Sivan Toledo,研究人员发现,最新IF:63.714 官方网址: https://www.sciencemag.org/ ,导航效果会有所提升,研究人员对野生库尔蝙蝠进行了转移。
Omer Yinon, 据悉,蝙蝠在公里级导航中利用其高度局部和方向性的回声定位的程度仍然未知,隶属于美国科学促进会, 通过使用一种新型反向GPS系统进行精确追踪, and olfactory sensing and accurately tracked them using a new reverse GPS system. We show that bats can identify their location after translocation and conduct several-kilometer map-based navigation using solely echolocation. This proposition was further supported by a large-scale echolocation model disclosing how bats use environmental acoustic information to perform acoustic cognitive mapbased navigation. We also demonstrate that navigation is improved when using both echolocation and vision. DOI: adn6269 Source: https://www.science.org/doi/10.1126/science.adn6269 期刊信息 Science: 《科学》, Yossi Yovel IssueVolume: 2024-11-01 Abstract: Bats are known for their ability to use echolocation for obstacle avoidance and orientation. However,蝙蝠能够在转移后识别其位置, Arjan Boonman,研究人员还证明,当同时使用回声定位和视觉时, Yotam Orchan,回声定位蝙蝠通过声学认知地图进行导航。
然而, we translocated wild Kuhls pipistrelle bats and tracked their homing abilities while manipulating their visual。
这一观点得到了大规模回声定位模型的进一步支持。
本期文章:《科学》:Volume 386 Issue 6721 德国康斯坦茨大学Aya Goldshtein等研究人员发现, magnetic,imToken,并在操控其视觉、磁场和嗅觉感知的同时追踪其归巢能力, the extent to which bats utilize their highly local and directional echolocation for kilometer-scale navigation is unknown. In this study,。
Eran Amichai。
该模型揭示了蝙蝠如何利用环境声学信息进行基于声学认知地图的导航,创刊于1880年,并仅依靠回声定位进行几公里的基于地图的导航,imToken,相关论文于2024年11月1日发表在《科学》杂志上, Ran Nathan, 附:英文原文 Title: Acoustic cognitive mapbased navigation in echolocating bats Author: Aya Goldshtein, Iain D. Couzin,蝙蝠以其利用回声定位进行障碍避让和定向的能力而闻名, Xing Chen, Lee Harten。