首页> 外文会议>International Conference on Digital Human Modeling and Applications in Health, Safety, Ergonomics and Risk Management;International Conference on Human-Computer Interaction >A Reliable and Inexpensive Integration of Virtual Reality and Digital Human Modelling to Estimate Cervical Spine Function
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A Reliable and Inexpensive Integration of Virtual Reality and Digital Human Modelling to Estimate Cervical Spine Function

机译:虚拟现实与数字人体模型的可靠且廉价的集成,可评估颈椎功能

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摘要

Musculoskeletal disorders present one of the most prominent impact among the work-related diseases. Cervical spine is indeed one of the anatomical regions most affected by these issues; the main impairments concerning the cervical segment inherently limit its ranges of motion (ROMs). In the last years, novel technologies have been developed to support clinicians in assessing and quantifying these limitations, including wearable sensors and Virtual Reality (VR). In this perspective, interest in Digital Human Modeling has been also increasing due to the possibility of using it together with wearable technologies, thus to obtain enhanced information on body dynamics. This study aimed to validate a novel approach, which integrated VR technology and multi-body modelling to reliably estimated the ROMs of the cervical spine during the execution of three specific tasks (i.e. flexion-extension, lateral bending, axial rotation). Comparison with standard optoelectronic system reported strong correlation and good reliability, with an average difference in estimating ROMs of 8.0° and a mean RMSE of 4.7°. Furthermore, a preliminary test in managing different visual cues through VR highlighted interesting trends for future developments. The performed analysis supported the use of the proposed solution for both the clinical settings and telemedicine applications.
机译:肌肉骨骼疾病在有关疾病之间存在最突出的影响之一。颈椎确实是受这些问题受影响最大的解剖区域之一;关于颈部的主要损伤本身限制了其运动范围(ROM)。在过去几年中,已经开发了新的技术,以支持临床医生评估和量化这些限制,包括可穿戴传感器和虚拟现实(VR)。在这种观点来看,由于使用与可穿戴技术一起使用它的可能性,对数字人类建模的兴趣也在增加,从而获得有关身体动力学的增强信息。本研究旨在验证一种新的方法,该方法是集成的VR技术和多体建模,以便在执行三个特定任务期间可靠地估计颈椎的ROM(即屈曲 - 延伸,横向弯曲,轴向旋转)。与标准光电系统的比较报告了强的相关性和良好的可靠性,平均差异估计为8.0°,平均RMSE为4.7°。此外,通过VR管理不同视觉提示的初步测试突出了未来发展的有趣趋势。执行的分析支持使用所提出的解决方案,以了解临床环境和远程医疗应用。

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