JP5696969B2 - Subcutaneous fat reduction device - Google Patents

Subcutaneous fat reduction device Download PDF

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JP5696969B2
JP5696969B2 JP2013176469A JP2013176469A JP5696969B2 JP 5696969 B2 JP5696969 B2 JP 5696969B2 JP 2013176469 A JP2013176469 A JP 2013176469A JP 2013176469 A JP2013176469 A JP 2013176469A JP 5696969 B2 JP5696969 B2 JP 5696969B2
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subcutaneous fat
rotating body
reduction device
subcutaneous
fat
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JP2015043854A (en
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真智子 秋山
真智子 秋山
之一 市川
之一 市川
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Description

本発明は体脂肪を燃焼させ、効果的に皮下脂肪を減少させる、皮下脂肪減少装置に関する。   The present invention relates to a subcutaneous fat reduction device that burns body fat and effectively reduces subcutaneous fat.

体内脂肪を減少させる美容器具はこれまで様々なものが開発されている。代表的なものとしては、吸引器となる本体の吸引口を体に押し当て、本体内部を減圧することで、脂肪を吸引し脂肪の減少を促進する器具がある。   Various beauty instruments for reducing body fat have been developed. As a representative device, there is an instrument that sucks fat and promotes fat reduction by pressing the suction port of the main body serving as an aspirator against the body and decompressing the inside of the main body.

しかしながら、脂肪を効率よく減少させるためには、脂肪部を吸引するだけでは脂肪減少効果が充分ではないことから、例えば、特許第3425076号において、脂肪を吸引する本体に可撓性を持たせることで、本体内部の減圧により皮下脂肪を吸引し、更に本体が変形することで、吸引した脂肪を横方向から押圧することで、体脂肪を散逸させる技術が記載されているが、減圧により本体を変形させることは、押圧力の調整等が困難であることが予想され、その効果も充分でないことが推定される。 However, in order to reduce fat efficiently, it is not sufficient to reduce fat by simply sucking the fat part. For example, in Japanese Patent No. 3425076, a body for sucking fat is made flexible. However, a technique is described in which the body fat is dissipated by sucking subcutaneous fat by decompression inside the main body and further deforming the main body and pressing the sucked fat from the lateral direction. It is estimated that it is difficult to adjust the pressing force, etc., and the effect is not sufficient.

特許第3425076号(明細書0007〜0013、図8)Japanese Patent No. 3425076 (Specifications 0007 to 0013, FIG. 8)

本発明者は、皮膚を温め(42度が理想的)て、吸引しながら皮下脂肪を掴んで左右に捻ると、刺激により脂肪分解を起こし、直ぐに有酸素運動をすれば血中に出て来た遊離脂肪酸は、エネルギー源として働き脂肪が減少することを知見し、体脂肪の中でも皮下脂肪に注目し、皮下脂肪部が吸引器内に吸引された状態において、皮下脂肪部の先端部分に対して刺激を加えることにより脂肪分解効果を促し、即効性と確実性があり簡易的に実施が可能な皮下脂肪分解装置を提供することを課題とする。 When the inventor warms the skin (42 degrees is ideal), grabs the subcutaneous fat while sucking and twists left and right, it causes lipolysis by stimulation, and immediately comes out in the blood if aerobic exercise is performed It was found that free fatty acids act as an energy source and fat is reduced, and attention is paid to subcutaneous fat among body fats, and when the subcutaneous fat part is sucked into the aspirator, it is applied to the tip part of the subcutaneous fat part. It is an object of the present invention to provide a subcutaneous lipolysis device that promotes a lipolysis effect by applying a stimulus, has an immediate effect and certainty, and can be easily implemented.

本発明は、本体となる筐体内に、減圧により皮下脂肪部を吸引する皮下脂肪分解装置において、筐体内に回転体を設け、前記回転体が反復回動することで、吸引された皮下脂肪部に捻りなどの刺激を加えることを特徴とする。   The present invention relates to a subcutaneous lipolysis apparatus that sucks a subcutaneous fat portion by decompression in a casing serving as a main body, and a rotating body is provided in the casing, and the rotating fat body is repeatedly rotated, whereby the sucked subcutaneous fat portion It is characterized by applying a stimulus such as torsion to the body.

