A perspective from the Mesozoic: Evolutionary changes of the mammalian skull and their influence on feeding efficiency and high-frequency hearing.

4区 医学 Q2 Agricultural and Biological Sciences
Anatomical Record Pub Date : 2025-03-11 DOI:10.1002/ar.25652
Julia A Schultz
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Abstract

The complex evolutionary history behind modern mammalian chewing performance and hearing function is a result of several changes in the entire skeletomuscular system of the skull and lower jaw. Lately, exciting multifunctional 3D analytical methods and kinematic simulations of feeding functions in both modern and fossil mammals and their cynodont relatives approach this topic, giving fresh insights into the history of mammalian masticatory behaviors and their evolutionary trends. One crucial transformation in this context is the segregation of postdentary bones (becoming the mammalian middle ear) from the lower jaw, which is posited to have led to the important functional decoupling of the hearing and feeding systems. Evolution of the middle ear is regarded as the key transition that enhanced both mammalian chewing performance and hearing capacity. Three major functional parts undergo substantial evolutionary changes in this process that are anatomically linked to each other: the lower jaw and dentition, middle ear, and inner ear. Sound, transmitted via vibrations of the bony middle ear elements to the inner ear, is converted into movements of the endolymph fluid that shift hair cells of the organ of Corti, triggering neural stimuli perceived as hearing. Structural changes in one part of the system influence the function of the other two. In this review, I highlight recent advances in research focusing on the enhancement of both chewing performance and hearing ability in mammalian history to feature the mechanisms that led to the decoupling of the hearing system (i.e., middle and inner ear) from the feeding system.

中生代视角:哺乳动物颅骨的进化变化及其对摄食效率和高频听力的影响。
现代哺乳动物咀嚼性能和听力功能背后的复杂进化史是头骨和下颌整个骨骼肌系统发生变化的结果。最近,令人兴奋的多功能三维分析方法和现代和化石哺乳动物及其犬齿类近亲摄食功能的运动学模拟接近这一主题,为哺乳动物咀嚼行为的历史及其进化趋势提供了新的见解。在这一背景下,一个关键的转变是牙齿后骨骼(成为哺乳动物的中耳)与下颌的分离,这被认为导致了听觉和喂养系统的重要功能分离。中耳的进化被认为是提高哺乳动物咀嚼性能和听力能力的关键转变。在这个过程中,有三个主要的功能部分经历了实质性的进化变化,它们在解剖学上是相互联系的:下颚和牙列、中耳和内耳。声音通过骨性中耳元件的振动传递到内耳,转化为内淋巴液的运动,使Corti器官的毛细胞移动,引发被认为是听觉的神经刺激。系统一个部分的结构变化会影响另外两个部分的功能。在这篇综述中,我重点介绍了哺乳动物历史上咀嚼性能和听力能力增强的最新研究进展,以揭示导致听力系统(即中耳和内耳)与进食系统分离的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Anatomical Record
Anatomical Record Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
4.30
自引率
0.00%
发文量
0
期刊介绍: The Anatomical Record
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