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对单音反应的胆碱能调制在猫听觉皮层中产生音调特异性感受野改变。

Cholinergic modulation of responses to single tones produces tone-specific receptive field alterations in cat auditory cortex.

作者信息

Metherate R, Weinberger N M

机构信息

Center for the Neurobiology of Learning and Memory, University of California, Irvine 92717.

出版信息

Synapse. 1990;6(2):133-45. doi: 10.1002/syn.890060204.

DOI:10.1002/syn.890060204
PMID:2237776
Abstract

Acetylcholine (ACh), acting via muscarinic receptors, is known to modulate neuronal responsiveness in primary sensory neocortex. The administration of ACh to cortical neurons facilitates or suppresses responses to sensory stimuli, and these effects can endure well beyond the period of ACh application. In the present study, we sought to determine whether ACh produces a general change in sensory information processing, or whether it can specifically alter the processing of sensory stimuli with which it was "paired". To answer this question, we restricted acoustic stimulation in the presence of ACh to a single frequency, and determined single neuron frequency receptive fields in primary auditory cortex before and after this pairing. During its administration, ACh produced mostly facilitatory effects on spontaneous activity and on responses to the single frequency tone. Examination of frequency receptive fields after ACh administration revealed receptive field modifications in 56% of the cells. In half of these cases, the receptive field alterations were highly specific to the frequency of the tone previously paired with ACh. Thus ACh can produce stimulus-specific modulation of auditory information processing. An additional and unexpected finding was that the type of modulation during ACh administration did not predict the type of receptive field modulation observed after ACh administration; this may be related to the physiological "context" of the same stimulus in two different conditions. The implications of these findings for learning-induced plasticity in the auditory cortex is discussed.

摘要

已知乙酰胆碱(ACh)通过毒蕈碱受体发挥作用,可调节初级感觉新皮层中的神经元反应性。向皮层神经元施用ACh可促进或抑制对感觉刺激的反应,并且这些效应可持续远超ACh施用期。在本研究中,我们试图确定ACh是否会在感觉信息处理方面产生一般性变化,或者它是否能够特异性改变与其“配对”的感觉刺激的处理过程。为了回答这个问题,我们在ACh存在的情况下将声音刺激限制在单一频率,并在这种配对前后确定初级听觉皮层中的单个神经元频率感受野。在施用ACh期间,它对自发活动和对单频音调的反应大多产生促进作用。施用ACh后对频率感受野的检查显示,56%的细胞存在感受野改变。在其中一半的案例中,感受野改变对先前与ACh配对的音调频率具有高度特异性。因此,ACh可对听觉信息处理产生刺激特异性调节。另一个意外发现是,施用ACh期间的调节类型并不能预测施用ACh后观察到的感受野调节类型;这可能与同一刺激在两种不同条件下的生理“背景”有关。本文讨论了这些发现对听觉皮层学习诱导可塑性的影响。

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Cholinergic modulation of responses to single tones produces tone-specific receptive field alterations in cat auditory cortex.对单音反应的胆碱能调制在猫听觉皮层中产生音调特异性感受野改变。
Synapse. 1990;6(2):133-45. doi: 10.1002/syn.890060204.
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[Responses of neurons of the auditory cortex in the cat to exposure to tones of different frequencies and electrical stimulation of the corresponding portions of the cochlea].[猫听觉皮层神经元对不同频率音调暴露及耳蜗相应部位电刺激的反应]
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J Neurophysiol. 2005 Aug;94(2):1199-211. doi: 10.1152/jn.00112.2005.

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