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首页> 外文期刊>Journal of medical engineering & technology >Development of a novel 6-DOF parallel mechanism moving platform for investigating the effects of multimodal sensory feedback information regarding postural stability in humans
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Development of a novel 6-DOF parallel mechanism moving platform for investigating the effects of multimodal sensory feedback information regarding postural stability in humans

机译:开发新的6-DOF并行机构移动平台,用于研究人类姿势稳定性的多式联敏反馈信息的影响

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The purpose of this study was to develop a six-degree-of-freedom parallel mechanism moving platform to investigate the effects of multimodal sensory feedback information while standing upright. We constructed a custom-designed disturbance-applying instrument (DAI) consisting of a support surface suspended from eight pneumatic artificial muscles. The posture of the support surface was controlled with a proportional–integral–derivative (PID) feedback system using an infra-red camera-based real-time 3D motion capture system, and was estimated by step and frequency responses. Head trajectories of two healthy subjects were recorded to evaluate the effect of the differences in the impedance of the support surface during upright standing with their eyes opened/closed. The results demonstrated that the step and frequency responses of the DAI were good enough to enhance the bodily oscillation and head motion relative to the support surface. Indeed, the head-swaying space, using the DAI in a 0.2-Hz air-supplying condition during upright standing with their eyes closed, was larger than in the other standing condition. These results suggest that the specific medio-lateral head swaying was caused by the effects of the multimodal sensory feedback information using the DAI. In conclusion, we developed a novel moving platform to investigate the effects of multimodal sensory feedback information upon upright postural control. The DAI would be particularly valuable to enhance the head-swaying space during upright standing by changing the impedance of the support surface or stimulating the translational and/or rotational sensory feedback integration.
机译:本研究的目的是开发一个六维自由度并行机制移动平台,以研究多模式感觉反馈信息的效果在直立的同时。我们构建了一种定制设计的扰动仪(DAI),该仪器(DAI)包括悬挂在八个气动人工肌肉中的支撑面。使用基于红外相机的实时3D运动捕获系统的比例 - 积分 - 衍生物(PID)反馈系统控制支持表面的姿势,并被步骤和频率响应估计。记录了两个健康受试者的头部轨迹,以评估差异在直立的站立时触头站立的阻抗的效果打开/关闭。结果表明,DAI的步骤和频率响应足以增强相对于支撑表面的体振荡和头部运动。实际上,头部摇摆空间,在直立站立闭着眼睛的直立站立时,使用傣族空气供应条件,比在其他常设条件下大。这些结果表明,具体的Medio-横向摇摆摇摆是由傣族多式联敏反馈信息的影响引起的。总之,我们开发了一种新型移动平台,以研究多模式感官反馈信息对直立姿势控制的影响。通过改变支撑表面的阻抗或刺激平移和/或旋转感觉反馈集成,达到在直立支架期间提高头部摇摆空间特别有价值。

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