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Perception of echo delay is disrupted by small temporal misalignment of echo harmonics in bat sonar

机译:蝙蝠声纳中回声谐波的微小时间未对准会干扰回声延迟的感知

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摘要

Echolocating big brown bats emit ultrasonic frequency-modulated (FM) biosonar sounds containing two prominent downward-sweeping harmonics (FM1 and FM2) and perceive target distance from echo delay. In naturally occurring echoes, FM1 and FM2 are delayed by the same amount. Even though echoes from targets located off-axis or far away are lowpass filtered, which weakens FM2 relative to FM1, their delays remain the same. We show here that misalignment of FM2 with FM1 by only 2.6 μs is sufficient to significantly disrupt acuity, which then persists for larger misalignments up to 300 μs. However, when FM2 is eliminated entirely rather than just misaligned, acuity is effectively restored. For naturally occurring, lowpass-filtered echoes, neuronal responses to weakened FM2 are retarded relative to FM1 because of amplitude-latency trading, which misaligns the harmonics in the bat's internal auditory representations. Electronically delaying FM2 relative to FM1 mimics the retarded neuronal responses for FM2 relative to FM1 caused by amplitude-latency trading. Echoes with either electronically or physiologically misaligned harmonics are not perceived as having a clearly defined delay. This virtual collapse of delay acuity may suppress interference from off-axis or distant clutter through degradation of delay images for clutter in contrast to sharp images for nearer, frontal targets.
机译:重新安置的大棕色蝙蝠会发出超声波调频(FM)生物声纳声音,其中包含两个突出的向下扫频谐波(FM1和FM2),并感知到距回声延迟的目标距离。在自然发生的回声中,FM1和FM2延迟相同的量。即使来自离轴或远处的目标的回波被低通滤波,从而使FM2相对于FM1变弱,但它们的延迟保持不变。我们在这里显示,FM2与FM1的仅2.6μs的失准足以显着破坏敏锐度,然后视力仍然存在直至300μs的较大失准。但是,当完全消除FM2而不是仅仅消除未对准时,就可以有效地恢复视力。对于自然发生的,经过低通滤波的回声,由于振幅潜伏期交易而导致相对于FM1减弱了对减弱的FM2的神经元反应,这使蝙蝠内部听觉表示中的谐波失准。相对于FM1的电子延迟FM2模仿了由振幅潜伏期交易引起的FM2相对于FM1的迟发性神经元反应。具有电子或生理失调谐波的回波不被认为具有明确定义的延迟。与较近的正面目标的清晰图像相比,延迟敏锐度的这种虚拟崩溃可以通过延迟杂波的延迟图像降级来抑制来自离轴或远处杂波的干扰。

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