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Biosafety of Low-Intensity Pulsed Transcranial Focused Ultrasound Brain Stimulation -A Human Skull Study

机译:低强度脉冲经颅重聚焦超声脑刺激的生物安全 - 一种人类颅骨研究

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Among a variety of existing modalities for noninvasive brain stimulation (NIBS), low-intensity pulsed transcranial focused ultrasound (tFUS) is a promising technique to precisely stimulate deep brain structures due to its high spatial specificity and superior penetration depth. While tFUS is gaining momentum as an emerging NIBS technique, an advisable biosafety-associated combination of sonication parameters including duty cycle and power input remains to be explored. In this study, biosafety of low-intensity pulsed tFUS using various sonication parameters was evaluated by measuring acoustic intensities and temperature variations across a piece of real human skull. The results showed that Ispta above 480 mW/cm~2 is likely to induce an excessive temperature rise for a sonication duration of 160 seconds. Also, the skull base effect and ultrasound transducer self-heating effect should be noted during the sonication. Based on the findings in this study, an initial biosafety guide was discussed for the future investigation of ultrasound-mediated NIBS.
机译:在非侵入性脑刺激(NIBS)的各种现有模式中,低强度脉冲经颅重聚焦超声(TFU)是一种有希望的技术,其由于其高空间特异性和卓越的渗透深度而精确地刺激深脑结构。虽然TFU是作为新兴的尖端技术获得势头的措施,但仍有旨在探索包括占空比和电源输入的超声波参数的可明显的生物安全相关组合。在该研究中,通过测量一块真正的人类颅骨的声学强度和温度变化来评估使用各种超声参数的低强度脉冲TFU的生物安全。结果表明,在480mW / cm〜2上方的ISPTA可能会引起过高的温度升高,以便超声持续时间为160秒。此外,应在超声处理期间注意颅骨基效应和超声换能器自热效果。基于本研究中的研究结果,讨论了初始生物安全指南,以便未来对超声介导的尖端进行调查。

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