Development of an Omnidirectional-Capable Electromagnetic Shock Wave Generator for Lipolysis

Разработка всенаправленного генератора электромагнитных ударных волн для липолиза
Ming Chang, San Yih Lin
2017-01-01

electromagnetic shock wave generatorfocal pressurenoninvasive lipolysisomnidirectional operationporcine fatty tissue
Traditional methods for adipose tissue removal have progressed from invasive methods such as liposuction to more modern methods of noninvasive lipolysis. This research entails the development and evaluation of an omnidirectional-capable flat-coil electromagnetic shock wave generator (EMSWG) for lipolysis. The developed EMSWG has the advantage of omnidirectional-capable operation. This capability increases the eventual clinical usability by adding three designed supports to the aluminum disk of the EMSWG to allow omnidirectional operation. The focal pressures of the developed EMSWG for different operating voltages were measured, and its corresponding energy intensities were calculated. The developed EMSWG was mounted in a downward orientation for lipolysis and evaluated as proof of concept. In vitro tests on porcine fatty tissues have been carried out. It is found that at a 6 kV operating voltage with 1500 shock wave exposures, a 2 cm thick subcutaneous hypodermis of porcine fatty tissue can be ruptured, resulting in a damaged area of 1.39 mm2. At a 6.5 kV operating voltage with 2000 shock wave exposures, the damaged area is increased to about 5.20 mm2, which can be enlarged by changing the focal point location, resulting in significant lipolysis for use in clinical applications.
1
A flat-coil electromagnetic shock wave generator was developed with omnidirectional operation enabled by three supports attached to its aluminum disk.
2
At 6 kV and 1,500 shock wave exposures, the generator ruptured 2 cm-thick porcine subcutaneous fat, producing a 1.39 mm² damaged area.
3
At 6.5 kV and 2,000 exposures, the damaged area increased to approximately 5.20 mm² and could be enlarged by adjusting the focal point, supporting potential clinical lipolysis applications.
4
Downward-oriented operation was evaluated as a proof of concept for noninvasive lipolysis using in vitro porcine fatty tissue.
5
The generator’s focal pressures were measured across operating voltages, and corresponding energy intensities were calculated.

porcine subcutaneous fatty tissue subjected to omnidirectional electromagnetic shock waves

lipolysis performance, focal pressure, energy intensity, and tissue damage produced by the electromagnetic shock wave generator under varying operating voltages, exposure numbers, and focal-point locations

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2017-01-01
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Ming Chang
San Yih Lin
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