WO2017159959A1 - Dispositif de cryothérapie - Google Patents

Dispositif de cryothérapie Download PDF

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Publication number
WO2017159959A1
WO2017159959A1 PCT/KR2016/013310 KR2016013310W WO2017159959A1 WO 2017159959 A1 WO2017159959 A1 WO 2017159959A1 KR 2016013310 W KR2016013310 W KR 2016013310W WO 2017159959 A1 WO2017159959 A1 WO 2017159959A1
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WO
WIPO (PCT)
Prior art keywords
heat
unit
cooling
case
heat dissipation
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PCT/KR2016/013310
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English (en)
Korean (ko)
Inventor
김태국
홍승표
구수회
윤창희
Original Assignee
주식회사 엔씨바이오
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Application filed by 주식회사 엔씨바이오 filed Critical 주식회사 엔씨바이오
Priority to CN201680028126.7A priority Critical patent/CN107613914B/zh
Publication of WO2017159959A1 publication Critical patent/WO2017159959A1/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B18/00Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body
    • A61B18/02Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body by cooling, e.g. cryogenic techniques
    • 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
    • A61F7/00Heating or cooling appliances for medical or therapeutic treatment of the human body

Definitions

  • the present invention relates to a medical cryostat, and more specifically, to improve the heat dissipation efficiency by integrating the cooling unit, the suction unit, and the heat dissipation unit, the anti-frostbite pad detecting unit for detecting an anti-frostbite pad is installed directly on the cooling plate.
  • the present invention relates to a medical cryogenic device that can be prevented and miniaturized to be easy to carry and thus convenient to use.
  • the skin cooling method is used for skin disease treatment and laser treatment, but the cooling device used for the treatment of skin disease is a cooling device using the vaporization heat of liquid nitrogen.
  • the cooling device used for the treatment of skin disease is a cooling device using the vaporization heat of liquid nitrogen.
  • a compressor-type cooler using freon gas as a refrigerant is a method of directly contacting a probe of a metal material to the skin, and thus, temperature control is impossible, and it maintains only a very low temperature of about 15 degrees to minus 20 degrees. The temperature of about 10 degrees could not be maintained.
  • thermoelectric element a low temperature device using a thermoelectric element that breaks the existing cooling method that operates a compressor to circulate a refrigerant, and is capable of simultaneously cooling and heating at any time through pole switching.
  • thermoelectric element is a device formed by combining two different metals of the same shape or by bonding an n-type semiconductor and a p-type semiconductor to each other.
  • a direct current is applied to the device, endothermic reactions and heat radiation reactions occur on both metal surfaces. Will have. Therefore, when the heat exchanger is installed on the heat absorbing portion of the thermoelectric element, the surrounding space can be cooled. On the contrary, when the heat exchanger is installed on the heat radiating portion, the temperature of the surrounding space can be increased.
  • thermoelectric element does not use a refrigerant using a conventional refrigeration cycle, there is no need for a driving device such as a compressor, and thus there is no operation noise, and the thermoelectric element has a feature of being very easy to install due to its small size.
  • the heat absorbing part of the thermoelectric element is disposed toward the space to be cooled, and the heat radiating part is disposed on the opposite side to adjust the magnitude and time of the current supplied to the thermoelectric element, thereby allowing the refrigerator to be refrigerated or frozen. It can be used for such products as.
  • thermoelectric element Domestic Application No. 2002-63368
  • a medical cooler using a thermoelectric semiconductor Kelvin Patent Publication No. 0697956
  • the cooling lipolysis machine inhales the treatment site to absorb the heat energy of the treatment site.
  • the suction and the discharge part may include a suction part for contacting the surgical part with a cooling part, a cooling part for cooling the surgical part, and a heat dissipation part for transferring heat energy transferred to the cooling part to the outside.
  • frostbite prevention pad must be used for the treatment site, but there was a problem that the user suffers from frostbite because the procedure is not performed using the frostbite prevention pad.
  • Korean Patent Office discloses a skin cooler using a thermoelectric device as disclosed in Korean Patent No. 10-2004-0034039, and Patent Document 10-0697956 as a Korean Patent Office registers a medical cooler using a thermoelectric semiconductor.
  • the present invention has been devised to solve the above problems, by integrating the cooling unit and suction unit and the heat dissipation unit to increase the heat dissipation efficiency, as well as the anti-frost-phase pad sensing unit for detecting the anti-frostbit pad is installed directly on the cooling plate
  • the object of the present invention is to provide a medical low temperature device that is compact and easy to carry and thus convenient to use.
  • the case is provided with a grill to have a flow of air and the control operation unit is located on one outer surface, and installed inside the case by the motor
  • a vacuum suction part configured to form pneumatic pressure, a suction part installed inside the case, and installed to communicate with the lower part of the vacuum suction part, and a cooling part installed on both sides of the suction part to deprive heat of the skin; It is installed to be disposed between the case and the vacuum suction unit and the suction unit, and includes a heat dissipation unit installed in contact with the cooling unit.
  • the case is located on the outer side of the vacuum suction portion
  • the carrier body and the left side of the silicone pad is installed on the outer surface
  • the right body formed with a control operation portion mounting groove so as to protrude the control operation portion located on the outside of the vacuum suction portion
  • the cooling unit is installed to protrude to the inner surface of the suction unit, and has an insulating surface plated to be insulated from the outer surface, and an in-phase preventing pad detecting unit, which is an energizing surface from which the insulating surface is removed on one side of the insulating surface. And a pair of cooling panels and thermoelectric elements connected to the cooling panels to discharge heat to the heat dissipation unit.
