WO2022001357A1 - 减脂治疗装置及冷冻减脂仪 - Google Patents

减脂治疗装置及冷冻减脂仪 Download PDF

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Publication number
WO2022001357A1
WO2022001357A1 PCT/CN2021/091766 CN2021091766W WO2022001357A1 WO 2022001357 A1 WO2022001357 A1 WO 2022001357A1 CN 2021091766 W CN2021091766 W CN 2021091766W WO 2022001357 A1 WO2022001357 A1 WO 2022001357A1
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Prior art keywords
groove
fat
negative pressure
treatment device
cooling
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PCT/CN2021/091766
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English (en)
French (fr)
Inventor
李洪远
黄楚波
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微创医美科技(嘉兴)有限公司
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Priority to US18/012,727 priority Critical patent/US20230255818A1/en
Priority to EP21832937.3A priority patent/EP4173602A4/en
Publication of WO2022001357A1 publication Critical patent/WO2022001357A1/zh

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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
    • A61F7/00Heating or cooling appliances for medical or therapeutic treatment of the human body
    • A61F7/02Compresses or poultices for effecting heating or cooling
    • 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
    • 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
    • A61F7/007Heating or cooling appliances for medical or therapeutic treatment of the human body characterised by electric heating
    • 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
    • A61B2018/00315Surgical instruments, devices or methods for transferring non-mechanical forms of energy to or from the body for treatment of particular body parts
    • A61B2018/00452Skin
    • A61B2018/00458Deeper parts of the skin, e.g. treatment of vascular disorders or port wine stains
    • A61B2018/00464Subcutaneous fat, e.g. liposuction, lipolysis
    • 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
    • A61B2018/0231Characteristics of handpieces or probes
    • A61B2018/0237Characteristics of handpieces or probes with a thermoelectric element in the probe for cooling purposes
    • 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
    • A61B2018/0231Characteristics of handpieces or probes
    • A61B2018/0237Characteristics of handpieces or probes with a thermoelectric element in the probe for cooling purposes
    • A61B2018/0243Characteristics of handpieces or probes with a thermoelectric element in the probe for cooling purposes cooling of the hot side of the junction, e.g. heat sink
    • A61B2018/025Characteristics of handpieces or probes with a thermoelectric element in the probe for cooling purposes cooling of the hot side of the junction, e.g. heat sink by circulating liquid
    • 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
    • A61B2018/0231Characteristics of handpieces or probes
    • A61B2018/0262Characteristics of handpieces or probes using a circulating cryogenic fluid
    • 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
    • A61F2007/0054Heating or cooling appliances for medical or therapeutic treatment of the human body with a closed fluid circuit, e.g. hot water
    • A61F2007/0056Heating or cooling appliances for medical or therapeutic treatment of the human body with a closed fluid circuit, e.g. hot water for cooling
    • 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
    • A61F7/02Compresses or poultices for effecting heating or cooling
    • A61F2007/0225Compresses or poultices for effecting heating or cooling connected to the body or a part thereof
    • A61F2007/0239Compresses or poultices for effecting heating or cooling connected to the body or a part thereof using vacuum
    • 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
    • A61F7/02Compresses or poultices for effecting heating or cooling
    • A61F2007/0282Compresses or poultices for effecting heating or cooling for particular medical treatments or effects
    • 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
    • A61F7/02Compresses or poultices for effecting heating or cooling
    • A61F2007/0282Compresses or poultices for effecting heating or cooling for particular medical treatments or effects
    • A61F2007/029Fat cell removal or destruction by non-ablative heat treatment

Definitions

  • the invention relates to the technical field of fat reduction, in particular to a fat reduction treatment device and a freezing fat reduction instrument.
  • the commonly used non-invasive fat reduction methods on the market mainly include: low-energy laser therapy (LLLT), radio frequency therapy (RF), high-energy focused ultrasound therapy (HIFU), and cryo-lipolysis.
  • LLLT low-energy laser therapy
  • RF radio frequency therapy
  • HIFU high-energy focused ultrasound therapy
  • cryo-lipolysis utilizes the fact that adipose tissue is more sensitive to low temperature.
  • adipocytes appear crystal necrosis, which induces an inflammatory response, and is eventually phagocytosed and metabolized by macrophages to achieve the effect of reducing fat.
  • Clinical data show that after treatment with cryo-lipolysis, the treatment effect is good and customer satisfaction is good.
  • the method of cryolipolysis is significantly better than several other methods of non-invasive fat loss.
  • the existing fat-reducing products have deficiencies when using the freezing fat-dissolving method to reduce fat:
  • the size of the treatment head is small, especially for the treatment of the waist and abdomen, because the treatment area of the waist and abdomen is relatively large, and the fat reduction of the waist and abdomen needs to be uniform, while the treatment head with a smaller size needs to be repeated many times, each time The fat reduction time of different parts must be consistent to achieve treatment, resulting in cumbersome treatment operations and low treatment efficiency.
  • the purpose of the present invention is to provide a fat-reducing treatment device and a cryogenic fat-reducing apparatus to solve the problems of small size of the existing treatment head, inability to apply different contour curvatures, low treatment efficiency, and poor customer experience.
  • the present invention provides a fat reduction treatment device, comprising: at least two groove cups; the groove cups have a groove cavity and a connecting end, and at least two groove cups pass through the groove cups.
  • the connecting ends are rotatably connected around a first axis, and the groove cavities of at least two of the groove cups are communicated through the connecting ends; the first axis is arranged along a first direction, and the groove cavities
  • the body extends in the second direction and opens to the third direction.
  • the fat reduction treatment device includes a flexible sealing member, and the flexible sealing member is respectively sealingly connected to the inner cavity walls of the two adjacent groove cups along the second direction.
  • the fat reduction treatment device further includes a pressing block, the pressing block is used to press the flexible sealing member and fix the flexible sealing member to the connecting end.
  • the shape of the pressing block is adapted to the shape of the flexible sealing member.
  • the fat reduction treatment device further includes a pin, the connecting end includes a pin hole, the pin is inserted into the pin holes of the two adjacent groove cups, and is connected to the first axis. coincide.
  • the groove cup includes at least one negative pressure hole, one end of the negative pressure hole is communicated with the groove cavity, and the other end is used for connecting with an external negative pressure providing end.
  • the groove cup further includes at least one negative pressure groove, and the negative pressure groove is opened on the cavity wall of the groove cavity and communicated with the negative pressure hole.
  • the negative pressure groove is extended along the second direction.
  • the shape of the cross section of the groove cavity is an arc, and/or the shape of the longitudinal section of the groove cavity is an arc.
  • the present invention provides a freezing fat-reducing apparatus, which includes a cooling supply component and the above-mentioned fat-reducing treatment device; the cooling-supplying component is arranged on the body of the fat-reducing treatment device along a third direction. Backside of fluted cup.
  • the cooling supply component includes a cooling exchange component
  • the cooling exchange component includes a cooling exchange flow channel and a cooling circulation port unit
  • the cooling circulation port unit is connected to the cooling exchange flow channel.
  • the two ends of the cold energy exchange flow channel are used for the inflow and outflow of the refrigerant through the cold energy circulation port unit.
  • the cooling supply assembly further includes a sealing plate, and the sealing plate seals the cooling exchange flow channel; the cooling circulation port unit is disposed on the sealing plate.
  • the cooling supply component includes a semiconductor refrigerator.
  • the cryo-fat reduction apparatus further includes a negative pressure providing component
  • the fat reduction treatment device includes a negative pressure hole
  • the negative pressure providing component is connected to the negative pressure hole
  • the negative pressure providing component is used for A negative pressure is supplied to the negative pressure hole.
  • cryo-fat reduction apparatus further includes a cooling output component
  • the fat reduction treatment device further includes a cooling exchange component
  • the cooling output component is connected to the cooling exchange component
  • the cooling output The component is used to provide the refrigerated carrier refrigerant for the cold heat exchange component.
  • the fat-reducing treatment device includes at least two groove cups; the groove cup has a groove cavity and a connecting end, and at least two groove cups are provided.
  • the groove cups are rotatably connected around a first axis through the connecting end, and the groove cavities of at least two of the groove cups are communicated through the connecting end; the first axis is along a first direction
  • the groove cavity extends along the second direction and opens to the third direction.
  • At least two groove cavities rotate around the first axis, so that the groove cavities can adapt to the waist and abdomen with different contour curvatures, thereby improving the adaptability of the product, improving the treatment efficiency, enhancing the treatment effect, and improving the customer experience and satisfaction.
  • FIG. 1 is a schematic diagram of a fat reduction treatment device according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a groove cup of a fat-reducing treatment device according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of another groove cup of the fat reduction treatment device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a flexible seal according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a pressing block according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a connection relationship between a pin and a pin hole according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of a pin according to an embodiment of the present invention.
