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声学因素决定听觉皮层中空间调谐的发育锐化。

Acoustic factors govern developmental sharpening of spatial tuning in the auditory cortex.

作者信息

Mrsic-Flogel Thomas D, Schnupp Jan W H, King Andrew J

机构信息

University Laboratory of Physiology, Parks Road, Oxford OX1 3PT, UK.

出版信息

Nat Neurosci. 2003 Sep;6(9):981-8. doi: 10.1038/nn1108.

Abstract

Auditory localization relies on the detection and interpretation of acoustic cues that change in value as the head and external ears grow. Here we show that the maturation of these structures is an important determinant for the development of spatial selectivity in the ferret auditory cortex. Spatial response fields (SRFs) of high-frequency cortical neurons recorded at postnatal days (P) 33-39 were broader, and transmitted less information about stimulus direction, than in older ferrets. They also exhibited slightly broader frequency tuning than neurons recorded in adult animals. However, when infant neurons were stimulated through virtual ears of adults, SRFs sharpened significantly and the amount of transmitted information increased. This improvement was predicted by a model that generates SRF shape from the localization cue values and the neurons' binaural spectrotemporal response properties. The maturation of spatial response characteristics in auditory cortex therefore seems to be limited by peripheral rather than by central factors.

摘要

听觉定位依赖于对声学线索的检测和解读,这些线索会随着头部和外耳的生长而发生变化。在此我们表明,这些结构的成熟是雪貂听觉皮层空间选择性发展的一个重要决定因素。与年龄较大的雪貂相比,在出生后第33 - 39天记录的高频皮层神经元的空间反应域(SRF)更宽,且传递的关于刺激方向的信息更少。它们还表现出比成年动物记录的神经元略宽的频率调谐。然而,当通过成年动物的虚拟耳朵刺激幼年神经元时,SRF显著变锐,传递的信息量增加。这种改善由一个模型预测,该模型根据定位线索值和神经元的双耳频谱时间反应特性生成SRF形状。因此,听觉皮层空间反应特征的成熟似乎受外周因素而非中枢因素限制。

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