首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Flexible and stretchable opto-electric neural interface for low-noise electrocorticogram recordings and neuromodulation in vivo
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Flexible and stretchable opto-electric neural interface for low-noise electrocorticogram recordings and neuromodulation in vivo

机译:用于低噪声电加电图记录和体内神经调节的柔性和可拉伸的光电神经界面

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摘要

Optogenetic-based neuromodulation tools is evolving for the basic neuroscience research in animals combining optical manipulation and electrophysiological recordings. However, current opto-electric integrated devices attaching on cerebral cortex for electrocorticogram (ECoG) still exist potential damage risks for both brain tissue and electrode, due to the mechanical mismatch and brain deformation. Here, we propose a stretchable optoelectric integrated neural interface by integrating serpentine-shaped electrodes and multisite micro-LEDs onto a hyperelastic substrate, as well as a serpentine-shaped metal shielding embedded in recording electrode for low-noise signal acquisition. The delicate structure design, ultrasoft encapsulation and independent fabrication followed by assembly are beneficial to the conformality, reliability and yield. In vitro accelerated deterioration and reciprocating tensile have demonstrated good performance and high stability. In vivo optogenetic activation of focal cortical areas of awaked mouse expressing Channelrhodopsin-2 is realized with simultaneous high-quality recording. We highlight the potential use of this multifunctional neural interface for neural applications.
机译:基于致光学的神经调节工具正在改进动物的基本神经科学研究组合光学操纵和电生理记录。然而,由于机械不匹配和脑变形,电流损坏脑组织和电极的电流光电集成装置仍然存在脑组织和电极的潜在损伤风险。这里,我们通过将蛇形电极和多电路微LED集成到高级痉挛基板上,以及嵌入用于低噪声信号采集的记录电极中的蛇形金属屏蔽,提出可拉伸的光电集成神经界面。精致的结构设计,超声封装和独立的制造,然后是组装,有利于适系性,可靠性和产量。体外加速劣化和往复拉伸具有良好的性能和高稳定性。以同时高质量的记录实现表达曝光小鼠的侧脊柱脊髓脊髓致脊髓致荧光性激活。我们突出了这种多功能神经界面的潜在用途进行神经应用。

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