  • FIG. 8 is an exploded view of a cooling supply assembly according to an embodiment of the present invention.
  • FIG. 9 is a schematic diagram of an open state of a fat-reducing treatment device according to an embodiment of the present invention.
  • FIG. 10 is a schematic diagram of another open state of the fat reduction treatment device according to an embodiment of the present invention.
  • FIG. 11 is a schematic diagram of another angle of the fat reduction treatment device according to an embodiment of the present invention.
  • FIG. 12 is a partial schematic diagram of a fat reduction treatment device according to an embodiment of the present invention.
  • 200-cooling supply component 210-cooling exchange component, 211-cooling exchange channel, 212-cooling circulation port unit, 2121-liquid inlet, 2122-liquid outlet, 230-sealing plate, 231-sealing plate negative pressure hole;
  • the core of a fat-reducing treatment device and a freezing fat-reducing apparatus is: by setting at least two groove cups; the at least two groove cups are rotatably connected around a first axis, thereby achieving It can reduce fat in a large area and adapt to the waist and abdomen tissues of different contour curvatures. It is easy to operate, has high treatment efficiency and good customer experience.
  • Embodiments of the present invention provide a fat-reducing treatment device and a freezing fat-reducing apparatus.
  • the fat-reducing treatment device includes at least two grooved cups; the grooved cups have a grooved cavity and a connecting end, and at least two of the grooved cups.
  • the groove cups are rotatably connected around a first axis through the connecting end, and the groove cavities of at least two of the groove cups are communicated through the connecting end; the first axis is arranged along a first direction , the groove cavity extends along the second direction and opens to the third direction.
  • the groove cavities can accommodate more tissues in the waist and abdomen of the human body, thereby realizing the effect of large-area fat reduction, simplifying the operation steps and operation time, and improving the weight loss.
  • lipid efficiency At least two groove cavities rotate around the first axis, so that the groove cavities can adapt to the waist and abdomen with different contour curvatures, thereby improving the adaptability of the product, improving the treatment efficiency, enhancing the treatment effect, and improving the customer experience and satisfaction.
  • the fat reduction treatment device includes a flexible seal, so that the cavities of the two groove cavities form a sealed cavity, thereby improving the cooling effect.
  • the fat-reducing treatment device further includes a pin, the connecting end includes a pin hole, and the pin is penetrated in the pin hole to limit the pulling of the part connecting the flexible seal and the connecting end, and prevent the flexible seal from being deformed during the deformation process. It can withstand high tension in the middle, thereby avoiding the failure of the groove cup seal. More preferably, the groove cup includes at least one negative pressure hole and at least one negative pressure groove.
  • the setting of the negative pressure hole enables the sealed space between the groove cavity and the human tissue to be pumped to form a negative pressure, so that the human tissue and the concave
  • the groove cavity can fit better, thereby improving the efficiency of freezing and fat reduction;
  • the setting of the negative pressure groove further improves the adsorption effect of the groove cavity on human tissue, strengthens the effect of negative pressure, and improves the The effect of freezing fat loss.
  • FIG. 1 is a schematic diagram of a fat-reducing treatment device according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a groove cup of the fat-reducing treatment device according to an embodiment of the present invention
  • FIG. 3 is a fat-reducing treatment device according to an embodiment of the present invention.
  • Figure 4 is a schematic diagram of a flexible seal according to an embodiment of the present invention
  • Figure 5 is a schematic diagram of a pressing block according to an embodiment of the present invention
  • Figure 6 is a pin and a pin according to an embodiment of the present invention.
  • Figure 7 is a schematic diagram of a pin according to an embodiment of the present invention
  • Figure 8 is an exploded view of a cooling supply assembly according to an embodiment of the present invention;
  • FIG. 1 is a schematic diagram of a fat-reducing treatment device according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a groove cup of the fat-reducing treatment device according to an embodiment of the present invention
  • FIG. 10 is a schematic diagram of another open state of the fat reduction treatment device according to an embodiment of the present invention
  • FIG. 11 is a schematic diagram of another angle of the fat reduction treatment device according to an embodiment of the present invention
  • 12 is a partial schematic diagram of a fat-reducing treatment device according to an embodiment of the present invention.
  • the fat reduction treatment device includes at least two groove cups 100 .
  • each of the groove cups 100 has a groove cavity 110 and a connecting end 120 .
  • the groove cavity 110 extends along the second direction and opens toward the third direction, so that the groove cavity 110 can be in contact with the tissue in the waist and abdomen of the human body that needs to be reduced in fat.
  • the purpose of extending the groove cavity 110 along the second direction is to enable the groove cup 100 to be arranged in the circumferential direction of the waist and abdomen tissue of the human body, thereby being able to contact the waist and abdomen tissue of the human body in a larger area.
  • the purpose of opening the groove cavity 110 along the third direction is to enable the groove cup 100 to receive the insertion of the human waist and abdomen tissue in the third open direction.
  • the groove cavity 110 is, for example, a tile-shaped structure, and the length direction of the tile-shaped structure is elongated and elongated along the second direction.
  • the cross-section of the tile-shaped structure of the groove cavity 110 is preferably arc-shaped, the structure located inside the arc is the inner side of the tile, and the structure located outside the arc is the back side of the tile, and the inner side faces the inner side of the tile.
  • the direction and the direction of the back side deviating are the third direction, and the cavity formed on the inner side of the tile shape is used for accommodating the tissue that needs to be reduced in fat in the waist and abdomen of the human body.
  • the cavity wall of the groove cup 100 located on the inner side is defined as the inner cavity wall.
  • the shape of the longitudinal section of the tile-shaped structure of the groove cavity 110 is, for example, an arc, and the interior of the arc of the longitudinal section is in the same direction as the interior of the arc of the cross-section.
  • the outer portion of the arc of the longitudinal section is consistent with the direction in which the outer portion of the arc of the cross-section faces, that is, it can be understood that the arc of the longitudinal section is open toward the third direction.
  • the curvature of the cross-sectional arc of the tile-shaped structure may gradually change as the second direction extends, for example, the curvature gradually decreases along the second direction, and the width of the cross-sectional arc of the tile-shaped structure increases with the first direction.
  • the extension of the two directions gradually changes, for example, the width gradually changes from large to small along the second direction.
  • the cross section of the groove cavity 110 can also be other structures, such as semicircle, wave shape, multiple continuous groove shape, trapezoid or linear structure, and of course it can also be a combination of various structures, such as , in the form of a combination of wave and arc, a plurality of wave structures are also arranged on the arc surface, so that the contact surface between the groove cavity 110 and the human tissue is larger, thereby improving the fat reduction effect.
  • the longitudinal section of the groove cavity 110 may also have other structures, such as a wave shape or a straight shape.
  • the connecting end 120 includes, for example, a first buckle and a second buckle, the first buckle has a groove along the first axis A, the second buckle has a protrusion along the first axis A, and the concave
  • the grooves and the protrusions can be matched and connected with each other, so that the at least two groove cups 100 can be rotatably connected around the first axis A through the connecting end 120 .
  • the purpose of the at least two groove cups 100 being rotatable around the first axis A through the connecting end 120 is to enable the at least two groove cups 100 to rotate according to the curvature of the waist and abdomen of the human body, so as to make the at least two groove cups 100 rotate.
  • the grooved cup 100 can adapt to the waist and abdomen of the human body with different curvatures.
  • the connecting end 120 may also be in other forms, as long as the two groove cups 100 can be connected rotatably around the first axis A through the connecting end 120 .
  • the first axis A is arranged along a first direction, and the first direction is substantially consistent with the width direction of the groove cavity 110 , for example, the width of the groove cavity 110 is set up and down (ie, as shown in FIG. 1
  • the first direction refers to the direction from the top to the bottom of the groove cavity 110 , and the first direction is not required to be completely consistent with the width direction of the groove cavity 110 , which is the same as the groove cavity 110 .
  • the at least two groove cups 100 can set the first axis along the first direction, so that the setting direction of the first axis can be specified.
  • the number of the groove cups 100 is two, each groove cup 100 has a connecting end 120 , the connecting ends 120 of the two groove cups 100 are connected to each other, and the two groove cups 100 Rotate along the first axis A.
  • the number of the groove cups 100 may be multiple, and the arrangement of multiple groove cups 100 can improve the curvature adaptation effect, such as three (not shown), three groove cups 100 Connected in sequence, the groove cups 100 on both sides each have a connecting end 120, and the two ends of the groove cup 100 in the middle position have connecting ends 120.
  • the three groove cups 100 can be Rotation of an axis.
  • the directions of the two first axes can both be set along the first direction, or can be set along different directions, and the direction of the first axis between each two connecting ends can be set according to the actual situation. Set or adjust according to the situation. In this way, the fat reduction treatment device can be adapted to the waist and abdomen with different contours and curvatures, thereby improving the treatment efficiency, enhancing the treatment effect, and improving customer experience and satisfaction.
