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通过智能硬脑膜在非人灵长类动物中进行多模态光学成像与调制。

Multimodal optical imaging and modulation through Smart Dura in non-human primates.

作者信息

Hong Nari, Vargo Sergio Montalvo, Hatanaka Gaku, Gong Zhaoyu, Stanis Noah, Zhou Jasmine, Belloir Tiphaine, Wang Ruikang K, Bair Wyeth, Chamanzar Maysamreza, Yazdan-Shahmorad Azadeh

机构信息

Department of Bioengineering, University of Washington, Seattle, WA, 98195, USA.

Washington National Primate Research Center, Seattle, WA, 98195, USA.

出版信息

bioRxiv. 2025 Mar 4:2025.02.27.640384. doi: 10.1101/2025.02.27.640384.

Abstract

A multimodal neural interface integrating electrical and optical functionalities is a promising tool for recording and manipulating neuronal activity, providing multiscale information with enhanced spatiotemporal resolution. However, most technologies for multimodal implementation are limited in their applications to small animal models and lack the ability to translate to larger brains, such as non-human primates (NHPs). Recently, we have developed a large-scale neural interface for NHPs, Smart Dura, which enables electrophysiological recordings and high optical accessibility. In this paper, we demonstrate the multimodal applications of Smart Dura in NHPs by combining with multiphoton imaging, optical coherence tomography angiography (OCTA), and intrinsic signal optical imaging (ISOI), as well as optical manipulations such as photothrombotic lesioning and optogenetics. Through the transparent Smart Dura, we could obtain fluorescence images down to 200 μm and 550 μm depth using two-photon and three-photon microscopy, respectively. Integrated with simultaneous electrophysiology using the Smart Dura, we could also assess vascular and neural dynamics with OCTA and ISOI, induce ischemic stroke, and apply optogenetic neuromodulation over a wide coverage area of 20 mm diameter. This multimodal interface enables comprehensive investigations of brain dynamics in NHPs, advancing translational neurotechnology for human applications.

摘要

一种集成了电学和光学功能的多模态神经接口是记录和操纵神经元活动的一种有前途的工具,它能以更高的时空分辨率提供多尺度信息。然而,大多数多模态实现技术在应用上仅限于小型动物模型,并且缺乏转化应用于更大脑区(如非人灵长类动物(NHPs))的能力。最近,我们开发了一种用于NHPs的大规模神经接口——智能硬脑膜(Smart Dura),它能够进行电生理记录并具有高光学可达性。在本文中,我们通过将智能硬脑膜与多光子成像、光学相干断层扫描血管造影(OCTA)和内在信号光学成像(ISOI)相结合,以及进行光血栓损伤和光遗传学等光学操作,展示了智能硬脑膜在NHPs中的多模态应用。通过透明的智能硬脑膜,我们分别使用双光子和三光子显微镜能够获得深度达200μm和550μm的荧光图像。将智能硬脑膜与同步电生理相结合,我们还可以利用OCTA和ISOI评估血管和神经动力学,诱导缺血性中风,并在直径为20mm的广泛覆盖区域应用光遗传学神经调节。这种多模态接口能够对NHPs的脑动力学进行全面研究,推动用于人类应用的转化神经技术发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d80d/11908230/135bb9e1474e/nihpp-2025.02.27.640384v1-f0001.jpg

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