Asadi Houshyar, Mohamed Shady, Lim Chee Peng, Nahavandi Saeid, Nalivaiko Eugene
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Rev Neurosci. 2017 Jul 26;28(5):537-549. doi: 10.1515/revneuro-2016-0058.
The human vestibular system is a sensory and equilibrium system that manages and controls the human sense of balance and movement. It is the main sensor humans use to perceive rotational and linear motions. Determining an accurate mathematical model of the human vestibular system is significant for research pertaining to motion perception, as the quality and effectiveness of the motion cueing algorithm (MCA) directly depends on the mathematical model used in its design. This paper describes the history and analyses the development process of mathematical semicircular canal models. The aim of this review is to determine the most consistent and reliable mathematical semicircular canal models that agree with experimental results and theoretical analyses, and offer reliable approximations for the semicircular canal functions based on the existing studies. Selecting and formulating accurate mathematical models of semicircular canals are essential for implementation into the MCA and for ensuring effective human motion perception modeling.
人体前庭系统是一个感觉和平衡系统,负责管理和控制人体的平衡感和运动感。它是人类用于感知旋转和直线运动的主要传感器。确定人体前庭系统的精确数学模型对于运动感知研究具有重要意义,因为运动提示算法(MCA)的质量和有效性直接取决于其设计中使用的数学模型。本文描述了数学半规管模型的历史并分析了其发展过程。本综述的目的是确定与实验结果和理论分析一致且最可靠的数学半规管模型,并根据现有研究为半规管功能提供可靠的近似值。选择和制定准确的半规管数学模型对于在MCA中实现以及确保有效的人体运动感知建模至关重要。