  • At least two groove cups 100 are connected by connecting ends 120 , so that the groove cavities 110 of at least two groove cups 100 are connected through the connecting ends 120 .
  • the two groove cavities 110 of the tile-shaped structure are connected to each other through the connecting ends 120 to form a communicating cavity.
  • the structures of the two groove cavities 110 may be different, and may be a combination of the above-mentioned structures of the two groove cavities 110 .
  • At least two connected groove cavities 110 can accommodate the waist and abdomen tissue with a relatively large treatment area, and at the same time, the waist and abdomen tissue can achieve fat reduction, thereby avoiding the problem of repeated operations using a treatment head with a smaller size , simplifies the treatment operation, improves the adaptability of the product, and improves the treatment efficiency.
  • the fat reduction treatment device includes at least two groove cups 100; each groove cup 100 has a groove cavity 110 and a connecting end 120, at least two of which are The groove cups 100 are rotatably connected around the first axis A through the connecting end 120, and the groove cavities 110 of at least two groove cups 100 are communicated through the connecting end 120; the first An axis A is disposed along the first direction, and the groove cavity 110 extends along the second direction and opens to the third direction.
  • the groove cavities can accommodate more tissues in the waist and abdomen of the human body, thereby realizing the effect of large-area fat reduction, simplifying the operation steps and operation time, and improving the weight loss.
  • lipid efficiency At least two groove cavities rotate around the first axis, so that the groove cavities can adapt to the waist and abdomen with different contour curvatures, thereby improving the treatment efficiency, enhancing the treatment effect, and improving customer experience and satisfaction.
  • the fat reduction treatment device includes a flexible sealing member 300 , and the flexible sealing member 300 is respectively connected to two adjacent groove cups along the second direction B.
  • the inner cavity walls of the 100 are sealed and connected, so that the cavities of the two groove cavities 110 form a sealed cavity, thereby improving the cooling effect.
  • the position where the flexible seal 300 is connected to the groove cup 100 is located at one end of the connecting end 120 .
  • the flexible sealing member 300 may be directly injection-molded on the groove cavity 110 , or connected to the groove cavity 110 by welding, or connected by screws.
  • the flexible sealing member 300 is preferably made of plastic material.
  • the flexible sealing member 300 is made of an elastomer material, so that the groove cavity 110 can be bent along the first axis A under the condition of the flexible sealing member 300 .
  • the flexible sealing member 300 is made of silicone rubber, which has good elastic properties and long service life.
  • those skilled in the art may select other materials according to actual design requirements or bending designs, which will not be repeated here in the art.
  • the fat-reducing treatment device further includes a pressure block 400 .
  • the material of the pressure block 400 may be metal or plastic.
  • the shape of the pressure block 400 is compatible with the flexible seal.
  • the shape of the piece 300 is adapted.
  • the shape of the pressure block 400 is also consistent with the structure of the groove cavity 110 along the width direction.
  • the cross section of the groove cavity 110 is arc-shaped, and the pressure block is also The arc-shaped arrangement enables the pressure block 400 to be arranged along the width direction of the groove cavity 110, and the pressure block 400 is connected with the flexible seal 300 by interference, thereby pressing the flexible seal 300 and releasing
  • the flexible sealing member 300 is fixed to the connecting end 120 .
  • the structure of the pressing block 400 can also be a set of small squares, and a plurality of small squares are distributed at the positions that need to be sealed.
  • the pressing block 400 connects the flexible seal 300 with the inner cavity of the groove cup 100 The tight fit of the walls prevents the flexible seal 300 from protruding to the outer edge 111 of the groove cavity 110 .
  • the operator makes the outer edge 111 of the groove cavity 110 and the human tissue adhere to the skin, that is, a sealed cavity with good sealing performance can be formed.
  • the setting of the pressing block 400 prevents the flexible seal 300 from protruding to the outside of the groove cavity 110, that is, prevents the flexible seal 300 from leaking outside the outer edge.
  • the flexible sealing member 300 is prevented from directly contacting with human tissue, thereby preventing a gap between the outer edge 111 of the groove cavity 110 and the human tissue, thereby improving the sealing effect.
  • the pressing block 400 and the flexible sealing member 300 are combined together by, for example, an injection molding process, or are combined together by means of adhesive bonding, or a design in which the pressing block 400 and the flexible sealing member 300 are integrated in other forms.
  • the pressure block 400 , the flexible seal 300 and the connecting end 120 are connected together by screws 500 , for example, the pressure block 400 and the flexible seal 300 both have screw holes 510 , and the screws 500 are connected through the screw holes 510 .
  • the fat reduction treatment device further includes a pin 600
  • the connecting end 120 includes a pin hole 610
  • the pin 600 penetrates through two adjacent groove cups 100 in the pin hole 610, and coincides with the first axis A.
  • the pin 600 is made of metal material, for example, and the pin 600 is connected to the pin hole 610, which limits the circumferential freedom of the groove cup 100 along the first axis A, and limits the part of the flexible seal 300 connected to the connecting end 120 from being pulled
  • the flexible sealing member 300 is prevented from being subjected to large tension during the deformation process, so as to avoid the gap between the flexible sealing member 300 and the groove cup 100 being exposed, thereby preventing the sealing failure of the groove cup 100 .
  • the pin 600 may also be made of other materials, such as plastic.
  • the two groove cups 100 can be rotated along the first axis A under the action of the flexible seal 300 and the pin 600, and are arranged at different angles.
  • two states of the two groove cups 100 are shown in FIG. 9 and FIG. 10 .
  • FIG. 9 the two groove cups 100 are rotated along the first axis A and present a relatively large angle.
  • the fat treatment device can accommodate the human waist and abdomen tissue with a large contour curvature;
  • FIG. 10 shows a state in which the two groove cups 100 are rotated along the first axis A and present a relatively small angle, and the fat reduction treatment device in this state can accommodate the contour curvature. Smaller human waist and abdomen tissue.
  • the groove cup 100 includes at least one negative pressure hole 130 , one end of the negative pressure hole 130 is communicated with the groove cavity 110 , and the other end is used to communicate with the outside
  • the negative pressure supply end is connected to the negative pressure supply end, and the negative pressure supply end is used to provide negative pressure to the negative pressure hole 130, so as to pump air into the sealed space between the groove cavity 110 and the human tissue to form a negative pressure, so that the human tissue and the groove cavity
  • the body 110 fits better and improves the efficiency of freezing and fat reduction.
  • the groove cup 100 includes a negative pressure hole 130, and the shape of the negative pressure hole 130 is an elliptical cylinder.
  • the number of negative pressure holes 130 of the groove cup 100 may also be two or more.
  • Those skilled in the art can set the number of the negative pressure holes 130 and the specific positions of the negative pressure holes 130 according to the actual pumping situation or in combination with the distribution of human tissue.
  • the cross-sectional shape of the negative pressure hole 130 can be a circle, an ellipse, a rectangle, a trapezoid, a polygon, a five-pointed star or a plum petal shape, etc.; the vertical cross-sectional shape of the negative pressure hole 130 can be a structure with a constant cross-section. , it can also be a variable section setting.
  • the groove cup 100 further includes at least one negative pressure groove 140 , the negative pressure groove 140 is opened on the cavity wall of the groove cavity 110 and is connected with the negative pressure groove 140 The pressure holes 130 are communicated.
  • the negative pressure grooves 140 By adding the negative pressure grooves 140 , it is convenient to increase the efficiency of the negative air suction and increase the adsorption effect of the groove cavity 110 on human tissue.
  • Each of the negative pressure grooves 140 communicates with at least one of the negative pressure holes 130 .
  • the number of negative pressure grooves 140 is one, and one negative pressure groove 140 communicates with one negative pressure hole 130 .
  • the negative pressure groove 140 is preferably extended along the second direction, so that the negative pressure groove 140 is connected to
  • the extending directions of the groove cavities 110 are the same, so as to achieve a uniform negative pressure for pumping.
  • the number of the negative pressure grooves 140 may be two or more, and the negative pressure grooves 140 may be extended in any direction along the cavity wall of the groove cavity 110 , for example, the negative pressure grooves 140
  • the arc-shaped structure along the width direction of the groove cavity 110 is extended and disposed, or disposed in a direction forming a certain angle with the second direction.
  • a plurality of negative pressure grooves 140 can be connected to the same negative pressure hole 130 , or one negative pressure groove 140 can be connected to two or more different negative pressure holes 130 , or a plurality of negative pressure grooves 140 can be connected to one negative pressure hole 130 respectively. etc., the present invention is not limited thereto.
  • the cross section of the negative pressure groove 140 may be semicircular, semielliptical, triangular, rectangular or other structures.
