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皮层频率表征的刺激时间依赖性可塑性。

Stimulus-timing-dependent plasticity of cortical frequency representation.

作者信息

Dahmen Johannes C, Hartley Douglas E H, King Andrew J

机构信息

Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford OX1 3PT, UK.

出版信息

J Neurosci. 2008 Dec 10;28(50):13629-39. doi: 10.1523/JNEUROSCI.4429-08.2008.

Abstract

Adult cortical circuits possess considerable plasticity, which can be induced by modifying their inputs. One mechanism proposed to underlie changes in neuronal responses is spike-timing-dependent plasticity (STDP), an up- or downregulation of synaptic efficacy contingent upon the order and timing of presynaptic and postsynaptic activity. The repetitive and asynchronous pairing of a sensory stimulus with either another sensory stimulus or current injection can alter the response properties of visual and somatosensory neurons in a manner consistent with STDP. To examine whether such plasticity also exists in the auditory system, we recorded from neurons in the primary auditory cortex of anesthetized and awake adult ferrets. The repetitive pairing of pure tones of different frequencies induced shifts in neuronal frequency selectivity, which exhibited a temporal specificity akin to STDP. Only pairs with stimulus onset asynchronies of 8 or 12 ms were effective and the direction of the shifts depended upon the order in which the tones within a pair were presented. Six hundred stimulus pairs (lasting approximately 70 s) were enough to produce a significant shift in frequency tuning and the changes persisted for several minutes. The magnitude of the observed shifts was largest when the frequency separation of the conditioning stimuli was < approximately 1 octave. Moreover, significant shifts were found only in the upper cortical layers. Our findings highlight the importance of millisecond-scale timing of sensory input in shaping neural function and strongly suggest STDP as a relevant mechanism for plasticity in the mature auditory system.

摘要

成年皮质回路具有相当大的可塑性,这种可塑性可通过改变其输入来诱导。一种被认为是神经元反应变化基础的机制是尖峰时间依赖性可塑性(STDP),即突触效能的上调或下调取决于突触前和突触后活动的顺序和时间。将一种感觉刺激与另一种感觉刺激或电流注入进行重复且异步配对,能够以与STDP一致的方式改变视觉和体感神经元的反应特性。为了研究这种可塑性在听觉系统中是否也存在,我们记录了麻醉和清醒成年雪貂初级听觉皮层中的神经元活动。不同频率纯音的重复配对导致神经元频率选择性发生变化,这种变化表现出类似于STDP的时间特异性。只有刺激起始异步时间为8或12毫秒的配对才有效,且变化方向取决于配对中音调呈现的顺序。600对刺激(持续约70秒)足以使频率调谐产生显著变化,且这种变化会持续几分钟。当条件刺激的频率间隔小于约1个八度时,观察到的变化幅度最大。此外,仅在上层皮质层中发现了显著变化。我们的研究结果突出了感觉输入的毫秒级时间在塑造神经功能中的重要性,并强烈表明STDP是成熟听觉系统可塑性的一种相关机制。

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