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由垂直-水平网络相互作用塑造的运动敏感神经元的方向调谐。

Orientation tuning of motion-sensitive neurons shaped by vertical-horizontal network interactions.

作者信息

Haag J, Borst A

机构信息

Department of Systems and Computational Neurobiology, Max-Planck Institute of Neurobiology, Am Klopferspitz 18a, 82152 Martinsried, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2003 May;189(5):363-70. doi: 10.1007/s00359-003-0410-6. Epub 2003 Apr 26.

Abstract

We measured the orientation tuning of two neurons of the fly lobula plate (H1 and H2 cells) sensitive to horizontal image motion. Our results show that H1 and H2 cells are sensitive to vertical motion, too. Their response depended on the position of the vertically moving stimuli within their receptive field. Stimulation within the frontal receptive field produced an asymmetric response: upward motion left the H1/H2 spike frequency nearly unaltered while downward motion increased the spike frequency to about 40% of their maximum responses to horizontal motion. In the lateral parts of their receptive fields, no such asymmetry in the responses to vertical image motion was found. Since downward motion is known to be the preferred direction of neurons of the vertical system in the lobula plate, we analyzed possible interactions between vertical system cells and H1 and H2 cells. Depolarizing current injection into the most frontal vertical system cell (VS1) led to an increased spike frequency, hyperpolarizing current injection to a decreased spike frequency in both H1 and H2 cells. Apart from VS1, no other vertical system cell (VS2-8) had any detectable influence on either H1 or H2 cells. The connectivity of VS1 and H1/H2 is also shown to influence the response properties of both centrifugal horizontal cells in the contralateral lobula plate, which are known to be postsynaptic to the H1 and H2 cells. The vCH cell receives additional input from the contralateral VS2-3 cells via the spiking interneuron V1.

摘要

我们测量了果蝇小叶板中对水平图像运动敏感的两个神经元(H1和H2细胞)的方向调谐。我们的结果表明,H1和H2细胞对垂直运动也敏感。它们的反应取决于垂直移动刺激在其感受野内的位置。在额叶感受野内的刺激产生不对称反应:向上运动时H1/H2的放电频率几乎不变,而向下运动时放电频率增加到它们对水平运动最大反应的约40%。在其感受野的外侧部分,未发现对垂直图像运动的反应存在这种不对称性。由于已知向下运动是小叶板中垂直系统神经元的偏好方向,我们分析了垂直系统细胞与H1和H2细胞之间可能的相互作用。向最靠前的垂直系统细胞(VS1)注入去极化电流会导致放电频率增加,向H1和H2细胞注入超极化电流会导致放电频率降低。除了VS1,没有其他垂直系统细胞(VS2 - 8)对H1或H2细胞有任何可检测到的影响。VS1与H1/H2的连接性还显示会影响对侧小叶板中两个离心水平细胞的反应特性,已知这两个细胞是H1和H2细胞的突触后细胞。vCH细胞通过发放中间神经元V1从对侧VS2 - 3细胞接收额外输入。

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