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首页> 外文期刊>Journal of the Royal Society Interface >Simple and accurate methods for quantifying deformation, disruption, and development in biological tissues
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Simple and accurate methods for quantifying deformation, disruption, and development in biological tissues

机译:简单而准确的方法来量化生物组织的变形,破坏和发展

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摘要

When mechanical factors underlie growth, development, disease or healing, they often function through local regions of tissue where deformation is highly concentrated. Current optical techniques to estimate deformation can lack precision and accuracy in such regions due to challenges in distinguishing a region of concentrated deformation from an error in displacement tracking. Here, we present a simple and general technique for improving the accuracy and precision of strain estimation and an associated technique for distinguishing a concentrated deformation from a tracking error. The strain estimation technique improves accuracy relative to other state-of-the-art algorithms by directly estimating strain fields without first estimating displacements, resulting in a very simple method and low computational cost. The technique for identifying local elevation of strain enables for the first time the successful identification of the onset and consequences of local strain concentrating features such as cracks and tears in a highly strained tissue. We apply these new techniques to demonstrate a novel hypothesis in prenatal wound healing. More generally, the analytical methods we have developed provide a simple tool for quantifying the appearance and magnitude of localized deformation from a series of digital images across a broad range of disciplines.
机译:当机械因素成为生长,发育,疾病或愈合的基础时,它们通常通过变形高度集中的局部组织起作用。由于将集中变形的区域与位移跟踪的误差区分开来的挑战,当前的估计变形的光学技术可能在此类区域中缺乏精度和准确性。在这里,我们提出了一种简单而通用的技术来提高应变估计的准确性和精确度,以及一种用于将集中变形与跟踪误差区分开的相关技术。相对于其他最新算法,应变估计技术通过直接估计应变场而无需先估计位移来提高精度,从而导致方法非常简单且计算成本较低。用于识别局部应变升高的技术首次实现了对局部应变集中特征(例如高应变组织中的裂缝和撕裂)的发作和后果的成功识别。我们应用这些新技术来证明产前伤口愈合的新假设。更广泛地说,我们开发的分析方法提供了一个简单的工具,可用于量化来自广泛学科的一系列数字图像的局部变形的外观和大小。

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