また、前記回転体の内面であって皮膚に接する面に突起部などを設け、前記突起部が吸引した皮下脂肪部に押圧刺激を加えることを特徴とする。 In addition, a protrusion or the like is provided on the inner surface of the rotating body that is in contact with the skin, and a pressing stimulus is applied to the subcutaneous fat portion sucked by the protrusion.

更には、前記回転体に筐体内を減圧する減圧孔を設けることで、吸引された体脂肪部が、回転体内面に吸着されることを特徴とする。 Furthermore, by providing a decompression hole for decompressing the inside of the casing in the rotating body, the sucked body fat part is adsorbed on the inner surface of the rotating body.

前記回転体の内面であって皮膚に接する面に、電極パットを設け、前記電極パットから電磁波等による電気的刺激を回転刺激と併せて加えることを特徴とする。 An electrode pad is provided on the inner surface of the rotating body that is in contact with the skin, and electrical stimulation by electromagnetic waves or the like is applied from the electrode pad together with the rotation stimulation.

皮膚を温めて(42度が理想的)、吸引しながら皮下脂肪を掴んで左右に捻ると、刺激により脂肪分解を起こし、直ぐに有酸素運動をすれば血中に出て来た遊離脂肪酸は、エネルギー源として働き脂肪が減少することから、筐体内への吸引による皮下脂肪減少効果と、回転体による吸引した皮下脂肪部を捻る刺激との組合せにより、効果的に脂肪分解を図り、継続使用により皮下脂肪が減少される。筐体内に吸引された状態の皮下脂肪部に対して、先端部分を捻る、押すなどの刺激を加えることで効果的に脂肪分解を図ることができる。特に腹部の皮下脂肪を減少させると、全身の脂肪減少につながることが試験等で判明している。   When warming the skin (42 degrees is ideal), grabbing subcutaneous fat while sucking and twisting left and right, it causes lipolysis by stimulation, and if you do aerobic exercise immediately, the free fatty acid that came out in the blood, Because fat acts as an energy source and reduces fat, effective lipolysis is achieved by combining the effect of reducing subcutaneous fat by suction into the housing and the stimulus of twisting the subcutaneous fat part sucked by a rotating body. Subcutaneous fat is reduced. Lipolysis can be effectively achieved by applying a stimulus such as twisting or pushing the distal end portion to the subcutaneous fat portion sucked into the housing. In particular, tests have shown that reducing subcutaneous fat in the abdomen leads to fat loss throughout the body.

回転体に筐体内を減圧する減圧孔を設けることで、吸引された皮下脂肪部が回転体に密着し、回転体の回動に皮下脂肪部が追従することで、皮下脂肪部が捻られマッサージ効果が得られる。前記回転体の皮膚に接する面に、突起部などを設けることで、皮下脂肪部に押圧刺激を加えることもでき、更にマッサージ効果が助長される。   By providing the rotary body with a decompression hole that depressurizes the inside of the housing, the sucked subcutaneous fat part adheres to the rotary body, and the subcutaneous fat part follows the rotation of the rotary body, so that the subcutaneous fat part is twisted and massaged An effect is obtained. By providing a protrusion or the like on the surface of the rotating body in contact with the skin, it is possible to apply a pressure stimulus to the subcutaneous fat portion, and further promote a massage effect.

電磁波等の電気的刺激を回転刺激と併せて加えることで、より効果の高い皮下脂肪分解を図ることができ、皮下脂肪が減少される。   By applying electrical stimulation such as electromagnetic waves in combination with rotational stimulation, more effective subcutaneous lipolysis can be achieved, and subcutaneous fat is reduced.

