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棕蝠(大棕蝠)对抖动声纳回声的辨别:回声定位中目标图像的形状

Discrimination of jittered sonar echoes by the echolocating bat, Eptesicus fuscus: the shape of target images in echolocation.

作者信息

Simmons J A, Ferragamo M, Moss C F, Stevenson S B, Altes R A

机构信息

Department of Psychology, Brown University, Providence, RI 02912.

出版信息

J Comp Physiol A. 1990 Nov;167(5):589-616. doi: 10.1007/BF00192654.

Abstract
  1. Behavioral experiments with jittering echoes examined acoustic images of sonar targets in the echolocating bat, Eptesicus fuscus, along the echo delay or target range axis. Echo phase, amplitude, bandwidth, and signal-to-noise ratio were manipulated to assess the underlying auditory processes for image formation. 2. Fine delay acuity is about 10 ns. Calibration and control procedures indicate that this represents temporal acuity rather than spectral discrimination. Jitter discrimination curves change in phase when the phase of one jittering echo is shifted by 180 degrees relative to the other, showing that echo phase is involved in delay estimation. At an echo detectability index of about 36 dB, fine acuity is 40 ns, which is approximately as predicted for the delay accuracy of an ideal receiver. 3. Compound performance curves for 0 degrees and 180 degrees phase conditions match the crosscorrelation function of the echoes. The locations of both 0 degrees and 180 degrees phase peaks in the performance curves shift along the time axis by an amount that matches neural amplitude-latency trading in Eptesicus, confirming a temporal basis for jitter discrimination.
摘要
  1. 利用抖动回声进行的行为实验,沿着回声延迟或目标距离轴,研究了棕蝠(大棕蝠)回声定位时声纳目标的声学图像。对回声相位、幅度、带宽和信噪比进行了操控,以评估图像形成背后的听觉过程。2. 精细延迟敏锐度约为10纳秒。校准和控制程序表明,这代表的是时间敏锐度而非频谱辨别。当一个抖动回声的相位相对于另一个抖动回声的相位偏移180度时,抖动辨别曲线会在相位上发生变化,这表明回声相位参与了延迟估计。在约36分贝的回声可检测性指数下,精细敏锐度为40纳秒,这与理想接收器延迟精度的预测值大致相同。3. 0度和180度相位条件下的复合性能曲线与回声的互相关函数相匹配。性能曲线中0度和180度相位峰值的位置沿时间轴移动的量,与大棕蝠中神经幅度 - 潜伏期权衡相匹配,证实了抖动辨别存在时间基础。

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