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首页> 外文期刊>Journal of orthopaedic trauma >Incongruity-dependent changes of contact stress rates in human cadaveric ankles.
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Incongruity-dependent changes of contact stress rates in human cadaveric ankles.

机译:人类尸体脚踝接触应力率的不一致性变化。

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摘要

Cartilage biosynthetic transduction and injury characteristics have been shown to be particularly sensitive to changes in contact stress rates. This study investigated incongruity-associated changes in contact stress rates that resulted from an articular surface stepoff of the distal tibia in human cadaveric ankles. Ten human cadaveric ankles were subjected to quasi-physiologic stance-phase motion and loading and instantaneous contact stresses were captured at 132 Hz over the entire articular surface using a custom-fabricated stress transducer. An osteoarticular fragment consisting of the anterolateral 25% of the distal tibia was osteotomized. Testing was repeated after displacing the fragment proximally between 0.0 mm to 4.0 mm in 1.0 mm increments. Transient contact stress measurements were used to calculate contact stress rates. Compared to intact ankles, the anatomic configuration had modest increases in global and peak postitive and negative contact stress rates throughout the motion cycle. In contrast, stepoff specimens had significant increases in global and complete motion cycle peak positive and negative contact stress rates, as high as 3.1X intact values in specimens with a 4.0 mm stepoff. Contour plots of contact stress rates also demonstrated an instability event during motion. An anterolateral stepoff of the distal tibia caused significant changes in positive and negative contact stress rates in cadaveric ankles. Incongruity-associated changes in contact stress rates and incongruity-associated instability events may be important pathomechanical determinants of post-traumatic arthritis.
机译:软骨的生物合成转导和损伤特性已显示出对接触应力速率的变化特别敏感。这项研究调查了人尸体脚踝胫骨远端关节面下移引起的接触应力率的不一致性变化。使用定制的应力传感器,对十个人体尸体脚踝进行准生理姿态相运动,并在整个关节表面上以132 Hz的频率捕获载荷和瞬时接触应力。截骨由25%胫骨远端前外侧组成的骨关节碎片。在以1.0 mm的增量将片段向近侧移动0.0 mm至4.0 mm之后,重复测试。瞬态接触应力测量用于计算接触应力率。与完整的脚踝相比,在整个运动周期中,解剖结构的整体和峰值正负接触应力率均有适度增加。相比之下,步进样品的整体和完整运动循环峰值正负接触应力率显着增加,步进为4.0 mm的样品的完整接触值高达3.1倍。接触应力率的等高线图也显示了运动过程中的不稳定性事件。胫骨远端的前外侧台阶导致尸体脚踝的正负接触应力率发生显着变化。接触应力率的不一致性变化和不稳定性相关的不稳定事件可能是创伤后关节炎的重要病理机制决定因素。

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