本体の一例の3面図Three views of an example of the main body A−B断面図A-B cross section 回転体別例のA−B断面図A-B cross section of another example of rotating body 使用状態を示す模式の断面図Schematic cross-sectional view showing the state of use 回転体の一例の3面図Three views of an example of a rotating body 突起体の一例の3面図Three views of an example of a protrusion 突起体の別例の3面図Three views of another example of protrusion 電極等を設けた状態の一例の断面図Cross-sectional view of an example with electrodes etc. A−B断面図A-B cross section 使用状態を示す模式の断面図Schematic cross-sectional view showing the state of use 使用状態を示す模式の断面図Schematic cross-sectional view showing the state of use 回転体の一例の3面図Three views of an example of a rotating body 突起体の一例の3面図Three views of an example of a protrusion 突起体の別例の3面図Three views of another example of protrusion 電極等を設けた状態の一例の断面図Cross-sectional view of an example with electrodes etc.

本発明の構成について、実施例を基に図面を引用して説明する。   The configuration of the present invention will be described with reference to the drawings based on examples.

本体に用いる筐体1には、例えば、図1に示すようなカップ型や円筒形状のものを用い、筐体の横断面が円形又は楕円形であることが望ましい。本体内部を上下に仕切るように基板9を設け、仕切られた下方部を脂肪吸引部とする。基板9は、基板と本体との接合部において、空気が漏れないよう密閉されることが望ましい。 As the casing 1 used for the main body, for example, a cup-shaped or cylindrical shape as shown in FIG. 1 is used, and it is desirable that the casing has a circular or elliptical cross section. A substrate 9 is provided so as to partition the inside of the main body up and down, and the partitioned lower part is a liposuction part. The substrate 9 is desirably sealed so that air does not leak at the joint between the substrate and the main body.

前記基板9の中心部には、回転体2を保持する軸3を回動可能に取り付け、軸3の先端には回転体2設け、基板9の上面であって軸3の元には回転体2を回動させるための駆動部5を設ける。軸3を回動可能に取り付ける方法としては、ベアリングを利用するなど、摺動性のよいものを用いるとよい。駆動部5には、駆動源としてのモータ、及び動力伝達手段として、遊星歯車やギアモジュールなどを用い、軸3と連結する。 A shaft 3 for holding the rotating body 2 is rotatably attached to the center of the substrate 9, the rotating body 2 is provided at the tip of the shaft 3, and the rotating body is provided on the upper surface of the substrate 9. The drive part 5 for rotating 2 is provided. As a method of attaching the shaft 3 so as to be rotatable, it is preferable to use a method having good slidability such as using a bearing. The drive unit 5 is connected to the shaft 3 using a planetary gear, a gear module, or the like as a motor as a drive source and power transmission means.

回転体2は左右に反復回動させる。例えば、原点から右に角度として30度回転させ、そこから反対に左回転させて、原点を通過し更に左へ角度として30度まで回転させることを繰り返す。ここでの角度は、小さいと効果が期待できず、大きいと皮膚などに損傷を来す可能性があり、片側20度から45度の範囲内が望ましい。反復回動の制御は、プログラムによる制御やセンサーを用いて回転方向を制御するなどの方法がある。   The rotating body 2 is repeatedly rotated left and right. For example, it is repeated that the angle is rotated 30 degrees to the right from the origin, and the counterclockwise is rotated from there to the left to pass through the origin and further rotate to the left by 30 degrees. If the angle here is small, the effect cannot be expected, and if it is large, there is a possibility of damaging the skin and the like. Control of repetitive rotation includes a method of controlling the rotation direction using a program or a sensor.

基板9の上部には脂肪吸引部を減圧する真空ポンプ4を設け、基板9の一部に減圧孔7を設ける。真空ポンプには、例えばダイヤフラムポンプなどが利用できる。本体天面には空気排出孔を兼ねた電源供給部8を設ける。これら部品の配置例は図2を参照されたい。真空ポンプによる減圧に強弱をつけ、皮下脂肪部を強めに吸引後、減圧を緩めて戻したりすることで皮下脂肪部に刺激を加えたり、減圧の強弱を選択できるようにしてもよい。また、減圧孔7には、異物などを除去するためのフィルターを設けてもよい。 A vacuum pump 4 for decompressing the liposuction part is provided on the upper part of the substrate 9, and a decompression hole 7 is provided on a part of the substrate 9. For example, a diaphragm pump can be used as the vacuum pump. A power supply unit 8 also serving as an air discharge hole is provided on the top surface of the main body. Refer to FIG. 2 for an example of the arrangement of these components. It is also possible to increase or decrease the pressure reduction by the vacuum pump, to suck the subcutaneous fat portion stronger, and then to loosen the pressure reduction and return it to stimulate the subcutaneous fat portion or select the strength of the reduced pressure. The decompression hole 7 may be provided with a filter for removing foreign substances.

