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Glycinergic inhibition tunes coincidence detection in the auditory brainstem

机译:庆大霉素抑制调节听觉脑干中的巧合检测

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Neurons in the medial superior olive (MSO) detect microsecond differences in the arrival time of sounds between the ears (interaural time differences or ITDs), a crucial binaural cue for sound localization. Synaptic inhibition has been implicated in tuning ITD sensitivity, but the cellular mechanisms underlying its influence on coincidence detection are debated. Here we determine the impact of inhibition on coincidence detection in adult Mongolian gerbil MSO brain slices by testing precise temporal integration of measured synaptic responses using conductance-clamp. We find that inhibition dynamically shifts the peak timing of excitation, depending on its relative arrival time, which in turn modulates the timing of best coincidence detection. Inhibitory control of coincidence detection timing is consistent with the diversity of ITD functions observed in vivo and is robust under physiologically relevant conditions. Our results provide strong evidence that temporal interactions between excitation and inhibition on microsecond timescales are critical for binaural processing.
机译:内侧上橄榄(MSO)中的神经元检测到耳朵之间声音到达时间的微秒差异(耳间时间差异或ITD),这是声音定位的关键双耳线索。突触抑制已牵涉到调整ITD敏感性,但其对重合检测的影响的细胞机制尚有争议。在这里,我们通过使用电导钳测试测得的突触反应的精确时间整合,来确定抑制作用对成年蒙古沙鼠MSO脑片重合检测的影响。我们发现抑制作用会根据其相对到达时间动态地改变激发的峰值时间,进而调节最佳一致性检测的时间。巧合检测时机的抑制性控制与体内观察到的ITD功能的多样性相一致,并且在生理相关条件下具有鲁棒性。我们的结果提供了有力的证据,即在微秒级的时间尺度上,激发与抑制之间的时间相互作用对于双耳处理至关重要。

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