Feldman D E, Knudsen E I
Department of Neurobiology, Stanford University School of Medicine, Stanford, California 94305-5401, USA.
J Neurosci. 1997 Sep 1;17(17):6820-37. doi: 10.1523/JNEUROSCI.17-17-06820.1997.
The map of auditory space in the external nucleus of the inferior colliculus (ICX) of the barn owl is calibrated by visual experience during development. ICX neurons are tuned for interaural time difference (ITD), the owl's primary cue for sound source azimuth, and are arranged into a map of ITD. When vision is altered by rearing owls with prismatic spectacles that shift the visual field in azimuth, ITD tuning in the ICX shifts adaptively. In contrast, ITD tuning remains unchanged in the lateral shell of the central nucleus of the inferior colliculus (ICCls), which provides the principal auditory input to the ICX, suggesting that the projection from the ICCls to the ICX is altered by prism-rearing. In this study, the topography of the ICCls-ICX projection was assessed in normal and prism-reared owls by retrograde labeling using biotinylated dextran amine. In juvenile owls at the age before prism attachment, and in normal adults, labeling patterns were consistent with a topographic projection, with each ICX site receiving input from a restricted region of the ICCls with similar ITD tuning. In prism-reared owls, labeling patterns were systematically altered: each ICX site received additional, abnormal input from a region of the ICCls where ITD tuning matched the shifted ITD tuning of the ICX neurons. These results indicate that anatomical reorganization of the ICCls-ICX projection contributes to the visual calibration of the ICX auditory space map.
仓鸮下丘臂外侧核(ICX)中的听觉空间图谱在发育过程中通过视觉经验进行校准。ICX神经元针对耳间时间差(ITD)进行调谐,ITD是仓鸮确定声源方位的主要线索,并且这些神经元被排列成ITD图谱。当通过给仓鸮佩戴使视野在方位上发生偏移的棱镜眼镜来改变视觉时,ICX中的ITD调谐会自适应地发生变化。相比之下,下丘中央核外侧壳(ICCls)中的ITD调谐保持不变,ICCls是向ICX提供主要听觉输入的结构,这表明从ICCls到ICX的投射因棱镜饲养而发生改变。在本研究中,通过使用生物素化葡聚糖胺进行逆行标记,评估了正常和经棱镜饲养仓鸮中ICCls - ICX投射的拓扑结构。在佩戴棱镜前年龄的幼年仓鸮以及正常成年仓鸮中,标记模式与拓扑投射一致,每个ICX位点接收来自ICCls中具有相似ITD调谐的受限区域的输入。在经棱镜饲养的仓鸮中,标记模式发生了系统性改变:每个ICX位点从ICCls的一个区域接收额外的异常输入,该区域的ITD调谐与ICX神经元偏移后的ITD调谐相匹配。这些结果表明,ICCls - ICX投射的解剖学重组有助于ICX听觉空间图谱的视觉校准。