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Timing of neural responses in cortical organotypic slices.

机译:皮质器官型切片中神经反应的时机。

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摘要

Timing is a fundamental part of sensory and motor processing. However, little is known about the neural mechanisms underlying timing in the range of tens to hundreds of milliseconds. Although many theoretical hypotheses have been put forth on the possible underpinnings of temporal processing, there is little cellular experimental data, particularly in vitro, as to the neural mechanisms that could potentially function as timers. We use organotypic cortical slices to show that reliably timed action potentials (or excitatory postsynaptic potentials) can be observed up to 300 ms after a single stimulus. There was no relationship between the latency of the late responses and distance from the stimulating electrode. Paired recordings and pharmacological manipulations suggest that the timed late responses are the result of the propagation of activity throughout functionally defined networks. These results show that cortical networks may be intrinsically able to process temporal information.
机译:时间是感觉和运动处理的基本部分。但是,对于计时在几十到几百毫秒范围内的神经机制知之甚少。尽管已经提出了关于时间处理的可能基础的许多理论假设,但是关于可能用作计时器的神经机制的细胞实验数据,尤其是体外的细胞实验数据很少。我们使用器官型皮层切片显示,单次刺激后300毫秒内即可观察到可靠定时的动作电位(或兴奋性突触后电位)。迟反应的潜伏期与距刺激电极的距离之间没有关系。配对的录音和药理学操作表明,定时的延迟反应是活性在整个功能定义的网络中传播的结果。这些结果表明皮质网络可能固有地能够处理时间信息。

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