Department of Neurosurgery, University of Minnesota, 420 Delaware St SE, MMC 96, Room D-429, Minneapolis, MN, 55455, USA.
Neurotherapeutics. 2019 Jan;16(1):88-99. doi: 10.1007/s13311-018-00691-3.
For more than 70 years, the promise of noninvasive neuromodulation using focused ultrasound has been growing while diagnostic ultrasound established itself as a foundation of clinical imaging. Significant technical challenges have been overcome to allow transcranial focused ultrasound to deliver spatially restricted energy into the nervous system at a wide range of intensities. High-intensity focused ultrasound produces reliable permanent lesions within the brain, and low-intensity focused ultrasound has been reported to both excite and inhibit neural activity reversibly. Despite intense interest in this promising new platform for noninvasive, highly focused neuromodulation, the underlying mechanism remains elusive, though recent studies provide further insight. Despite the barriers, the potential of focused ultrasound to deliver a range of permanent and reversible neuromodulation with seamless translation from bench to the bedside warrants unparalleled attention and scientific investment. Focused ultrasound boasts a number of key features such as multimodal compatibility, submillimeter steerable focusing, multifocal, high temporal resolution, coregistration, and the ability to monitor delivered therapy and temperatures in real time. Despite the technical complexity, the future of noninvasive focused ultrasound for neuromodulation as a neuroscience and clinical platform remains bright.
70 多年来,利用聚焦超声进行无创神经调节的承诺不断增长,而诊断超声则成为临床成像的基础。为了允许经颅聚焦超声以广泛的强度将空间受限的能量传递到神经系统中,已经克服了重大的技术挑战。高强度聚焦超声可在大脑内产生可靠的永久性病变,而低强度聚焦超声已被报道可可逆地兴奋和抑制神经活动。尽管人们对这个有前途的无创、高聚焦神经调节新平台非常感兴趣,但潜在机制仍难以捉摸,尽管最近的研究提供了进一步的见解。尽管存在障碍,但聚焦超声具有广泛的永久性和可逆性神经调节的潜力,并且可以无缝地从实验室转化到临床,这值得无与伦比的关注和科学投资。聚焦超声具有许多关键特性,例如多模态兼容性、亚毫米级可转向聚焦、多焦点、高时间分辨率、配准以及实时监测传递的治疗和温度的能力。尽管技术复杂,但无创聚焦超声作为神经科学和临床平台的神经调节的未来仍然光明。