  • the longitudinal section of the negative pressure groove 140 may be a variable-section setting or a constant-section setting.
  • the present invention also provides a freezing fat-reducing apparatus, including the above-mentioned fat-reducing treatment device and a cooling supply assembly 200 .
  • the cooling supply component 200 is used to provide cooling to the groove cavity 110, thereby achieving the effect of freezing and fat reduction.
  • the cooling supply assembly 200 is disposed on the back side of the groove cup 100 along the third direction. The back side is as described above and will not be repeated here.
  • the freezing fat reduction apparatus has the beneficial effects brought by the fat reduction treatment device, which will not be repeated here.
  • the cooling supply assembly 200 includes a cooling exchange assembly 210
  • the cooling exchange assembly 210 includes a cooling exchange flow channel 211 and a cooling circulation port unit 212
  • the refrigeration circulation port unit 212 is communicated with both ends of the refrigeration exchange flow channel 211
  • the cold energy exchange flow channel 211 is used for the inflow and outflow of the carrier refrigerant through the refrigeration circulation port unit 212 .
  • the refrigerant is, for example, a liquid, such as a low-temperature (eg -20°C) liquid (eg, ethylene glycol), and the refrigerant flows in the cold heat exchange channel 211 to cool the cold heat exchange channel 211 to a target temperature .
  • the cold exchange flow channel 211 is, for example, a meandering flow channel, which is used for the flow of the refrigerant.
  • the cooling medium flows inside, and the cooling medium transfers the cooling energy to the cooling energy exchange channel 211, and the cooling energy exchange channel 211 then transfers the cooling energy to the groove cavity 110, thereby cooling the human tissue and realizing the effect of freezing and fat reduction.
  • the number of the cooling exchange flow passages 211 is one, and is connected to a group of cooling circulation port units 212 for entering and exiting the refrigerant.
  • the cooling exchange flow channel 211 may also be a flow channel of other structures, and those skilled in the art can adapt the shape, structure, arrangement and quantity of the flow channels according to actual needs.
  • the number of cooling exchange flow channels 211 may also be two, and they are respectively connected to a group of cooling circulation port units 212 for entering and exiting the refrigerant.
  • the cooling circulation port unit 212 includes, for example, a liquid inlet 2121 and a liquid outlet 2122.
  • the liquid inlet 2121 is used to allow the refrigerant to flow into the cooling exchange channel 211, and the liquid outlet 2122 is used to allow the refrigerant to flow out.
  • the cold exchange flow channel 211 so that the refrigerant can be circulated in the cold exchange flow channel 211.
  • the refrigerant exchange channel 211 has two ends, one end is used for the inflow of the refrigerant, and the other end is used for the outflow of the refrigerant.
  • the liquid inlet 2121 communicates with one end of the cooling exchange flow channel, and the liquid outlet 2122 communicates with the other end of the cooling exchange flow channel.
  • the cooling circulation port unit 212 is not limited to the liquid inlet 2121 and the liquid outlet 2122, but may also be a combined device for liquid inlet or outlet, or the like.
  • the cooling supply assembly 200 further includes a sealing plate 230 , the sealing plate 230 seals the cooling exchange flow channel 211 ; the cooling circulation port unit 220 is disposed at on the sealing plate 230 .
  • the sealing plate 230 is, for example, a plate structure, which is used to seal the cooling exchange flow channel 211 to prevent the coolant from splashing out of the cooling exchange flow channel 211, so as to ensure that the cooling medium can be used in the cooling exchange flow. Orderly flow in the flow channel 211 .
  • a cooling circulation port unit 220 is provided on the sealing plate 230 , for example, a liquid inlet 2121 and a liquid outlet 2122 are provided on the sealing plate 230 assembly.
  • the sealing plate 230 is further provided with a sealing plate negative pressure hole 231 , and the negative pressure hole 130 is penetrated through the sealing plate negative pressure hole 231 , so that the negative pressure hole 130 can be connected to the external negative pressure supply end.
  • the cooling supply assembly 200 includes a semiconductor refrigerator.
  • semiconductor refrigerators use the thermo-electric effect of semiconductors to produce cooling devices, connect two different metals with conductors, and connect to direct current, the temperature at one junction will decrease, and the temperature at the other junction will increase.
  • the semiconductor refrigerator has the characteristics of no noise, no vibration, no refrigerant, etc., and its work is reliable, easy to operate, and can adjust the cooling capacity.
  • the cryo-fat reduction apparatus further includes a negative pressure providing component
  • the fat reduction treatment device includes a negative pressure hole 130
  • the negative pressure providing component is connected with the negative pressure hole
  • the negative pressure providing component is used for Negative pressure is supplied to the negative pressure hole 130 .
  • the negative pressure providing component is, for example, a negative pressure air extraction machine, and the air extraction pipeline of the negative pressure air extraction machine is connected to the negative pressure hole 130 for negative pressure air extraction.
  • the negative pressure supply component can also be a large negative pressure system.
  • the negative pressure system can be connected in parallel with multiple sets of negative pressure exhaust pipes. When using it, the staff can use a set of negative pressure exhaust pipes in the negative pressure system. .
  • the cryo-fat reduction apparatus further includes a cooling output component (not shown), and the fat-reducing treatment device further includes a cooling exchange component 210, the cooling output component and the cooling exchange component 210.
  • the cold output component is used to provide the refrigerated carrier refrigerant for the cold exchange component 210 .
  • the refrigerant output assembly is used to cool the refrigerant, and the refrigerant output assembly includes, for example, a refrigerant output port, a refrigerant input port and a pump body, the refrigerant output port and the liquid inlet 2121 of the refrigerant exchange assembly 210. Connected, the refrigerant input port is connected to the liquid outlet 2122 of the cooling exchange component 210, and the refrigerant circulates between the cooling exchange component 210 and the cooling output component under the action of the pump body.
  • the groove cavity 110 of the cryo-fat reduction apparatus is installed at the position of the waist and abdomen tissue of the human body, so that a closed space is formed between the groove cavity 110 and the waist and abdomen tissue of the human body.
  • the two groove cavities 110 are rotated along the first axis A, so that a large included angle is formed between the two groove cavities 110 to adapt to the waist with a large contour curvature.
  • the negative pressure providing component provides negative pressure to the negative pressure hole 130 .
  • the negative pressure air extraction machine is turned on, and the negative pressure air extraction machine draws air into the airtight space between the groove cavity 110 and the waist and abdomen tissue of the human body, and then tightly adheres the waist and abdomen tissue of the human body to the groove cavity 110 .
  • the cooling capacity output assembly provides the refrigerated carrier refrigerant to the cooling capacity exchange assembly 210, and the refrigerant flows in from the liquid inlet 2121, transfers the cooling capacity to the cooling capacity exchange channel 211, and then flows out from the liquid outlet 2122, During this process, keep the cold temperature constant, perform the cooling treatment and keep it for a certain period of time.
  • the cooling output component is stopped to provide cooling
  • the negative pressure supply component is stopped to provide negative pressure
  • the groove cup 100 is removed, that is, the entire treatment process is completed.
  • the fat-reducing treatment device includes at least two grooved cups; the grooved cups have a grooved cavity and a connecting end , at least two of the groove cups are rotatably connected around the first axis through the connecting end, and the groove cavities of at least two of the groove cups are communicated through the connecting end; the first The axis is arranged along the first direction, and the groove cavity extends along the second direction and opens to the third direction.
  • the groove cavities can accommodate more tissues in the waist and abdomen of the human body, thereby realizing the effect of large-area fat reduction, simplifying the operation steps and operation time, and improving the weight loss.
  • At least two groove cavities rotate around the first axis, so that the groove cavities can adapt to the waist and abdomen with different contour curvatures, thereby improving the adaptability of the product, improving the treatment efficiency, enhancing the treatment effect, and improving the customer experience and satisfaction.

