Colegio de Ciencias e Ingenierías "El Politécnico", Universidad San Francisco de Quito USFQ, Quito, Ecuador.
Departamento de Ingeniería Química, Escuela Politécnica Nacional, Quito, Ecuador.
PLoS One. 2022 Oct 6;17(10):e0275174. doi: 10.1371/journal.pone.0275174. eCollection 2022.
Although it is relevant to understand spine and lower body motions in healthy individuals for a variety of applications, such as clinical diagnosis, implant design, and the analysis of treatment outcomes, proper assessment and characterization of normative gait symmetry in healthy individuals remains unclear. The purpose of this study was to investigate the in vivo 3-dimensional (3D) spine and lower body gait symmetry kinematics during treadmill walking in healthy individuals. Sixty healthy young adults (30 males and 30 females) were evaluated during normal and fast treadmill walking using a motion capture system approach. Statistical parametric mapping and the normalized symmetry index approaches were used to determine spine, pelvis, and lower body asymmetries during treadmill walking. The spine and pelvis angular motions associated with the left and right lower limb motions, as well as the left and right lower extremity joint angles were compared for normal and fast treadmill walking. The lower lumbar left-right rotation (5.74±0.04°) and hip internal rotation (5.33±0.18°) presented the largest degrees of asymmetry during normal treadmill. Upper lumbar left-right lateral flexion (1.48±0.14°) and knee flexion (2.98±0.13°) indicated the largest asymmetries and during fast treadmill walking. Few asymmetry patterns were similar between normal and fast treadmill walking, whereas others appeared either only during normal or fast treadmill walking in this cohort of participants. These findings could provide insights into better understanding gait asymmetry in healthy individuals, and use them as reference indicators in diagnosing and evaluating abnormal gait function.
虽然了解健康个体的脊柱和下肢运动对于各种应用非常重要,例如临床诊断、植入物设计和治疗效果分析,但对于健康个体正常步态对称性的适当评估和特征描述仍然不清楚。本研究旨在探讨健康个体在跑步机行走时脊柱和下肢运动的三维(3D)对称性运动学。使用运动捕捉系统方法,对 60 名健康年轻成年人(30 名男性和 30 名女性)在正常和快速跑步机行走时进行了评估。使用统计参数映射和归一化对称性指数方法确定了跑步机行走过程中的脊柱、骨盆和下肢不对称性。比较了正常和快速跑步机行走时与左、右下肢运动相关的脊柱和骨盆角度运动,以及左、右下肢关节角度。正常跑步机行走时,左右旋转(5.74±0.04°)和髋关节内旋(5.33±0.18°)的下腰椎左右旋转呈现最大的不对称度。上腰椎左右侧屈(1.48±0.14°)和膝关节屈曲(2.98±0.13°)在快速跑步机行走时表现出最大的不对称性。在本研究参与者中,正常和快速跑步机行走之间的一些不对称模式相似,而其他模式仅在正常或快速跑步机行走中出现。这些发现可以深入了解健康个体的步态不对称性,并将其用作诊断和评估异常步态功能的参考指标。