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In vivo articular cartilage deformation: noninvasive quantification of intratissue strain during joint contact in the human knee

机译:体内关节软骨变形:人膝关节接触期间组织内应变的无创定量

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摘要

The in vivo measurement of articular cartilage deformation is essential to understand how mechanical forces distribute throughout the healthy tissue and change over time in the pathologic joint. Displacements or strain may serve as a functional imaging biomarker for healthy, diseased, and repaired tissues, but unfortunately intratissue cartilage deformation in vivo is largely unknown. Here, we directly quantified for the first time deformation patterns through the thickness of tibiofemoral articular cartilage in healthy human volunteers. Magnetic resonance imaging acquisitions were synchronized with physiologically relevant compressive loading and used to visualize and measure regional displacement and strain of tibiofemoral articular cartilage in a sagittal plane. We found that compression (of 1/2 body weight) applied at the foot produced a sliding, rigid-body displacement at the tibiofemoral cartilage interface, that loading generated subject- and gender-specific and regionally complex patterns of intratissue strains, and that dominant cartilage strains (approaching 12%) were in shear. Maximum principle and shear strain measures in the tibia were correlated with body mass index. Our MRI-based approach may accelerate the development of regenerative therapies for diseased or damaged cartilage, which is currently limited by the lack of reliable in vivo methods for noninvasive assessment of functional changes following treatment.
机译:体内关节软骨变形的测量对于了解机械力如何在整个健康组织中分布以及病理关节中的时间变化至关重要。位移或应变可以用作健康,患病和修复的组织的功能性成像生物标记,但是不幸的是,体内组织内软骨的变形是未知的。在这里,我们首次通过健康的人类志愿者中的胫股关节软骨厚度直接量化了变形模式。磁共振成像采集与生理相关的压缩载荷同步,并用于可视化和测量矢状位平面中胫股关节软骨的区域位移和应变。我们发现,施加在脚上的压缩力(为1/2体重)会在胫股软骨界面产生滑动的刚体位移,这种载荷会产生特定的受试者和性别以及区域内复杂的组织内应变模式,并且占主导地位软骨应变(接近12%)处于剪切状态。胫骨的最大原理和剪切应变测量值与体重指数相关。我们基于MRI的方法可能会加快疾病或受损软骨再生疗法的发展,目前由于缺乏可靠的体内方法来对治疗后功能变化进行非侵入性评估而受到限制。

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