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Characteristics of Center of Body Mass Trajectory and Lower Extremity Joint Motion Responded by Dynamic Motions of Balance Training System

机译:平衡训练系统动态运动对人体轨迹和下肢关节运动中心的影响

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PurposeTo provide an optimized strategy for balance rehabilitation training, we identified the change of joint angles in lower-extremity and trajectory of center of body mass (COM) in response to rotation of base plate of balance training equipment. Methods Following Institutional Review Board approval, seven healthy participants with no sign of musculoskeletal pathology (gender:7male, 25.5±1.7 years). Using customized balance rehabilitation training equipment, rotations were applied to participant's standing. The participant's four dynamic rotations induced by rotation of base plate were anterior-posterior (AP), right diagonal (RD), medialateral (ML), and left diagonal (LD). At the same time, by using an eight infrared camera-based three-dimensional motion capture system (T-10s; VICON Motion System Ltd., UK), the participant's lower-extremity joint angles and COM trajectory were measured. ResultsWith the participant's four dynamic rotation, AP and ML dynamic rotation of subjects showed high trajectory of COM deviation compared with another dynamic rotation (p<0.05). We also confirmed different changes of the joint angles in the lower extremity were induced overall (p<0.05). ConclusionsThese results indicate that optimizing the rotation of base plate for balance training, considering characteristics of changes of COM trajectory and joint angle, can lead to effective for improving balance ability in the elderly. However, additional tests with various speed and angular ranges of the base plate's rotation are need to be conducted, as well as analysis of balance characteristics considering muscle activity, for a more accurate strategy of optimizing the rotation control of the base plate.
机译:目的为提供平衡康复训练的优化策略,我们确定了平衡训练设备底板旋转时下肢关节角度和体重中心(COM)轨迹的变化。方法在机构审查委员会批准后,有7名健康参与者,无肌肉骨骼病理迹象(性别:7男,25.5±1.7岁)。使用定制的平衡康复训练设备,将轮换应用于参与者的站立状态。参与者通过底板旋转引起的四个动态旋转是前后(AP),右对角线(RD),内侧(ML)和左对角线(LD)。同时,通过使用基于八台红外摄像机的三维运动捕捉系统(T-10s;英国VICON Motion System Ltd.),测量了参与者的下肢关节角度和COM轨迹。结果在参与者的四个动态旋转下,受试者的AP和ML动态旋转显示COM偏离的轨迹高于另一个动态旋转(p <0.05)。我们还证实了下肢关节角的总体变化是不同的(p <0.05)。结论这些结果表明,考虑到COM轨迹和关节角度的变化特性,优化底板的旋转以进行平衡训练可有效提高老年人的平衡能力。但是,需要进行各种测试,以测试基板旋转的各种速度和角度范围,以及分析考虑肌肉活动的平衡特性,从而获得更精确的策略来优化基板的旋转控制。

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