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首页> 外文期刊>The European Journal of Neuroscience >Sound-guided shaping of the receptive field in the mouse auditory cortex by basal forebrain activation.
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Sound-guided shaping of the receptive field in the mouse auditory cortex by basal forebrain activation.

机译:通过基础前脑激活对小鼠听觉皮层中的感受野进行声引导成形。

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The mammalian auditory cortex undergoes continuous plasticity following auditory experience. This study demonstrates the instructive roles of sound frequency and amplitude in representational plasticity in the primary auditory cortex of the mouse. Electrical stimulation of the basal forebrain paired with a tone led to a pronounced shift in the receptive field of the cortical neurons in both frequency and amplitude domains, the shift being towards the frequency and amplitude of the tone. Importantly, the plasticity in the frequency tuning of cortical neurons appeared to be largely dependent upon frequency-specific decreases in the response threshold. The minimum threshold of cortical neurons could be reduced only if the amplitude of the presented tone was lower than the minimum threshold. This finding suggests that training with low-intensity sound can increase the sensitivity of cortical neurons. Furthermore, all of these effects evoked by basal forebrain activation could be eliminated by cortical application of atropine, the acetylcholine muscarinic receptor antagonist. The data suggest that cortical plasticity is guided by both sound frequency and amplitude. The basal forebrain promotes sound-guided cortical plasticity by facilitating neural mechanisms intrinsic to the auditory system.
机译:哺乳动物的听觉皮层在听觉经历之后经历持续的可塑性。这项研究证明了声音频率和振幅在小鼠初级听觉皮层的代表性可塑性中的指导作用。对基部前脑的电刺激与音调配对,导致频域和振幅域中皮质神经元的感受野发生明显变化,该变化朝向音调的频率和幅值。重要的是,皮层神经元的频率调谐中的可塑性似乎很大程度上取决于响应阈值中特定于频率的降低。仅当所呈现音调的幅度低于最小阈值时,才能降低皮质神经元的最小阈值。这一发现表明,低强度声音训练可以增加皮层神经元的敏感性。此外,可以通过皮层应用阿托品(乙酰胆碱毒蕈碱受体拮抗剂)消除由基础前脑激活引起的所有这些作用。数据表明,皮质可塑性受声音频率和振幅的影响。基底前脑通过促进听觉系统固有的神经机制来促进声音引导的皮质可塑性。

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