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1060纳米二极管激光用于小型猪非侵入性皮下脂肪减少的疗效

Efficacy of 1060 nm Diode Laser for Non-Invasive Subcutaneous Fat Reduction in Mini-Pigs.

作者信息

Lee Yea-Jin, Hong Namgue, Choi Eun Seo, Choi Sun-Hyang, Kim Eun Young, Park Hyeong Ju, Ahn Jin-Chul

机构信息

Department of Medicine, Dankook University, Cheonan-si, 31116, Republic of Korea.

Medical Laser Research Center, Graduate School of Medicine, Dankook University, Cheonan-si, 31116, Republic of Korea.

出版信息

Clin Cosmet Investig Dermatol. 2024 Sep 20;17:2097-2110. doi: 10.2147/CCID.S471367. eCollection 2024.

Abstract

PURPOSE

To evaluate the efficacy and safety of abdominal fat reduction in mini-pigs, utilizing at 1060 nm diode laser with a wavelength of 1060 nm.

PATIENTS AND METHODS

The laser system non-invasively disrupts adipose tissue; its effectiveness and safety were evaluated by ultrasound imaging and histological analysis. Laser irradiation was performed with various powers, and the cooling function was activated to prevent skin surface damage.

RESULTS

The dermal tissue temperature increased to at least 43°C during laser exposure, leading to a decrease in abdominal fat thickness after 30 days. Blood tests revealed no significant changes in kidney and liver function but showed increased blood levels of nonessential free acids (NEFAs), likely due to the release of fatty tissue-derived free fatty acids. Histological evaluation demonstrated rapid transformation of adipose tissue into collagen, muscle fibers, and intracellular fibrous tissue.

CONCLUSION

The 1060 nm laser showed promise as a non-invasive and safe tool for reducing abdominal fat.

摘要

目的

利用波长为1060nm的二极管激光评估小型猪腹部减脂的疗效和安全性。

患者与方法

该激光系统以非侵入方式破坏脂肪组织;通过超声成像和组织学分析评估其有效性和安全性。采用不同功率进行激光照射,并激活冷却功能以防止皮肤表面损伤。

结果

激光照射期间真皮组织温度升高至至少43°C,30天后腹部脂肪厚度减小。血液检测显示肾功能和肝功能无显著变化,但非必需游离脂肪酸(NEFAs)血液水平升高,可能是由于脂肪组织衍生的游离脂肪酸释放所致。组织学评估表明脂肪组织迅速转化为胶原蛋白、肌纤维和细胞内纤维组织。

结论

1060nm激光有望成为一种非侵入性且安全的腹部减脂工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5731/11421435/6c7d93662b14/CCID-17-2097-g0001.jpg

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