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爆发式放电在时空变化刺激编码中的作用。

A role of burst firings in encoding of spatiotemporally-varying stimulus.

作者信息

Fujita Kazuhisa, Kashimori Yoshiki, Zheng MeiHong, Kambara Takeshi

机构信息

Department of Information Network Science, Graduate School of Information Systems, University of Electro-Communications, Chofu, Tokyo 182-8585, Japan.

出版信息

Biosystems. 2004 Aug-Oct;76(1-3):21-31. doi: 10.1016/j.biosystems.2004.05.003.

Abstract

To investigate a role of burst firings of neurons in encoding of spatiotemporally-varying stimulus, we focus on electrosensory system of a weakly electric fish. Weakly electric fish generates electric field around its body using electric organ discharge and can accurately detect the location of an object using the modulation of electric field induced by the object. We developed a model of fish body by which we numerically describe the spatiotemporal patterns of electric field around the fish body. We also made neural models of electroreceptor distributed on the fish body and of electrosensory lateral-line lobe (ELL) to investigate what kinds of information of electric field distorted by an object they detect. Here we show that the spatiotemporal features of electric field around the fish body are encoded by the timing of burst firings of ELL neurons. The information of object distance is extracted by the area of synchronous firings of neurons in a higher nucleus, torus semicircularis.

摘要

为了研究神经元的爆发式放电在时空变化刺激编码中的作用,我们聚焦于弱电鱼的电感觉系统。弱电鱼利用电器官放电在其身体周围产生电场,并能通过物体引起的电场调制准确检测物体的位置。我们开发了一个鱼体模型,通过它来数值描述鱼体周围电场的时空模式。我们还构建了分布在鱼体上的电感受器和电感觉侧线叶(ELL)的神经模型,以研究它们检测到的被物体扭曲的电场的何种信息。在此我们表明,鱼体周围电场的时空特征由ELL神经元爆发式放电的时间编码。物体距离信息由更高的神经核——半规管环面中神经元同步放电的区域提取。

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