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通过动态平行纤维反馈控制神经元放电:对电感觉再传入抑制的影响。

Control of neuronal firing by dynamic parallel fiber feedback: implications for electrosensory reafference suppression.

作者信息

Lewis John E, Lindner Benjamin, Laliberté Benoit, Groothuis Sally

机构信息

Department of Biology and Center for Neural Dynamics, University of Ottawa, 30 Marie Curie, Ottawa, Ontario, Canada.

出版信息

J Exp Biol. 2007 Dec;210(Pt 24):4437-47. doi: 10.1242/jeb.010322.

Abstract

The cancellation of self-generated components of sensory inputs is a key function of sensory feedback pathways. In many systems, cerebellar parallel fiber feedback mediates this cancellation through anti-Hebbian plasticity, resulting in the generation of a negative image of the reafferent inputs. Parallel fiber feedback involves direct excitation and disynaptic inhibition as well as synaptic plasticity on multiple time scales. How the dynamics of these processes interact with anti-Hebbian plasticity to shape synaptic inputs and provide a cancellation mechanism remains unclear. In the present study, we investigated the influence of parallel fiber feedback onto pyramidal neurons of the electrosensory lateral line lobe (ELL) in weakly electric fish under open loop conditions. We mimicked naturalistic parallel fiber inputs in an ELL brain slice by implementing an experimentally based model of this synaptic pathway using dynamic clamp. We showed that as parallel fiber activity increases, the effective input to ELL pyramidal neurons changes from net excitation to net inhibition, resulting in a non-monotonic firing response. Using a model neuron, we found that this robust non-monotonic response is due to a shift from balanced excitation and inhibition at low parallel fiber input rates, to dominant inhibition at high input rates. We then showed that this non-monotonic response provides a simple basis for negative image generation. Through changes in the mean activation rate of parallel fibers, the feedback can switch roles between enhancement and suppression of sensory inputs in a manner that is directly determined by the slope of the non-monotonic response curve.

摘要

感觉输入的自身产生成分的消除是感觉反馈通路的关键功能。在许多系统中,小脑平行纤维反馈通过反赫布可塑性介导这种消除,从而产生再传入输入的负像。平行纤维反馈涉及直接兴奋和双突触抑制以及多个时间尺度上的突触可塑性。这些过程的动力学如何与反赫布可塑性相互作用以塑造突触输入并提供一种消除机制仍不清楚。在本研究中,我们在开环条件下研究了平行纤维反馈对弱电鱼电感觉侧线叶(ELL)锥体神经元的影响。我们通过使用动态钳实现基于实验的该突触通路模型,在ELL脑片中模拟了自然主义的平行纤维输入。我们表明,随着平行纤维活动增加,ELL锥体神经元的有效输入从净兴奋变为净抑制,导致非单调的放电反应。使用模型神经元,我们发现这种强大的非单调反应是由于从低平行纤维输入速率下的平衡兴奋和抑制,转变为高输入速率下的主导抑制。然后我们表明,这种非单调反应为负像生成提供了一个简单基础。通过平行纤维平均激活率的变化,反馈可以以直接由非单调反应曲线斜率决定的方式在感觉输入的增强和抑制之间切换角色。

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