Department of Biomedical Engineering, Northwestern University, Evanston, IL, USA.
J Biomech. 2013 Jan 4;46(1):192-6. doi: 10.1016/j.jbiomech.2012.10.035. Epub 2012 Nov 28.
The wrist is a complex kinematic link connecting the forearm and hand. The kinematic design of the wrist is permanently altered during surgical salvage procedures, such as proximal row carpectomy (PRC) and scaphoid-excision four-corner fusion (SE4CF), which have the unintended consequence of long-term functional impairments to both the wrist and hand. We developed simulations of the nonimpaired, PRC, and SE4CF wrists to evaluate if surgically altered wrist kinematics contribute to functional impairments. Specifically, as a step toward understanding the connection between kinematics and function, we examined the torque necessary to statically maintain functional postures. All simulations included only bone geometry and joint kinematics; soft tissues were excluded. Our simulations demonstrate that the torque necessary to maintain a functional posture is influenced by the orientations of the flexion and deviation axes of rotation relative to each other and the anatomical planes of the radius. The magnitude of torque required to hold the hand against gravity decreased in simulations of the PRC wrist compared to the nonimpaired wrist. In contrast, the torque required increased relative to the nonimpaired wrist in simulations of the SE4CF wrist. These divergent results are directly related to how motion is coupled between the flexion-extension and deviation axes of rotation. This study highlights that, even without considering the effects of soft tissues, changing the kinematic design of the wrist influences function; therefore, kinematics should be considered when surgically redesigning the wrist.
手腕是连接前臂和手的复杂运动学环节。在手术挽救过程中,手腕的运动学设计会永久改变,例如近排腕骨切除术 (PRC) 和舟状骨切除四角融合术 (SE4CF),这会导致手腕和手的长期功能障碍。我们开发了非损伤、PRC 和 SE4CF 手腕的模拟,以评估手术改变的手腕运动学是否会导致功能障碍。具体来说,作为理解运动学和功能之间联系的一步,我们研究了静态维持功能姿势所需的扭矩。所有模拟仅包括骨骼几何形状和关节运动学;排除了软组织。我们的模拟表明,维持功能姿势所需的扭矩受旋转的弯曲和偏离轴的方向相对于彼此以及桡骨的解剖平面的影响。与非损伤手腕相比,PRC 手腕模拟中保持手对抗重力所需的扭矩降低。相比之下,SE4CF 手腕模拟中所需的扭矩相对于非损伤手腕增加。这些不同的结果直接与弯曲-伸展和偏离旋转轴之间的运动耦合方式有关。这项研究强调,即使不考虑软组织的影响,改变手腕的运动学设计也会影响功能;因此,在对手腕进行手术重新设计时,应考虑运动学。