Corrado Cescon, Marco Barbero, Marco Conti, Francesco Bozzetti, Jeremy Lewis
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引用次数: 0
摘要
有关肩部旋转时肱骨运动学过程中螺旋轴的信息可能有助于更好地了解肩关节不稳定等情况。本研究旨在利用螺旋轴(HA)参数量化三种不同情况下的肱骨旋转行为。共有 19 名没有肩部症状的人参加了实验。使用光电运动捕捉系统测量肩部运动学。受试者进行了三种不同的肩部全方位旋转。使用 HA 技术对肩部运动进行了分析。从三个不同的全范围旋转过程中的肩部 HA 提取了四个参数:运动范围(RoM)、平均角度(MA)、轴离散度(MDD)和其中心与肩部的距离(D)。在每个条件下,左右两侧的 RoM 均无明显差异。在三种情况下,右侧的轴线 MA 都明显低于左侧。在三种情况下,右侧的MDD也低于左侧。
Helical axis analysis to quantify humeral kinematics during shoulder rotation.
Information pertaining to the helical axis during humeral kinematics during shoulder rotation may be of benefit to better understand conditions such as shoulder instability. The aim of this study is to quantify the behavior of humeral rotations using helical axis (HA) parameters in three different conditions. A total of 19 people without shoulder symptoms participated in the experiment. Shoulder kinematics was measured with an optoelectric motion capture system. The subjects performed three different full range rotations of the shoulder. The shoulder movements were analyzed with the HA technique. Four parameters were extracted from the HA of the shoulder during three different full-range rotations: range of movement (RoM), mean angle (MA), axis dispersion (MDD), and distance of their center from the shoulder (D). No significant differences were observed in the RoM for each condition between left and right side. The MA of the axis was significantly lower on the right side compared to the left in each of the three conditions. The MDD was also lower for the right side compared to the left side in each of the three conditions.The four parameters proposed for the analysis of shoulder kinematics showed to be promising indicators of shoulder instability.
期刊介绍:
International Biomechanics is a fully Open Access biomechanics journal that aims to foster innovation, debate and collaboration across the full spectrum of biomechanics. We publish original articles, reviews, and short communications in all areas of biomechanics and welcome papers that explore: Bio-fluid mechanics, Continuum Biomechanics, Biotribology, Cellular Biomechanics, Mechanobiology, Mechano-transduction, Tissue Mechanics, Comparative Biomechanics and Functional Anatomy, Allometry, Animal locomotion in biomechanics, Gait analysis in biomechanics, Musculoskeletal and Orthopaedic Biomechanics, Cardiovascular Biomechanics, Plant Biomechanics, Injury Biomechanics, Impact Biomechanics, Sport and Exercise Biomechanics, Kinesiology, Rehabilitation in biomechanics, Quantitative Ergonomics, Human Factors engineering, Occupational Biomechanics, Developmental Biomechanics.