本体の開口部を例えば腹部に当て、真空ホンプ4により本体の脂肪吸引部が減圧されると、皮下脂肪部が脂肪吸引部内に吸引される。更に減圧を続けると、吸引された皮下脂肪部の先端は、図4に示すように回転体2に到達する。   When the opening of the main body is applied to, for example, the abdomen and the fat suction part of the main body is decompressed by the vacuum pump 4, the subcutaneous fat part is sucked into the fat suction part. When the pressure is further reduced, the tip of the sucked subcutaneous fat portion reaches the rotating body 2 as shown in FIG.

回転体2に到達した皮下脂肪部は回転体2に密着し、皮下脂肪部が回転体2に密着された状態で、回転体2が左右に反復回動することで、皮下脂肪の先端部に刺激を加えることができる。回転体2の形状の一例としては、図2に示すようなカップ形状などを利用できるが、これに限定されるものではない。 The subcutaneous fat part that has reached the rotating body 2 is in close contact with the rotating body 2, and the rotating body 2 is repeatedly rotated left and right while the subcutaneous fat part is in close contact with the rotating body 2. Stimulation can be applied. As an example of the shape of the rotator 2, a cup shape as shown in FIG. 2 can be used, but is not limited thereto.

本発明の皮下脂肪減少器具と、呼吸法を組み合わせて使用することで、脂肪燃焼効率が向上し、効果的な脂肪除去に繋がる。呼吸法としては腹式呼吸が望ましい。脂肪の真下の筋肉を活性化することで、その筋肉中の熱産生たんぱく質であるUCP2が活性化されることにより、脂肪細胞から分解した遊離脂肪酸はエネルギーとして燃焼し、脂肪減少に繋がる。 By using the subcutaneous fat reducing device of the present invention in combination with the breathing method, the fat burning efficiency is improved, which leads to effective fat removal. Abdominal breathing is desirable as a breathing method. By activating the muscle directly under fat, UCP2, which is a heat-producing protein in the muscle, is activated, and free fatty acids decomposed from fat cells are burned as energy, leading to fat reduction.

図5に示すように、回転体2の内面に突起部10を設けてもよい。吸引されて回転体2に密着した皮下脂肪部が、回転体2の回動と共に、突起部10により押し圧刺激を加えるものである。図5は、回転体2の中心部から外側の開口部に向けて4本の突起を形成した例を示したものである。   As shown in FIG. 5, a protrusion 10 may be provided on the inner surface of the rotating body 2. The subcutaneous fat part that is sucked and is in close contact with the rotating body 2 applies a pressing pressure stimulus by the protrusion 10 as the rotating body 2 rotates. FIG. 5 shows an example in which four protrusions are formed from the center of the rotating body 2 toward the outer opening.

図4及び図6に示すように、回転体の形状を平板状に形成し、1以上の導入孔12を設けてもよい。吸引されて回転体に密着した皮下脂肪部が導入孔12に引き込まれ、この状態で回転体2が反復回動することで、皮下脂肪部に刺激を加えるものである。導入孔の数や大きさは、人による皮下脂肪の性質の違いなどに合せて適宜変更すればよい。 As shown in FIGS. 4 and 6, the shape of the rotating body may be formed in a flat plate shape and one or more introduction holes 12 may be provided. The subcutaneous fat part sucked and closely attached to the rotating body is drawn into the introduction hole 12, and the rotating body 2 repeatedly rotates in this state, thereby stimulating the subcutaneous fat part. What is necessary is just to change suitably the number and magnitude | size of an introduction hole according to the difference in the property of the subcutaneous fat by a person, etc.

