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首页> 外文期刊>Osteoarthritis and cartilage >New insights into the role of the superficial tangential zone in influencing the microstructural response of articular cartilage to compression.
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New insights into the role of the superficial tangential zone in influencing the microstructural response of articular cartilage to compression.

机译:浅层切向区在影响关节软骨对压迫的微结构反应中的作用的新见解。

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OBJECTIVE: The purpose of this study was to characterize the microstructural response of healthy cartilage in a perturbed physical environment to compressive loading with a novel channel indentation device. Manipulation of the cartilage physical environment was achieved through (1) removal of the superficial tangential zone (STZ) and (2) varying the saline bathing solution concentration. DESIGN: Cartilage-on-bone blocks were subjected to creep loading under a nominal stress of 4.5 MPa via an indenter consisting of two rectangular platens separated by a narrow channel relief space to create a specific region where cartilage would not be directly loaded. Each sample was fixed in its near-equilibrium deformed state, after which the cartilage microstructure was examined using differential interference contrast (DIC) optical microscopy and scanning electron microscopy (SEM). The cartilage bulge in the channel relief space was studied in detail. RESULTS: STZ removal altered the indentation response at the macro- and microstructural levels. Specifically, the strain in the directly compressed regions was reduced (P=0.012) and the bulge height in the channel relief space was greater (P<0.0001) in the STZ-removed compared with the surface-intact samples. The bulge height in the STZ-removed group was always less than the preloaded cartilage thickness. There was intense shear in the non-directly-loaded regions of intact-cartilage but not in STZ-removed cartilage. Bathing solution concentration influenced only the STZ-removed group, where lower concentrations produced significantly abrupt transitions in matrix continuity between the directly compressed and adjacent non-directly-loaded cartilage (P=0.012). CONCLUSIONS: This study showed that while the surface layer was important in distributing loads away from directly-loaded regions, so were other factors such as the matrix fibrillar interconnectivity, swelling potential, and tissue anisotropy.
机译:目的:本研究的目的是利用一种新型的通道压痕装置来表征健康的软骨在受干扰的物理环境中对压缩载荷的微观结构响应。通过(1)去除浅切线区域(STZ)和(2)改变盐水浴溶液的浓度来实现对软骨物理环境的操纵。设计:通过一个由两个矩形压板组成的压头,在一个额定压力为4.5 MPa的情况下,对骨软骨块进行蠕变载荷,该压头由狭窄的通道释放空间隔开,以创建一个特定区域,该区域不会直接加载软骨。将每个样品固定在接近平衡的变形状态,然后使用差分干涉对比(DIC)光学显微镜和扫描电子显微镜(SEM)检查软骨的微观结构。详细研究了通道缓解空间中的软骨隆起。结果:去除STZ改变了在宏观和微观结构上的压痕响应。具体而言,与表面完整的样品相比,在去除STZ的情况下,直接压缩区域的应变降低了(P = 0.012),通道释放空间的凸起高度更大(P <0.0001)。 STZ切除组的隆起高度始终小于预加载的软骨厚度。在未直接装载的完整软骨区域中有强烈的剪切力,但在去除STZ的软骨中没有剪切力。沐浴液浓度仅影响去除STZ的组,在较低的浓度下,直接压缩的软骨与相邻的非直接加载的软骨之间的基质连续性会发生明显的突变(P = 0.012)。结论:这项研究表明,尽管表层在将载荷分配到直接载荷区域之外很重要,但其他因素如基质原纤维的互连性,溶胀电位和组织各向异性也很重要。

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