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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Shift in the Balance between Excitation and Inhibition during Sensory Adaptation of S1 Neurons
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Shift in the Balance between Excitation and Inhibition during Sensory Adaptation of S1 Neurons

机译:S1神经元的感觉适应过程中的兴奋与抑制之间的平衡转移

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摘要

Sustained stimulation of sensory organs results in adaptation of the neuronal response along the sensory pathway. Whether or not cortical adaptation affects equally excitation and inhibition is poorly understood. We examined this question using patch recordings of neurons in the barrel cortex of anesthetized rats while repetitively stimulating the principal whisker. We found that inhibition adapts more than excitation, causing the balance between them to shift toward excitation. A comparison of the latency of thalamic firing and evoked excitation and inhibition in the cortex strongly suggests that adaptation of inhibition results mostly from depression of inhibitory synapses rather than adaptation in the firing of inhibitory cells. The differential adaptation of the evoked conductances that shifts the balance toward excitation may act as a gain mechanism which enhances the subthreshold response during sustained stimulation, despite a large reduction in excitation.
机译:持续刺激感觉器官导致沿着感觉途径的神经元反应适应。人们对皮质适应性是否同样影响激发和抑制作用了解得很少。我们在重复刺激主要晶须的同时,使用了麻醉大鼠的桶状皮层中神经元的斑片记录来研究这个问题。我们发现抑制比激励更能适应,导致它们之间的平衡向激励转移。丘脑放电潜伏期和诱发的皮层激发与抑制潜伏期的比较强烈表明,抑制的适应主要来自抑制突触的抑制,而不是抑制细胞的激发。尽管激发减少了很多,但诱发的电导的差异适应使平衡朝着激发转移,可以作为增益机制来增强持续刺激过程中的亚阈值响应。

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