 2013-02-01 2023-11-28 The Children's Medical Center Corporation Collagen scaffolds
US9539004B2 (en) 2013-03-08 2017-01-10 Zone 2 Surgical, Inc. Collapsible locking suture
US11484301B2 (en) 2014-01-14 2022-11-01 Simparo Inc. Suture-locking washer for use with a bone anchor, and method for supporting the thumb of a patient after basal joint arthroplasty, and other novel orthopedic apparatus and other novel orthopedic procedures
US10653515B2 (en) 2016-05-16 2020-05-19 Medstar Health Tendon repair apparatus and method
IT201800002536A1 (en) * 2018-02-09 2019-08-09 Antonio Sambusseti SEMI-ABSORBABLE CROSS LIGAMENT FOR REVISION IMPLANTS

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