WO2005053386A1 - System and method for relaxing laying hen - Google Patents

System and method for relaxing laying hen Download PDF

Info

Publication number
WO2005053386A1
WO2005053386A1 PCT/KR2004/002959 KR2004002959W WO2005053386A1 WO 2005053386 A1 WO2005053386 A1 WO 2005053386A1 KR 2004002959 W KR2004002959 W KR 2004002959W WO 2005053386 A1 WO2005053386 A1 WO 2005053386A1
Authority
WO
WIPO (PCT)
Prior art keywords
relaxation
sound
pair
waves
frequency
Prior art date
Application number
PCT/KR2004/002959
Other languages
French (fr)
Inventor
Sang Ho Kim
Sang Jin Lee
Ok Seok Seo
Yong Chang Kim
Chun Ho Moon
Original Assignee
Daeyang E & C Co., Ltd
Republic Of Korea (Rural Development Administration)
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Daeyang E & C Co., Ltd, Republic Of Korea (Rural Development Administration) filed Critical Daeyang E & C Co., Ltd
Publication of WO2005053386A1 publication Critical patent/WO2005053386A1/en

Links

Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K45/00Other aviculture appliances, e.g. devices for determining whether a bird is about to lay
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K15/00Devices for taming animals, e.g. nose-rings or hobbles; Devices for overturning animals in general; Training or exercising equipment; Covering boxes
    • A01K15/02Training or exercising equipment, e.g. mazes or labyrinths for animals ; Electric shock devices ; Toys specially adapted for animals

