首页> 美国卫生研究院文献>The Journal of Neuroscience >Adaptation Reduces Spike-Count Reliability But Not Spike-Timing Precision of Auditory Nerve Responses
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Adaptation Reduces Spike-Count Reliability But Not Spike-Timing Precision of Auditory Nerve Responses

机译:适应性降低听觉神经反应的峰值计数可靠性但不降低峰值计时精度。

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摘要

Sensory systems use adaptive coding mechanisms to filter redundant information from the environment to efficiently represent the external world. One such mechanism found in most sensory neurons is rate adaptation, defined as a reduction in firing rate in response to a constant stimulus. In auditory nerve, this form of adaptation is likely mediated by exhaustion of release-ready synaptic vesicles in the cochlear hair cell. To better understand how specific synaptic mechanisms limit neural coding strategies, we examined the trial-to-trial variability of auditory nerve responses during short-term rate-adaptation by measuring spike-timing precision and spike-count reliability. After adaptation, precision remained unchanged, whereas for all but the lowest-frequency fibers, reliability decreased. Modeling statistical properties of the hair cell–afferent fiber synapse suggested that the ability of one or a few vesicles to elicit an action potential reduces the inherent response variability expected from quantal neurotransmitter release, and thereby confers the observed count reliability at sound onset. However, with adaptation, depletion of the readily releasable pool of vesicles diminishes quantal content and antagonizes the postsynaptic enhancement of reliability. These findings imply that during the course of short-term adaptation, coding strategies that employ a rate code are constrained by increased neural noise because of vesicle depletion, whereas those that employ a temporal code are not.
机译:感觉系统使用自适应编码机制来过滤来自环境的冗余信息,以有效地表示外部世界。在大多数感觉神经元中发现的一种这样的机制是速率适应,其定义为响应恒定刺激而降低放电速率。在听神经中,这种适应形式可能是由耳蜗毛细胞中准备释放的突触小泡耗尽所介导的。为了更好地了解特定的突触机制如何限制神经编码策略,我们通过测量尖峰定时精度和尖峰计数可靠性,在短期速率适应过程中检查了听觉神经反应的试验变化。自适应后,精度保持不变,而除最低频率的光纤外,其他所有设备的可靠性均下降。毛细胞-纤维纤维突触的统计特性建模表明,一个或几个囊泡引起动作电位的能力降低了定量神经递质释放预期的内在反应变异性,从而赋予了声音开始时观察到的计数可靠性。然而,通过适应,容易释放的囊泡池的消耗减少了定量含量并拮抗了突触后可靠性的增强。这些发现暗示在短期适应的过程中,由于囊泡耗尽,采用速率编码的编码策略受到增加的神经噪声的约束,而采用瞬时编码的策略则没有。

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