Abstract

一种减脂治疗装置及冷冻减脂仪,减脂治疗装置包括至少两个凹槽杯(100);凹槽杯(100)具有凹槽腔体(110)以及连接端(120),至少两个凹槽杯(100)通过连接端(120)围绕第一轴线(A)可转动地连接,至少两个凹槽杯(100)的凹槽腔体(110)通过连接端(120)相连通;第一轴线(A)沿第一方向设置,凹槽腔体(110)沿第二方向(B)延伸,并向第三方向开放。如此设置,使得凹槽腔体(110)可以容置人体腰腹部更多的组织,使得凹槽腔体(110)可以适应不同轮廓曲率的腰腹部,进而实现大面积减脂的效果,简化了操作步骤以及操作时间,提高了减脂效率,增强了减脂效果,提升了客户感受以及满意度。

Description

减脂治疗装置及冷冻减脂仪 技术领域
本发明涉及减脂技术领域,特别涉及一种减脂治疗装置及冷冻减脂仪。
背景技术
随着生活水平的提高,肥胖问题已成为困扰现代社会人群的一大难题。肥胖一方面影响人对美的要求,尤其是女性对美的要求更高;另一方面会带来一些健康问题,比如高血压、心脏病、糖尿病等。传统的减脂方法主要采用手术,比如腹部整形术和抽脂术等有创减脂。尽管这些方法效果明显,然而人们对于手术的恐惧在很大程度上限制了传统的减脂方法的实施,越来越多的人更愿意选择无创减脂。
目前,市场上常用的无创减脂方法主要包括:低能量激光疗法(LLLT)、射频疗法(RF)、高能聚焦超声疗法(HIFU)、冷冻溶脂。其中冷冻溶脂的方法是利用了脂肪组织对低温更敏感,低于10℃时脂肪细胞出现结晶坏死,诱发炎症反应,最终被巨噬细胞吞噬代谢从而达到减脂的效果。临床数据显示,采用冷冻溶脂的方法治疗后,治疗效果良好,客户满意度好。冷冻溶脂的方法明显优于其他几种无创减脂的方法。但是,现有的减脂产品采用冷冻溶脂方法进行减脂时存在不足之处:
1、治疗头规格小,尤其是针对腰腹治疗时,由于腰腹部位的治疗面积比较大,且腰腹部的减脂需要均匀一致,而规格较小的治疗头需要重复多次操作、每次不同部位的减脂时间要一致等才能实现治疗,导致治疗操作繁琐、治疗效率低下。
2、治疗头在针对腰腹部减脂时,由于个体腰腹轮廓曲率存在差异,这样的治疗头无法适用不同的轮廓曲率的腰腹部,进而使得治疗效果不佳,导致治疗效率低下,客户感受不佳。
因此,开发出一种能够实现大面积减脂以及能够应用于不同轮廓的腰腹部的减脂治疗装置及冷冻减脂仪,进而减少复杂的操作、提高治疗效率,提升客户感受,已成为亟待解决的问题。
发明内容
本发明的目的在于提供一种减脂治疗装置及冷冻减脂仪,以解决现有治疗头尺寸个头小、无法适用不同轮廓曲率、治疗效率低、客户感受差的问题。
为解决上述技术问题,本发明提供一种减脂治疗装置,包括:至少两个凹槽杯;所述凹槽杯具有凹槽腔体以及连接端,至少两个所述凹槽杯通过所述连接端围绕第一轴线可转动地连接,至少两个所述凹槽杯的所述凹槽腔体通过所述连接端相连通;所述第一轴线沿第一方向设置,所述凹槽腔体沿第二方向延伸,并向第三方向开放。
可选的,所述减脂治疗装置包括柔性密封件,所述柔性密封件沿第二方向分别与两个相邻的所述凹槽杯的内侧腔壁密封连接。
可选的,所述减脂治疗装置还包括压块,所述压块用于抵压所述柔性密封件并将所述柔性密封件固定于所述连接端。
可选的,所述压块的形状与所述柔性密封件的形状相适配。
可选的,所述减脂治疗装置还包括销钉,所述连接端包括销钉孔,所述销钉穿设于相邻的两个所述凹槽杯的销钉孔中,并与所述第一轴线重合。
可选的,所述凹槽杯包括至少一个负压孔,所述负压孔的一端与所述凹槽腔体连通,另一端用于与外部的负压提供端连接。
可选的,所述凹槽杯还包括至少一个负压槽,所述负压槽开设于所述凹槽腔体的腔壁上,并与所述负压孔连通。
可选的,所述负压槽沿第二方向延伸设置。
可选的,所述凹槽腔体的横截面的形状为弧形,和/或,所述凹槽腔体的纵截面的形状为弧形。
为解决上述技术问题,本发明提供一种冷冻减脂仪,包括冷量提供组件以及如上所述的减脂治疗装置;所述冷量提供组件沿第三方向设置于所述减脂治疗装置的凹槽杯的背侧。
可选的,所述冷量提供组件包括冷量交换组件,所述冷量交换组件包括冷量交换流道以及冷量循环口单元,所述冷量循环口单元与所述冷量交换流道的两端连通,所述冷量交换流道用于供载冷剂通过所述冷量循环口单元流 入与流出。
可选的,所述冷量提供组件还包括密封板,所述密封板密封所述冷量交换流道;所述冷量循环口单元设置于所述密封板上。
可选的,所述冷量提供组件包括半导体制冷器。
可选的,所述冷冻减脂仪还包括负压提供组件,所述减脂治疗装置包括负压孔,所述负压提供组件与所述负压孔连接,所述负压提供组件用于向所述负压孔提供负压。
可选的,所述冷冻减脂仪还包括冷量输出组件,所述减脂治疗装置还包括冷量交换组件,所述冷量输出组件与所述冷量交换组件连接,所述冷量输出组件用于为冷量交换组件提供制冷后的载冷剂。
在本发明提供的一种减脂治疗装置及冷冻减脂仪中,所述减脂治疗装置包括至少两个凹槽杯;所述凹槽杯具有凹槽腔体以及连接端,至少两个所述凹槽杯通过所述连接端围绕第一轴线可转动地连接,至少两个所述凹槽杯的所述凹槽腔体通过所述连接端相连通;所述第一轴线沿第一方向设置,所述凹槽腔体沿第二方向延伸,并向第三方向开放。如此设置,通过至少两个凹槽腔体连通,使得凹槽腔体可以容置人体腰腹部更多的组织,进而实现大面积减脂的效果,简化了操作步骤以及操作时间,提高了减脂效率。至少两个凹槽腔体围绕第一轴线转动,可以使得凹槽腔体可以适应不同轮廓曲率的腰腹部,进而提高了产品的适应性,提高了治疗效率,增强了治疗效果,提升客户感受以及满意度。
附图说明
本领域的普通技术人员将会理解,提供的附图用于更好地理解本发明,而不对本发明的范围构成任何限定。其中:
图1为本发明一实施例的减脂治疗装置的示意图;
图2为本发明一实施例的减脂治疗装置的一个凹槽杯的示意图;
图3为本发明一实施例的减脂治疗装置的另一个凹槽杯的示意图;
图4为本发明一实施例的柔性密封件的示意图;
图5为本发明一实施例的压块的示意图;
图6为本发明一实施例的销钉与销钉孔连接关系的示意图;
图7为本发明一实施例的销钉的示意图;
图8为本发明一实施例的冷量提供组件的爆炸图;
图9为本发明一实施例的减脂治疗装置的一种张开状态的示意图;
图10为本发明一实施例的减脂治疗装置的另一种张开状态的示意图;
图11为本发明一实施例的减脂治疗装置的另一角度的示意图;
图12为本发明一实施例的减脂治疗装置的局部示意图。
附图中:
A-第一轴线,B-第二方向;
100-凹槽杯,110-凹槽腔体,111-外边缘,120-连接端,130-负压孔,140-负压槽;
200-冷量提供组件,210-冷量交换组件,211-冷量交换流道,212-冷量循环口单元,2121-进液口,2122-出液口,230-密封板,231-密封板负压孔;
300-柔性密封件;
400-压块;
500-螺丝,510-螺丝孔;
600-销钉,610-销钉孔。
具体实施方式
为使本发明的目的、优点和特征更加清楚,以下结合附图和具体实施例对本发明作进一步详细说明。需说明的是,附图均采用非常简化的形式且未按比例绘制,仅用以方便、明晰地辅助说明本发明实施例的目的。此外,附图所展示的结构往往是实际结构的一部分。特别的,各附图需要展示的侧重点不同,有时会采用不同的比例。
如在本说明书中所使用的,单数形式“一”、“一个”以及“该”包括复数对象,除非内容另外明确指出外。如在本说明书中所使用的,术语“或”通常是以包括“和/或”的含义而进行使用的,除非内容另外明确指出外。
本发明实施例提供的一种减脂治疗装置及冷冻减脂仪,其核心在于:通过设置至少两个凹槽杯;至少两个所述凹槽杯围绕第一轴线可转动地连接, 进而实现了大面积减脂以及适应了不同轮廓曲率的腰腹部组织,其操作简单、治疗效率高、客户感受佳。
