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首页> 外文期刊>Journal of Neurophysiology >Spike sorting of synchronous spikes from local neuron ensembles
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Spike sorting of synchronous spikes from local neuron ensembles

机译:来自局部神经元集成的同步峰值的峰值排序

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Synchronous spike discharge of cortical neurons is thought to be a fingerprint of neuronal cooperativity. Because neighboring neurons are more densely connected to one another than neurons that are located further apart, near-synchronous spike discharge can be expected to be prevalent and it might provide an important basis for cortical computations. Using microelectrodes to record local groups of neurons does not allow for the reliable separation of synchronous spikes from different cells, because available spike sorting algorithms cannot correctly resolve the temporally overlapping waveforms. We show that high spike sorting performance of in vivo recordings, including overlapping spikes, can be achieved with a recently developed filter-based template matching procedure. Using tetrodes with a three-dimensional structure, we demonstrate with simulated data and ground truth in vitro data, obtained by dual intracellular recording of two neurons located next to a tetrode, that the spike sorting of synchronous spikes can be as successful as the spike sorting of nonoverlapping spikes and that the spatial information provided by multielectrodes greatly reduces the error rates. We apply the method to tetrode recordings from the prefrontal cortex of behaving primates, and we show that overlapping spikes can be identified and assigned to individual neurons to study synchronous activity in local groups of neurons.
机译:皮质神经元的同步尖峰放电被认为是神经元协同作用的指纹。由于邻近的神经元比彼此分开的神经元更紧密地相互连接,因此可以预料到接近同步的尖峰放电将很普遍,这可能为皮层计算提供重要的依据。使用微电极记录局部神经元组并不能可靠地将同步尖峰信号与不同细胞区分开,因为可用的尖峰信号排序算法无法正确解析时间上重叠的波形。我们显示,利用最近开发的基于过滤器的模板匹配程序可以实现体内记录(包括重叠的尖峰)的高尖峰排序性能。使用具有三维结构的四极体,我们通过模拟数据和地面真实情况体外数据(通过对位于四极体附近的两个神经元的双重细胞内记录获得)证明,同步尖峰的尖峰排序与尖峰排序一样成功非重叠尖峰的产生以及多电极提供的空间信息大大降低了错误率。我们将该方法应用于行为灵长类动物的前额叶皮层区的四极体记录,并且我们发现可以识别重叠的尖峰并将其分配给单个神经元,以研究本地神经元组中的同步活动。

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