Definitions

  • the present invention relates to a system and method for relaxing laying hens, and more particularly to a system and method for producing a sound having a certain frequency range to maintain laying hens in more stable and comfortable conditions. More particularly, the present invention relates to a system and method for relaxing laying hens, which is capable of improving quality of eggs produced in laying hen farms, increasing egg output, and moreover, enhancing immunity of laying hens to prevent the laying hens from catching infectious diseases.
  • Brain waves are classified into alpha waves, a beta wave, delta waves, and theta waves.
  • Beta waves with a wavelength range of 15 Hz 40 Hz are generated under normal conditions where persons conduct daily activities mcluding waking up, walking, agitation, etc.
  • Alpha waves with a wavelength range of 7 Hz to 15 Hz are brain waves generated when persons have relieved tension and relaxed spirit.
  • alpha waves predominate persons go into a mentally stable state. Healthy persons having little stress are apt to generate this alpha wave plentifully.
  • the theta wave with a wavelength range of 4 Hz to 7 Hz is known to be involved with instant insight or idea, or super-ability.
  • the delta wave with a wavelength of 4 Hz or below is mainly generated when persons are in an asleep or unconscious state, and produces a lot of growth hormone. Persons can be relaxed in their mind and body when they are placed in environments of natural sound, bright light, or sweet smell. At this time, brain waves of persons are also stabilized, and accordingly, alpha, theta, and delta waves, which have relatively low frequencies, are frequently observed.
  • the present invention has been made in view of the problems of the conventional method for improving quality of eggs laid by laying hens by feeding the laying hens with assorted feed, and it is an object of the present invention to provide a system and method for producing a sound having a certain frequency range to maintain laying hens in more stable and comfortable conditions. It is another object of the present invention to provide a system and method for raising a laying egg rate and lowering a mortality rate through a proper combination of sounds having certain frequency ranges.
  • a system for relaxing laying hens comprising: a relaxation sound generator for generating a relaxation sound having the same frequency range as an alpha wave having a frequency range of 7 Hz to 15 Hz to make poultry relaxed, an audible sound generator for generating an audible sound heard by the poultry, a modulator for modulating the relaxation sound by mixing the relaxation sound with the audible sound, and an audio output unit for outputting the modulated relaxation sound.
  • a system for relaxing laying hens comprising: a basic wave generator for generating a pair of first basic waves having the same phase and a pair of second basic waves having opposite phases, a relaxation wave generator for generating a pair of relaxation waves by combining the pair of first basic waves and the pair of second basic waves with time, a modulator for generating a pair of relaxation sounds by modulating the pair of relaxation waves with a sound wave having an audible frequency, and an audio output unit composed of two left and right parts such that stereo sound is outputted, for receiving the pair of relaxation sounds and outputting the pair of relaxation sounds to the left and right parts, respectively.
  • the pair of relaxation waves has a frequency range of 5 Hz to 15 Hz and is changed in its frequency with time.
  • the frequency change is periodically reiterated.
  • the audio output unit includes a public address speaker disposed in a space where poultry can hear the modulated relaxation sound.
  • a method for relaxing poultry by letting the poultry hear a relaxation sound comprising; a first step of outputting the relaxation sound having a frequency increased with time to cheer up the poultry, a second step of outputting the relaxation sound having a frequency decreased and increased with time to relax the poultry, and a third step of outputting the relaxation sound having a frequency decreased with time to put the poultry to sleep.
  • the first step includes outputting the relaxation sound having a frequency increased gradually from 10 Hz to 15 Hz
  • the second step includes outputting the relaxation sound having a frequency increased and decreased periodically within a range of 6 Hz to 12 Hz
  • the third step includes outputting the relaxation sound having a frequency decreased gradually from 10 Hz to 5 Hz.
  • mute is maintained for a preset time between the first step and the second step or between the second step and the third step.
  • Fig. 1 is a block diagram of a system for relaxing laying hens in accordance with the present invention
  • Fig. 2a is a diagram showing basic pulse waves in a mono mode in accordance with the present invention
  • Fig. 2b is a diagram showing basic pulse waves in a stereo mode in accordance with the present invention.
  • a system for relaxing laying hens in accordance with the present invention comprises a controller 10, an input unit 20, a display unit 30, a basic wave generator 40, a relaxation wave generator 50, an audible sound storage unit 60, a modulator 70, an amplifier 80, and a public address (PA) speaker 90.
  • a controller 10 an input unit 20
  • a display unit 30 a basic wave generator 40
  • a relaxation wave generator 50 an audible sound storage unit 60
  • a modulator 70 an amplifier 80
  • PA public address
  • the controller 10 transmits a signal to the basic wave generator 40 to generate predetermined basic waves using a brain wave induction algorithm, according to instructions inputted through the input unit 20. Also, the controller 10 transmits a signal to the relaxation wave generator 50 to generate relaxation waves of various types, which can be heard by the laying hens, by combining the basic waves generated by the basic wave generator 40 with time, h addition, the controller 10 transmits a signal to the modulator 70 to modulate the relaxation waves generated by the relaxation wave generator 50 with a sound wave having an audible frequency, which can be heard by the laying hens. Various instructions required for operation of the controller 10 are inputted to the input unit 20.
  • the basic wave generator 40 generates basic sound waves (i.e., basic brain waves) that the laying hens can hear.
  • the basic sound waves generated by the basic wave generator 40 are pulse waves as shown in Figs. 2a and 2b. However, these basic sound waves are not limited to the pulse waves, but may have various shapes, such as a sinusoidal wave.
  • the pulse waves are waves in which a sound is produced for a high period of the pulse while a sound is not produced for a low period of the pulse.
  • Fig. 2a shows pulse waveforms of the basic sound waves having the same phase
