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小龙虾奥氏原螯虾中已识别的发放动作电位和不发放动作电位的机械感觉神经元的方向选择性比较。

Comparison of directional selectivity in identified spiking and nonspiking mechanosensory neurons in the crayfish Orconectes limosus.

作者信息

Tautz J, Plummer M R

机构信息

Theodor-Boveri Institut für Biowissenschaften, Lehrstuhl für Verhaltensphysiologie und Soziobiologie, Universität Am Hubland, Federal Republic of Germany.

出版信息

Proc Natl Acad Sci U S A. 1994 Jun 21;91(13):5853-7. doi: 10.1073/pnas.91.13.5853.

Abstract

We have recorded electrical activity from two identified synaptically coupled mechanosensory interneurons in the abdominal nervous system of the crayfish Orconectes limosus and have studied their responses to constant-velocity water-jet stimuli presented from different directions. The two neurons, the ascending caudal photoreceptor (CPR) and the local directionally selective neuron, responded preferentially to stimuli delivered ipsilaterally to their dendritic input regions. Both neurons featured responses consisting of a phasic excitatory "on" response and a tonic depolarizing plateau. The different response components showed various degrees of directional selectivity: The initial "on" peak of the response was the least sensitive and the plateau was the most sensitive to stimulus direction. The CPR showed a sharp cut-off in responsiveness to contralateral stimuli, whereas the local directionally selective neuron showed a more gradual decrease in its directional responsiveness. This difference is a consequence of the feed-forward lateral inhibition that the local directionally selective neuron exerts on the CPR and of the threshold for initiation of action potentials in the CPR. A comparison of the spiking response of the CPR with its generator potential shows that the number and frequency of action potentials are a more sensitive indicator of directional preference than the generator potential response. The directional characteristic of the CPR is discussed as a filter matched to a specific spatial aspect of biologically relevant water movements.

摘要

我们记录了小龙虾奥氏原螯虾腹部神经系统中两个已确定的通过突触连接的机械感觉中间神经元的电活动,并研究了它们对从不同方向施加的恒速水射流刺激的反应。这两个神经元,即上升尾侧光感受器(CPR)和局部方向选择性神经元,对同侧树突输入区域传递的刺激有优先反应。两个神经元的反应都包括一个相位兴奋性“开”反应和一个紧张性去极化平台。不同的反应成分表现出不同程度的方向选择性:反应的初始“开”峰对刺激方向最不敏感,而平台对刺激方向最敏感。CPR对侧刺激的反应有一个急剧的截止,而局部方向选择性神经元的方向反应性则有一个更逐渐的下降。这种差异是局部方向选择性神经元对CPR施加的前馈侧向抑制以及CPR中动作电位起始阈值的结果。CPR的尖峰反应与其发生器电位的比较表明,动作电位的数量和频率比发生器电位反应更能敏感地指示方向偏好。CPR的方向特性被讨论为与生物相关水运动的特定空间方面相匹配的滤波器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6a2/44095/229788ff1e6d/pnas01135-0130-a.jpg

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