光遗传学
神经科学
神经调节
光学相干层析成像
计算机科学
脑-机接口
光学成像
电生理学
神经活动
生物医学工程
光记录
神经影像学
神经假体
调制(音乐)
神经工程
生物神经网络
临床前影像学
分子成像
神经生理学
运动前神经元活动
信号(编程语言)
接口(物质)
脑电图
连贯性(哲学赌博策略)
人工智能
荧光寿命成像显微镜
人脑
局部场电位
作者
Nari Hong,Sergio Montalvo Vargo,Gaku Hatanaka,Zhaoyu Gong,Noah Stanis,Jasmine Zhou,Tiphaine Belloir,Ruikang K. Wang,Wyeth Bair,Maysamreza Chamanzar,Azadeh Yazdan‐Shahmorad
标识
DOI:10.1002/advs.202514419
摘要
Multimodal neural interfaces that integrate electrical and optical functionalities are promising tools for neuroscientific and clinical applications that involve recording and manipulating neuronal activity. However, most technologies for multimodal implementation are largely restricted to small animal models and lack the ability to translate to the larger brains of non-human primates (NHPs). Smart Dura, a recently developed large-scale neural interface for NHPs, enables high-density electrophysiological recordings and broad optical accessibility, providing multiscale information with enhanced spatiotemporal resolution. In this paper, the multimodal capabilities of Smart Dura are demonstrated through integration 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 Smart Dura, in vivo fluorescence vascular imaging is achieved down to depths of 200 and 550 µm using two-photon and three-photon microscopy, respectively. When combined with simultaneous electrophysiology, Smart Dura also enables the assessment of vascular and neural dynamics via OCTA and ISOI, the induction of ischemic stroke, and the application of optogenetic neuromodulation across a wide cortical area of 20 mm in diameter. These capabilities support comprehensive investigations of brain dynamics in NHPs, advancing translational neurotechnology for human applications.
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