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A METHOD FOR MECHANICALLY LOADING JOINTS DURING DYNAMIC MAGNETIC RESONANCE IMAGING

机译:动态磁共振成像期间机械加载接头的方法

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In order to take advantage of the opportunities that dynamic Magnetic Resonance Imaging (d-MRI) offers to the study of in vivo joint mechanics, d-MRI compatible devices capable of producing joint loads replicating dynamic physiological activities are needed (Sheehan et al., 1999). The purpose of this research effort was to design, model and test a device for the expressed purpose of using d-MRI to study precise ankle joint dynamics during loaded pseudo-functional movements. The device adjusts to subject specific anthropometric measurements, allowing for the device's axis of rotation to approximate the ankle's transverse axis. By combining imaging data and the model of the device, the magnitude, direction and point of application of the force applied to the foot were calculated throughout the motion cycle, with an average error of .7 Nm. This allows for comparisons between the externally applied load and internal ankle joint kinematics to be made, which are essential determinants for in vivo estimates of forces within tendon and ligament. The next phase of this work will be to combine this device with fast-Phase Contrast MRI (fast-pc), a previously developed d-MRI technique for the quantification of 3D musculoskeletal motion, in order to create a complete tool for the noninvasive in vivo measurement of joint kinematics during a loaded dynamic functional task in both healthy and impaired ankles.
机译:为了利用动态磁共振成像(D-MRI)对体内联合力学研究提供的机会,需要能够生产关节载荷复制动态生理活动的D-MRI兼容装置(Sheehan等, 1999)。该研究的努力的目的是设计,模型和测试一种用于使用D-MRI在加载的伪功能运动期间研究精确的踝关节动力学的装置。该设备调整为对象特定的人类测量测量,允许器件的旋转轴来接近踝关节的横轴。通过组合成像数据和器件的模型,在整个运动周期中计算施加到脚的力的幅度,方向和施加的力,具有平均误差.7nm。这允许制造外部施加的负载和内部踝关节运动学之间的比较,这是肌腱和韧带中的力量估计的基本决定因素。该工作的下一阶段将以快速相位对比MRI(FAST-PC)将该设备组合,以前开发了用于量化3D肌肉骨骼运动的D-MRI技术,以便为非侵入性创建一个完整的工具健康和受损脚踝加载动态功能任务中的关节运动学的体内测量。

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