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全息辅助双侧血脑屏障开放在非人类灵长类动物中的可行性。

Feasibility of Hologram-Assisted Bilateral Blood-Brain Barrier Opening in Non-Human Primates.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2024 Oct;71(10):1172-1185. doi: 10.1109/TUFFC.2024.3451289. Epub 2024 Oct 10.

Abstract

Focused ultrasound (FUS) and microbubbles facilitate blood-brain barrier opening (BBBO) noninvasively, transiently, and safely for targeted drug delivery. Unlike state-of-the-art approaches, in this study, we demonstrate for the first time the simultaneous, bilateral BBBO in non-human primates (NHPs) using acoustic holograms at caudate and putamen structures. The simple and low-cost system with a single-element FUS transducer and 3-D printed acoustic hologram was guided by neuronavigation and a robotic arm. The advantages of holograms are transcranial aberration correction, simultaneous multifocus and high localization, and target-independent transducer positioning, defining a promising alternative for time- and cost-efficient FUS procedures. Holograms were designed with the k-space method by time-reversal techniques. T1-weighted MRI was used for treatment planning, while the computed tomography (CT) scan provided the head tissues acoustic properties. For the BBBO procedure, a robotic arm allowed transducer positioning errors below 0.1 mm and 0.1°. Following positioning, 0.5-0.6-MPa, 513-kHz microbubble-enhanced FUS was applied for 4 min. For BBBO assessment, Post-FUS T1-weighted MRI was acquired, and contrast enhancement indicated bilateral gadolinium extravasation at both caudate or putamen structures. The two BBBO locations were separated by 13.13 mm with a volume of 91.81 mm3 in the caudate, compared with 9.40 mm with a volume of 124.52 mm3 in simulation, while they were separated by 21.74 mm with a volume of 145.38 mm3 in the putamen and compared with 22.32 mm with a volume of 156.42 mm3 in simulation. No neurological damage was observed through T2-weighted and susceptibility-weighted imaging. This study demonstrates the feasibility and safety of hologram-assisted neuronavigation-guided-FUS for BBBO in NHP, providing thus an avenue for clinical translation.

摘要

聚焦超声(FUS)和微泡通过非侵入性、短暂和安全的方式促进血脑屏障开放(BBBO),以实现靶向药物输送。与最先进的方法不同,在这项研究中,我们首次在非人类灵长类动物(NHPs)中使用声全息图在尾状核和壳核结构中同时实现双侧 BBBO。该系统简单且成本低,使用单阵元 FUS 换能器和 3D 打印声全息图,由神经导航和机械臂引导。全息图的优点包括颅外像差校正、同时多焦点和高定位以及与换能器位置无关的目标,为高效且经济的 FUS 程序提供了有前途的替代方案。全息图是通过时间反转技术的 k 空间方法设计的。T1 加权 MRI 用于治疗计划,而 CT 扫描提供头部组织的声特性。对于 BBBO 程序,机械臂允许换能器定位误差低于 0.1 毫米和 0.1 度。定位后,施加 0.5-0.6 MPa、513 kHz 的微泡增强 FUS 持续 4 分钟。对于 BBBO 评估,在 FUS 后采集 T1 加权 MRI,对比增强显示双侧钆外渗到尾状核或壳核结构。在尾状核中,两个 BBBO 位置之间的距离为 13.13 毫米,体积为 91.81 毫米 3,模拟结果为 9.40 毫米,体积为 124.52 毫米 3,而在壳核中,两个 BBBO 位置之间的距离为 21.74 毫米,体积为 145.38 毫米 3,模拟结果为 22.32 毫米,体积为 156.42 毫米 3。T2 加权和磁化率加权成像未观察到神经损伤。这项研究证明了在 NHP 中使用声全息图辅助神经导航引导 FUS 进行 BBBO 的可行性和安全性,为临床转化提供了一种途径。

相似文献

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Feasibility of Hologram-Assisted Bilateral Blood-Brain Barrier Opening in Non-Human Primates.全息辅助双侧血脑屏障开放在非人类灵长类动物中的可行性。
IEEE Trans Ultrason Ferroelectr Freq Control. 2024 Oct;71(10):1172-1185. doi: 10.1109/TUFFC.2024.3451289. Epub 2024 Oct 10.

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Getting ahead of Alzheimer's disease: early intervention with focused ultrasound.领先于阿尔茨海默病:聚焦超声早期干预
Front Neurosci. 2023 Jul 27;17:1229683. doi: 10.3389/fnins.2023.1229683. eCollection 2023.

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