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Early Visual Experience Shapes the Representation of Auditory Space in the Forebrain Gaze Fields of the Barn Owl

机译:早期的视觉体验塑造了谷仓猫头鹰前脑凝视场中听觉空间的表现。

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摘要

Auditory spatial information is processed in parallel forebrain and midbrain pathways. Sensory experience early in life has been shown to exert a powerful influence on the representation of auditory space in the midbrain space-processing pathway. The goal of this study was to determine whether early experience also shapes the representation of auditory space in the forebrain.Owls were raised wearing prismatic spectacles that shifted the visual field in the horizontal plane. This manipulation altered the relationship between interaural time differences (ITDs), the principal cue used for azimuthal localization, and locations of auditory stimuli in the visual field. Extracellular recordings were used to characterize ITD tuning in the auditory archistriatum (AAr), a subdivision of the forebrain gaze fields, in normal and prism-reared owls.Prism rearing altered the representation of ITD in the AAr. In prism-reared owls, unit tuning for ITD was shifted in the adaptive direction, according to the direction of the optical displacement imposed by the spectacles. Changes in ITD tuning involved the acquisition of unit responses to adaptive ITD values and, to a lesser extent, the elimination of responses to nonadaptive (previously normal) ITD values. Shifts in ITD tuning in the AAr were similar to shifts in ITD tuning observed in the optic tectum of the same owls.This experience-based adjustment of binaural tuning in the AAr helps to maintain mutual registry between the forebrain and midbrain representations of auditory space and may help to ensure consistent behavioral responses to auditory stimuli.
机译:听觉空间信息在前脑和中脑的平行路径中进行处理。生命早期的感觉经验已显示出对中脑空间加工路径中听觉空间表示的影响。这项研究的目的是确定早期的经历是否也能塑造前脑中听觉空间的表现。猫头鹰是戴着棱形眼镜抬起的,在水平面上移动视野。这种操作改变了耳间时间差(ITD),用于方位角定位的主要提示以及听觉刺激在视野中的位置之间的关系。细胞外的记录被用来表征正常和棱柱饲养的猫头鹰的听觉古猿听觉区(AAr)中ITD的调整,原始饲养改变了ITD在AAr中的表示。在棱镜饲养的猫头鹰中,ITD的单位调整根据眼镜施加的光学位移的方向在自适应方向上移动。 ITD调整的变化涉及获取对自适应ITD值的单位响应,并且在较小程度上消除了对非自适应(以前是正常的)ITD值的响应。 AAr中ITD调整的变化类似于在同一只猫头鹰的视器官中观察到的ITD调整的变化.AAR中基于经验的双耳调整的调整有助于保持听觉空间的前脑和中脑表征之间的相互配准。可能有助于确保对听觉刺激做出一致的行为反应。

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