本发明实施提供了一种减脂治疗装置及冷冻减脂仪,所述减脂治疗装置包括至少两个凹槽杯;所述凹槽杯具有凹槽腔体以及连接端,至少两个所述凹槽杯通过所述连接端围绕第一轴线可转动地连接,至少两个所述凹槽杯的所述凹槽腔体通过所述连接端相连通;所述第一轴线沿第一方向设置,所述凹槽腔体沿第二方向延伸,并向第三方向开放。如此设置,通过连接至少两个凹槽腔体连通,使得凹槽腔体可以容置人体腰腹部更多的组织,进而实现大面积减脂的效果,简化了操作步骤以及操作时间,提高了减脂效率。至少两个凹槽腔体围绕第一轴线转动,可以使得凹槽腔体可以适应不同轮廓曲率的腰腹部,进而提高了产品的适应性,提高了治疗效率,增强了治疗效果,提升客户感受以及满意度。进一步的,减脂治疗装置包括柔性密封件,使得两个凹槽腔体的腔体形成密封腔体,进而提高冷却效果。更进一步的,减脂治疗装置还包括销钉,所述连接端包括销钉孔,销钉穿设于销钉孔中,限制柔性密封件与连接端连接的部分被拉扯的情况,避免柔性密封件在形变过程中承受大的张力,进而避免凹槽杯密封失效。更佳的,凹槽杯包括至少一个负压孔以及至少一个负压槽,负压孔的设置使得凹槽腔体与人体组织之间密封空间可以进行抽气形成负压,使得人体组织与凹槽腔体可以更佳地贴合,进而提高冷冻减脂的效率;负压槽的设置,更进一步的提高了凹槽腔体对人体组织的吸附效果,加强了负压的效果,进而提高了冷冻减脂的效果。
以下参考附图进行描述。
图1为本发明一实施例的减脂治疗装置的示意图;图2为本发明一实施例的减脂治疗装置的一个凹槽杯的示意图;图3为本发明一实施例的减脂治疗装置的另一个凹槽杯的示意图;图4为本发明一实施例的柔性密封件的示意图;图5为本发明一实施例的压块的示意图;图6为本发明一实施例的销钉与销钉孔连接关系的示意图;图7为本发明一实施例的销钉的示意图;图8为本发明一实施例的冷量提供组件的爆炸图;图9为本发明一实施例的减脂治疗装置的一种张开状态的示意图;图10为本发明一实施例的减脂治疗装置的另一种张开状态的示意图;图11为本发明一实施例的减脂治疗装置的另一 角度的示意图;图12为本发明一实施例的减脂治疗装置的局部示意图。
请参考图1至图5,减脂治疗装置包括至少两个凹槽杯100。
如图1至图3所示,每个所述凹槽杯100具有凹槽腔体110以及连接端120。
所述凹槽腔体110沿第二方向延伸,并朝向第三方向开放,进而使得凹槽腔体110可以与人体腰腹部需要减脂的组织接触。凹槽腔体110沿第二方向延伸的目的是使得凹槽杯100能够按着人体腰腹部组织的周向设置,进而能够更大面积的接触人体腰腹部组织。凹槽腔体110沿着第三方向开放的目的是使得凹槽杯100能够在开放的第三方向上接纳人体腰腹部组织的置入。所述凹槽腔体110例如是一瓦形结构,所述瓦形结构的长度方向为沿着第二方向延伸的呈狭长形的设置。所述凹槽腔体110的瓦形结构的横截面优选为弧形的设置,位于弧形内部的结构为瓦形的内侧,位于弧形外部的结构为瓦形的背侧,所述内侧朝向的方向以及背侧背离的方向为第三方向,所述瓦形的内侧形成的空腔用于容置人体腰腹部需要减脂的组织。进一步的,将位于所述内侧的凹槽杯100的腔壁定义为内侧腔壁。进一步的,所述凹槽腔体110的瓦形结构的纵截面的形状例如为弧形,所述纵截面弧形的内部与所述横截面弧形内部朝向的方向一致,同样的,所述纵截面的弧形的外部与所述横截面弧形外部朝向的方向一致,即可以理解为所述纵截面弧形朝向第三方向开放。作为优选,瓦形结构的横截面弧形的曲率可以随着第二方向的延伸而逐渐变化,例如曲率沿第二方向逐渐由大变小,瓦形结构的横截面弧形的宽度随着第二方向的延伸而逐渐变化,例如宽度沿着第二方向逐渐由大变小,当然,本领技术人员可以根据实际情况设置所述横截面弧形的曲率以及宽度、纵截面弧形的曲率以及宽度。所述凹槽腔体110的横截面还可以是其他结构,比如半圆形、波浪形、多个连续的凹槽形、梯形或者直线型的结构,当然还可以是多种结构的组合,比如,波浪形与弧形相结合的形式,在弧形的曲面上还设置有多个波浪结构,进而使得凹槽腔体110与人体组织的接触面更大,进而提升了减脂效果。所述凹槽腔体110的纵截面也可以是其他的结构,比如波浪形或者直线形等。
所述连接端120例如包括第一卡扣与第二卡扣,所述第一卡扣沿第一轴 线A具有凹槽,所述第二卡扣沿第一轴线A具有凸起,所述凹槽与所述凸起可以匹配连接并相互扣合,进而使得至少两个凹槽杯100通过连接端120围绕第一轴线A可转动的连接。至少两个凹槽杯100通过连接端120围绕第一轴线A可转动的目的在于:使得至少两个凹槽杯100能够随着人体腰腹部的曲率的大小而进行转动,进而使得至少两个凹槽杯100能够适应不同曲率的人体腰腹部。所述连接端120还可以是其他形式,只要可以使得两个凹槽杯100通过连接端120围绕第一轴线A可转动的连接即可。所述第一轴线A沿第一方向设置,所述第一方向与所述凹槽腔体110的宽度方向大致一致,比如,所述凹槽腔体110的宽度为上下设置(即如图1中上下的方位),第一方向指的是从凹槽腔体110的上方朝向下方的方向,并不要求第一方向与凹槽腔体110的宽度方向完全一致,其与凹槽腔体110的宽度方向具有一定夹角(大于零的夹角)亦可。通过确定第一方向,使得至少两个凹槽杯100能够沿着第一方向设置第一轴线,进而可以明确第一轴线的设置方向。在本实施例中,所述凹槽杯100的个数为两个,每个凹槽杯100具有一个连接端120,两个凹槽杯100的连接端120相互连接,两个凹槽杯100沿着第一轴线A转动。在其他实施例中,所述凹槽杯100的数量可以是多个,多个凹槽杯100的设置,能够提高曲率适应效果,比如是三个(未图示),三个凹槽杯100依次连接,处于两侧的凹槽杯100各自具有一个连接端120,处于中间位置的凹槽杯100的两端均具有连接端120,此时,三个凹槽杯100可沿着两个第一轴线转动。需要注意的是,这两个第一轴线的方向可以均设置为沿第一方向,也可以设置为沿不同方向,每两个连接端之间的第一轴线的方向本领域技术人员可以根据实际情况而进行设定或者调整。如此可以使得减脂治疗装置可以适应不同轮廓曲率的腰腹部,进而提高了治疗效率,增强了治疗效果,提升客户感受以及满意度。
至少两个凹槽杯100通过连接端120连接,使得至少两个所述凹槽杯100的所述凹槽腔体110通过所述连接端120相连通。比如,两个瓦形结构的凹槽腔体110通过连接端120相互连接形成连通的腔体。当然,两个凹槽腔体110的结构可以不同,可以是如上所述的两种凹槽腔体110结构的组合。至少两个相连通的凹槽腔体110可以容置治疗面积比较大的腰腹部位组织,同时 使得腰腹部位组织可以实现减脂,进而避免了使用规格较小的治疗头进行重复操作的问题,简化了治疗操作,提高了产品的适应性,提高了治疗效率。
在本实施例提供的一种减脂治疗装置中,减脂治疗装置包括至少两个凹槽杯100;每个所述凹槽杯100具有凹槽腔体110以及连接端120,至少两个所述凹槽杯100通过所述连接端120围绕第一轴线A可转动地连接,至少两个所述凹槽杯100的所述凹槽腔体110通过所述连接端120相连通;所述第一轴线A沿第一方向设置,所述凹槽腔体110沿第二方向延伸,并向第三方向开放。如此设置,通过连接至少两个凹槽腔体连通,使得凹槽腔体可以容置人体腰腹部更多的组织,进而实现大面积减脂的效果,简化了操作步骤以及操作时间,提高了减脂效率。至少两个凹槽腔体围绕第一轴线转动,可以使得凹槽腔体可以适应不同轮廓曲率的腰腹部,进而提高了治疗效率,增强了治疗效果,提升客户感受以及满意度。
优选的,如图1、图4与图12所示,所述减脂治疗装置包括柔性密封件300,所述柔性密封件300沿第二方向B分别与两个相邻的所述凹槽杯100的内侧腔壁密封连接,使得两个凹槽腔体110的腔体形成密封腔体,进而提高冷却效果。实际上,柔性密封件300与凹槽杯100连接的位置位于所述连接端120的一端。所述柔性密封件300可以与直接注塑成型在所述凹槽腔体110上,或者与所述凹槽腔体110焊接连接,或者通过螺丝连接。所述柔性密封件300优选塑料材质,更优选的,柔性密封件300选择弹性体材质,进而使得凹槽腔体110在柔性密封件300的条件下可以沿着第一轴线A发生弯折。在本实施例中,所述柔性密封件300选择硅橡胶材质,硅橡胶材质的弹性性能好,使用寿命长。当然,在其他实施例中,本领域技术人员根据实际设计需求或者弯折设计,可以选择其他的材质,本领域在此不再赘述。