また、図7に示すように、回転体の形状を平板状に形成し、1以上の球体13を設けてもよい。球体13の中心部に軸孔を開け、球軸14にて回転体2に固定したもので、球軸14を中心に球体13は回転する。吸引された皮下脂肪部が球体13に密着し、この状態で回転体2が反復回動することで、皮下脂肪部に押し圧刺激を加えるものである。球体13は回転するため、回転体2の回動に合わせてローラー押し圧刺激となる。球体の数や大きさは、人による皮下脂肪の性質の違いなどに合せて適宜変更すればよい。 Moreover, as shown in FIG. 7, the shape of a rotary body may be formed in flat form, and the 1 or more spherical body 13 may be provided. A shaft hole is formed at the center of the sphere 13 and is fixed to the rotating body 2 by the sphere shaft 14. The sphere 13 rotates around the sphere shaft 14. The sucked subcutaneous fat part comes into close contact with the sphere 13 and the rotating body 2 repeatedly rotates in this state, thereby applying a pressing stimulus to the subcutaneous fat part. Since the sphere 13 rotates, the roller pressing pressure stimulation is performed in accordance with the rotation of the rotator 2. The number and size of the spheres may be changed as appropriate in accordance with the difference in the properties of subcutaneous fat among humans.

回転体2の皮膚が接する面に、電磁波用の電極パット16を設け電磁波による刺激を同時に加えるようにしてもよい。電磁波により脂肪の真下の筋肉を刺激して活性化を促すことで、より脂肪燃焼による脂肪分解が促進され、脂肪減少につながることが期待できる。電磁波の種類としては、低周波・中周波・高周波・超長波・長波・中波・短波などが利用できる。図8は電磁波を利用する場合の、電極や電磁波発生装置の配置例を示すものである。回転体2にヒーター17を設け、熱による刺激を組み合わせることにより相乗効果が期待できる。   An electrode pad 16 for electromagnetic waves may be provided on the surface of the rotating body 2 that contacts the skin, and stimulation by electromagnetic waves may be applied simultaneously. By stimulating the muscles directly below the fat with electromagnetic waves to promote activation, it can be expected that fat decomposition by fat burning will be promoted and lead to fat reduction. As the types of electromagnetic waves, low frequency, medium frequency, high frequency, super long wave, long wave, medium wave, short wave and the like can be used. FIG. 8 shows an arrangement example of electrodes and electromagnetic wave generators when using electromagnetic waves. A synergistic effect can be expected by providing the rotating body 2 with the heater 17 and combining heat stimulation.

電磁波の代わりに超音波を利用してもよい。この場合は、回転体を振動させるようにすると効果的である。 Ultrasound may be used instead of electromagnetic waves. In this case, it is effective to vibrate the rotating body.

図9に示すように、基板9の中心部から軸3を回動可能に設け、軸3の先端には回転体2と回転体を回動させるためのギア6を設ける。軸3の芯部に設けた減圧孔7は、回転体2の中心部へ貫通させる。軸3を回動可能に取り付ける方法としては、ベアリングを利用するなど、摺動性のよいものを用いるとよい。軸3を基板9に回動不動に固定し、軸3の途中に回動部を設けてもよい。基板9の下面には回転体2の駆動部5を設ける。駆動部5には、駆動源としてのモータ、及び動力伝達手段として、遊星歯車やギアモジュールなどを用い、前記ギア6と連結する。 As shown in FIG. 9, the shaft 3 is rotatably provided from the central portion of the substrate 9, and the rotating body 2 and a gear 6 for rotating the rotating body are provided at the tip of the shaft 3. The decompression hole 7 provided in the core portion of the shaft 3 is penetrated to the center portion of the rotating body 2. As a method of attaching the shaft 3 so as to be rotatable, it is preferable to use a method having good slidability such as using a bearing. The shaft 3 may be fixed to the substrate 9 so as not to rotate, and a rotating portion may be provided in the middle of the shaft 3. On the lower surface of the substrate 9, the driving unit 5 of the rotating body 2 is provided. The drive unit 5 is connected to the gear 6 using a planetary gear, a gear module, or the like as a motor as a drive source and power transmission means.

