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PATELLAR MALTRACKING: NO LONGER JUST A 2D PROBLEM

机译:ELL骨追踪:不再只是二维问题

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摘要

In order to correctly diagnose and treat pathological knee joint mechanics we must be able to non-invasively quantify the 3D in vivo kinematics of this joint. Unfortunately, the majority of clinical diagnoses, for this joint, are based upon static 2D imaging. This is due to the fact that currently there is a scarcity of noninvasive measurement techniques that acquire 3D in vivo data dynamically. Thus, in vivo patellofemoral (PF) kinematic measurements typically compress a 3D time-dependent joint attitude to a static 2D representation. The purpose of this study was to investigate if patellar maltracking is limited to two dimensions, as assumed clinically, or if it is a complete six-degree of freedom problem. To do this, we quantified the 3D patellofemoral and tibiofemoral (TF) kinematics in both healthy individuals and those with suspected patellofemoral maltracking using fast-phase contrast magnetic resonance imaging, a technique developed in our previous work. Our data suggest that variations in kinematics were not confined to the standard axial plane measures (e.g. patellar tilt, patellar subluxation), but variations are exhibited in all six degrees of freedom. Therefore, future clinical diagnoses and interventions along with future research will be most effective if the measures used are broadened to include all six-degrees of freedom.
机译:为了正确诊断和治疗病理性膝关节力学,我们必须能够无创地量化该关节的3D体内运动学。不幸的是,对该关节的大多数临床诊断均基于静态2D成像。这是由于以下事实:目前缺乏动态获取3D体内数据的非侵入性测量技术。因此,体内pa股(PF)运动学测量通常将3D时间相关的关节姿势压缩为静态2D表示。这项研究的目的是调查pa骨畸形是否局限于临床上假定的两个维度,或者是否是一个完整的六自由度问题。为此,我们使用快速相衬磁共振成像技术(这是我们先前的工作开发的一种技术),对健康个体和疑似pa股畸形的患者的3D of股和胫股(TF)运动学进行了量化。我们的数据表明,运动学上的变化不仅限于标准的轴向平面测量(例如pa骨倾斜,pa骨半脱位),但在所有六个自由度中都表现出了变化。因此,如果将所使用的措施扩展到包括所有六个自由度,则将来的临床诊断和干预措施以及将来的研究将是最有效的。

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