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Delayed frequency-specific inhibition in the cochlear nuclei of mice: a mechanism for monaural echo suppression

机译:延迟和特定频率的小鼠耳蜗核抑制:单声道回声抑制的机制。

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摘要

To understand how auditory information is processed in the cochlear nuclei, it is crucial to know what circuitry exists and how it functions. Previous anatomical experiments have shown that neurons in the deep layer of the dorsal cochlear nucleus (DCN) project topographically to the anteroventral cochlear nucleus (AVCN) (Wickesberg and Oertel, 1988). Because interneurons in the DCN and their targets in AVCN are excited by the same group of auditory nerve fibers, the projection is frequency-specific. Here we report that microinjections of glutamate in the DCN evoke trains of IPSPs in individual, impaled AVCN neurons in brain slices of the cochlear nuclear complex. Only injections along a rostrocaudal band in the DCN, matching the anatomical projection of tuberculoventral neurons, evoke IPSPs; elsewhere, there were no responses to the glutamate. The inhibition is blocked by 0.5 microM strychnine. Both bushy and stellate cells are targets of the inhibitory projection. Inhibition in the AVCN is delayed by an additional synaptic delay with respect to the excitation. Delayed, frequency-specific inhibition allows the first wavefront to be transmitted to higher auditory centers by bushy and stellate cells, while following inputs encoding signals of similar frequencies are attenuated at least for the duration of an IPSP. These findings are consistent with results from psychoacoustic experiments and suggest that this circuit provides a source of monaural echo suppression.
机译:要了解耳蜗核中的听觉信息是如何处理的,至关重要的是要知道存在哪些电路及其功能。先前的解剖学实验表明,背侧耳蜗核(DCN)深层中的神经元在地形上投影到前腹侧耳蜗核(AVCN)(Wickesberg和Oertel,1988年)。由于DCN中的神经元及其在AVCN中的靶标是由同一组听觉神经纤维激发的,因此投射是特定于频率的。在这里我们报告说,DCN中的谷氨酸微量注射在耳蜗核复合体的脑片中的单个,受侵害的AVCN神经元中唤起了IPSP的训练。只有沿着DCN的尾脑尾带进行注射,并与结核腹神经元的解剖结构相吻合,才能引起IPSP。在其他地方,对谷氨酸没有反应。该抑制被0.5 microM士的宁阻断。浓密和星状细胞都是抑制性投射的目标。相对于激发,AVCN中的抑制被额外的突触延迟所延迟。延迟的,特定于频率的抑制允许第一波前被丛状和星状细胞传输到较高的听觉中心,而随后的输入编码相似频率的信号至少在IPSP期间会衰减。这些发现与心理声学实验的结果一致,表明该电路提供了单声道回声抑制的来源。

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