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Method for spike detection from microelectrode array recordings contaminated by artifacts of simultaneous two-photon imaging

机译:从同时双光子成像伪影污染的微电极阵列记录中检测峰值的方法

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摘要

The simultaneous utilization of electrophysiological recordings and two-photon imaging allows the observation of neural activity in a high temporal and spatial resolution at the same time. The three dimensional monitoring of morphological features near the microelectrode array makes the observation more precise and complex. In vitro experiments were performed on mice neocortical slices expressing the GCaMP6 genetically encoded calcium indicator for monitoring the neural activity with two-photon microscopy around the implanted microelectrodes. A special filtering algorithm was used for data analysis to eliminate the artefacts caused by the imaging laser. Utilization of a special filtering algorithm allowed us to detect and sort single unit activities from simultaneous two-photon imaging and electrophysiological measurement.
机译:电生理记录和双光子成像的同时利用允许在高时间和空间分辨率下同时观察神经活动。对微电极阵列附近的形态特征进行三维监控,使观测更加精确和复杂。在小鼠新皮层切片上进行了体外实验,该切片表达了GCaMP6基因编码的钙指示剂,用于通过植入的微电极周围的双光子显微镜监测神经活动。特殊的滤波算法用于数据分析,以消除由成像激光器引起的伪影。利用特殊的过滤算法,我们可以从同时进行的双光子成像和电生理测量中检测和分类单个单元的活动。

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