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Pairing Virtual Reality with Dynamic Posturography Serves To Differentiate Patients with Visual Vertigo

机译:用动态后术配对虚拟现实是为了区分视觉眩晕的患者

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To determine if increased visual dependence can be quantified through its impact on automatic postural responses, we have measured the combined effect of transient optic flow in the pitch plane with platform rotations and translations on the latencies and magnitudes of postural response kinematics. Six healthy (29-31 yrs) and 4 visually sensitive (27-57 yrs) subjects stood on a platform that was rotated (6 deg of dorsiflexion at 30 deg/sec) or translated (5 cm at 5 deg/sec) for 200 ms. Subjects either had eyes closed or viewed an immersive, stereo, wide field of view virtual environment (scene) that moved in upward pitch at 5 velocities for a 200 ms period. Three 30 sec trials were presented for each visual condition. Kinematics were collected with a Motion Analysis system and angular displacement of head, trunk, and head with respect to trunk were calculated. EMG responses of 6 trunk and lower limb muscles were collected and latencies and magnitudes of responses determined for each trial. No effect of visual velocity was observed in the EMG response latencies and magnitudes. Large effects of visual field velocity were observed on the magnitudes of head angular displacement in each of the visually sensitive subjects with unique characteristics that can be related to their particular clinical history.
机译:为了确定可以通过对自动姿势响应的影响来量化增加的视觉依赖性,从而测量了瞬态光学流量在俯仰平面中的综合作用,平台旋转和姿势响应运动学的延迟和幅度的平移。六个健康(29-31毫秒)和4个视觉敏感(27-57毫秒)受试者在平台上旋转(30°/秒的6°,6°C)或翻译(5厘米以5℃/秒)200多发性硬化症。受试者要么有眼睛关闭或观察沉浸式,立体声,宽视野虚拟环境(场景),在5个速度下在向上间距移动,有200毫秒的时间。为每次视觉条件提出了三项30秒试验。采用运动分析系统收集了运动学,并计算了头部,躯干的角位移,并计算出躯干的头部。收集6躯干和下肢肌肉的EMG响应,并对每次试验确定的愈合延迟和响应的大小。在EMG响应延迟和幅度中没有观察到视觉速度的影响。在每个视觉敏感受试者中的头角位移的大小上观察到视场速度的大效果,其具有与其特定的临床历史有关的独特特征。

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