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首页> 外文期刊>British Journal of Radiology >Advances in acoustic monitoring and control of focused ultrasound-mediated increases in blood-brain barrier permeability
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Advances in acoustic monitoring and control of focused ultrasound-mediated increases in blood-brain barrier permeability

机译:声学监测和对焦超声介导的控制的进展血脑屏障渗透率的增加

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Transcranial focused ultrasound (FUS) combined with intravenously circulating microbubbles can transiently and selectively increase blood-brain barrier permeability to enable targeted drug delivery to the central nervous system, and is a technique that has the potential to revolutionize the way neurological diseases are managed in medical practice. Clinical testing of this approach is currently underway in patients with brain tumors, early Alzheimer's disease, and amyotrophic lateral sclerosis. A major challenge that needs to be addressed in order for widespread clinical adoption of FUS-mediated blood-brain barrier permeabilization to occur is the development of systems and methods for real-time treatment monitoring and control, to ensure that safe and effective acoustic exposure levels are maintained throughout the procedures. This review gives a basic overview of the oscillation dynamics, acoustic emissions, and biological effects associated with ultrasound-stimulated microbubbles in vivo, and provides a summary of recent advances in acoustic-based strategies for detecting, controlling, and mapping microbubble activity in the brain. Further development of next-generation clinical FUS brain devices tailored towards microbubble-mediated applications is warranted and required for translation of this potentially disruptive technology into routine clinical practice.
机译:经颅聚焦超声(FUS)结合静脉内循环微泡可以瞬时且选择性地增加血脑屏障渗透性,以使靶向药物输送到中枢神经系统,并且是一种有可能彻底改变神经系统疾病在医疗中管理方式的技术实践。这种方法的临床测试目前正在脑肿瘤,早期阿尔茨海默病的患者中进行,患有肌萎缩的外侧硬化。需要解决的主要挑战,以便普遍临床采用Fus介导的血脑屏障渗透化,发生用于实时治疗监测和控制的系统和方法,以确保安全有效的声学暴露水平在整个程序中保持。本综述提供了与体内超声刺激的微泡相关的振荡动态,声学排放和生物学效应的基本概述,并提供了基于声学的策略的最近进步的摘要,用于检测,控制和绘制大脑中的微泡活性。进一步开发针对微泡介导的应用程序定制的下一代临床FUS脑装置是有必要的,并要求这种可能破坏性技术翻译成常规临床实践。

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