  • Fig. 2b shows pulse waveforms of the basic sound waves having the opposite phases.
  • a mono sound is produced in the basic sound waves shown in Fig. 2a and a stereo sound is produced in the basic sound waves shown in Fig. 2b.
  • sound waves having a combined frequency within a range of 5 Hz to 15 Hz may be generated by combining a time interval Tl and a time interval T2 shown in Fig.2a.
  • the relaxation wave generator 50 selects various kinds of sound waves (including a plurality of sound waves having different frequencies, or a plurality of sound waves depending on a kind of operation mode including a mono mode and a stereo mode) and combines theses selected sound waves with time.
  • the audible sound storage unit 60 stores sound waves having audible frequency ranges.
  • the audible sound storage unit 60 may store sounds of birds, waves, river water, sea gulls, etc., that assist in relaxing the laying hens and were collected in advance.
  • an audible frequency used about 100 Hz to 500 Hz is suitable for persons, however, in the case of poultry such as the laying hens, unlike persons, appropriate frequencies must be selected based on the kind of poultry.
  • the frequency of the relaxation wave generated by the relaxation wave generator 50 is so low that the laying hens cannot hear the relaxation sound well. Accordingly, the modulator 70 modulates the relaxation wave having the low frequency with the audible sound.
  • any of the sound waves stored in the audible sound storage unit 60 is used as the audible sound.
  • the audible sound is preferably a sinusoidal wave having a frequency in the several hundred Hz range, however it is not limited to this, but may include waves of various forms. Also, as the audible sound, natural sounds or sounds favorable for the laying hens may be provided. In addition, as the audible sound, a mixture of brain waves modulated with a sinusoidal wave and the natural sounds may be used.
  • the amplifier 80 amplifies sound waves produced in the modulator 70 and transmits the amplified sound waves to the public address (PA) speaker 90.
  • the PA speaker 90 is a speaker apparatus including a plurality of speakers spatially distributed in order to propagate sound waves into a wide space.
  • the PA speaker 90 includes a plurality of stereo speakers disposed in a space where the laying hens can hear relaxation sounds in a wide chicken yard.
  • operation of the relaxation wave generator 50 in accordance with the embodiment of the present invention will be described in detail in connection with a control of the time intervals Tl and T2 shown in Figs. 2a and 2b.
  • Table 1 shows a time schedule of the system for relaxing the laying hens, which is made up for use in a chicken yard.
  • the active mode, the rest mode and the sleep mode, etc. are modes formed by a suitable combination of waves having the same left and right phases (mono mode, hereinafter referred to as "A type") with time and waves having the opposite left and right phases (stereo mode, hereinafter referred to as "B type") with time.
  • a type mono mode
  • stereo mode stereo mode
  • mute mode sound is not produced for a certain time.
  • the active mode in Step 1 is a mode for maximally promoting activities of the laying hens, such as waking up at dawn and laying eggs.
  • Waveforms of the sound waves in the active mode are formed by a suitable combination of A type and B type, as listed in Table 2. Frequencies of the sound waves are continuously increased from about 10 Hz to 15 Hz with time.
  • the rest mode in Step 3 is a mode for letting the laying hens take a rest after the active mode.
  • the frequency of waveform is decreased from about 11 Hz to 6 Hz, and then, is increased up to 12 Hz with time. In the rest mode, the increase and decrease of the frequency can be reiterated several times periodically.
  • the sleep mode in Step 5 is a mode for letting the laying hens sleep after the rest mode, where the frequency is decreased from about 10 Hz to 5 Hz, as listed in Table 4. Since a speed of a generated sound becomes relatively low with the decrease of the frequency, the laying hens are exposed to a more stable sound with time.
  • the present inventors made tests for exarnining an affect on the laying hens as follows.
  • the present inventors noted the amount of eggs laid for 35 days.
  • the amount of laid eggs was examined for the same time under ordinary egg laying conditions. Results of the tests are listed in Table 5.
  • the frequency of the relaxation sound is increased or decreased with time within a range of about 5 to 15 Hz. This frequency range is nearly equal to the frequency range (7 Hz to 15 Hz) of the alpha wave for relaxing persons, h other words, in the embodiment of the present invention, the frequency range of the generated relaxation sound is changed to the frequency range of the alpha wave.
  • the mortality rate of the laying hens is significantly decreased by 75.8%, compared to that of the laying hens in the comparative examples. It is commonly known that the main cause of stress in chickens is cannibalism due to their aggressive disposition. Therefore, it can be considered that the decrease of the mortality rate in the embodiment leads to alleviation of the aggressive disposition of the laying hens.
  • values of eggs are mainly determined by eggshells and internal qualities.
  • content of alien substances such as meat spots or blood spots is decreased by 6.4% at average over the overall test period, compared to that in the comparative examples.
  • the meat spots and the blood spots appear because internal injured textures of stressed laying hens are introduced into eggs, and accordingly, they have a close connection with health conditions of the laying hens. Accordingly, it is determined that low appearance rates of the meat spots and the blood spots in eggs laid by the laying hens in the environments created according to the embodiment of the present invention is attributed to good health conditions of the laying hens.
  • An abnormal eggshell rate appears due to poor metabolism when eggshells are formed.
  • the abnormal eggshell rate in the embodiment of the present invention is decreased by 19.1%, compared to that in the comparative examples. As described above, with the system for relaxing the laying hens in accordance with the present invention, the productivity of the laying hens and the quality of produced eggs are significantly improved.
  • the system for relaxing the laying hens in accordance with the present invention is applicable not only to the laying hens but also to other kinds of poultry.
  • the system of the present invention is applicable to general domestic animals by adjusting the frequency range.
  • the present invention provides a system and method for producing a sound having a certain frequency range to maintain poultry in more stable and comfortable conditions. Accordingly, egg output in poultry farms can be enhanced, and eggs having a good quality can be produced.

