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首页> 外文期刊>Journal of NeuroEngineering Rehabilitation >A rehabilitation tool for functional balance using altered gravity and virtual reality
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A rehabilitation tool for functional balance using altered gravity and virtual reality

机译:一种通过改变重力和虚拟现实实现功能平衡的康复工具

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Background There is a need for effective and early functional rehabilitation of patients with gait and balance problems including those with spinal cord injury, neurological diseases and recovering from hip fractures, a common consequence of falls especially in the elderly population. Gait training in these patients using partial body weight support (BWS) on a treadmill, a technique that involves unloading the subject through a harness, improves walking better than training with full weight bearing. One problem with this technique not commonly acknowledged is that the harness provides external support that essentially eliminates associated postural adjustments (APAs) required for independent gait. We have developed a device to address this issue and conducted a training study for proof of concept of efficacy. Methods We present a tool that can enhance the concept of BWS training by allowing natural APAs to occur mediolaterally. While in a supine position in a 90 deg tilted environment built around a modified hospital bed, subjects wear a backpack frame that is freely moving on air-bearings (cf. puck on an air hockey table) and attached through a cable to a pneumatic cylinder that provides a load that can be set to emulate various G-like loads. Veridical visual input is provided through two 3-D automultiscopic displays that allow glasses free 3-D vision representing a virtual surrounding environment that may be acquired from sites chosen by the patient. Two groups of 12 healthy subjects were exposed to either strength training alone or a combination of strength and balance training in such a tilted environment over a period of four weeks. Results Isokinetic strength measured during upright squat extension improved similarly in both groups. Measures of balance assessed in upright showed statistically significant improvements only when balance was part of the training in the tilted environment. Postural measures indicated less reliance on visual and/or increased use of somatosensory cues after training. Conclusion Upright balance function can be improved following balance specific training performed in a supine position in an environment providing the perception of an upright position with respect to gravity. Future studies will implement this concept in patients.
机译:背景技术需要对具有步态和平衡问题的患者进行有效的早期功能康复,包括患有脊髓损伤,神经系统疾病和髋部骨折康复的患者,尤其是在老年人中,跌倒是常见的结果。这些患者在跑步机上使用部分体重支撑(BWS)进行步态训练,这项技术涉及通过安全带将受试者卸下来,其步行效果要比全负重训练更好。这项技术未得到普遍认可的问题是,安全带提供了外部支撑,从根本上消除了独立步态所需的相关姿势调整(APA)。我们已经开发出解决此问题的设备,并进行了培训研究以证明功效概念。方法我们提出了一种工具,该工具可以通过允许自然APA在内侧发生,从而增强BWS训练的概念。在90度倾斜的环境中,仰卧姿势围绕改良的医院病床而建,受试者佩戴背包框架,该框架可在气垫上自由移动(参见冰球桌上的冰球),并通过电缆连接到气压缸上提供的负载可以设置为模拟各种类似G的负载。通过两个3-D自动多镜显示器提供垂直视觉输入,该显示器允许无眼镜的3-D视觉代表可以从患者选择的部位获取的虚拟周围环境。在这种倾斜的环境中,两组12名健康受试者分别接受了单独的力量训练或力量与平衡训练的组合,为期4周。结果两组在直立深蹲伸展过程中测得的等速肌力相似。仅当在倾斜环境中进行平衡训练时,以直立姿势评估的平衡测量才显示出统计学上的显着改善。姿势测量表明训练后对视觉的依赖性降低和/或躯体感觉提示的使用增加。结论在环境中以仰卧姿势进行平衡特定训练后,可以改善直立平衡功能,从而可以感觉到相对于重力的直立姿势。未来的研究将在患者中实施该概念。

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