首页> 外文会议>Massachusetts Institute of Technology(MIT) Conference on Computational Fluid and Solid Mechanics 2003 v.2; 20030617-20030620; Cambridge,MA; US >A stereologic technique to quantify the specific hydraulic conductivity of extracellular matrix using electron microscopy
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A stereologic technique to quantify the specific hydraulic conductivity of extracellular matrix using electron microscopy

机译:使用电子显微镜定量定量胞外基质比水导率的立体技术

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We describe a novel stereologic technique to quantify the specific hydraulic conductivity, K, of extracellular matrix (ECM) directly from electron micrographs. This approach utilizes Dairy's law and Carmen-Kozeny theory to express K in terms of ECM porosity (ε: ratio of void volume to total volume) and specific surface area (α: ratio of wetted surface area to total volume). A stereologic technique is developed to define ε and α, and hence K, in terms of the measurable pore area and perimeter on a micrograph of known depth-of-field. Monte Carlo simulations of random polymer arrangements are performed to demonstrate the accuracy of the stereologic theory.
机译:我们描述了一种新颖的立体技术,可以直接从电子显微照片量化细胞外基质(ECM)的比水导率K。这种方法利用Dairy定律和Carmen-Kozeny理论以ECM孔隙率(ε:空隙体积与总体积之比)和比表面积(α:润湿表面积与总体积之比)表示K。开发了一种立体技术,以在已知景深的显微照片上根据可测量的孔面积和周长定义ε和α,进而定义K。进行了无规聚合物排列的蒙特卡洛模拟,以证明立体理论的准确性。

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