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A 1#x03BC;m diameter tip fiber-based surface plasmon resonance system for single unit optical neural recording

机译:基于1μm直径的基于尖端光纤的表面等离子体谐振系统,用于单单元光学神经记录

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A gold-deposited optical fiber sensor system based on surface plasmon resonance (SPR) was developed for optical measurement of neuronal activity. To enhance the sensitivity of localized SPR and to make a precise and safe contact with the cellular membrane, we designed a tapered optical probe of 1μm diameter at the tip of the fiber. By wet etching and gold evaporating processes, pencil-shaped optical probes were successfully fabricated. The SPR system with the sharp optical probe was integrated with a conventional patch clamping system to realize a simultaneous optical and electrical recording on a single neuron. Although the shape of optical signal is not clear due to tiny change of intrinsic optical properties on the neuron, optical and electrical signals were simultaneously changed by capsaicin stimulation. Furthermore, our designed fiber probe can be applicable to localized optical stimulation as well as in vivo optical neuroprosthetic devices.
机译:开发了一种基于表面等离子体共振(SPR)的金沉积光纤传感器系统,用于光学测量神经元活动。为了增强局部SPR的敏感性,并与蜂窝膜进行精确和安全接触,我们在纤维尖端设计了1μm直径的锥形光学探针。通过湿蚀刻和金蒸发过程,成功制造了铅笔形光学探针。具有尖锐光学探针的SPR系统与传统的贴片钳制系统集成,以在单个神经元上实现同时光学和电气记录。尽管光学信号的形状对于神经元上的内在光学性质的微小变化,但是通过辣椒蛋白刺激同时改变光学和电信号。此外,我们设计的纤维探针可以适用于局部光学刺激以及体内光学神经温皮划体装置。

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