基板9の上面には脂肪吸引部を減圧する真空ポンプ4を設け、軸3の減圧孔7と真空ポンプ4の吸引部とを連結する。真空ポンプには、例えばダイヤフラムポンプなどが利用できる。本体天面には空気排出孔を兼ねた電源供給部8を設ける。これら部品の配置例は図9を参照されたい。真空ポンプによる減圧に強弱をつけ、皮下脂肪部を強めに吸引後、減圧を緩めて戻したりすることで皮下脂肪部に刺激を加えたり、減圧の強弱を選択できるようにしてもよい。また、減圧孔7には、異物などを除去するためのフィルターを設けてもよい。 A vacuum pump 4 for decompressing the fat suction part is provided on the upper surface of the substrate 9, and the decompression hole 7 of the shaft 3 is connected to the suction part of the vacuum pump 4. For example, a diaphragm pump can be used as the vacuum pump. A power supply unit 8 also serving as an air discharge hole is provided on the top surface of the main body. Refer to FIG. 9 for an example of the arrangement of these components. It is also possible to increase or decrease the pressure reduction by the vacuum pump, to suck the subcutaneous fat portion stronger, and then to loosen the pressure reduction and return it to stimulate the subcutaneous fat portion or select the strength of the reduced pressure. The decompression hole 7 may be provided with a filter for removing foreign substances.

本体の開口部を例えば腹部に当て、真空ホンプ4により本体の脂肪吸引部が減圧されると、図10に示すように皮下脂肪部が脂肪吸引部内に吸引される。更に減圧を続けると、吸引された皮下脂肪部の先端は、図11に示すように回転体2に到達する。   When the opening of the main body is applied to, for example, the abdomen and the fat suction part of the main body is decompressed by the vacuum pump 4, the subcutaneous fat part is sucked into the fat suction part as shown in FIG. When the pressure is further reduced, the tip of the sucked subcutaneous fat portion reaches the rotating body 2 as shown in FIG.

回転体に到達した皮下脂肪部は、減圧孔7を塞ぐようになり、同時に回転体2に吸着される。皮下脂肪部が回転体2に吸着された状態で、回転体2が左右に反復回動することで、皮下脂肪部に刺激を加えることができる。減圧孔7を回転体2の中心部に設けることで、皮下脂肪部が回転体2に吸着され、回転体2の反復回動に追従するようになる。 The subcutaneous fat part that has reached the rotating body comes to close the decompression hole 7 and is simultaneously adsorbed by the rotating body 2. In the state where the subcutaneous fat part is adsorbed by the rotating body 2, the rotating body 2 is repeatedly rotated left and right, whereby stimulation can be applied to the subcutaneous fat part. By providing the decompression hole 7 at the center of the rotator 2, the subcutaneous fat portion is adsorbed by the rotator 2 and follows the repeated rotation of the rotator 2.

回転体の反復回動の方法として、ギアに代えて円盤状のターンテーブルを用い、ターンテーブルの外側にベルトを回し、ベルトをモータなどで駆動するベルトドライブ方式や、前記ターンテーブルの外周部に回転駆動用のローラーを密着させ、ローラーをモータなどで駆動するローラードライブ方式などを利用してもよい。この場合、回転の負荷が大きくなった時など、ベルトやローラーがスリップして、過剰負荷を防止することの作用もある。   As a method of repeatedly rotating the rotating body, a disk-shaped turntable is used instead of a gear, a belt is driven on the outside of the turntable, and the belt is driven by a motor or the like. A roller drive system in which a roller for rotation driving is closely attached and the roller is driven by a motor or the like may be used. In this case, when the load of rotation becomes large, the belt or the roller slips to prevent an excessive load.

前記回転体2の内面に突起部10を設けてもよい。吸引されて回転体2に吸着された皮下脂肪部が、回転体2の回動と共に、突起部10により押し圧刺激を加えるものである。図12は、回転体の中心部から外側の開口部に向けて4本の突起を形成した例を示したものである。   A protrusion 10 may be provided on the inner surface of the rotating body 2. The subcutaneous fat part sucked and adsorbed by the rotating body 2 applies a pressing pressure stimulus by the protrusion 10 as the rotating body 2 rotates. FIG. 12 shows an example in which four protrusions are formed from the center of the rotating body toward the outer opening.

