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Design of a Modular and Low-Latency Virtual-Environment Platform for Applications in Motor Adaptation Research, Neurological Disorders, and Neurorehabilitation

机译:模块化和低延迟虚拟环境平台的设计,可用于运动适应研究,神经系统疾病和神经康复

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We have developed a modular virtual environment platform for movement research and rehabilitation. The system uses several networked computers running Linux to share computation. An electromagnetic tracker is the primary position tracker and both a head-mounted display and stereo goggles are used for visual display. System software is written in a combination of C++, JAVA, and Python and makes considerable use of the open-source toolkits VR Juggler and OpenSceneGraph. These are integrated with additional toolkits and custom modules written specifically for the study of motor control and rehabilitation. The system performs well with low latency, accurate calibration, and a consistently high graphics update rate. Preliminary applications have confirmed that the system is a powerful tool for sensory-motor investigation and has considerable potential as a tool for neurorehabilitation. Its primary advantage over other systems is its ability to utilize different display and input devices, and run a range of experiments simply by changing XML configuration files. Additionally, the use of powerful open-source libraries provides a feature-rich foundation for advanced features and low-cost duplication. Further work and experiments are needed to extend, further validate, and fully utilize this platform.
机译:我们已经开发了用于运动研究和康复的模块化虚拟环境平台。该系统使用几台运行Linux的联网计算机来共享计算。电磁跟踪器是主要的位置跟踪器,并且头戴式显示器和立体护目镜都用于视觉显示。系统软件是用C ++,JAVA和Python组合编写的,并且大量使用了开源工具包VR Juggler和OpenSceneGraph。这些都与专门为研究电机控制和康复而编写的其他工具包和自定义模块集成在一起。该系统在低延迟,精确校准和始终如一的高图形更新率下表现良好。初步应用证实,该系统是用于感觉运动研究的功能强大的工具,具有作为神经康复工具的巨大潜力。与其他系统相比,它的主要优点是能够利用不同的显示和输入设备,并且只需更改XML配置文件即可运行一系列实验。此外,强大的开源库的使用为高级功能和低成本复制提供了功能丰富的基础。需要进一步的工作和实验来扩展,进一步验证和充分利用该平台。

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