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Integrating qPLM and biomechanical test data with an anisotropic fiber distribution model and predictions of TGF- Mathematical expression1 and IGF-1 regulation of articular cartilage fiber modulus

机译:将qPLM和生物力学测试数据与各向异性纤维分布模型集成在一起,并预测TGF-关节软骨纤维模量的数学表达1和IGF-1调节

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摘要

A continuum mixture model with distinct collagen (COL) and glycosaminoglycan elastic constituents was developed for the solid matrix of immature bovine articular cartilage. A continuous COL fiber volume fraction distribution function and a true COL fiber elastic modulus ( {Mathematical expression} were used. Quantitative polarized light microscopy (qPLM) methods were developed to account for the relatively high cell density of immature articular cartilage and used with a novel algorithm that constructs a 3D distribution function from 2D qPLM data. For specimens untreated and cultured in vitro, most model parameters were specified from qPLM analysis and biochemical assay results; consequently, {Mathematical expression} was predicted using an optimization to measured mechanical properties in uniaxial tension and unconfined compression. Analysis of qPLM data revealed a highly anisotropic fiber distribution, with principal fiber orientation parallel to the surface layer. For untreated samples, predicted {Mathematical expression} values were 175 and 422 MPa for superficial (S) and middle (M) zone layers, respectively. TGF- {Mathematical expression}1 treatment was predicted to increase and decrease {Mathematical expression} values for the S and M layers to 281 and 309 MPa, respectively. IGF-1 treatment was predicted to decrease {Mathematical expression} values for the S and M layers to 22 and 26 MPa, respectively. A novel finding was that distinct native depth-dependent fiber modulus properties were modulated to nearly homogeneous values by TGF- {Mathematical expression}1 and IGF-1 treatments, with modulated values strongly dependent on treatment. © 2012 Springer-Verlag Berlin Heidelberg.
机译:建立了具有独特胶原蛋白(COL)和糖胺聚糖弹性成分的连续混合物模型,用于未成熟牛关节软骨的固体基质。使用了连续的COL纤维体积分数分布函数和真实的COL纤维弹性模量(数学表达式),开发了定量偏振光显微镜(qPLM)方法来解决未成熟关节软骨相对较高的细胞密度,并与新型算法可从2D qPLM数据构建3D分布函数,对于未经处理和体外培养的标本,大多数模型参数均由qPLM分析和生化分析结果指定;因此,{Mathematical expression}可通过优化来预测单轴机械性能qPLM数据分析显示出高度各向异性的纤维分布,主要纤维取向平行于表层。对于未经处理的样品,表层(S)和中层(M)的{数学表达式}预测值为175和422MPa )区域层。TGF-{数学表达式} 1处理预测S和M层的{数学表达式}值分别增加和减少到281和309 MPa。预计IGF-1处理会使S和M层的{数学表达}值分别降低至22和26MPa。一项新发现是,通过TGF- {Mathematical expression} 1和IGF-1处理,独特的与深度相关的与自然深度相关的纤维模量特性被调制为近乎均匀的值,而调制值强烈依赖于处理。 ©2012施普林格出版社柏林海德堡。

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