Abstract:
A method and device is taught to improve the appearance of cellulite by combining mild exfoliation of the skin, various wavelengths of low level light, ultrasound, and a vacuum or suction. The device is intended to increase the metabolic rate of the fat cells and reduce their size, while increasing the extensibility or length of the septae. Such increased activity will promote blood flow to the affected area thereby increasing cell nutrients and removing cellular exudates while stimulating the growth of new collagen thereby alleviating the cellulite.
Abstract:
A device for damaging a parasite while being on a surface of a body of a mammal. The device is a hand held device with an ultrasound transmitter for generating ultrasound radiation and a plurality of teeth extending from a base of the device and arranged alternately.
Abstract:
The present invention relates to devices and methods for treating, reducing and preventing adverse skin/scalp conditions and enhancing the topical application of a benefit agent. The devices are ultrasonic with transducers positioned at an angle other than 90° relative to the surface at which the ultrasound is to be applied.
Abstract:
Embodiments of the present disclosure are directed to methods of inducing therapeutic adipose tissue inflammation using high frequency pressure waves (e.g. high frequency Shockwaves) wherein the inflammation results in a reduction in the volume of subcutaneous adipose tissue. Embodiments include applying electrohydraulic generated Shockwaves at a rate of between 10 Hz and 1000 Hz to reduce the appearance of cellulite or the volume of subcutaneous fat in a treatment area.
Abstract:
The present invention relates to a device, system and a method for high pressure shockwave treatment of biological tissue having a large treatment zone and in particular to such a device, system and method in which a large biological treatment area in treated in a non-drug, non-surgical treatment protocol utilizing ballistic shockwave generating device.
Abstract:
시술자의 손잡이로 사용되는 손잡이부를 구비한 시술 핸드피스; 집속 초음파를 발생시키는 초음파 치료부가 구비되고, 원기둥 또는 바 형상으로 이루어지며 상기 시술 핸드피스에 탈부착되는 카트리지; 상기 카트리지에 구비되어 상기 초음파 치료부에서 발생된 집속 초음파를 통과시키는 윈도우; 및 초음파 치료부가 전후 운동되도록 초음파 치료부를 구동시키는 구동기;를 포함하되, 카트리지가 질 내부에서 정상적으로 위치되었는가 여부를 감지하는 감지기; 질 피부 표면으로부터 일정 깊이의 피부 조직을 영상화하는 이미지 프로브; 및 유연성 재질로 이루어진 완충부; 중 적어도 하나를 더 포함하는 집속 초음파 시술 장치가 개시된다.
Abstract:
카트리지 내부를 밀폐하는 하우징; 상기 하우징 내부에 구비되어 초음파를 발생시키는 트랜스듀서; 상기 하우징 외부의 회전력을 전달받아 회전운동하는 회전력 인가부; 및 상기 회전력 인가부의 회전운동을 직선운동으로 변환하여 상기 트랜스듀서에 제공하는 변환부; 및 상기 트랜스듀서의 초음파 발생 동작을 제어하는 제어수단;을 포함하는 초음파 생성 장치가 개시된다.
Abstract:
Systems and methods that enable tissue cooling and delivery of energy for altering tissue are described herein. Aspects of the disclosure are directed to, for example, heating tissue at treatment zones to ablate, denature, reorganize, coagulate, or otherwise alter the tissue to affect the cosmetic appearance of the patient. The method can include, for example, removing heat from the target region of the human subject before, during, and/or after energy delivery to cool tissue to a temperature below normal body temperature to inhibit pain.
Abstract:
A system and method for tattoo removal utilizing controlled acoustic energy deposition is disclosed. The system and method can generate an acousto-mechanical or acousto-elastic effect in tattoo pigment particles or agglomerates of pigment particles, The acousto-mechanical or acousto-elastic effect can induce a fragmentation of the pigment particles or agglomerates of pigment particles, creating sub- particles of a size which can be less visible from the surface of the skin or cleared from dermal tissue entirely.
Abstract:
A device for delivering light and/or ultrasound across a skin surface is provided. The device has a layered structure comprising a light source and/or an ultrasonic transducer. In one embodiment, the light source comprises an organic light emitting diode or a plurality of printed light emitting diodes and the ultrasonic transducer comprises a piezoelectric coating. The device is electrically coupled to a controller, which is electrically coupled to one or more sensors in contact with the skin surface. The controller is operable to receive sensor data from the sensor and dynamically control the device in response to the received sensor data. The device may be provided with a therapeutic or cosmetic composition to be applied to the skin surface, wherein the light and ultrasound emitted from the device cause transdermal transport of the composition through the skin surface.