Moore Patrick W, Dankiewicz Lois A, Houser Dorian S
SPAWARSYSCEN-San Diego, Code 2351, 53560 Hull Street, San Diego, California 92152-5001, USA.
J Acoust Soc Am. 2008 Nov;124(5):3324-32. doi: 10.1121/1.2980453.
Bottlenose dolphin (Tursiops truncatus) echolocation beams are typically characterized as symmetrical -3 dB beamwidths; however, the functional width of the beam during target detection has not been explored. Angular target detection thresholds of an echolocating dolphin were examined to more fully describe the functional characteristics of the echolocation beam. The dolphin performed an echolocation detection task with its head held in a fixed orientation. Targets were placed 9 m in front of the dolphin [0 degrees position (P(0))] and systematically moved right or left until target detection reached chance probability. A 24-element hydrophone array placed 1 m in front of the dolphin was used to measure vertical and horizontal echolocation beamwidths. Detection thresholds were 26 degrees left and 21 degrees right of P(0) for a sphere target and 19 degrees left and 13 degrees right of P(0) for a cylinder target. Estimates of maximum horizontal and vertical beamwidths ranged up to 40 degrees and 29 degrees , respectively, and exhibited large variability. The dolphin nominally steered the maximum response axis of the echolocation beam up to 18 degrees in the horizontal, 12 degrees in the upward vertical, and 4 degrees in the downward vertical. These results suggest that the dolphin can steer and modify the width of the echolocation beam.
宽吻海豚(瓶鼻海豚)的回声定位波束通常以对称的 -3 dB 波束宽度为特征;然而,目标检测期间波束的功能宽度尚未得到研究。研究了回声定位海豚的角目标检测阈值,以更全面地描述回声定位波束的功能特性。海豚头部保持固定方向执行回声定位检测任务。目标放置在海豚前方 9 米处 [0 度位置(P(0))],并系统地向右或向左移动,直到目标检测达到随机概率。在海豚前方 1 米处放置的一个 24 元水听器阵列用于测量垂直和水平回声定位波束宽度。对于球形目标,检测阈值在 P(0) 左侧 26 度和右侧 21 度,对于圆柱形目标,检测阈值在 P(0) 左侧 19 度和右侧 13 度。最大水平和垂直波束宽度的估计值分别高达 40 度和 29 度,并且表现出很大的变异性。海豚名义上可将回声定位波束的最大响应轴在水平方向上转向多达 18 度,在垂直向上方向上转向 12 度,在垂直向下方向上转向 4 度。这些结果表明,海豚可以操纵和改变回声定位波束的宽度。