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首页> 外文期刊>Journal of Comparative Physiology A: Neuroethology, Sensory, Neural, and Behavioral Physiology >Duration tuning in the auditory midbrain of echolocating and non-echolocating vertebrates
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Duration tuning in the auditory midbrain of echolocating and non-echolocating vertebrates

机译:回声和非回声脊椎动物的听觉中脑持续时间调整

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Neurons tuned for stimulus duration were first discovered in the auditory midbrain of frogs. Duration-tuned neurons (DTNs) have since been reported from the central auditory system of both echolocating and non-echolocating mammals, and from the central visual system of cats. We hypothesize that the functional significance of auditory duration tuning likely varies between species with different evolutionary histories, sensory ecologies, and bioacoustic constraints. For example, in non-echolocating animals such as frogs and mice the temporal filtering properties of auditory DTNs may function to discriminate species-specific communication sounds. In echolocating bats duration tuning may also be used to create cells with highly selective responses for specific rates of frequency modulation and/or pulse-echo delays. The ability to echolocate appears to have selected for high temporal acuity in the duration tuning curves of inferior colliculus neurons in bats. Our understanding of the neural mechanisms underlying sound duration selectivity has improved substantially since DTNs were first discovered almost 50 years ago, but additional research is required for a comprehensive understanding of the functional role and the behavioral significance that duration tuning plays in sensory systems.
机译:调节刺激持续时间的神经元首先在青蛙的听觉中脑中发现。此后,回声定位和非回声定位哺乳动物的中央听觉系统以及猫的中央视觉系统都报告了持续时间调谐的神经元(DTN)。我们假设听觉持续时间调整的功能重要性可能在具有不同进化历史,感觉生态学和生物声学约束的物种之间有所不同。例如,在诸如青蛙和小鼠之类的不具有回声特性的动物中,听觉DTN的时间过滤特性可用来区分特定物种的通信声音。在回声蝙蝠中,持续时间调整也可用于创建具有特定频率调制和/或脉冲回波延迟率的高度选择性响应的单元。在蝙蝠下丘神经元的持续时间调整曲线中,回声定位的能力似乎已被选择用于高时间敏锐度。自从大约50年前首次发现DTN以来,我们对声音持续时间选择性所依据的神经机制的理解已大大提高,但是需要进一步的研究以全面了解持续时间调整在感觉系统中的功能作用和行为意义。

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