Onboard recordings reveal how bats maneuver under severe acoustic interference

成果类型:
Article
署名作者:
Goldshtein, Aya; Mazar, Omer; Harten, Lee; Amichai, Eran; Assa, Reut; Levi, Anat; Orchan, Yotam; Toledo, Sivan; Nathan, Ran; Yovel, Yossi
署名单位:
University of Konstanz; Max Planck Society; University of Konstanz; Tel Aviv University; Tel Aviv University; Hebrew University of Jerusalem; Hebrew University of Jerusalem; Tel Aviv University; Tel Aviv University
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-9447
DOI:
10.1073/pnas.2407810122
发表日期:
2025-04-08
关键词:
big brown bats jamming avoidance echolocation behavior eptesicus-fuscus decision-making animal groups DYNAMICS habitat pattern fish
摘要:
Echolocating bats rely on active acoustic sensing to perceive their environment. When multiple bats fly together, echolocating simultaneously, the calls emitted by nearby conspecifics could interfere with and mask the echoes necessary for orientation. Nowhere is this impairment of sensing more dramatic than when thousands of bats emerge from a cave at the same time. Here, we tracked the movement of tens of greater mouse- tailed bats flying within a group of thousands. By mounting miniature microphones onboard some of the bats, we monitored the acoustic scene from the point of view of an individual bat within the echolocating collective. We found that bats experienced a very high level of conspecific acoustic masking when emerging from their cave, which dropped within seconds as the bats spread out in space. A comprehensive sensorimotor model, based on the unique data that we collected, revealed how bats content with this severe echo masking almost without collisions. Our results demonstrate that even under severe masking, bats are hardly impaired sensorially, and we suggest how they are able to maneuver smoothly and avoid collisions, even at high densities, without applying a jamming avoidance response.