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A Visualization Tool to convey Quantitative in vivo, 3D Knee Joint Kinematics

机译:一种在体内传达定量的可视化工具,3D膝关节运动学

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The overall goal of the virtual functional anatomy (VFA) project is to fill the important knowledge gap that exists in the relationship between functional movement limitations and impaired joint structure or function. Thus, a set of imaging-based post-processing tools is under development to enable dynamic and static magnetic resonance image (MRI) data to be merged. These tools will provide accurate quantification and visualization of 3D static and dynamic properties of musculoskeletal anatomy (i.e. skeletal kinematics, tendon and ligament strain, muscle force, cartilage contact). The current focus is to apply the six-degree of freedom joint kinematics to subject specific models and to quantify dynamic musculoskeletal properties, such as tendon moment arm, muscle moment arms, joint cartilage contact and tendon strain. To date, these tools have been used to study joint function of healthy and impaired (e.g. Cerebral Palsy, ACL rupture and patellar tracking syndrome) joint structures under simulated conditions experienced during activities of daily living.
机译:虚拟功能解剖(VFA)项目的总体目标是,以填补存在于功能性运动的限制和关节结构受损或功能之间关系的重要知识差距。因此,一组的基于成像的后处理工具是正在开发以实现动态和静态磁共振图像(MRI)数据合并。这些工具将提供准确的定量和肌肉骨骼解剖结构的三维静态和动态性能(即骨骼运动学,肌腱和韧带拉伤,肌肉力量,软骨接触)可视化。目前的重点是对六自由度关节运动的适用于特定受试者的模型和量化动态肌肉骨骼性质,如腱力矩臂,肌肉力矩臂,关节软骨接触和肌腱拉伤。迄今为止,这些工具已经被用来研究期间日常活动经历了模拟状态下的健康和损害(如脑瘫,前交叉韧带断裂及髌骨跟踪综合征)关节结构的关节功能。

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