Abstract

Disclosed is a system and method for producing a sound having a certain frequency range to maintain laying hens in more stable and comfortable conditions. The system comprises a basic wave generator for generating a pair of first basic waves having the same phase and a pair of second basic waves having opposite phases, a relaxation wave generator for generating a pair of relaxation waves by combining the pair of first basic waves and the pair of second basic waves with time, a modulator for generating a pair of relaxation sounds by modulating the pair of relaxation waves with a 10 sound wave having an audible frequency, and an audio output unit composed of two left and right parts such that stereo sound is outputted, for receiving the pair of relaxation sounds and outputting the pair of relaxation sounds to the left and right parts, respectively.

Description

SYSTEM AND METHOD FOR RELAXING LAYING HEN
Technical Field The present invention relates to a system and method for relaxing laying hens, and more particularly to a system and method for producing a sound having a certain frequency range to maintain laying hens in more stable and comfortable conditions. More particularly, the present invention relates to a system and method for relaxing laying hens, which is capable of improving quality of eggs produced in laying hen farms, increasing egg output, and moreover, enhancing immunity of laying hens to prevent the laying hens from catching infectious diseases.
Background Art In general, the business goal of laying hen farms is to make a profit by cutting down the cost of production and producing and selling eggs of good quality. Therefore, laying hen farms make diversified efforts to raise a laying egg rate and lower a mortality rate in order to maximize profits. As a part of such efforts, laying hen farmers feed laying hens with various assorted feeds containing vitamins and minerals. However, this method is uneconomical since it increases the laying egg rate by 2% or more whereas assorted feed costs are far increased over the increase of the laying egg rate. Laying hens are a species of poultry more sensitive to stress than other poultry. Recently, as automated facilities for management of laying hens have been employed on a large scale, stress to laying hens is increasing. Particularly, although it is natural that chickens are active in a wide space, because they are bred in a narrow space such as a henhouse in order to produce a mass of eggs, they suffer from stress naturally.
Accordingly, there is an increased possibility that quality of eggs laid by stressed hens is deteriorated. On the other hand, most animals generate diverse brain waves having certain frequency ranges. It is known that patterns of these brain waves depend on their physiological conditions. Brain waves are classified into alpha waves, a beta wave, delta waves, and theta waves. Beta waves with a wavelength range of 15 Hz 40 Hz are generated under normal conditions where persons conduct daily activities mcluding waking up, walking, agitation, etc. Alpha waves with a wavelength range of 7 Hz to 15 Hz are brain waves generated when persons have relieved tension and relaxed spirit. Thus, when alpha waves predominate, persons go into a mentally stable state. Healthy persons having little stress are apt to generate this alpha wave plentifully. The theta wave with a wavelength range of 4 Hz to 7 Hz is known to be involved with instant insight or idea, or super-ability. The delta wave with a wavelength of 4 Hz or below is mainly generated when persons are in an asleep or unconscious state, and produces a lot of growth hormone. Persons can be relaxed in their mind and body when they are placed in environments of natural sound, bright light, or sweet smell. At this time, brain waves of persons are also stabilized, and accordingly, alpha, theta, and delta waves, which have relatively low frequencies, are frequently observed.
Disclosure of Invention The present invention has been made in view of the problems of the conventional method for improving quality of eggs laid by laying hens by feeding the laying hens with assorted feed, and it is an object of the present invention to provide a system and method for producing a sound having a certain frequency range to maintain laying hens in more stable and comfortable conditions. It is another object of the present invention to provide a system and method for raising a laying egg rate and lowering a mortality rate through a proper combination of sounds having certain frequency ranges. In accordance with an aspect of the present invention, the above and other objects can be accomplished by the provision of a system for relaxing laying hens, comprising: a relaxation sound generator for generating a relaxation sound having the same frequency range as an alpha wave having a frequency range of 7 Hz to 15 Hz to make poultry relaxed, an audible sound generator for generating an audible sound heard by the poultry, a modulator for modulating the relaxation sound by mixing the relaxation sound with the audible sound, and an audio output unit for outputting the modulated relaxation sound. In accordance with another aspect of the present invention, there is provided a system for relaxing laying hens, comprising: a basic wave generator for generating a pair of first basic waves having the same phase and a pair of second basic waves having opposite phases, a relaxation wave generator for generating a pair of relaxation waves by combining the pair of first basic waves and the pair of second basic waves with time, a modulator for generating a pair of relaxation sounds by modulating the pair of relaxation waves with a sound wave having an audible frequency, and an audio output unit composed of two left and right parts such that stereo sound is outputted, for receiving the pair of relaxation sounds and outputting the pair of relaxation sounds to the left and right parts, respectively. Preferably, the pair of relaxation waves has a frequency range of 5 Hz to 15 Hz and is changed in its frequency with time. Preferably, the frequency change is periodically reiterated. Preferably, the audio output unit includes a public address speaker disposed in a space where poultry can hear the modulated relaxation sound. In accordance with yet another aspect of the present invention, there is provided a method for relaxing poultry by letting the poultry hear a relaxation sound, comprising; a first step of outputting the relaxation sound having a frequency increased with time to cheer up the poultry, a second step of outputting the relaxation sound having a frequency decreased and increased with time to relax the poultry, and a third step of outputting the relaxation sound having a frequency decreased with time to put the poultry to sleep. Preferably, the first step includes outputting the relaxation sound having a frequency increased gradually from 10 Hz to 15 Hz, the second step includes outputting the relaxation sound having a frequency increased and decreased periodically within a range of 6 Hz to 12 Hz, and the third step includes outputting the relaxation sound having a frequency decreased gradually from 10 Hz to 5 Hz. Preferably, mute is maintained for a preset time between the first step and the second step or between the second step and the third step. With the above configuration, a sound having a certain frequency range can be produced to maintain laying hens in more stable and comfortable conditions.
