首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Temporally patterned pulse trains affect duration tuning characteristics of bat inferior collicular neurons.
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Temporally patterned pulse trains affect duration tuning characteristics of bat inferior collicular neurons.

机译:临时模式的脉冲序列会影响蝙蝠下丘脑神经元的持续时间调谐特性。

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This study examines the effect of temporally patterned pulse trains on duration tuning characteristics of inferior collicular neurons of the big brown bat. Eptesicus fuscus, under free-field stimulation conditions. Using a 50% difference between maximal and minimal responses as a criterion, the duration tuning characteristics of inferior collicular neurons determined with pulse trains of different pulse durations are described as band-pass, long-pass, short-pass, and all-pass. Each band-pass neuron discharged maximally to a specific pulse duration that was at least 50% larger than the neuron's responses to a long- and a short-duration pulse. In contrast, each long- or short-pass neuron discharged maximally to a range of long- or short-duration pulses that were at least 50% larger than the minimal responses. The number of impulses of an all-pass neuron never differed by more than 50%. When pulse trains were delivered at different pulse repetition rates, the number of short-pass and band-pass neurons progressively increased with increasing pulse repetition rates. The slope of the duration tuning curves also became sharper when determined with pulse trains at high pulse repetition rates. Possible mechanisms underlying these findings are discussed.
机译:这项研究检查了时间模式的脉冲序列对大棕蝙蝠下丘脑神经元持续时间调谐特性的影响。在野外刺激条件下,红褐斑病。使用最大响应和最小响应之间的50%差异作为标准,将使用不同脉冲持续时间的脉冲序列确定的下丘神经元的持续时间调谐特性描述为带通,长通,短通和全通。每个带通神经元最大放电到特定的脉冲持续时间,该持续时间比神经元对长脉冲和短脉冲的响应至少大50%。相反,每个长传或短传神经元最大放电到一系列长或短持续时间的脉冲,该脉冲至少比最小响应大50%。全通神经元的脉冲数差异不会超过50%。当以不同的脉冲重复频率传送脉冲序列时,短脉冲和带通神经元的数量随着脉冲重复频率的增加而逐渐增加。当使用高脉冲重复率的脉冲序列确定时,持续时间调整曲线的斜率也变得更陡峭。讨论了这些发现的可能机制。

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