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Computational Simulation of Synovial Fluid Kinematics of the Scapholunate Joint

机译:计算模拟滑液Scapholunate关节的运动学

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Background: The interaction between wrist kinematics and synovial fluid pressure has yet to be studied. To our knowledge, this is the first study to determine the effect of scapholunate joint kinematics on synovial fluid pressure change using finite volume method.Methods: The carpal bones of a cadaveric hand were obtained from Computed Tomography (CT) scans. CT images of the carpal bones were segmented and reconstructed into 3D model. The 3D synovial fluid model between the scaphoid and lunate was constructed and then used for computational simulations. The kinematics data of scapholunate joint obtained from radioulnar deviation of the wrist was investigated.Results: It was found that the pressure in synovial fluid varied from -1.68 to 2.64 Pa with maximum pressure located at the scaphoid-fluid interface during the radial deviation. For ulnar deviation, the pressure increased gradually from the scaphoid-fluid interface towards the lunate-fluid interface (-1.37 to 0.37 Pa).Conclusions: This new computational model provides a basis for the study of pathomechanics of ligament injury with the inclusion of synovial fluid.
机译:背景:之间的交互的手腕运动学和滑液压力尚未被研究。研究,以确定scapholunate的效果联合运动学滑液压力使用有限体积方法改变。腕的骨头尸体的手从计算机断层扫描(CT)扫描。腕骨骨分割和重建成3 d模型。舟状骨和新月状的构造然后用于计算模拟。运动学scapholunate共同获得的数据桡尺骨的偏差的手腕调查。滑液压力变化从-1.68到与最大压力位于2.64 Pa在径向scaphoid-fluid接口偏差。从scaphoid-fluid逐渐增加接口向lunate-fluid接口(-1.37到0.37 Pa)。计算模型提供了依据研究pathomechanics韧带损伤滑液。

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