Meng Ying, Suppiah Suganth, Mithani Karim, Solomon Benjamin, Schwartz Michael L, Lipsman Nir
Division of Neurosurgery, Department of Surgery, Sunnybrook Health Sciences Centre, University of Toronto, 2075 Bayview Avenue, Toronto, ON Canada.
Physical Sciences Platform, Sunnybrook Research Institute, Toronto, ON Canada.
J Ther Ultrasound. 2017 Oct 5;5:26. doi: 10.1186/s40349-017-0105-z. eCollection 2017.
MRI guided focused ultrasound is an emerging technique that uses acoustic energy to noninvasively treat intracranial disorders. At high frequencies, it can be used to raise tissue temperatures and ablate discrete brain targets with sub-millimeter accuracy. This application is currently under investigation for a broad range of clinical applications, including brain tumors, movement disorders, and psychiatric conditions. At low frequencies MRI guided focused ultrasound can be used to modulate neuronal activity and in conjunction with injected microbubbles, can open the blood-brain barrier to enhance the delivery of therapeutic compounds. The last decade has seen dramatic advances in the science of MRI guided focused ultrasound, helping elucidate both its mechanisms and potential in pre-clinical models, and its translational promise across myriad clinical applications. This review provides an update of current and emerging MRI guided focused ultrasound applications for intracranial disorders and describes future directions and challenges for the field.
磁共振成像(MRI)引导下的聚焦超声是一种新兴技术,它利用声能非侵入性地治疗颅内疾病。在高频下,它可用于提高组织温度并以亚毫米精度消融离散的脑靶点。目前正在对该应用进行广泛的临床应用研究,包括脑肿瘤、运动障碍和精神疾病。在低频下,MRI引导的聚焦超声可用于调节神经元活动,并且与注入的微泡结合使用时,可打开血脑屏障以增强治疗化合物的递送。在过去十年中,MRI引导的聚焦超声科学取得了巨大进展,有助于阐明其在临床前模型中的机制和潜力,以及其在众多临床应用中的转化前景。本综述提供了颅内疾病当前和新兴的MRI引导聚焦超声应用的最新情况,并描述了该领域的未来方向和挑战。