Brief Description of the Drawings The above and other objects, features and other advantages of the present invention will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which: Fig. 1 is a block diagram of a system for relaxing laying hens in accordance with the present invention; Fig. 2a is a diagram showing basic pulse waves in a mono mode in accordance with the present invention; and Fig. 2b is a diagram showing basic pulse waves in a stereo mode in accordance with the present invention.
Best Mode for Carrying out the Invention Hereinafter, a system and method for relaxing laying hens according to preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. The following preferred embodiments are exemplified for the purpose of explaining the principle of the present invention, without linriting the claims of the present invention. Referring to Fig. 1, a system for relaxing laying hens in accordance with the present invention comprises a controller 10, an input unit 20, a display unit 30, a basic wave generator 40, a relaxation wave generator 50, an audible sound storage unit 60, a modulator 70, an amplifier 80, and a public address (PA) speaker 90. The controller 10 transmits a signal to the basic wave generator 40 to generate predetermined basic waves using a brain wave induction algorithm, according to instructions inputted through the input unit 20. Also, the controller 10 transmits a signal to the relaxation wave generator 50 to generate relaxation waves of various types, which can be heard by the laying hens, by combining the basic waves generated by the basic wave generator 40 with time, h addition, the controller 10 transmits a signal to the modulator 70 to modulate the relaxation waves generated by the relaxation wave generator 50 with a sound wave having an audible frequency, which can be heard by the laying hens. Various instructions required for operation of the controller 10 are inputted to the input unit 20. Namely, instructions required to select kinds of brain waves, their frequencies, and a combination thereof with time, and stored natural sounds are transmitted to the controller 10 through the input unit 20. The display unit 30 including an LCD monitor displays the instructions to be inputted through the input unit 20 and modes currently running in the system according to the inputted instructions. The basic wave generator 40 generates basic sound waves (i.e., basic brain waves) that the laying hens can hear. The basic sound waves generated by the basic wave generator 40 are pulse waves as shown in Figs. 2a and 2b. However, these basic sound waves are not limited to the pulse waves, but may have various shapes, such as a sinusoidal wave. The pulse waves are waves in which a sound is produced for a high period of the pulse while a sound is not produced for a low period of the pulse. Fig. 2a shows pulse waveforms of the basic sound waves having the same phase, and Fig. 2b shows pulse waveforms of the basic sound waves having the opposite phases.
Based on the phase, a mono sound is produced in the basic sound waves shown in Fig. 2a and a stereo sound is produced in the basic sound waves shown in Fig. 2b. In the present invention, sound waves having a combined frequency within a range of 5 Hz to 15 Hz may be generated by combining a time interval Tl and a time interval T2 shown in Fig.2a. The relaxation wave generator 50 selects various kinds of sound waves (including a plurality of sound waves having different frequencies, or a plurality of sound waves depending on a kind of operation mode including a mono mode and a stereo mode) and combines theses selected sound waves with time. The audible sound storage unit 60 stores sound waves having audible frequency ranges. The audible sound storage unit 60 may store sounds of birds, waves, river water, sea gulls, etc., that assist in relaxing the laying hens and were collected in advance. As an audible frequency used, about 100 Hz to 500 Hz is suitable for persons, however, in the case of poultry such as the laying hens, unlike persons, appropriate frequencies must be selected based on the kind of poultry. The frequency of the relaxation wave generated by the relaxation wave generator 50 is so low that the laying hens cannot hear the relaxation sound well. Accordingly, the modulator 70 modulates the relaxation wave having the low frequency with the audible sound. Here, any of the sound waves stored in the audible sound storage unit 60 is used as the audible sound. The audible sound is preferably a sinusoidal wave having a frequency in the several hundred Hz range, however it is not limited to this, but may include waves of various forms. Also, as the audible sound, natural sounds or sounds favorable for the laying hens may be provided. In addition, as the audible sound, a mixture of brain waves modulated with a sinusoidal wave and the natural sounds may be used. The amplifier 80 amplifies sound waves produced in the modulator 70 and transmits the amplified sound waves to the public address (PA) speaker 90. The PA speaker 90 is a speaker apparatus including a plurality of speakers spatially distributed in order to propagate sound waves into a wide space. In the present invention, the PA speaker 90 includes a plurality of stereo speakers disposed in a space where the laying hens can hear relaxation sounds in a wide chicken yard. Hereinafter, operation of the relaxation wave generator 50 in accordance with the embodiment of the present invention will be described in detail in connection with a control of the time intervals Tl and T2 shown in Figs. 2a and 2b. Table 1 shows a time schedule of the system for relaxing the laying hens, which is made up for use in a chicken yard.
