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抑制性L30中间神经元的皮肤激活为调节海兔虹吸管退缩反射中的适应性增益控制提供了一种机制。

Cutaneous activation of the inhibitory L30 interneurons provides a mechanism for regulating adaptive gain control in the siphon withdrawal reflex of Aplysia.

作者信息

Fischer T M, Carew T J

机构信息

Department of Psychology, Yale University, New Haven, Connecticut 06520.

出版信息

J Neurosci. 1995 Jan;15(1 Pt 2):762-73. doi: 10.1523/JNEUROSCI.15-01-00762.1995.

Abstract

The functional role of inhibition in the neural network underlying the siphon withdrawal response (SWR) of Aplysia was assessed by examining a recurrent circuit comprised of identified inhibitory interneurons (L30s), and excitatory interneurons (L29s). We previously showed that activity-dependent potentiation of the L30 inhibitory synapse onto L29 can regulate the net excitatory input elicited by tactile siphon stimulation onto siphon motor neurons (LFS cells) (Fischer and Carew, 1993a). To explore the functional significance of L30 potentiated inhibition, we have examined how a behaviorally relevant stimulus that activates the L30 interneurons modulates the SWR circuit. Utilizing a reduced preparation, we show that weak tactile stimulation of the tail strongly activates the L30s, and leads to significant potentiation of the L30 synapse. Next, we demonstrate that similar weak tail stimulation produces significant inhibition of siphon tap-evoked responses in both L29 interneurons and LFS motor neurons. We further show that this form of inhibition is transient, having a time course of approximately 60 sec. Finally, we directly tested the role of the L30s in mediating this form of inhibition by hyperpolarizing two (of three) L30 interneurons during tail stimulation. L30 inactivation significantly attenuated tail stimulation-induced inhibition of siphon-evoked input to both L29 interneurons and LFS motor neurons. Based on these results, we suggest that L30-potentiated inhibition may have an important adaptive role in optimizing the signal-to-noise ratio for activation of the SWR circuit by providing stabilization of SWR responsiveness under a wide range of environmental conditions.

摘要

通过研究由已识别的抑制性中间神经元(L30s)和兴奋性中间神经元(L29s)组成的循环回路,评估了抑制在海兔虹吸管退缩反应(SWR)神经网络中的功能作用。我们之前表明,L30对L29的抑制性突触的活动依赖性增强可调节触觉虹吸管刺激引发的对虹吸管运动神经元(LFS细胞)的净兴奋性输入(Fischer和Carew,1993a)。为了探究L30增强抑制的功能意义,我们研究了激活L30中间神经元的行为相关刺激如何调节SWR回路。利用简化的标本,我们发现对尾部的弱触觉刺激强烈激活L30s,并导致L30突触的显著增强。接下来,我们证明类似的弱尾部刺激在L29中间神经元和LFS运动神经元中均对虹吸管轻敲诱发的反应产生显著抑制。我们进一步表明,这种抑制形式是短暂的,时间进程约为60秒。最后,我们通过在尾部刺激期间使三个L30中间神经元中的两个超极化,直接测试了L30s在介导这种抑制形式中的作用。L30失活显著减弱了尾部刺激诱导的对L29中间神经元和LFS运动神经元的虹吸管诱发输入的抑制。基于这些结果,我们认为L30增强的抑制可能在通过在广泛的环境条件下提供SWR反应性的稳定性来优化SWR回路激活的信噪比方面具有重要的适应性作用。

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