首页> 外文期刊>Hearing Research: An International Journal >Synaptic responses in cochlear nucleus neurons evoked by activation of the olivocochlear system.
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Synaptic responses in cochlear nucleus neurons evoked by activation of the olivocochlear system.

机译:耳蜗神经系统的激活引起的耳蜗核神经元的突触反应。

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The action of olivocochlear collaterals to the cochlear nucleus is not fully established. Synaptic ultrastructure suggests an excitatory role. Extracellular recordings show spikes evoked by electrical stimulation of olivocochlear axons, but these spikes in the cochlear nucleus may be antidromic (activation of output axons) or orthodromic (synaptic input). We therefore recorded intracellular responses to shocks to olivocochlear axons in anaesthetized guinea pigs. In chopper and primary-like neurons shocks caused either no response or an inhibitory synaptic response (IPSP), but never an excitatory one (EPSP). In contrast, onset neurons never showed IPSPs but showed a variety of other responses; antidromic spikes, EPSPs, orthodromic spikes or no effect. The results agree with earlier extracellular observations in that olivocochlear collaterals provide excitatory input to onset neurons. Because some onset neurons are inhibitory they may be the source of the IPSPs observed in other cochlear nucleus neurons. The data also show that electrical stimulation at the floor of the IVth ventricle results in antidromic spikes as well. However, intracellular recording enabled the orthodromic action to be verified and the presumed olivocochlear action to be better understood. Our data support the hypothesis that olivocochlear collaterals initiate excitatory input onto onset-chopper neurons.
机译:耳蜗侧支对耳蜗核的作用尚未完全确定。突触超微结构表明有兴奋作用。细胞外的记录显示了电刺激少突神经轴突引起的尖峰,但是耳蜗核中的这些尖峰可能是反峰的(输出轴突的激活)或正畸的(突触输入)。因此,我们在麻醉的豚鼠中记录了细胞内对震性少突突轴突的反应。在斩波器和原发性神经元中,休克不会引起反应或抑制突触反应(IPSP),但不会引起兴奋性反应(EPSP)。相反,起病的神经元从未表现出IPSP,而是表现出多种其他反应。抗峰峰值,EPSP,正峰峰值或无效。结果与早期的细胞外观察结果一致,因为少核侧支为发作的神经元提供兴奋性输入。由于某些起病神经元具有抑制作用,因此它们可能是其他耳蜗神经元中观察到的IPSP的来源。数据还表明,第四脑室底部的电刺激也会导致反峰突。然而,细胞内记录使人们能够验证矫正性作用,并能更好地理解假定的少脂作用。我们的数据支持以下假设,即少突舌侧支可向斩波神经元启动兴奋性输入。

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