Table 1
Figure imgf000007_0001
As listed in Table 1, the active mode, the rest mode and the sleep mode, etc., are modes formed by a suitable combination of waves having the same left and right phases (mono mode, hereinafter referred to as "A type") with time and waves having the opposite left and right phases (stereo mode, hereinafter referred to as "B type") with time. In the mute mode, sound is not produced for a certain time. The active mode in Step 1 is a mode for maximally promoting activities of the laying hens, such as waking up at dawn and laying eggs. Waveforms of the sound waves in the active mode are formed by a suitable combination of A type and B type, as listed in Table 2. Frequencies of the sound waves are continuously increased from about 10 Hz to 15 Hz with time. This is because the increased frequencies result in a higher speed of sound wave. In this case, a mono sound is outputted until 135 seconds, thereafter, a stereo sound is outputted until 327 seconds, and thereafter, a mono sound is again outputted until 339 seconds through the PA speaker. Table 2
Figure imgf000008_0001
The rest mode in Step 3 is a mode for letting the laying hens take a rest after the active mode. As listed in Table 3, unlike the active mode, the frequency of waveform is decreased from about 11 Hz to 6 Hz, and then, is increased up to 12 Hz with time. In the rest mode, the increase and decrease of the frequency can be reiterated several times periodically.
Figure imgf000008_0002
The sleep mode in Step 5 is a mode for letting the laying hens sleep after the rest mode, where the frequency is decreased from about 10 Hz to 5 Hz, as listed in Table 4. Since a speed of a generated sound becomes relatively low with the decrease of the frequency, the laying hens are exposed to a more stable sound with time.
Figure imgf000009_0001
With the combination of the brain waves produced according to the embodiment, the present inventors made tests for exarnining an affect on the laying hens as follows. According to the embodiment of the present invention, after exposing laying hens used for the tests to the brain waves according to the above-described modes for two months, the present inventors noted the amount of eggs laid for 35 days. For the purpose of comparing with the embodiment, the amount of laid eggs was examined for the same time under ordinary egg laying conditions. Results of the tests are listed in Table 5. As described above, in the embodiment of the present invention, the frequency of the relaxation sound is increased or decreased with time within a range of about 5 to 15 Hz. This frequency range is nearly equal to the frequency range (7 Hz to 15 Hz) of the alpha wave for relaxing persons, h other words, in the embodiment of the present invention, the frequency range of the generated relaxation sound is changed to the frequency range of the alpha wave.
Table 5
Figure imgf000010_0001
During the total test period, while the average laying egg rate is 66.2% in comparative examples 1 and 2, it is 72.1% in the embodiment, showing an increase of about 8.9% over the comparative examples 1 and 2. Such an increase is attributed to the relaxation of the laying hens by the relaxation sound generated according to the present invention, which has a favorable influence on the ovulation period of the laying hens, metabolism of internal nutritive substance of the laying hens, etc. h addition, the laying hens in the environments created according to the present invention were observed to maintain a significantly stable condition and have little aggressive disposition for the test period, compared to the laying hens in the environments created according to the comparative examples. Table 6 shows a comparison between mortality rate and alien substances in eggs in the embodiment of the present invention and those in the comparative examples.
Table 6
Figure imgf000010_0002
In the embodiment of the present invention, the mortality rate of the laying hens is significantly decreased by 75.8%, compared to that of the laying hens in the comparative examples. It is commonly known that the main cause of stress in chickens is cannibalism due to their aggressive disposition. Therefore, it can be considered that the decrease of the mortality rate in the embodiment leads to alleviation of the aggressive disposition of the laying hens. On the other hand, values of eggs are mainly determined by eggshells and internal qualities. In the embodiment of the present invention, content of alien substances such as meat spots or blood spots is decreased by 6.4% at average over the overall test period, compared to that in the comparative examples. The meat spots and the blood spots appear because internal injured textures of stressed laying hens are introduced into eggs, and accordingly, they have a close connection with health conditions of the laying hens. Accordingly, it is determined that low appearance rates of the meat spots and the blood spots in eggs laid by the laying hens in the environments created according to the embodiment of the present invention is attributed to good health conditions of the laying hens. An abnormal eggshell rate appears due to poor metabolism when eggshells are formed. The abnormal eggshell rate in the embodiment of the present invention is decreased by 19.1%, compared to that in the comparative examples. As described above, with the system for relaxing the laying hens in accordance with the present invention, the productivity of the laying hens and the quality of produced eggs are significantly improved. Such an improvement is mainly attributed to emotional relaxation of the laying hens exposed to various kinds of stresses. The system for relaxing the laying hens in accordance with the present invention is applicable not only to the laying hens but also to other kinds of poultry. In addition, the system of the present invention is applicable to general domestic animals by adjusting the frequency range. Although the preferred embodiments of the present invention have been disclosed for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.
Industrial Applicability As apparent from the above description, the present invention provides a system and method for producing a sound having a certain frequency range to maintain poultry in more stable and comfortable conditions. Accordingly, egg output in poultry farms can be enhanced, and eggs having a good quality can be produced.