  • the heat dissipation unit may include: a heat block configured to receive heat from the cooling unit; a heat dissipation fin configured to receive heat from the heat block; and a cooling fan fixed to an outer surface of the heat dissipation fin to discharge heat from the heat dissipation fin to the outside. And a heat pipe connecting the heat block and the heat dissipation fins to transfer heat from the heat block to the heat dissipation fins.
  • the in-phase prevention pad detection unit is characterized in that formed on the vacuum suction side.
  • the cooling unit, the suction unit, and the heat dissipation unit are integrated to increase the heat dissipation efficiency, as well as miniaturization, making it easy to carry and thus the convenience of use.
  • the frostbite prevention pad detection unit for detecting the frostbite prevention pad is installed directly on the cooling plate has the effect of preventing the user's frostbite.
  • FIG. 1 is a perspective view of a medical cryostat according to an embodiment of the present invention
  • FIG. 1 is a front view of FIG. 1
  • FIG. 3 is a right side view of FIG. 1;
  • FIG. 4 and 5 are an exploded perspective view of FIG.
  • FIG. 6 is a cross-sectional view taken along the line A-A of FIG.
  • FIG. 7 is a cross-sectional view taken along the line B-B of FIG.
  • FIG. 8 is a cross-sectional view taken along the line C-C in FIG.
  • the medical cryocooler 1000 is provided with a grill to have a flow of air, and a case 1100 in which the control operation unit 1600 is located at one outer surface.
  • a suction unit 1300 installed inside the case to form a vacuum pressure by a motor or a pump, and a suction unit 1300 installed inside the case and communicating with a lower portion of the vacuum suction unit.
  • a cooling unit 1400 installed on both sides of the suction unit to deprive heat of the skin, and disposed between the case and the vacuum suction unit and the suction unit, and being in contact with the cooling unit to heat the case. It includes a left and right heat dissipation unit 1500 installed to discharge in one direction.
  • the vacuum suction unit 1200 is operated.
  • a vacuum is generated in the suction unit 1300, and the vacuum sucks the surgical site in close contact with the suction unit 1300, and the surgical site is in close contact with the cooling unit 1400 to take heat from the surgical site to dissipate heat.
  • the heat is emitted to the 1500, and at this time, the cooled treatment area in contact with the cooling unit 1400 causes the fat to be decomposed.
  • the case 1100 is located on the outer side of the vacuum suction unit 1200, the carrier ring 1160 and the silicon pad 1170 is provided on the outer surface of the left body case 1110 having an air flow path (1111).
  • a right body case 1120 having an air flow path 1121 and a control manipulator mounting groove 1122 formed so that the control manipulator 1600 protrudes while being positioned outside the vacuum suction unit.
  • a cover 1130 installed at an upper portion of the right body case and having an air flow path 1131, and first and second grills 1140 installed at the sides of the left body case and the right body case to form an air passage. , 1150).
  • the cooling unit 1400 is installed to protrude to the inner surface of the suction unit 1300, and has an insulating surface 1411 plated to be insulated from the outer surface, and an insulating surface is removed from one side of the insulating surface.
  • a pair of cooling panels 1410 having an in-phase preventing pad detecting unit 1412 that is an energized surface, and a thermoelectric element 1420 connected to the cooling panels to discharge heat to the heat radiating unit.
  • the suction unit 1300 when the suction unit 1300 is placed on the surgical site without mounting the anti-frostbite pad on the suction unit 1300, the surgical site directly contacts the cooling panel 1410, thereby causing frostbite.
  • the frostbite prevention pad detection unit 1412 is not energized so that the vacuum suction unit 1200 does not operate so that the control operation unit 1600 is configured to cause frostbite around the circumference. To prevent it.
  • the anti-frost pad is mounted on both sides of the anti-frost pad detection unit 1412 of the cooling panel 1410 installed inside the suction unit 1300 so that both ends are in contact with the suction unit 1300 at the surgical site to control the control unit (
  • the liquid deposited on the frostbite prevention pad acts as a conductor and operates by energizing the frostbite prevention pad detection unit 1412 of both cooling panels 1410, so that the procedure is operated without using the frostbite prevention pad.
  • the in-phase prevention pad detection unit 1412 is used as a sensing unit for the detection of electricity by removing the insulating surface, so that the cooling panel 1410 is used as a sensor instead of a separate sensor, so as to ensure the safety of consumers and manufacture. In terms of cost reduction, productivity is improved.
  • the heat dissipation unit 1500 may include a heat block 1510 that receives heat from the cooling unit, a heat dissipation fin 1520 that receives heat from the heat block, and a heat dissipation fin that is fixed to an outer surface of the heat dissipation fin.
  • the cooling fan 1530 is installed to discharge the heat of the outside and the heat pipe 1540 connected to the heat block and the heat radiation fins to transfer heat from the heat block to the heat radiation fins integrally.
  • the heat block 1510 is connected to the thermoelectric element 1420 of the cooling unit 1400 receives heat and transfers the heat to the heat dissipation fin 1520 through the heat pipe 1540, and the two heat dissipation units 1500
  • Each of the cooling fan 1530 provided at the) is rotated in one direction so that the heat of each of the heat dissipation fins 1520 can be easily discharged to the outside, as well as the heat block 1510 and the heat dissipation fins.
  • the 1520 and the cooling fan 1530 and the heat pipe 1540 may be integrated to reduce the size of the device, thereby reducing the restriction on the time and place of the procedure, thereby enabling the use of the medical cryostat.
  • the in-phase prevention pad detection unit 1412 is formed on the vacuum suction side, it is prevented from being energized by the surgical site to prevent a malfunction occurs.

