A role for short-term synaptic facilitation and depression in the processing of intensity information in the auditory brain stem.

IF 2.1 3区 医学 Q3 NEUROSCIENCES Journal of neurophysiology Pub Date : 2007-04-01 Epub Date: 2007-01-24 DOI:10.1152/jn.01030.2006
K M MacLeod, T K Horiuchi, C E Carr
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Abstract

The nature of the synaptic connection from the auditory nerve onto the cochlear nucleus neurons has a profound impact on how sound information is transmitted. Short-term synaptic plasticity, by dynamically modulating synaptic strength, filters information contained in the firing patterns. In the sound-localization circuits of the brain stem, the synapses of the timing pathway are characterized by strong short-term depression. We investigated the short-term synaptic plasticity of the inputs to the bird's cochlear nucleus angularis (NA), which encodes intensity information, by using chick embryonic brain slices and trains of electrical stimulation. These excitatory inputs expressed a mixture of short-term facilitation and depression, unlike those in the timing nuclei that only depressed. Facilitation and depression at NA synapses were balanced such that postsynaptic response amplitude was often maintained throughout the train at high firing rates (>100 Hz). The steady-state input rate relationship of the balanced synapses linearly conveyed rate information and therefore transmits intensity information encoded as a rate code in the nerve. A quantitative model of synaptic transmission could account for the plasticity by including facilitation of release (with a time constant of approximately 40 ms), and a two-step recovery from depression (with one slow time constant of approximately 8 s, and one fast time constant of approximately 20 ms). A simulation using the model fit to NA synapses and auditory nerve spike trains from recordings in vivo confirmed that these synapses can convey intensity information contained in natural train inputs.

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短期突触促进和抑制在听觉脑干强度信息加工中的作用。
从听神经到耳蜗核神经元的突触连接的性质对声音信息的传递方式有着深远的影响。短期突触可塑性,通过动态调节突触强度,过滤包含在放电模式中的信息。在脑干的声音定位回路中,定时通路的突触具有强烈的短期抑制特征。利用鸡胚脑切片和电刺激序列,研究了编码强度信息的鸟耳蜗角核(NA)输入信号的短期突触可塑性。这些兴奋性输入表达了短期促进和抑郁的混合,不像那些只抑郁的定时核。NA突触的促进和抑制是平衡的,因此突触后反应振幅在整个高放电速率(> 100hz)下经常保持。平衡突触的稳态输入速率关系线性传递速率信息,从而传递在神经中编码为速率码的强度信息。突触传递的定量模型可以通过包括促进释放(时间常数约为40 ms)和两步从抑郁中恢复(一个慢时间常数约为8 s,一个快时间常数约为20 ms)来解释可塑性。利用该模型对NA突触和听神经尖峰序列进行了模拟,证实了这些突触可以传递自然序列输入中包含的强度信息。
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来源期刊
Journal of neurophysiology
Journal of neurophysiology 医学-神经科学
CiteScore
4.80
自引率
8.00%
发文量
255
审稿时长
2-3 weeks
期刊介绍: The Journal of Neurophysiology publishes original articles on the function of the nervous system. All levels of function are included, from the membrane and cell to systems and behavior. Experimental approaches include molecular neurobiology, cell culture and slice preparations, membrane physiology, developmental neurobiology, functional neuroanatomy, neurochemistry, neuropharmacology, systems electrophysiology, imaging and mapping techniques, and behavioral analysis. Experimental preparations may be invertebrate or vertebrate species, including humans. Theoretical studies are acceptable if they are tied closely to the interpretation of experimental data and elucidate principles of broad interest.
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