前記突起部10に変えて、円盤状の突起体11を回転体2の開口部に設けてもよい。吸引されて突起体11に密着した皮下脂肪部に対し、突起体11が刺激を加えるものである。図13は、突起体11に1以上の導入孔12を設けたもので、吸引された皮下脂肪部が導入孔12に引き込まれ、この状態で回転体2が反復回動することで、皮下脂肪部に刺激を加えるものである。導入孔の数や大きさは、人による皮下脂肪の性質の違いなどに合せて適宜変更すればよい。 Instead of the protrusion 10, a disk-shaped protrusion 11 may be provided in the opening of the rotating body 2. The protrusion 11 applies a stimulus to the subcutaneous fat portion that is sucked and is in close contact with the protrusion 11. In FIG. 13, one or more introduction holes 12 are provided in the protrusion 11, and the sucked subcutaneous fat portion is drawn into the introduction hole 12, and the rotating body 2 repeatedly rotates in this state, whereby the subcutaneous fat It stimulates the part. What is necessary is just to change suitably the number and magnitude | size of an introduction hole according to the difference in the property of the subcutaneous fat by a person, etc.

突起体11の別例としては、図14に示すように、突起体11に1以上の球体13を取り付けたものである。球体13の中心部に軸孔を開け、球軸14にて突起体11に固定したもので、球軸14を中心に球体13は回転する。吸引された皮下脂肪部が球体13に密着し、この状態で回転体2が反復回動することで、皮下脂肪部に押し圧刺激を加えるものである。球体13は回転するため、回転体2の回動に合わせてローラー押し圧刺激となる。球体の数や大きさは、人による皮下脂肪の性質の違いなどに合せて適宜変更すればよい。 As another example of the protrusion 11, as shown in FIG. 14, one or more spheres 13 are attached to the protrusion 11. A shaft hole is formed at the center of the sphere 13 and is fixed to the protrusion 11 by the sphere shaft 14. The sphere 13 rotates around the sphere shaft 14. The sucked subcutaneous fat part comes into close contact with the sphere 13 and the rotating body 2 repeatedly rotates in this state, thereby applying a pressing stimulus to the subcutaneous fat part. Since the sphere 13 rotates, the roller pressing pressure stimulation is performed in accordance with the rotation of the rotator 2. The number and size of the spheres may be changed as appropriate in accordance with the difference in the properties of subcutaneous fat among humans.

回転体2又は突起体11の皮膚が接する面に、電磁波用の電極パット16を設け電磁波による刺激を同時に加えるようにしてもよい。電磁波の種類としては、低周波・中周波・高周波・超長波・長波・中波・短波などが利用できる。図15は電磁波を利用する場合の、電極や電磁波発生装置の配置例を示すものである。回転体2にヒーター17を設け、熱による刺激を組み合わせてもよい。   An electrode pad 16 for electromagnetic waves may be provided on the surface of the rotating body 2 or the protrusion 11 that is in contact with the skin, and stimulation by electromagnetic waves may be applied simultaneously. As the types of electromagnetic waves, low frequency, medium frequency, high frequency, super long wave, long wave, medium wave, short wave and the like can be used. FIG. 15 shows an arrangement example of electrodes and electromagnetic wave generators when using electromagnetic waves. A heater 17 may be provided on the rotating body 2 to combine heat stimulation.

電磁波の代わりに超音波を利用してもよい。この場合は、回転体を振動させるようにすると効果的である。 Ultrasound may be used instead of electromagnetic waves. In this case, it is effective to vibrate the rotating body.

本発明の皮下脂肪減少器具は工業生産が可能であり、本装置を用いて美容室やエステでの利用及び提供も可能である。   The subcutaneous fat reducing device of the present invention can be industrially produced, and can be used and provided in a beauty salon or an esthetic salon using this apparatus.