Abstract

La présente invention concerne un dispositif de cryothérapie et, plus précisément, un dispositif de cryothérapie présentant une partie de refroidissement, une partie d'aspiration et une partie de rayonnement de chaleur intégralement fournies, ce qui permet d'améliorer l'efficacité de rayonnement de chaleur, et doté d'une partie de détection de tampon de prévention de gelure directement installée sur une plaque de refroidissement de façon à détecter un tampon de prévention de gelure de sorte que le dispositif de cryothérapie puisse non seulement empêcher la formation de gelure pour l'utilisateur, mais soit également compact, facile à transporter et pratique à utiliser. Le dispositif de cryothérapie (1000), selon la présente invention, est caractérisé en ce qu'il comprend : un boîtier (1100) ayant un grillage disposé de façon à présenter un écoulement d'air et étant doté d'une partie de commande/manipulation (1600) positionnée sur la surface externe d'un de ses côtés; une partie d'aspiration à vide (1200) installée à l'intérieur du boîtier de façon à former une pression de vide par un moteur ou une pompe; une partie d'aspiration (1300) installée à l'intérieur du boîtier de façon à communiquer avec la partie inférieure de la partie d'aspiration à vide; des parties de refroidissement (1400) installées sur les deux surfaces latérales de l'intérieur de la partie d'aspiration, respectivement, de façon à absorber la chaleur de la peau; et une partie de rayonnement de chaleur (1500) installée et disposée parmi le boîtier, la partie d'aspiration à vide et la partie d'aspiration de façon à venir en contact avec la partie de refroidissement de sorte que la chaleur soit évacuée vers un côté du boîtier.
PCT/KR2016/013310 2016-03-15 2016-11-18 Dispositif de cryothérapie WO2017159959A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201680028126.7A CN107613914B (zh) 2016-03-15 2016-11-18 医用亚低温治疗仪

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020160030735A KR101794269B1 (ko) 2016-03-15 2016-03-15 의료용 저온기
KR10-2016-0030735 2016-03-15

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KR (1) KR101794269B1 (fr)
CN (1) CN107613914B (fr)
WO (1) WO2017159959A1 (fr)

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US10478633B2 (en) 2015-07-01 2019-11-19 Btl Medical Technologies S.R.O. Aesthetic method of biological structure treatment by magnetic field
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US10695576B2 (en) 2015-07-01 2020-06-30 Btl Medical Technologies S.R.O. Aesthetic method of biological structure treatment by magnetic field
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US10709895B2 (en) 2016-05-10 2020-07-14 Btl Medical Technologies S.R.O. Aesthetic method of biological structure treatment by magnetic field
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US11679270B2 (en) 2016-07-01 2023-06-20 Btl Medical Solutions A.S. Aesthetic method of biological structure treatment by magnetic field
US11266852B2 (en) 2016-07-01 2022-03-08 Btl Healthcare Technologies A.S. Aesthetic method of biological structure treatment by magnetic field
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RU2665143C1 (ru) * 2017-10-26 2018-08-28 Федеральное государственное бюджетное образовательное учреждение высшего образования "Московский авиационный институт (национальный исследовательский университет)" Устройство для общей воздушной криотерапии
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US11491329B2 (en) 2020-05-04 2022-11-08 Btl Healthcare Technologies A.S. Device and method for unattended treatment of a patient
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US11878167B2 (en) 2020-05-04 2024-01-23 Btl Healthcare Technologies A.S. Device and method for unattended treatment of a patient
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CN107613914A (zh) 2018-01-19
KR101794269B1 (ko) 2017-11-08
KR20170107603A (ko) 2017-09-26

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