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首页> 外文期刊>Journal of Neurophysiology >Duration selective neurons in the inferior colliculus of the rat: topographic distribution and relation of duration sensitivity to other response properties.
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Duration selective neurons in the inferior colliculus of the rat: topographic distribution and relation of duration sensitivity to other response properties.

机译:大鼠下丘的持续时间选择性神经元:地形分布以及持续时间敏感性与其他反应特性的关系。

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Many animals use duration to help them identify the source and meaning of a sound. Duration-sensitive neurons have been found in the auditory midbrain of mammals and amphibians, where their selectivity seems to correspond to the lengths of species-specific vocalizations. In this study, single neurons in the rat inferior colliculus (IC) were tested for sensitivity to sound duration. About one-half (54%) of the units sampled showed some form of duration selectivity. The majority of these (76%) were long-pass neurons that responded to sounds exceeding some duration threshold (range: 5-60 ms). Band-pass neurons, which only responded to a restricted range of durations, made up 13% of duration-sensitive neurons (best durations: 15-120 ms). Other units displayed short-pass (2%) or mixed (9%) response patterns. The majority of duration-sensitive neurons were localized outside the central nucleus of the IC, especially in the dorsal cortex, where more than one-half of the neurons sampled had long-pass selectivity for duration. Band-pass duration tuned neurons were only found outside the central nucleus. Characteristics of duration-sensitive neurons in the rat support the idea that this filtering arises through an interaction of excitatory and inhibitory inputs that converge in the IC. Band-pass neurons typically responded at sound offset, suggesting that their tuning is created through the same mechanisms that have been described in echolocating bats. The finding that the first-spike latencies of all long-pass neurons were longer than the shortest duration to which they responded supports the idea that they receive transient inhibition before, or simultaneously with, a sustained excitatory input. The ranges of selectivity in rat IC neurons are within the range of durations of rat vocalizations. These data suggest that a population of neurons in the rat IC have evolved to transmit information about behaviorally relevant sound durations using mechanisms that are common to all mammals, with an emphasis on long-pass tuning characteristics.
机译:许多动物都使用持续时间来帮助他们识别声音的来源和含义。在哺乳动物和两栖动物的听觉中脑中发现了对持续时间敏感的神经元,它们的选择性似乎对应于特定物种发声的长度。在这项研究中,测试了大鼠下丘脑(IC)中的单个神经元对声音持续时间的敏感性。大约一半(54%)的采样单位显示出某种形式的持续时间选择性。这些中的大多数(76%)是长通神经元,它们对超过某个持续时间阈值(范围:5-60 ms)的声音有反应。仅对有限的持续时间范围做出响应的带通神经元占对持续时间敏感的神经元的13%(最佳持续时间:15-120 ms)。其他单元显示短时(2%)或混合(9%)响应模式。大多数对持续时间敏感的神经元位于IC中心核之外,尤其是在背侧皮质,在该区域背侧皮层中,超过一半的采样神经元具有持续时间的长时选择性。带通持续时间调谐的神经元仅在中央核外发现。大鼠中对持续时间敏感的神经元的特征支持这样的想法,即这种过滤是通过在IC中收敛的兴奋性和抑制性输入的相互作用而产生的。带通神经元通常在声音偏移时做出响应,这表明它们的调音是通过与回声定位蝙蝠中描述的相同机制产生的。所有长传神经元的第一峰值潜伏期都比它们响应的最短持续时间更长的发现支持了这样的想法,即它们在持续的兴奋性输入之前或同时受到短暂的抑制。大鼠IC神经元的选择性范围在大鼠发声的持续时间范围内。这些数据表明,大鼠IC中的神经元群体已经进化为使用与所有哺乳动物相同的机制来传输有关行为相关声音持续时间的信息,并着重于长通音调特性。

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