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首次利用 3D 形态计量建模技术证明人类内耳耳石系统的内部和外部结构之间存在联系。

First evidence of the link between internal and external structure of the human inner ear otolith system using 3D morphometric modeling.

机构信息

Department of Anthropology, The Graduate Center, City University of New York, New York, NY, 10016, USA.

Center for Anatomy and Functional Morphology, Icahn School of Medicine at Mount Sinai, New York, NY, 10029, USA.

出版信息

Sci Rep. 2023 Mar 24;13(1):4840. doi: 10.1038/s41598-023-31235-1.

Abstract

Our sense of balance is among the most central of our sensory systems, particularly in the evolution of human positional behavior. The peripheral vestibular system (PVS) comprises the organs responsible for this sense; the semicircular canals (detecting angular acceleration) and otolith organs (utricle and saccule; detecting linear acceleration, vibration, and head tilt). Reconstructing vestibular evolution in the human lineage, however, is problematic. In contrast to considerable study of the canals, relationships between external bone and internal membranous otolith organs (otolith system) remain largely unexplored. This limits our understanding of vestibular functional morphology. This study combines spherical harmonic modeling and landmark-based shape analyses to model the configuration of the human otolith system. Our approach serves two aims: (1) test the hypothesis that bony form covaries with internal membranous anatomy; and (2) create a 3D morphometric model visualizing bony and membranous structure. Results demonstrate significant associations between bony and membranous tissues of the otolith system. These data provide the first evidence that external structure of the human otolith system is directly related to internal anatomy, suggesting a basic biological relationship. Our results visualize this structural relationship, offering new avenues into vestibular biomechanical modeling and assessing the evolution of the human balance system.

摘要

我们的平衡感是我们感觉系统中最重要的部分之一,尤其是在人类姿势行为的进化过程中。外周前庭系统(PVS)包括负责这种感觉的器官;半规管(检测角加速度)和耳石器官(椭圆囊和球囊;检测线性加速度、振动和头部倾斜)。然而,重建人类谱系中的前庭进化是有问题的。与对管道的大量研究相比,外部骨骼和内部膜性耳石器官(耳石系统)之间的关系在很大程度上仍未得到探索。这限制了我们对前庭功能形态学的理解。本研究结合了球谐建模和基于标志点的形状分析来模拟人类耳石系统的结构。我们的方法有两个目的:(1)验证骨骼形态与内部膜性解剖结构相关的假设;(2)创建可视化骨和膜结构的 3D 形态计量模型。结果表明,耳石系统的骨骼和膜组织之间存在显著的相关性。这些数据首次提供了证据,证明人类耳石系统的外部结构与内部解剖结构直接相关,这表明了一种基本的生物学关系。我们的结果可视化了这种结构关系,为前庭生物力学建模和评估人类平衡系统的进化提供了新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a134/10039035/11e011530106/41598_2023_31235_Fig1_HTML.jpg

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