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Development of a Dynamic Virtual Reality Model of the Inner Ear Sensory System as a Learning and Demonstrating Tool

机译:作为学习和演示工具的内耳感觉系统动态虚拟现实模型的开发

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In order to keep track of the position and motion of our body in space, nature has given us a fascinating and very ingenious organ, the inner ear. Each inner ear includes five biological sensors—three angular and two linear accelerometers—which provide the body with the ability to sense angular and linear motion of the head with respect to inertial space. The aim of this paper is to present a dynamic virtual reality model of these sensors. This model, implemented in MATLAB/Simulink, simulates the rotary chair testing which is one of the tests carried out during a diagnosis of thevestibular system. High-quality 3D animations linked to the Simulink model are created using theexport of CAD models into Virtual Reality Modeling Language (VRML) files. This virtual environment shows not only the test but also the state of each sensor (excited or inhibited) in real time. Virtual reality is used as a tool of integrated learning of the dynamic behavior of the inner ear using ergonomic paradigm of user interactivity (zoom, rotation, mouse interaction, etc.). It can be used as alearning and demonstrating tool either in the medicine field—to understand the behavior of the sensorsduring any kind of motion—or in the aeronautical field to relate the inner ear functioning to some sensory illusions.
机译:为了跟踪人体在太空中的位置和运动,大自然赋予了我们一个迷人而又非常巧妙的器官,即内耳。每个内耳都包括五个生物传感器(三个角加速度传感器和两个线性加速度计),它们使身体能够感知头部相对于惯性空间的角和线性运动。本文的目的是提出这些传感器的动态虚拟现实模型。该模型在MATLAB / Simulink中实现,可模拟旋转椅测试,这是在诊断前庭系统期间进行的测试之一。通过将CAD模型导出到虚拟现实建模语言(VRML)文件中,可以创建链接到Simulink模型的高质量3D动画。该虚拟环境不仅实时显示测试,而且还实时显示每个传感器的状态(激发或抑制)。虚拟现实被用作通过用户交互(缩放,旋转,鼠标交互等)的人体工程学范式对内耳动态行为进行综合学习的工具。它既可以在医学领域用作警报和演示工具,以了解传感器在任何类型的运动过程中的行为,也可以在航空领域用作将内耳功能与某些感觉错觉联系起来的工具。

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