Laschowski Brock, Mehrabi Naser, McPhee John
1 University of Waterloo.
J Appl Biomech. 2017 Aug;33(4):294-299. doi: 10.1123/jab.2016-0143. Epub 2017 Sep 5.
Paralympic wheelchair curling is an adapted version of Olympic curling played by individuals with spinal cord injuries, cerebral palsy, multiple sclerosis, and lower extremity amputations. To the best of the authors' knowledge, there has been no experimental or computational research published regarding the biomechanics of wheelchair curling. Accordingly, the objective of the present research was to quantify the angular joint kinematics and dynamics of a Paralympic wheelchair curler throughout the delivery. The angular joint kinematics of the upper extremity were experimentally measured using an inertial measurement unit system; the translational kinematics of the curling stone were additionally evaluated with optical motion capture. The experimental kinematics were mathematically optimized to satisfy the kinematic constraints of a subject-specific multibody biomechanical model. The optimized kinematics were subsequently used to compute the resultant joint moments via inverse dynamics analysis. The main biomechanical demands throughout the delivery (ie, in terms of both kinematic and dynamic variables) were about the hip and shoulder joints, followed sequentially by the elbow and wrist. The implications of these findings are discussed in relation to wheelchair curling delivery technique, musculoskeletal modeling, and forward dynamic simulations.
残奥会轮椅冰壶是奥运会冰壶的一种改编形式,由脊髓损伤、脑瘫、多发性硬化症患者以及下肢截肢者参与。据作者所知,尚未有关于轮椅冰壶生物力学的实验或计算研究发表。因此,本研究的目的是量化残奥会轮椅冰壶运动员在整个投壶过程中的关节角运动学和动力学。使用惯性测量单元系统对上肢的关节角运动学进行了实验测量;此外,还通过光学动作捕捉评估了冰壶石的平移运动学。对实验运动学进行了数学优化,以满足特定受试者多体生物力学模型的运动学约束。随后,通过逆动力学分析,利用优化后的运动学来计算合成关节力矩。整个投壶过程中的主要生物力学需求(即运动学和动力学变量方面)集中在髋关节和肩关节,其次依次是肘关节和腕关节。结合轮椅冰壶投壶技术、肌肉骨骼建模和正向动力学模拟对这些发现的意义进行了讨论。