1 筐体
2 回転体
3 軸
4 真空ポンプ
5 駆動部
6 ギア
7 減圧孔
8 空気排出孔を兼ねた電源供給部
9 基板
10 突起部
11 突起体
12 導入孔
13 球体
14 球軸
15 電波発生器
16 電極パッド
17 ヒーター
18 固定用孔
20 空気の流れ
30 皮下脂肪部
DESCRIPTION OF SYMBOLS 1 Case 2 Rotating body 3 Axis 4 Vacuum pump 5 Drive part 6 Gear 7 Depressurization hole 8 Power supply part 9 which served also as an air discharge hole Substrate 10 Protrusion part 11 Protrusion body 12 Introduction hole 13 Sphere 14 Ball axis 15 Radio wave generator 16 Electrode pad 17 Heater 18 Fixing hole 20 Air flow 30 Subcutaneous fat part

Claims (9)

本体となる筐体内に、減圧により皮下脂肪部を吸引する皮下脂肪減少装置において、筐体内にカップ状または平板状の回転体を設け、前記回転体が反復回動することで、吸引された皮下脂肪部に刺激を加えることを特徴とする皮下脂肪減少装置。 In a subcutaneous fat reduction device that sucks a subcutaneous fat portion by decompression in a casing serving as a main body, a cup-shaped or flat-plate-shaped rotating body is provided in the casing, and the rotating body is repeatedly rotated to suck the subcutaneous A subcutaneous fat reduction device characterized by applying a stimulus to a fat part. 前記カップ状または平板状の回転体の内面であって皮膚に接する面に突起部を設けたことを特徴とする請求項1に記載の皮下脂肪減少装置。 The subcutaneous fat reduction device according to claim 1, wherein a protrusion is provided on the inner surface of the cup-shaped or flat-plate-shaped rotating body and in contact with the skin. 前記平板状の回転体に、1以上の導入孔を設けたことを特徴とする請求項1に記載の皮下脂肪減少装置。 The subcutaneous fat reducing device according to claim 1, wherein the flat plate-like rotating body is provided with one or more introduction holes. 前記平板状の回転体に、1以上の球体を設けたことを特徴とする請求項1に記載の皮下脂肪減少装置。 The subcutaneous fat reduction device according to claim 1, wherein one or more spheres are provided on the flat rotating body . 前記回転体に筐体内を減圧する減圧孔を設けたことを特徴とする請求項1または2に記載の皮下脂肪減少装置。 The subcutaneous fat reduction device according to claim 1, wherein a decompression hole for decompressing the inside of the housing is provided in the rotating body. 前記回転体に筐体内を減圧する減圧孔を設けると共に、カップ状の回転体の開口部に、平板状に形成して1以上の導入孔を設けた突起体を設けたことを特徴とする請求項1に記載の皮下脂肪減少装置。 The rotary body is provided with a decompression hole for decompressing the inside of the housing, and a projection body formed in a flat plate shape and provided with one or more introduction holes is provided in an opening of the cup-shaped rotary body. Item 4. The subcutaneous fat reduction device according to Item 1 . 前記突起体の導入孔に代えて、1以上の球体を設けたことを特徴とする請求項に記載の皮下脂肪減少装置。 The subcutaneous fat reducing device according to claim 6 , wherein one or more spheres are provided in place of the protrusion introduction hole . 前記回転体の皮膚に接する面に、電極パットを設け、前記電極パットから電磁波等による電気的刺激を回転刺激と併せて加えることを特徴とする請求項1から5いずれか1項に記載の皮下脂肪減少装置。 6. The subcutaneous body according to claim 1, wherein an electrode pad is provided on a surface of the rotating body in contact with the skin, and an electrical stimulus such as an electromagnetic wave is applied from the electrode pad together with the rotational stimulus. Fat reduction device. 前記突起体の皮膚に接する面に、電極パットを設け、前記電極パットから電磁波等による電気的刺激を回転刺激と併せて加えることを特徴とする請求項6または7に記載の皮下脂肪減少装置。
The subcutaneous fat reduction device according to claim 6 or 7, wherein an electrode pad is provided on a surface of the protrusion contacting the skin, and an electrical stimulus such as electromagnetic waves is applied from the electrode pad together with a rotational stimulus.
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