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Feedforward Inhibition Determines the Angular Tuning of Vibrissal Responses in the Principal Trigeminal Nucleus

机译:前馈抑制确定主要三叉神经核中振动反应的角度调整

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摘要

Trigeminal neurons that relay vibrissal messages to the thalamus receive input from first-order afferents that are tuned to different directions of whisker motion. This raises the question of how directional tuning is maintained in central relay stations of the whisker system. In the present study we performed a detailed analysis of the angular tuning properties of cells in the principal trigeminal nucleus of the rat. We found that stimulus direction systematically influences response latency, so that the degree of directional tuning and the preferred deflection angle computed with first-spike latency yielded results nearly similar to those obtained with spike counts. Furthermore, we found that inhibition sharpens directional selectivity, and that pharmacological blockade of inhibition markedly decreases the angular tuning of cellular responses. These results indicate that the angular tuning of cells in the first relay station of the vibrissal system is determined by fast feedforward inhibition, which shapes excitatory inputs at the very beginning of synaptic integration.
机译:将振动信息传递到丘脑的三叉神经元接收来自一阶传入的输入,这些输入被调整到晶须运动的不同方向。这就提出了一个问题,即在晶须系统的中央中继站中如何保持方向性调谐。在本研究中,我们对大鼠主要三叉神经核中细胞的角度调谐特性进行了详细分析。我们发现,刺激方向会系统地影响响应潜伏期,因此定向调整的程度和使用第一峰值潜伏期计算出的首选偏转角所产生的结果几乎与使用峰值计数获得的结果相似。此外,我们发现抑制作用增强了方向选择性,并且抑制作用的药理学阻断作用显着降低了细胞反应的角度调节。这些结果表明,振动系统第一中继站中细胞的角度调节是由快速前馈抑制决定的,前馈抑制在突触整合的最开始就形成了兴奋性输入。

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