Claims

1. A system for relaxing laying hens, comprising: a relaxation sound generator for generating a relaxation sound having the same frequency range as an alpha wave having a frequency range of 7 Hz to 15 Hz to make poultry relaxed; an audible sound generator for generating an audible sound heard by the poultry; a modulator for modulating the relaxation sound by mixing the relaxation sound with the audible sound; and an audio output unit for outputting the modulated relaxation sound.
2. A system for relaxing laying hens, comprising: a basic wave generator for generating a pair of first basic waves having the same phase and a pair of second basic waves having opposite phases; a relaxation wave generator for generating a pair of relaxation waves by combining the pair of first basic waves and the pair of second basic waves with time; a modulator for generating a pair of relaxation sounds by modulating the pair of relaxation waves with a sound wave having an audible frequency; and an audio output unit composed of left and right parts such that stereo sound is outputted, for receiving the pair of relaxation sounds and outputting the pair of relaxation sounds to the left and right parts, respectively.
3. The system as set forth in claim 2, wherein frequencies of the pair of first basic waves and the pair of second basic waves combined in the relaxation wave generator are changed with time.
4. The system as set forth in claim 2, wherein the relaxation wave generator combines the pair of first basic waves and the pair of second basic waves with time such that the relaxation wave generator generates the pair of relaxation waves periodically within the frequency from 5Hz to 15Hz.
5. The system as set forth in one of claim 2 to claim 4, wherein the audio output unit is a public address speaker disposed in a space where poultry can hear the modulated relaxation sound.
6. A method for relaxing poultry by letting the poultry hear a relaxation sound, comprising; a first step of outputting the relaxation sound having a frequency increased with time to cheer up the poultry; a second step of outputting the relaxation sound having a frequency decreased and increased with time to relax the poultry; and a third step of outputting the relaxation sound having a frequency decreased with time to put the poultry to sleep.
7. The method as set forth in claim 6, wherein the second step comprises repeating the increase and decrease of the frequency.
8. The method as set forth in claim 6 or claim 7, the first step comprises outputting the relaxation sound having a frequency increased gradually from 10 Hz to 15 Hz, and the second step comprises outputting the relaxation sound having a frequency increased and decreased periodically within a range of 6 Hz to 12 Hz, and the third step comprises outputting the relaxation sound having a frequency decreased gradually from 10 Hz to 5 Hz.
9. The method as set forth in claim 6 or claim 7, wherein mute is maintained for a predetermined time between the first step and the second step or between the second step and the third step.
PCT/KR2004/002959 2003-12-08 2004-11-15 System and method for relaxing laying hen WO2005053386A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2003-0088463 2003-12-08
KR1020030088463A KR100691860B1 (en) 2003-12-08 2003-12-08 Sound system for increasing egg-laid rate of hen

Publications (1)

Publication Number Publication Date
WO2005053386A1 true WO2005053386A1 (en) 2005-06-16

Family

ID=34632129

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2004/002959 WO2005053386A1 (en) 2003-12-08 2004-11-15 System and method for relaxing laying hen

Country Status (4)

Country Link
US (1) US7290501B2 (en)
JP (1) JP2005168502A (en)
KR (1) KR100691860B1 (en)
WO (1) WO2005053386A1 (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9241474B2 (en) * 2013-05-07 2016-01-26 Robert L. Thorne Animal harness
JP6368073B2 (en) * 2013-05-23 2018-08-01 ヤマハ株式会社 Tone generator and program
KR102082759B1 (en) 2015-09-30 2020-02-28 김신우 Method for output of dog laughter, and recording medium storing program for executing the same
JP2017113263A (en) * 2015-12-24 2017-06-29 ヤマハ株式会社 Sound source device

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5061918A (en) * 1989-10-02 1991-10-29 The Texas A&M University System Sound emitting device for behavior modification
JPH11127718A (en) * 1997-10-31 1999-05-18 Akiyo Akamatsu Production of delicious egg having antiallergic action

