Liu D, Munoz F, Sanatkhani S, Pouliopoulos A N, Konofagou E, Grinband J, Vp Ferrera
Dept. of Neuroscience, Columbia University, USA.
Zuckerman Mind Brain Behavior Institute, Columbia University, USA.
bioRxiv. 2023 Feb 16:2023.02.16.528741. doi: 10.1101/2023.02.16.528741.
Focused ultrasound (FUS) is a non-invasive neuromodulation technology that is being investigated for potential treatment of neurological and psychiatric disorders. Focused ultrasound combined with microbubbles can temporarily open the intact blood-brain barrier (BBB) of animals and humans, and facilitate drug delivery. FUS exposure, either with or without microbubbles, has been demonstrated to alter the behavior of non-human primates, and previous work has demonstrated transient and long-term effects of FUS neuromodulation on functional connectivity using resting state functional MRI. However, it is unknown whether opening the BBB affects functional connectivity differently than FUS alone. Thus we applied FUS alone (neuromodulation) and FUS with microbubbles (BBB opening) in the dorsal striatum of lightly anesthetized non-human primates, and compared changes in functional connectivity in major brain networks. We found different alteration patterns between FUS neuromodulation and FUS-mediated BBB opening in several cortical areas, and we also found that applying FUS to a deep brain structure can alter functional connectivity in the default mode network and frontotemporal network.
聚焦超声(FUS)是一种非侵入性神经调节技术,目前正在研究其对神经和精神疾病的潜在治疗作用。聚焦超声与微泡相结合可以暂时打开动物和人类完整的血脑屏障(BBB),并促进药物递送。无论有无微泡,FUS暴露均已被证明会改变非人灵长类动物的行为,并且先前的研究已经证明了FUS神经调节对静息态功能MRI功能连接的短期和长期影响。然而,打开血脑屏障对功能连接的影响是否与单独使用FUS不同尚不清楚。因此,我们在轻度麻醉的非人灵长类动物的背侧纹状体中单独应用FUS(神经调节)和联合微泡应用FUS(打开血脑屏障),并比较主要脑网络中功能连接的变化。我们在几个皮质区域发现了FUS神经调节和FUS介导的血脑屏障开放之间不同的改变模式,并且我们还发现将FUS应用于深部脑结构可以改变默认模式网络和额颞网络中的功能连接。