Evaluation of a Novel High-Intensity Focused Ultrasound Device: Preclinical Studies in a Porcine Model

Оценка нового устройства для высокоинтенсивной фокусированной ультразвуковой терапии: доклинические исследования на свиной модели
Mark L. Jewell, C.S. Desilets, Bruce R. Smoller
2011-05-01

Body contouringHigh-intensity focused ultrasoundPorcine modelSubcutaneous adipose tissueThermal ablation
BACKGROUND: High-intensity focused ultrasound (HIFU) has been applied clinically for the noninvasive treatment of pathological conditions in various organs for over 50 years; however, there are little data describing the use of thermal HIFU to ablate fat for body contouring and treatment of collagen-rich layers. A novel device under clinical investigation (LipoSonix; Medicis Technologies Corporation, Bothell, Washington) uses HIFU to eliminate unwanted adipose tissue. OBJECTIVES: The authors describe the results of HIFU treatment in a series of preclinical studies performed in a validated porcine model. METHODS: Preclinical research included in vivo treatment of the abdominal subcutaneous adipose tissue of swine with transcutaneous HIFU therapy. Endpoint analyses included thermocouple temperature data, full-body necropsy, local pathology and histology studies, clinical hematology, urinalysis, and blood chemistry parameters, including lipid panels. RESULTS: The application of HIFU energy levels of 166 to 372 J/cm(2) generated tissue temperature approaching 70°C, which was restricted to the focal area (n = seven). Application of 68 and 86 J/cm(2) did not produce clinically-significant changes in serum liver function tests, free fatty acids, or cholesterol (n = eight). Gross examination of tissue from various organs showed no evidence of fat emboli or accumulation (n = two). Histology demonstrated well-preserved vasculature and intact nerve fibers within the HIFU focal area (n = three). Following treatment with 85.3 to 270 J/cm(2), normal healing response included the migration of macrophages into the damaged tissue and removal of disrupted cellular debris and lipids (n = 8). CONCLUSIONS: In a preclinical swine model, the controlled thermal effect of HIFU appears to provide a safe and effective means for ablating subcutaneous adipose tissue.
1
A novel transcutaneous HIFU device was evaluated for controlled ablation of abdominal subcutaneous adipose tissue in a validated porcine model.
2
After 85.3–270 J/cm² treatment, macrophage migration and clearance of disrupted cellular debris and lipids indicated a normal healing response.
3
Gross examination found no fat emboli or fat accumulation in examined organs, while histology showed preserved vasculature and intact nerve fibers within the focal area.
4
HIFU energy levels of 166–372 J/cm² produced focal tissue temperatures approaching 70°C, with heating restricted to the intended treatment area.
5
Overall, controlled thermal HIFU appeared safe and effective for subcutaneous fat ablation in preclinical swine studies.
6
Treatments using 68 and 86 J/cm² caused no clinically significant changes in serum liver function tests, free fatty acids, or cholesterol.

Thermal high-intensity focused ultrasound (HIFU) ablation of abdominal subcutaneous adipose tissue in swine

The localized thermal ablation efficacy, tissue healing response, and systemic safety of HIFU treatment

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2011-05-01
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Mark L. Jewell
C.S. Desilets
Bruce R. Smoller
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