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聚焦超声对活体皮肤及皮肤-换能器界面温度影响的初步研究。

Preliminary Examination of the Effects of Focused Ultrasound on Living Skin and Temperature at the Skin-Transducer Interface.

作者信息

Bishay Andrew A E D, Swenson Andrew J, Spivak Norman M, Schafer Samantha, Bych Brendan P, Gilles Spencer D, Dorobczynski Christopher, Korb Alexander S, Schafer Mark E, Kuhn Taylor P, Monti Martin M, Bystritsky Alexander

机构信息

Department of Psychiatry and Biobehavioral Sciences, UCLA, 760 Westwood Plaza, Suite C8-519, Los Angeles, CA 90095, USA.

Weill Cornell Medical College, Cornell University, 525 East 68th Street, New York, NY 10065, USA.

出版信息

Bioengineering (Basel). 2024 Nov 8;11(11):1126. doi: 10.3390/bioengineering11111126.

Abstract

Transcranial Focused Ultrasound Stimulation (tFUS) is a new, rapidly growing field related to the study and treatment of brain circuits. Establishing safety cutoffs for focused ultrasound is crucial for non-ablative neurological ultrasound experiments. In addition to potential focal heating, there is concern about temperature elevation at the skin surface. Much work has been performed at or near the FDA guideline of I = 720 mW/cm, which technically only applies to diagnostic, not therapeutic, ultrasound. Furthermore, evidence of brain tissue damage on histology in the focal region has been shown not to occur until I > 14 W/cm. Therefore, this study was conducted across a range of intensities between these two values, evaluating both subjective and objective side effects. Subjective side effects encompassed any discomfort experienced during and after focused ultrasound stimulation, while objective side effects included clinical findings of skin irritation, such as erythema, edema, or burns. This study also examined how the skin temperature at the skin-transducer interface would change in order to assess whether there would be significant heating. The subjects did not experience any unpleasant sensation at the point of stimulation, including heat or pain, and no objective findings of skin irritation were observed following stimulation and the removal of the transducer. In addition, there was no intensity-dependent effect on temperature, and the maximal rise in temperature was 1.45 °C, suggesting that these parameters do not result in the heating of the skin at the interface in such a way that poses a risk to subjects when operating at or below the intensities tested in this experiment.

摘要

经颅聚焦超声刺激(tFUS)是一个与脑回路研究和治疗相关的新兴且快速发展的领域。为聚焦超声确定安全临界值对于非消融性神经超声实验至关重要。除了潜在的局部加热外,人们还担心皮肤表面温度升高。许多研究工作是在FDA规定的I = 720 mW/cm这一标准值或其附近进行的,严格来说,该标准仅适用于诊断性超声,而非治疗性超声。此外,研究表明,直到I > 14 W/cm时,才会在组织学上出现局灶性区域脑组织损伤的证据。因此,本研究在这两个值之间的一系列强度范围内进行,评估主观和客观副作用。主观副作用包括聚焦超声刺激期间及之后所经历的任何不适,而客观副作用包括皮肤刺激的临床发现,如红斑、水肿或烧伤。本研究还考察了皮肤 - 换能器界面处的皮肤温度如何变化,以评估是否会有显著的加热现象。受试者在刺激点未体验到任何不愉快的感觉,包括热感或疼痛感,并且在刺激及移除换能器后未观察到皮肤刺激的客观表现。此外,温度不存在强度依赖性效应,温度的最大升高为1.45℃,这表明在本实验所测试的强度及以下强度操作时,这些参数不会以对受试者构成风险的方式导致界面处皮肤加热。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79de/11591555/7ecec546278c/bioengineering-11-01126-g001.jpg

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