首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Adaptive plasticity in the auditory thalamus of juvenile barn owls.
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Adaptive plasticity in the auditory thalamus of juvenile barn owls.

机译:幼年谷仓猫头鹰听性丘脑的适应性可塑性。

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摘要

Little is known about the capacity of the thalamus for experience-dependent plasticity. Here, we demonstrate adaptive changes in the tuning of auditory thalamic neurons to a major category of sound localization cue, interaural time differences (ITDs), in juvenile barn owls that experience chronic abnormal hearing. Abnormal hearing was caused by a passive acoustic filtering device implanted in one ear that altered the timing and level of sound differently at different frequencies. Experience with this device resulted in adaptive, frequency-dependent shifts in the tuning of thalamic neurons to ITD that mimicked the acoustic effects of the device. Abnormal hearing did not alter ITD tuning in the central nucleus of the inferior colliculus, the primary source of input to the auditory thalamus. Therefore, the thalamus is the earliest stage in the forebrain pathway in which this plasticity is expressed. A visual manipulation, chronic prismatic displacement of the visual field, which causes adaptive changes inITD tuning at higher levels in the forebrain, had no effect on thalamic ITD tuning. The results demonstrate that, during the juvenile period, auditory experience shapes neuronal response properties in the thalamus in a frequency-specific manner and suggest that this thalamic plasticity is driven by self-organizational forces and not by visual instruction.
机译:丘脑具有依赖于经验的可塑性的能力知之甚少。在这里,我们证明了在经历慢性异常听觉的幼年谷仓猫头鹰中,听觉丘脑神经元向声音定位提示的主要类别(听觉间时差(ITD))的调节中的适应性变化。听力异常是由植入到一只耳朵中的无源声过滤设备引起的,该设备在不同频率下会不同地改变声音的时间和水平。使用该设备的经验导致了丘脑神经元向ITD的调节中适应性的,频率依赖性的转变,从而模仿了该设备的声学效果。听力异常并未改变下丘脑中央核的ITD调节,下丘脑中央核是听觉丘脑输入的主要来源。因此,丘脑是表达这种可塑性的前脑途径的最早阶段。视觉操纵,视野的慢性棱柱形位移会导致前脑中较高水平的ITD调整适应性变化,而对丘脑ITD调整没有影响。结果表明,在少年时期,听觉经历会以特定于频率的方式塑造丘脑中的神经元反应特性,并表明这种丘脑可塑性是由自组织力而非视觉指令驱动的。

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