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使用双聚焦技术对植入神经内接口的周围神经进行体内细胞水平的 3D 成像。

In Vivo Cellular-Level 3D Imaging of Peripheral Nerves Using a Dual-Focusing Technique for Intra-Neural Interface Implantation.

机构信息

Center for Intelligent and Interactive Robotics, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology, Daejeon, 34141, Republic of Korea.

出版信息

Adv Sci (Weinh). 2022 Jan;9(3):e2102876. doi: 10.1002/advs.202102876. Epub 2021 Nov 29.

Abstract

In vivo volumetric imaging of the microstructural changes of peripheral nerves with an inserted electrode could be key for solving the chronic implantation failure of an intra-neural interface necessary to provide amputated patients with natural motion and sensation. Thus far, no imaging devices can provide a cellular-level three-dimensional (3D) structural images of a peripheral nerve in vivo. In this study, an optical coherence tomography-based peripheral nerve imaging platform that employs a newly proposed depth of focus extension technique is reported. A point spread function with the finest transverse resolution of 1.27 µm enables the cellular-level volumetric visualization of the metal wire and microstructural changes in a rat sciatic nerve with the metal wire inserted in vivo. Further, the feasibility of applying the imaging platform to large animals for a preclinical study is confirmed through in vivo rabbit sciatic nerve imaging. It is expected that new possibilities for the successful chronic implantation of an intra-neural interface will open up by providing the 3D microstructural changes of nerves around the inserted electrode.

摘要

利用插入电极的外周神经微观结构变化的体内容积成像,可能是解决神经内接口慢性植入失败的关键,而这对于为截肢患者提供自然运动和感觉是必要的。到目前为止,还没有成像设备可以提供体内外周神经的细胞级三维(3D)结构图像。在这项研究中,报告了一种基于光相干断层扫描的外周神经成像平台,该平台采用了新提出的景深扩展技术。具有最细横向分辨率为 1.27µm 的点扩散函数,可以对体内插入金属丝的大鼠坐骨神经进行金属丝的细胞级容积可视化和微观结构变化。此外,通过对活体兔坐骨神经成像,证实了该成像平台应用于大动物进行临床前研究的可行性。通过提供插入电极周围神经的 3D 微观结构变化,有望为成功进行神经内接口的慢性植入开辟新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/322a/8787432/577c266fdb75/ADVS-9-2102876-g001.jpg

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