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Model-based image analysis of a tethered Brownian fibre for shear stress sensing

机译:系泊布朗纤维基于模型的图像分析用于剪切应力传感

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摘要

The measurement of fluid dynamic shear stress acting on a biologically relevant surface is a challenging problem, particularly in the complex environment of, for example, the vasculature. While an experimental method for the direct detection of wall shear stress via the imaging of a synthetic biology nanorod has recently been developed, the data interpretation so far has been limited to phenomenological random walk modelling, small-angle approximation, and image analysis techniques which do not take into account the production of an image from a three-dimensional subject. In this report, we develop a mathematical and statistical framework to estimate shear stress from rapid imaging sequences based firstly on stochastic modelling of the dynamics of a tethered Brownian fibre in shear flow, and secondly on a novel model-based image analysis, which reconstructs fibre positions by solving the inverse problem of image formation. This framework is tested on experimental data, providing the first mechanistically rational analysis of the novel assay. What follows further develops the established theory for an untethered particle in a semi-dilute suspension, which is of relevance to, for example, the study of Brownian nanowires without flow, and presents new ideas in the field of multi-disciplinary image analysis.
机译:作用在生物学上相关的表面上的流体动态剪切应力的测量是一个具有挑战性的问题,尤其是在例如脉管系统的复杂环境中。虽然最近开发了一种通过合成生物学纳米棒成像直接检测壁切应力的实验方法,但迄今为止,数据解释仅限于现象学的随机游走建模,小角度近似和图像分析技术。没有考虑到三维对象产生的图像。在本报告中,我们建立了一个数学和统计框架来估算快速成像序列中的切应力,首先基于束缚布朗纤维在剪切流中的动力学随机建模,其次基于基于模型的新型图像分析来重建纤维通过解决图像形成的逆问题来定位。该框架在实验数据上进行了测试,从而提供了对该新检测方法的首次机械合理分析。随后的内容进一步发展了半稀释悬浮液中未束缚粒子的既定理论,该理论与例如无流动的布朗纳米线的研究有关,并提出了多学科图像分析领域的新思路。

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