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A Validated Software Application to Measure Fiber Organization in Soft Tissue

机译:经过验证的软件应用程序可以测量软组织中的纤维组织

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摘要

The mechanical behavior of soft connective tissue is governed by a dense network of fibrillar proteins in the extracellular matrix. Characterization of this fibrous network requires the accurate extraction of descriptive structural parameters from imaging data, including fiber dispersion and mean fiber orientation. Common methods to quantify fiber parameters include fast Fourier transforms (FFT) and structure tensors, however, information is limited on the accuracy of these methods. In this study, we compared these two methods using test images of fiber networks with varying topology. The FFT method with a band-pass filter was the most accurate, with an error of 0.71 ± 0.43 degrees in measuring mean fiber orientation and an error of 7.4 ± 3.0% in measuring fiber dispersion in the test images. The accuracy of the structure tensor method was approximately 4 times worse than the FFT band-pass method when measuring fiber dispersion. A free software application, FiberFit, was then developed that utilizes an FFT band-pass filter to fit fiber orientations to a semicircular von Mises distribution. FiberFit was used to measure collagen fibril organization in confocal images of bovine ligament at magnifications of 63x and 20x. Grayscale conversion prior to FFT analysis gave the most accurate results, with errors of 3.3 ± 3.1 degrees for mean fiber orientation and 13.3 ± 8.2% for fiber dispersion when measuring confocal images at 63x. By developing and validating a software application that facilitates the automated analysis of fiber organization, this study can help advance a mechanistic understanding of collagen networks and help clarify the mechanobiology of soft tissue remodeling and repair.
机译:软结缔组织的机械行为由细胞外基质中密集的原纤维蛋白网络控制。这种纤维网络的表征需要从成像数据中准确提取描述性结构参数,包括纤维分散和平均纤维取向。量化光纤参数的常用方法包括快速傅立叶变换(FFT)和结构张量,但是,有关这些方法准确性的信息有限。在本研究中,我们使用拓扑变化的光纤网络的测试图像比较了这两种方法。带通滤波器的FFT方法是最准确的,在测试图像中测量平均纤维取向时的误差为0.71±0.43度,而在测量纤维色散时的误差为7.4±3.0%。在测量光纤色散时,结构张量法的准确性比FFT带通法差约4倍。然后,开发了一个免费软件应用程序FiberFit,该应用程序利用FFT带通滤波器将光纤方向调整为半圆形von Mises分布。 FiberFit用于在63x和20x放大率下测量牛韧带共聚焦图像中的胶原原纤维组织。在以63倍测量共焦图像时,FFT分析之前的灰度转换给出了最准确的结果,平均纤维方向的误差为3.3±3.1度,纤维色散的误差为13.3±8.2%。通过开发和验证有助于纤维组织自动分析的软件应用程序,这项研究可以帮助增进对胶原网络的机械理解,并有助于阐明软组织重塑和修复的力学生物学。

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