Department of Radiology, Cumming School of Medicine, University of Calgary, Alberta, T2N 1N4, Canada; Hotchkiss Brain Institute, University of Calgary, Alberta, T2N 4N1, Canada.
Department of Radiology, Cumming School of Medicine, University of Calgary, Alberta, T2N 1N4, Canada; Hotchkiss Brain Institute, University of Calgary, Alberta, T2N 4N1, Canada; Department of Clinical Neurosciences, Cumming School of Medicine, University of Calgary, Alberta, T2N 1N4, Canada.
Brain Stimul. 2024 Jul-Aug;17(4):734-751. doi: 10.1016/j.brs.2024.06.005. Epub 2024 Jun 14.
Low-intensity transcranial ultrasound has surged forward as a non-invasive and disruptive tool for neuromodulation with applications in basic neuroscience research and the treatment of neurological and psychiatric conditions.
To provide a comprehensive overview and update of preclinical and clinical transcranial low intensity ultrasound for neuromodulation and emphasize the emerging role of functional brain mapping to guide, better understand, and predict responses.
A systematic review was conducted by searching the Web of Science and Scopus databases for studies on transcranial ultrasound neuromodulation, both in humans and animals.
187 relevant studies were identified and reviewed, including 116 preclinical and 71 clinical reports with subjects belonging to diverse cohorts. Milestones of ultrasound neuromodulation are described within an overview of the broader landscape. General neural readouts and outcome measures are discussed, potential confounds are noted, and the emerging use of functional magnetic resonance imaging is highlighted.
Ultrasound neuromodulation has emerged as a powerful tool to study and treat a range of conditions and its combination with various neural readouts has significantly advanced this platform. In particular, the use of functional magnetic resonance imaging has yielded exciting inferences into ultrasound neuromodulation and has the potential to advance our understanding of brain function, neuromodulatory mechanisms, and ultimately clinical outcomes. It is anticipated that these preclinical and clinical trials are the first of many; that transcranial low intensity focused ultrasound, particularly in combination with functional magnetic resonance imaging, has the potential to enhance treatment for a spectrum of neurological conditions.
低强度经颅超声作为一种非侵入性和突破性的神经调节工具,在基础神经科学研究和治疗神经和精神疾病方面得到了广泛应用。
提供经颅低强度超声神经调节的临床前和临床应用的全面概述和更新,并强调功能脑图在指导、更好地理解和预测反应方面的新兴作用。
通过搜索 Web of Science 和 Scopus 数据库,对经颅超声神经调节的人类和动物研究进行了系统综述。
共确定并回顾了 187 项相关研究,其中包括 116 项临床前研究和 71 项临床报告,研究对象属于不同的队列。概述了超声神经调节的里程碑,同时也介绍了更广泛的研究领域。讨论了一般的神经反应和结果测量指标,指出了潜在的混杂因素,并强调了功能磁共振成像的新兴应用。
超声神经调节已成为研究和治疗一系列疾病的有力工具,其与各种神经反应的结合极大地推动了这一平台的发展。特别是,功能磁共振成像的应用为超声神经调节提供了令人兴奋的推论,并有可能增进我们对大脑功能、神经调节机制以及最终临床结果的理解。可以预期,这些临床前和临床试验只是众多研究中的第一批;低强度经颅聚焦超声,特别是与功能磁共振成像相结合,有可能增强对一系列神经疾病的治疗效果。