Moss C F, Simmons J A
Department of Psychology, Harvard University, Cambridge, Massachusetts 02138.
J Acoust Soc Am. 1993 Mar;93(3):1553-62. doi: 10.1121/1.406814.
Echolocating bats, Eptesicus fuscus, were trained in two distinct behavioral tasks to investigate the images they perceive of a sonar point target. In the first task, bats were trained in a two-alternative forced-choice procedure to detect electronically simulated target echoes at a range of approximately 57 cm. Half of the trials in the detection task contained echoes from a stationary target (simulated by a fixed echo delay) and half contained echoes from a jittering target (simulated by an echo delay alternating between two time values over successive sonar emissions). In the second task, bats were trained in a two-alternative forced-choice procedure to discriminate between electronically simulated stationary and jittering targets, centered about a range of 57 cm. Both target detection and target jitter discrimination performance were assessed as a function of jitter magnitude, with jitter values ranging from 0-60 microseconds (corresponding to a change in distance of 0 to 10.3 mm). In both detection and discrimination tasks, the bat's performance changed cyclically with the magnitude of echo jitter. Specifically, when the phase of the playback echoes was unchanged, performance levels were poorest at 0 and 30 microseconds, and when the phase of the echoes alternated by 180 deg from one to the next, performance levels were poorest at 15 and 40-50 microseconds. The results suggest that Eptesicus is sensitive to the phase reversal of echoes and thus have implications for assessing receiver models of echolocation.
对棕蝠(Eptesicus fuscus)进行回声定位训练,使其完成两项不同的行为任务,以研究它们对声纳点目标所感知到的图像。在第一项任务中,对蝙蝠进行双选强制选择程序训练,以探测距离约为57厘米处的电子模拟目标回声。探测任务中一半的试验包含来自静止目标的回声(由固定回声延迟模拟),另一半包含来自抖动目标的回声(由连续声纳发射时在两个时间值之间交替的回声延迟模拟)。在第二项任务中,对蝙蝠进行双选强制选择程序训练,以区分电子模拟的静止目标和抖动目标,目标中心距离约为57厘米。目标探测和目标抖动辨别性能均作为抖动幅度的函数进行评估,抖动值范围为0至60微秒(对应距离变化为0至10.3毫米)。在探测和辨别任务中,蝙蝠的表现均随回声抖动幅度呈周期性变化。具体而言,当回放回声相位不变时,在0和30微秒时性能水平最差;当回声相位从一个到下一个交替180度时,在15和40至50微秒时性能水平最差。结果表明,棕蝠对回声的相位反转敏感,因此对评估回声定位的接收器模型具有启示意义。