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Virtual Adult Ears Reveal the Roles of Acoustical Factors and Experience in Auditory Space Map Development

机译:虚拟成人耳朵揭示了声学因素和经验在听觉空间图开发中的作用

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摘要

Auditory neurons in the superior colliculus (SC) respond preferentially to sounds from restricted directions to form a map of auditory space. The development of this representation is shaped by sensory experience, but little is known about the relative contribution of peripheral and central factors to the emergence of adult responses. By recording from the SC of anesthetized ferrets at different age points, we show that the map matures gradually after birth; the spatial receptive fields (SRFs) become more sharply tuned and topographic order emerges by the end of the second postnatal month. Principal components analysis of the head-related transfer function revealed that the time course of map development is mirrored by the maturation of the spatial cues generated by the growing head and external ears. However, using virtual acoustic space stimuli, we show that these acoustical changes are not by themselves responsible for the emergence of SC map topography. Presenting stimuli to infant ferrets through virtual adult ears did not improve the order in the representation of sound azimuth in the SC. But by using linear discriminant analysis to compare different response properties across age, we found that the SRFs of infant neurons nevertheless became more adult-like when stimuli were delivered through virtual adult ears. Hence, although the emergence of auditory topography is likely to depend on refinements in neural circuitry, maturation of the structure of the SRFs (particularly their spatial extent) can be largely accounted for by changes in the acoustics associated with growth of the head and ears.
机译:上丘(SC)中的听觉神经元优先响应来自受限方向的声音,以形成听觉空间图。这种表征的发展是由感官经验决定的,但是对于周围和中央因素对成人反应的出现的相对贡献知之甚少。通过从不同年龄点的麻醉雪貂的SC记录,我们发现该地图出生后逐渐成熟。在出生后的第二个月月底,空间感受野(SRF)变得更加清晰,并且地形顺序出现了。头部相关传递函数的主成分分析表明,地图开发的时间过程反映了不断增长的头部和外耳产生的空间线索的成熟。但是,使用虚拟声学空间刺激,我们表明这些声学变化本身并不构成SC地图地形的出现。通过虚拟的成年耳朵对小白鼬进行刺激并不能改善SC中声音方位的表示顺序。但是,通过使用线性判别分析来比较不同年龄段的不同反应特性,我们发现,当通过虚拟成人耳朵传递刺激时,婴儿神经元的SRF变得更像成人。因此,尽管听觉地形的出现很可能取决于神经回路的细化,但SRF结构的成熟(尤其是其空间范围)可以很大程度上由与头和耳的生长相关的声学变化来解释。

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