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Multiscale analysis of collagen microstructure with generalized image correlation spectroscopy and the detection tissue prestress

机译:广义图像相关光谱技术对胶原微结构的多尺度分析及组织预应力的检测

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摘要

Prestress in tissue is currently detected through destructive methods which obviate both in vivo and longitudinal assessment. We hypothesized that prestress could be detected and quantified by analyzing the microstructure of the extracellular matrix at different spatial scales using non-invasive and non-destructive optical imaging. A simple model of tissue prestress was created using fibroblast-mediated contraction of collagen gels around a central mandrel. Using a quantitative, multiscale, image processing technique, termed generalized image correlation spectroscopy (GICS) of second harmonic images, collagen fiber number and alignment at three different length scales characteristic of the collagen fibril, collagen fiber, and cell were analyzed. GICS fiber alignment (σmaj/min) was significantly different across load state, level of prestress, and length scale. The largest fiber ratio, and thus highest alignment, was seen in prestressed, externally loaded gels at a length scale equivalent to the size of the fibroblast cells. Alignment at both fiber and cell scale correlated with prestress in this model. We conclude that GICS of second harmonic images of collagen can predict prestress, and that microstructural organization at the collagen fiber and cell scale are the primary determinants of prestress in cellularized collagen gels.
机译:当前,通过破坏性方法检测组织中的预应力,该方法避免了体内和纵向评估。我们假设可以通过使用无创和无损光学成像分析不同空间尺度的细胞外基质的微观结构来检测和量化预应力。一个简单的组织预应力模型是使用成纤维细胞介导的围绕中心心轴的胶原蛋白凝胶收缩来创建的。使用定量的多尺度图像处理技术(称为二次谐波图像的广义图像相关光谱法(GICS)),分析了胶原纤维,胶原纤维和细胞的三种不同长度尺度下的胶原纤维数目和排列。在负载状态,预应力水平和长度范围内,GICS纤维排列(σmaj/ min)存在显着差异。在预应力的,外部加载的凝胶中观察到最大的纤维比率,从而获得最高的排列度,其长度比例等于成纤维细胞的大小。在该模型中,纤维和细胞尺度的对准与预应力相关。我们得出的结论是,胶原的二次谐波图像的GICS可以预测预应力,并且胶原纤维和细胞范围内的微结构组织是细胞化胶原凝胶中预应力的主要决定因素。

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