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定时操作以避免不应期:一种处理感觉信号流的简单方法。

Timing actions to avoid refractoriness: a simple solution for streaming sensory signals.

机构信息

Departamento de Neurociencias Integrativas y Computacionales, Instituto de Investigaciones Biológicas Clemente Estable, Montevideo, Uruguay.

出版信息

PLoS One. 2011;6(7):e22159. doi: 10.1371/journal.pone.0022159. Epub 2011 Jul 15.

Abstract

Segmenting self- from allo-generated signals is crucial for active sensory processing. We report a dynamic filter used by South American pulse electric fish to distinguish active electro-sensory signals carried by their own electric discharges from other concomitant electrical stimuli (i.e. communication signals). The filter has a sensory component, consisting of an onset type central electro-sensory neuron, and a motor component, consisting of a change in the fish's discharge rate when allo-generated electrical events occur in temporal proximity to the fish's own discharge. We investigated the sensory component of the filter by in vitro mimicking synaptic inputs occurring during behavioral responses to allo-generated interfering signals. We found that active control of the discharge enhances self-generated over allo-generated responses by forcing allo-generated signals into a central refractory period. This hypothesis was confirmed by field potential recordings in freely discharging fish. Similar sensory-motor mechanisms may also contribute to signal segmentation in other sensory systems.

摘要

对自身产生的信号与异体产生的信号进行分割对于主动感觉处理至关重要。我们报告了一种南美电脉冲鱼用来区分自身电放电所携带的主动电感觉信号与其他伴随电刺激(即通讯信号)的动态滤波器。该滤波器具有一个感觉成分,由起始型中央电感觉神经元组成,和一个运动成分,由当异体产生的电事件在时间上接近鱼自身放电时鱼放电率的变化组成。我们通过在体外模拟行为反应期间发生的突触输入来研究滤波器的感觉成分,发现通过将异体信号强制进入中央不应期,主动控制放电可增强自身产生的反应,而抑制异体产生的反应。这一假设通过在自由放电的鱼中进行场电位记录得到了证实。类似的感觉-运动机制也可能有助于其他感觉系统中的信号分割。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/062b/3137615/c3a811d09282/pone.0022159.g001.jpg

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