兽类学报2025,Vol.45Issue(6):763-770,8.DOI:10.16829/j.slxb.151090
地下啮齿动物震动信号发生机制与传导途径研究进展
Research progress on the mechanism and transmission pathway of seis-mic signals in subterranean rodents
摘要
Abstract
Subterranean rodents inhabit dark and complex underground tunnels.Under the action of environmental pres-sure,they have evolved communication methods that are compatible with the environment,and seismic communication is one of the typical behavioral strategies for their biological evolutionary adaptation.Understanding the location and transmission pathway of seismic signals is the first problem to be solved to improve and develop the research on seismic communication of subterranean rodents.However,the unique habitat lifestyle of subterranean rodents increases the diffi-culty of seismic communication research,limiting the in-depth development of research on seismic communication of subterranean rodents.This paper reviews the research status of the occurrence mechanism and transmission pathway of seismic signals in subterranean rodents.In general,the signal generation mechanism involves the diversity of foot,head,chest,teeth and nasal snout.The signal transduction pathway includes bone conduction and somatosensory reception.Bone conduction relies on the mandibular-ossicular chain to transmit seismic to the inner ear,whereas somatosensory re-ception is achieved by mechanical receptors,and the two may work together at different distances to achieve signal re-ception.The future research direction is prospected from the difference of the role of related parts in the mechanism of seismic signal generation,the transmission pathway of seismic signal,and the application in the management of zokor damage.关键词
地下啮齿动物/震动通讯/发生机制/传导途径Key words
Subterranean rodents/Seismic communication/Mechanisms of occurrence/Transduction pathways分类
生物科学引用本文复制引用
DONG Kechi,HUA Limin..地下啮齿动物震动信号发生机制与传导途径研究进展[J].兽类学报,2025,45(6):763-770,8.基金项目
国家重点研发计划(2024YFD1400502) (2024YFD1400502)
教育厅科研平台重大培育项目(2024CXPT-07) (2024CXPT-07)
草业生态系统教育部重点实验室"揭榜挂帅"(KLGE-2024-06) (KLGE-2024-06)
甘肃省优秀研究生"创新之星"项目(2025CXZX-846) (2025CXZX-846)
国家自然科学基金(32160338) (32160338)
国家林业和草原局草地啮齿动物危害防控创新团队资助 ()