Family Cites Families (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3762396A (en) * 1970-10-30 1973-10-02 United Biscuits Ltd Method and apparatus for inducing sleep by applying electrical pulses to plural portions of the head
US4335710A (en) * 1980-01-16 1982-06-22 Omnitronics Research Corporation Device for the induction of specific brain wave patterns
JPS61131757A (en) * 1984-08-24 1986-06-19 林原 健 Brain wave frequency lowering induction apparatus
US4883067A (en) * 1987-05-15 1989-11-28 Neurosonics, Inc. Method and apparatus for translating the EEG into music to induce and control various psychological and physiological states and to control a musical instrument
IL86582A (en) * 1988-05-31 1993-01-31 Benjamin Gavish Device and method for modulating respiration activity
US5123899A (en) * 1991-01-17 1992-06-23 James Gall Method and system for altering consciousness
US5356368A (en) * 1991-03-01 1994-10-18 Interstate Industries Inc. Method of and apparatus for inducing desired states of consciousness
JPH0747128A (en) * 1993-06-23 1995-02-21 Japan Health Res:Kk Psycho-physical refreshing apparatus
KR0127765B1 (en) * 1994-12-27 1997-12-29 김광호 ALPHA WAVE(Ñß) GENERATING APPARATUS IN TELEVISION
JP2869373B2 (en) * 1995-12-27 1999-03-10 パイオニア株式会社 Two-way distribution system
EP0798009B1 (en) * 1996-03-26 2004-11-24 Advanced Telecommunications Research Institute International Installation for increasing cerebral blood flow by sound
RU2096990C1 (en) * 1996-11-01 1997-11-27 Яков Иосифович Левин Method for exerting influence upon an organism
KR100338280B1 (en) * 1999-03-12 2002-05-27 이준욱 Fetal Education Apparatus
GB0203045D0 (en) * 2002-02-08 2002-03-27 Johnson & Johnson Consumer Method of afefecting sleep and sleep-related behaviours
JP2003348697A (en) * 2002-05-27 2003-12-05 Artist Bureau:Kk Method of inducing alpha wave and recording medium for method of inducing alpha wave

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5061918A (en) * 1989-10-02 1991-10-29 The Texas A&M University System Sound emitting device for behavior modification
JPH11127718A (en) * 1997-10-31 1999-05-18 Akiyo Akamatsu Production of delicious egg having antiallergic action

Also Published As

Publication number Publication date
US7290501B2 (en) 2007-11-06
KR20050055291A (en) 2005-06-13
JP2005168502A (en) 2005-06-30
US20050120976A1 (en) 2005-06-09
KR100691860B1 (en) 2007-03-12

Similar Documents

Publication Publication Date Title
Headley et al. Fear conditioning enhances gamma oscillations and their entrainment of neurons representing the conditioned stimulus
Bass et al. Vocal–acoustic communication: From neurons to behavior
Faure et al. Temporal masking reveals properties of sound-evoked inhibition in duration-tuned neurons of the inferior colliculus
Hauser The sound and the fury: Primate vocalizations as reflections of emotion and thought
Megela‐Simmons et al. Behavioral audiograms of the bullfrog (R ana catesbeiana) and the green tree frog (H yla cinerea)
Crawford Hearing and acoustic communication in mormyrid electric fishes
Frank et al. Development of circadian sleep regulation in the rat: a longitudinal study under constant conditions
Brunel-Pons et al. The complex auditory scene at leks: balancing antipredator behaviour and competitive signalling in an acoustic moth
Chagnaud et al. Vocal corollary discharge communicates call duration to vertebrate auditory system
van der Aa et al. The perception of regularity in an isochronous stimulus in zebra finches (Taeniopygia guttata) and humans
Fang et al. Right ear advantage for vocal communication in frogs results from both structural asymmetry and attention modulation
Ballintijn et al. Vocal development and its differentiation in a non-songbird: the collared dove (Streptopelia decaocto)
US7290501B2 (en) System and method for relaxing laying hen
Giglio et al. Leptin regulates song effort in Neotropical singing mice (Scotinomys teguina)
Tallarovic et al. Electrocommunication signals in female brown ghost electric knifefish, Apteronotus leptorhynchus
Murphy et al. Keeping up with the neighbor: a novel mechanism of call synchrony in Neoconocephalus ensiger katydids
Shair Infantile vocalizations in rats
Porges et al. Heart rate and respiration in reptiles: contrasts between a sit-and-wait predator and an intensive forager
Baugh et al. A laryngeal fibrous mass impacts the acoustics and attractiveness of a multicomponent call in túngara frogs (Physalaemus pustulosus)
Gray et al. Development of responsiveness to suprathreshold acoustic stimulation in chickens.
Hubbard et al. Arvicanthis ansorgei, a novel model for the study of sleep and waking in diurnal rodents
Savory et al. Circadian variation in heart rate, blood pressure, body temperature and EEG of immature broiler breeder chickens in restricted-fed and ad libitum-fed states
Klenova et al. The variation in reliability of individual vocal signature throughout ontogenesis in the red-crowned crane Grus japonensis
Wingelmaier et al. Reed bunting (Emberiza schoeniclus) males sing an'all-clear'signal to their incubating females
KR101054542B1 (en) Flounder Property Form Method

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BW BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EC EE EG ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NA NI NO NZ OM PG PH PL PT RO RU SC SD SE SG SK SL SY TJ TM TN TR TT TZ UA UG US UZ VC VN YU ZA ZM ZW

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): BW GH GM KE LS MW MZ NA SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LU MC NL PL PT RO SE SI SK TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

121 Ep: the epo has been informed by wipo that ep was designated in this application
32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: COMMUNICATION PURSUANT TO RULE 69(1) EPC (FORM 1205A) SENT 22.08.2006.

122 Ep: pct application non-entry in european phase