Examination of a practical method to quantitatively evaluate the rolling over movement in a clinical setting.

Yuki Yamanaka, Tomohito Mizuno, Hiroyuki Yamamoto, Shinichiro Murakami
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Abstract

[Purpose] We investigated the utility of wearable inertial and magnetic sensing modules for analyzing neck and trunk movements during the rolling over movement. [Participants and Methods] The participants were instructed to roll over from the supine to the side-lying position with three sensor units attached to their forehead, xiphoid process of the sternum, and abdomen. Experiments were conducted on two prescribed patterns: one emphasizing hip joint flexion and adduction, and the other focusing on scapular protraction and horizontal shoulder joint adduction in two healthy participants (one male and one female). The flexion and rotation angles of the neck and trunk were calculated using conventional spreadsheet software with data obtained from the sensors. The obtained values were compared for agreement with those derived from a three-dimensional (3D) motion analysis device. [Results] The cross-correlation coefficient for the flexion and rotation angles of the neck and trunk between the two measurement methods was approximately 0.85, and the root mean square (RMS) angle difference was approximately 5.0°. [Conclusion] Wearable inertial and magnetic sensors can be used to quantitatively evaluate neck and trunk movements during the rolling over movement.

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研究在临床环境中定量评估翻身动作的实用方法。
[目的]我们研究了可穿戴惯性和磁性传感模块在分析翻身动作中颈部和躯干运动时的实用性。[参与者和方法] 指导参与者从仰卧位翻身到侧卧位,并在他们的前额、胸骨剑突和腹部安装三个传感器单元。对两名健康参与者(一男一女)进行了两种规定模式的实验:一种强调髋关节屈曲和内收,另一种强调肩胛骨前伸和肩关节水平内收。颈部和躯干的屈伸和旋转角度是利用传感器获得的数据通过传统电子表格软件计算得出的。比较所得数值与三维(3D)运动分析设备得出的数值是否一致。[结果]两种测量方法之间颈部和躯干的屈伸和旋转角度的交叉相关系数约为 0.85,均方根角度差约为 5.0°。[结论]可穿戴惯性传感器和磁传感器可用于定量评估翻滚运动中颈部和躯干的运动。
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