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一项关于人体半规管偏心旋转动力学的计算研究及其对现实世界和虚拟世界的启示。

A computational study on off-center rotational dynamics of human semicircular canals with implications for real and virtual worlds.

作者信息

Cha Sion, Kim Wooksung

机构信息

Department of Electrical Engineering, Pohang University of Science and Technology (POSTECH), 77 Cheongam-Ro, Nam-Gu, Pohang, Gyeongbuk, 37673, Republic of Korea.

出版信息

Heliyon. 2024 Dec 6;10(24):e41035. doi: 10.1016/j.heliyon.2024.e41035. eCollection 2024 Dec 30.

Abstract

This study investigates human semicircular canal (SCC) dynamics under off-center rotational conditions. Previous research has modeled human rotational perception and the dynamic response of the SCCs by assuming a centered rotation state, where the rotation axis aligns with the SCC's center. However, this assumption is not representative of most real-life rotational situations. Understanding the effect of the offset distance between the rotation axis and the centers of the SCCs is essential, yet many studies still rely on bandpass filter models that do not account for this factor. Experimental studies are also limited, and mock-up models have difficulty accurately depicting these dynamics due to the cupula's low Young's modulus. Therefore, this study models endolymph and cupula within the SCCs using the finite element method (FEM) and a two-way fluid-structure interaction (FSI) approach. The results compare cupula displacement across different rotational conditions: step velocity motion (SVM), step acceleration motion (SAM), and sinusoidal motion. Notably, as the offset distance increases, the gain factor increases while the long time constant decreases. This finding highlights the limitations of existing centered rotation-based bandpass filter models. Based on these findings, we propose a modified transfer function that accounts for offset distance, offering a more generalizable model for human rotational perception and the dynamic responses of the SCCs. Additionally, this study provides foundational data to address sensory conflict, spatial disorientation, and various applications that require a precise dynamics model.

摘要

本研究调查了偏心旋转条件下人体半规管(SCC)的动力学。先前的研究通过假设中心旋转状态来模拟人体旋转感知和半规管的动态响应,在该状态下旋转轴与半规管的中心对齐。然而,这一假设并不代表大多数现实生活中的旋转情况。了解旋转轴与半规管中心之间的偏移距离的影响至关重要,但许多研究仍依赖于未考虑该因素的带通滤波器模型。实验研究也很有限,并且由于壶腹的低杨氏模量,模型难以准确描绘这些动力学。因此,本研究使用有限元方法(FEM)和双向流固耦合(FSI)方法对半规管内的内淋巴和壶腹进行建模。结果比较了不同旋转条件下壶腹的位移:阶跃速度运动(SVM)、阶跃加速度运动(SAM)和正弦运动。值得注意的是,随着偏移距离的增加,增益因子增加而长时间常数减小。这一发现突出了现有的基于中心旋转的带通滤波器模型的局限性。基于这些发现,我们提出了一个考虑偏移距离的修正传递函数,为人体旋转感知和半规管的动态响应提供了一个更具通用性的模型。此外,本研究提供了基础数据,以解决感觉冲突、空间定向障碍以及各种需要精确动力学模型的应用问题。

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