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A Functional Role of FM Sweep Rate of Biosonar in Echolocation of Bat

机译:生物声纳的FM扫频速率在蝙蝠回声中的作用

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摘要

Most species of bats making echolocation use frequency mod-ulated(FM) ultrasonic pulses to measure the distance to targets.These bats detect with a high accuracy the arrival time differences between emitted pulses and their echoes generated by targets. In order to clarify the neural mechanism for echolocation, we present neural model of inferior colliculus(IC). The bats increase the downward frequency sweep rate of emitted FM pulse as they approach the target. The functional role of this modulation of sweep rate is not yet clear. In order to investigate the role, we calculated the response properties of our models of IC changing the target distance and the sweep rate. We found based on the simulations that the distance of a target in various ranges may be encoded the most clearly into the activity pattern of delay time map network in IC, when bats adopt the observed FM sweep rate for each range of target distance.
机译:大多数进行回声定位的蝙蝠都使用调频(FM)超声波脉冲来测量到目标的距离,这些蝙蝠可以高精度检测发射脉冲及其目标产生的回声之间的到达时间差。为了阐明回声定位的神经机制,我们提出了下丘脑(IC)的神经模型。蝙蝠在接近目标时增加了发射的FM脉冲的向下扫频速率。这种扫描速率调制的功能作用尚不清楚。为了研究其作用,我们计算了改变目标距离和扫描速率的IC模型的响应特性。基于仿真,我们发现,当蝙蝠对每个目标距离范围采用观察到的FM扫描速率时,可以将最不同范围内的目标距离最清楚地编码为IC中的延迟时间映射网络的活动模式。

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