更佳的,为了进一步保证所述柔性密封件300与凹槽杯100可以稳定的密封连接,防止凹槽腔体110沿第一轴线A转动时,柔性密封件300发生撕扯而影响密封性能等情况。如图1与图5所示,所述减脂治疗装置还包括压块400,压块400的材质可以是金属材质或者塑料材质,更佳的,所述压块400的形状与所述柔性密封件300的形状相适配。具体的,所述压块400的形状还与凹槽腔体110的沿宽度方向的结构一致,比如,在本实施例中,凹槽 腔体110的横截面呈弧形,所述压块亦呈弧形的设置,进而使得压块400可以沿着凹槽腔体110的宽度方向进行设置,压块400通过与柔性密封件300的过盈连接,进而抵压所述柔性密封件300并将所述柔性密封件300固定于所述连接端120。在其他实施例中,所述压块400的结构还可以是小方块的设置,多个小方块分布于需要密封的位置,压块400将柔性密封件300与所述凹槽杯100的内侧腔壁紧密的贴合设置,防止柔性密封件300伸出至凹槽腔体110的外边缘111。在减脂操作时,操作人员将凹槽腔体110的外边缘111与人体组织贴服皮肤,即可以形成一个密封性能良好的密封空腔。压块400的设置防止柔性密封件300伸出至凹槽腔体110的外部,即防止柔性密封件300漏在外部边缘的外部,当操作人员将凹槽腔体110与人体组织接触接触时,防止柔性密封件300直接与人体组织接触,进而防止凹槽腔体110的外边缘111与人体组织之间产生缝隙,进而提高了密封效果。在一个实施例中,压块400与柔性密封件300例如通过注塑工艺组合在一起,或者通过胶粘接的方式组合在一起,或者通过其他的形式将压块400与柔性密封件300一体的设计。在另一个实施例中,通过螺丝500将压块400、柔性密封件300以及连接端120连接在一起,例如压块400与柔性密封件300均具有螺丝孔510,螺丝500穿过螺丝孔510连接。
进一步的,如图6与图7所示,所述减脂治疗装置还包括销钉600,所述连接端120包括销钉孔610,所述销钉600穿设于相邻的两个所述凹槽杯100的销钉孔610中,并与所述第一轴线A重合。所述销钉600例如是金属材质,销钉600与销钉孔610连接,限制了所述凹槽杯100沿第一轴线A的周向自由度,限制柔性密封件300与连接端120连接的部分被拉扯的情况,避免柔性密封件300在形变过程中承受大的张力,从而避免因柔性密封件300与凹槽杯100之间露出缝隙,进而避免凹槽杯100密封失效。在其他实施例中,所述销钉600还可以是其他的材质,比如塑料等。
在本实施例中,两个凹槽杯100在柔性密封件300以及销钉600的作用下可以沿着第一轴线A转动,并呈不同角度的设置。例如,两个凹槽杯100的两种状态如图9与图10所示,图9中为两个凹槽杯100沿第一轴线A转动并呈现相对大角度的状态,此状态下的减脂治疗装置可以容纳轮廓曲率较大 的人体腰腹部组织;图10为两个凹槽杯100沿第一轴线A转动并呈现相对小角度的状态,此状态下的减脂治疗装置可以容纳轮廓曲率较小的人体腰腹部组织。
优选的,如图1与图11所示,所述凹槽杯100包括至少一个负压孔130,所述负压孔130的一端与所述凹槽腔体110连通,另一端用于与外部的负压提供端连接,负压提供端用于向负压孔130提供负压,进而对凹槽腔体110与人体组织之间密封空间进行抽气形成负压,使得人体组织与凹槽腔体110更佳贴合,提高冷冻减脂的效率。在本实施例中,凹槽杯100包括一个负压孔130,负压孔130的形状为椭圆柱形。在其他实施例中,凹槽杯100的负压孔130的个数还可以是两个或者多个。本领域技术人员可以根据实际抽气的情况,或者结合人体组织的分布情况设置负压孔130的个数,以及负压孔130的具体位置。所述负压孔130的横截面形状可以是一个圆形、椭圆形、矩形、梯形、多边形、五角星形或者梅花瓣形状等;所述负压孔130的纵截面形状可以是截面恒定的结构,也可以是变截面的设置。
更优选的,如图1所示,所述凹槽杯100还包括至少一个负压槽140,所述负压槽140开设于所述凹槽腔体110的腔壁上,并与所述负压孔130连通。通过增加负压槽140便于增加抽气负压的效率,以及增加凹槽腔体110对人体组织的吸附效果。每个所述负压槽140至少与一个所述负压孔130连通。在本实施例中,负压槽140的个数为一个,一个负压槽140与一个负压孔130连通,所述负压槽140优选沿第二方向延伸设置,进而使得负压槽140与凹槽腔体110的延伸方向一致,可以使得均匀的抽气负压。在其他实施例中,所述负压槽140的数量可以是两个或者多个,所述负压槽140可以沿凹槽腔体110的腔壁上朝向任意方向延伸设置,比如负压槽140沿凹槽腔体110宽度方向的弧形结构延伸设置,或者与第二方向呈一定夹角的方向设置。多个负压槽140可以连通同一个负压孔130,或者一个负压槽140可以连通两个或多个不同的负压孔130,或者多个负压槽140各自分别连接一个负压孔130等,本发明并不限于此。负压槽140的横截面可以是半圆形、半椭圆形、三角形、矩形或者其他结构。负压槽140的纵截面可以是变截面设置或者恒定截面的设置。
本发明还提供一种冷冻减脂仪,包括如上所述的减脂治疗装置以及冷量提供组件200。
所述冷量提供组件200用于给所述凹槽腔体110提供冷量,进而达到冷冻减脂的效果。冷量提供组件200沿第三方向设置于所述凹槽杯100的背侧。所述背侧如上文所述,此处不再赘述。该冷冻减脂仪具备所述减脂治疗装置所带来的有益效果,此处不再赘述。冷冻减脂仪的其它部件的结构和原理,可参考现有技术,此处不再展开说明。
进一步的,如图1、图8以及图11所示,所述冷量提供组件200包括冷量交换组件210,所述冷量交换组件210包括冷量交换流道211以及冷量循环口单元212,所述冷量循环口单元212与所述冷量交换流道211的两端连通,所述冷量交换流道211用于供载冷剂通过所述冷量循环口单元212流入与流出。载冷剂例如是液体状,例如低温(如-20℃)液体(如乙二醇),载冷剂流通于所述冷量交换流道211中,将冷量交换流道211降温至目标温度。本领域技术人员可以根据实际需求进行选择不同的载冷剂。冷量交换流道211例如是一蜿蜒曲折型的流道,用于供载冷剂流动,本领域技术人员可以理解,流道的横截面类似凹槽形式,载冷剂在凹槽的槽内流动,载冷剂将冷量传递给冷量交换流道211,冷量交换流道211进而将冷量传递给凹槽腔体110,从而对人体组织进行冷却,实现冷冻减脂的效果。在本实施例中,冷量交换流道211的数量为一个,并连通一组进出载冷剂的冷量循环口单元212。当然,冷量交换流道211还可以是其他的结构的流道,本领域技术人员根据实际的需要对流道的形状、结构、排布以及数量进行适应性的设置。比如,冷量交换流道211的数量还可以是两个,并分别连通一组进出载冷剂的冷量循环口单元212。冷量循环口单元212例如包括进液口2121与出液口2122,进液口2121用于使载冷剂流入至冷量交换流道211中,出液口2122用于使载冷剂可以流出冷量交换流道211,进而使得载冷剂可以在冷量交换流道211中进行循环。冷量交换流道211具有两端,一端用于载冷剂流入,一端用于载冷剂流出。进液口2121与冷量交换流道的一端连通,出液口2122与冷量交换流道的另一端连通。在其他实施例中,所述冷量循环口单元212不限于是进液口2121与出液口2122,还可以是用于进液或者出液的一个组合装置等。
