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Multifunctional multi-shank neural probe for investigating and modulating long-range neural circuits in vivo

机译:用于调查和调制体内远程神经电路的多功能多柄神经探头

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Investigation and modulation of neural circuits in vivo at the cellular level are very important for studying functional connectivity in a brain. Recently, neural probes with stimulation capabilities have been introduced, and they provided an opportunity for studying neural activities at a specific region in the brain using various stimuli. However, previous methods have a limitation in dissecting long-range neural circuits due to inherent limitations on their designs. Moreover, the large size of the previously reported probes induces more significant tissue damage. Herein, we present a multifunctional multi-shank MEMS neural probe that is monolithically integrated with an optical waveguide for optical stimulation, microfluidic channels for drug delivery, and microelectrode arrays for recording neural signals from different regions at the cellular level. In this work, we successfully demonstrated the functionality of our probe by confirming and modulating the functional connectivity between the hippocampal CA3 and CA1 regions in vivo.
机译:对细胞水平体内神经电路的调查和调制对于研究脑中的功能连接非常重要。最近,已经介绍了具有刺激能力的神经探针,并且他们为使用各种刺激提供了研究大脑中特定区域的神经活动的机会。然而,以前的方法由于其设计的固有局限性而在解剖远程神经电路中具有限制。此外,先前报道的探针的大尺寸诱导更显着的组织损伤。在此,我们介绍了一种多功能多柄MEMS神经探针,其与用于光学刺激的光波导,用于药物输送的微流体通道,以及用于从蜂窝水平的不同区域记录神经信号的微电极阵列。在这项工作中,我们通过确认和调节体内海马CA3和CA1区之间的功能连通性成功地证明了我们的探针的功能。

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