di Biase Lazzaro, Falato Emma, Di Lazzaro Vincenzo
Neurology, Neurophysiology, and Neurobiology Unit, Department of Medicine, Campus Bio-Medico University of Rome, Rome, Italy.
Unit of Neurophysiology and Neuroengineering of Human-Technology Interaction, School of Medicine, Campus Bio-Medico University of Rome, Rome, Italy.
Front Neurol. 2019 Jun 11;10:549. doi: 10.3389/fneur.2019.00549. eCollection 2019.
Transcranial focused ultrasound is an emerging technique for non-invasive neurostimulation. Compared to magnetic or electric non-invasive brain stimulation, this technique has a higher spatial resolution and can reach deep structures. In addition, both animal and human studies suggest that, potentially, different sites of the central and peripheral nervous system can be targeted by this technique. Depending on stimulation parameters, transcranial focused ultrasound is able to determine a wide spectrum of effects, ranging from suppression or facilitation of neural activity to tissue ablation. The aim is to review the state of the art of the human transcranial focused ultrasound neuromodulation literature, including the theoretical principles which underlie the explanation of the bioeffects on neural tissues, and showing the stimulation techniques and parameters used and their outcomes in terms of clinical, neurophysiological or neuroimaging results and safety.
经颅聚焦超声是一种新兴的非侵入性神经刺激技术。与磁或电非侵入性脑刺激相比,该技术具有更高的空间分辨率,能够到达深部结构。此外,动物和人体研究均表明,该技术有可能靶向中枢和外周神经系统的不同部位。根据刺激参数,经颅聚焦超声能够产生广泛的效应,从抑制或促进神经活动到组织消融。目的是综述人类经颅聚焦超声神经调节文献的现状,包括解释对神经组织生物效应的理论原理,并展示所使用的刺激技术和参数及其在临床、神经生理学或神经影像学结果及安全性方面的成果。