进一步的,如图1与图8所示,所述冷量提供组件200还包括密封板230,所述密封板230密封所述冷量交换流道211;所述冷量循环口单元220设置于所述密封板230上。在本实施例中,密封板230例如是一板材结构,用于将冷量交换流道211密封,防止载冷剂飞溅出冷量交换流道211的外部,保证载冷剂可以在冷量交换流道211中有序的流动。在密封板230上优选设置冷量循环口单元220,比如在密封板230组件上设置进液口2121与出液口2122。进一步的,密封板230上还设置有密封板负压孔231,负压孔130穿设于密封板负压孔231,进而使得负压孔130可以与外部负压提供端连接。
需要注意的是,冷量交换组件210在工作过程中,需要保持恒定的温度,需要控制载冷剂的温度保持恒定;以及控制载冷剂的流量保持一致并使得载冷剂均匀的流动。
所述冷量提供组件200包括半导体制冷器。具体的,半导体制冷器利用半导体的热-电效应制取冷量的器件,用导体连接两块不同的金属,接通直流电,则一个接点处温度降低,另一个接点处温度升高。采用半导体制冷器具有无噪声、无振动、不需制冷剂等特点,其工作可靠,操作简便,以及进行冷量调节。
进一步的,所述冷冻减脂仪还包括负压提供组件,所述减脂治疗装置包括负压孔130,所述负压提供组件与所述负压孔连接,所述负压提供组件用于向所述负压孔130提供负压。所述负压提供组件比如是负压抽气机器,负压抽气机器的抽气管道与负压孔130连接,用于负压抽气。负压提供组件还可以是大型的负压系统,比如所述负压系统可以并联多组负压抽气管道,工作人员在使用时,使用负压系统中的一组负压抽气管道即可。
更佳的,所述冷冻减脂仪还包括冷量输出组件(未图示),所述减脂治疗装置还包括冷量交换组件210,所述冷量输出组件与所述冷量交换组件210连接,所述冷量输出组件用于为冷量交换组件210提供制冷后的载冷剂。冷量输出组件用于将载冷剂进行制冷,冷量输出组件例如包括载冷剂输出口、载冷剂输入口以及泵体,载冷剂输出口与冷量交换组件210的进液口2121连接,载冷剂输入口与冷量交换组件210的出液口2122连接,载冷剂在泵体的作用下,在冷量交换组件210与冷量输出组件之间进行循环。
下面结合图1、图9至图11详细介绍本实施例提供的冷冻减脂仪的使用方法。
首先,将冷冻减脂仪的凹槽腔体110安装于人体腰腹部组织的位置,使得凹槽腔体110与人体腰腹部组织之间形成密闭空间。当腰腹部轮廓曲率较大时,将两个凹槽腔体110之间沿第一轴线A转动,使得两个凹槽腔体110之间形成较大的夹角以适应较大轮廓曲率的腰腹部;当腰腹部轮廓曲率较小时,将两个凹槽腔体110之间沿第一轴线A转动,使得两个凹槽腔体110之间形成较小的夹角以适应较小轮廓曲率的腰腹部。
其次,负压提供组件向所述负压孔130提供负压。比如打开负压抽气机器,负压抽气机器向凹槽腔体110与人体腰腹部组织之间的密闭空间抽气,进而将人体腰腹部组织紧贴于凹槽腔体110中。
再次,冷量输出组件向冷量交换组件210提供制冷后的载冷剂,载冷剂从进液口2121流入,将冷量传递给冷量交换流道211,再从出液口2122流出,在此过程中,保持冷量温度恒定,进行冷却治疗并保持一段时间。
最后,冷却时间完成后,停止冷量输出组件提供冷量,停止负压提供组件提供负压,之后卸下凹槽杯100,即完成整个治疗过程。
当然,上述冷冻减脂仪的使用方法中各个部件的操作顺序,本领域技术人员可以根据实际情况进行选择设定。
综上所述,在本发明提供的一种减脂治疗装置及冷冻减脂仪中,所述减脂治疗装置包括至少两个凹槽杯;所述凹槽杯具有凹槽腔体以及连接端,至少两个所述凹槽杯通过所述连接端围绕第一轴线可转动地连接,至少两个所述凹槽杯的所述凹槽腔体通过所述连接端相连通;所述第一轴线沿第一方向设置,所述凹槽腔体沿第二方向延伸,并向第三方向开放。如此设置,通过连接至少两个凹槽腔体连通,使得凹槽腔体可以容置人体腰腹部更多的组织,进而实现大面积减脂的效果,简化了操作步骤以及操作时间,提高了减脂效率。至少两个凹槽腔体围绕第一轴线转动,可以使得凹槽腔体可以适应不同轮廓曲率的腰腹部,进而提高了产品的适应性,提高了治疗效率,增强了治疗效果,提升客户感受以及满意度。
上述描述仅是对本发明较佳实施例的描述,并非对本发明范围的任何限 定,本发明领域的普通技术人员根据上述揭示内容做的任何变更、修饰,均属于权利要求书的保护范围。

Claims (17)

  1. 一种减脂治疗装置,其特征在于,包括:至少两个凹槽杯;
    每个所述凹槽杯具有凹槽腔体以及连接端,至少两个所述凹槽杯通过所述连接端围绕第一轴线可转动地连接,至少两个所述凹槽杯的所述凹槽腔体通过所述连接端相连通;所述第一轴线沿第一方向设置,所述凹槽腔体沿第二方向延伸,并向第三方向开放。
  2. 根据权利要求1所述的减脂治疗装置,其特征在于,所述减脂治疗装置包括柔性密封件,所述柔性密封件沿所述第二方向分别与两个相邻的所述凹槽杯的内侧腔壁密封连接。
  3. 根据权利要求2所述的减脂治疗装置,其特征在于,所述减脂治疗装置还包括压块,所述压块用于抵压所述柔性密封件并将所述柔性密封件固定于所述连接端。
  4. 根据权利要求3所述的减脂治疗装置,其特征在于,所述压块的形状与所述柔性密封件的形状相适配。
  5. 根据权利要求1所述的减脂治疗装置,其特征在于,所述减脂治疗装置还包括销钉,所述连接端包括销钉孔,所述销钉穿设于相邻的两个所述凹槽杯的销钉孔中,并位于所述第一轴线上。
  6. 根据权利要求1所述的减脂治疗装置,其特征在于,所述凹槽杯包括至少一个负压孔,所述负压孔的一端与所述凹槽腔体连通,另一端用于与外部的负压提供端连接。
  7. 根据权利要求6所述的减脂治疗装置,其特征在于,所述凹槽杯还包括至少一个负压槽,所述负压槽开设于所述凹槽腔体的腔壁上,并与所述负压孔连通。
  8. 根据权利要求7所述的减脂治疗装置,其特征在于,所述负压槽沿所述第二方向延伸设置。
  9. 根据权利要求1所述的减脂治疗装置,其特征在于,所述凹槽腔体的横截面的形状为弧形,和/或,所述凹槽腔体的纵截面的形状为弧形。
  10. 根据权利要求1所述的减脂治疗装置,其特征在于,所述连接端包 括第一卡扣与第二卡扣,所述第一卡扣沿所述第一轴线具有凹槽,所述第二卡扣沿所述第一轴线具有凸起,所述凹槽与所述凸起匹配连接并相互扣合,以使得至少两个所述凹槽杯通过所述连接端围绕所述第一轴线可转动地连接。
  11. 根据权利要求1所述的减脂治疗装置,其特征在于,包括三个依次连接的凹槽杯,处于两侧的所述凹槽杯各自具有一个连接端,处于中间位置的所述凹槽杯的两端均具有连接端,所述三个凹槽杯可沿着两个第一轴线转动。
  12. 一种冷冻减脂仪,其特征在于,包括冷量提供组件以及根据权利要求1-11中任一项所述的减脂治疗装置;
    所述冷量提供组件沿第三方向设置于所述减脂治疗装置的凹槽杯的背侧。
  13. 根据权利要求12所述的冷冻减脂仪,其特征在于,所述冷量提供组件包括冷量交换组件,所述冷量交换组件包括冷量交换流道以及冷量循环口单元,所述冷量循环口单元与所述冷量交换流道的两端连通,所述冷量交换流道用于供载冷剂通过所述冷量循环口单元流入与流出。
  14. 根据权利要求12所述的冷冻减脂仪,其特征在于,所述冷量提供组件还包括密封板,所述密封板密封所述冷量交换流道;所述冷量循环口单元设置于所述密封板上。
  15. 根据权利要求12所述的冷冻减脂仪,其特征在于,所述冷量提供组件包括半导体制冷器。
  16. 根据权利要求12所述的冷冻减脂仪,其特征在于,所述冷冻减脂仪还包括负压提供组件,所述减脂治疗装置包括负压孔,所述负压提供组件与所述负压孔连接,所述负压提供组件用于向所述负压孔提供负压。
  17. 根据权利要求12所述的冷冻减脂仪,其特征在于,所述冷冻减脂仪还包括冷量输出组件,所述减脂治疗装置还包括冷量交换组件,所述冷量输出组件与所述冷量交换组件连接,所述冷量输出组件用于为冷量交换组件提供制冷后的载冷剂。
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