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Topographic organization in the auditory brainstem of juvenile mice is disrupted in congenital deafness

机译:幼鼠听觉脑干中的地形组织在先天性耳聋中被破坏

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There is an orderly topographic arrangement of neurones within auditory brainstem nuclei based on sound frequency. Previous immunolabelling studies in the medial nucleus of the trapezoid body (MNTB) have suggested that there may be gradients of voltage-gated currents underlying this tonotopic arrangement. Here, our electrophysiological and immunolabelling results demonstrate that underlying the tonotopic organization of the MNTB is a combination of medio-lateral gradients of low-and high-threshold potassium currents and hyperpolarization-activated cation currents. Our results also show that the intrinsic membrane properties of MNTB neurones produce a topographic gradient of time delays, which may be relevant to sound localization, following previous demonstrations of the importance of the timing of inhibitory input from the MNTB to the medial superior olive (MSO). Most importantly, we demonstrate that, in the MNTB of congenitally deaf mice, which exhibit no spontaneous auditory nerve activity, the normal tonotopic gradients of neuronal properties are absent. Our results suggest an underlying mechanism for the observed topographic gradient of neuronal firing properties in the MNTB, show that an intrinsic neuronal mechanism is responsible for generating a topographic gradient of time-delays, and provide direct evidence that these gradients rely on spontaneous auditory nerve activity during development.
机译:根据声频,听觉脑干核内神经元的布局有序。先前在梯形体内侧核(MNTB)上进行的免疫标记研究表明,这种同位异位排列的基础可能存在电压门控电流的梯度。在这里,我们的电生理学和免疫标记结果表明,MNTB的Tonotopic组织基础是低阈值和高阈值钾电流与超极化激活阳离子电流的中外侧梯度的组合。我们的研究结果还表明,继先前证明从MNTB抑制输入到内侧上橄榄(MSO)的时间的重要性之后,MNTB神经元的固有膜特性产生了时间延迟的地形梯度,这可能与声音定位有关。 )。最重要的是,我们证明了,在先天性聋小鼠的MNTB中,它们没有表现出自发的听觉神经活动,而没有正常的神经元特性的渐变。我们的研究结果表明了MNTB中神经元放电特性的地形梯度的潜在机制,表明内在的神经元机制负责产生时间延迟的地形梯度,并提供了直接证据表明这些梯度依赖于自发性听觉神经活动。在开发过程中。

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