用于光刺激和电生理记录的双色纳米光子神经探针。

IF 4.8 2区 医学 Q1 NEUROSCIENCES
Neurophotonics Pub Date : 2025-04-01 Epub Date: 2025-03-28 DOI:10.1117/1.NPh.12.2.025002
David A Roszko, Fu-Der Chen, John Straguzzi, Hannes Wahn, Alec Xu, Blaine McLaughlin, Xinxin Yin, Hongyao Chua, Xianshu Luo, Guo-Qiang Lo, Joshua H Siegle, Joyce K S Poon, Wesley D Sacher
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引用次数: 0

摘要

意义:能够向深层组织目标提供多色光遗传刺激的紧凑工具,具有足够的跨度、时空分辨率和光功率,仍然具有挑战性。在这里,我们展示了代工制造的用于蓝色和红色光刺激和电生理记录的纳米光子神经探针,它使用空间复用和柄上波长解复用的组合来增加柄上发射器的数量。目的:在商业硅光子学代工厂中,我们展示了具有26个光子通道和26个记录位点的硅(Si)光子神经探针,该探针在200毫米直径的晶圆上制备。每个光子通道由一个柄上解复用器和单独的光栅耦合器组成,用于蓝光和红光,总共52个发射器。方法:我们通过实验室测量和体内实验,通过26对发射器中的16对进行光刺激来评估神经探针的功能。结果:我们报告了神经探针电极阻抗、光传输和光束轮廓。我们在对蓝色或红色光刺激敏感的小鼠的光遗传学实验中验证了包装的神经探针。结论:我们的代工厂制造的纳米光子神经探针在单个柄上展示了密集的双色发射器集成,用于靶向光刺激。考虑到它的两个发射波长,高发射密度和长站点跨度,该探针将有助于同时在浅层和深层结构上进行双向电路操作的实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Foundry-fabricated dual-color nanophotonic neural probes for photostimulation and electrophysiological recording.

Significance: Compact tools capable of delivering multicolor optogenetic stimulation to deep tissue targets with sufficient span, spatiotemporal resolution, and optical power remain challenging to realize. Here, we demonstrate foundry-fabricated nanophotonic neural probes for blue and red photostimulation and electrophysiological recording, which use a combination of spatial multiplexing and on-shank wavelength demultiplexing to increase the number of on-shank emitters.

Aim: We demonstrate silicon (Si) photonic neural probes with 26 photonic channels and 26 recording sites, which were fabricated on 200-mm diameter wafers at a commercial Si photonics foundry. Each photonic channel consists of an on-shank demultiplexer and separate grating coupler emitters for blue and red light, for a total of 52 emitters.

Approach: We evaluate neural probe functionality through bench measurements and in vivo experiments by photostimulating through 16 of the available 26 emitter pairs.

Results: We report neural probe electrode impedances, optical transmission, and beam profiles. We validated a packaged neural probe in optogenetic experiments with mice sensitive to blue or red photostimulation.

Conclusions: Our foundry-fabricated nanophotonic neural probe demonstrates dense dual-color emitter integration on a single shank for targeted photostimulation. Given its two emission wavelengths, high emitter density, and long site span, this probe will facilitate experiments involving bidirectional circuit manipulations across both shallow and deep structures simultaneously.

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来源期刊
Neurophotonics
Neurophotonics Neuroscience-Neuroscience (miscellaneous)
CiteScore
7.20
自引率
11.30%
发文量
114
审稿时长
21 weeks
期刊介绍: At the interface of optics and neuroscience, Neurophotonics is a peer-reviewed journal that covers advances in optical technology applicable to study of the brain and their impact on the basic and clinical neuroscience applications.
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