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生物流体激光散斑流变学中光学散射变化的评估与校正。

Evaluation and correction for optical scattering variations in laser speckle rheology of biological fluids.

机构信息

Wellman Center for Photomedicine, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2013 May 21;8(5):e65014. doi: 10.1371/journal.pone.0065014. Print 2013.

Abstract

Biological fluids fulfill key functionalities such as hydrating, protecting, and nourishing cells and tissues in various organ systems. They are capable of these versatile tasks owing to their distinct structural and viscoelastic properties. Characterizing the viscoelastic properties of bio-fluids is of pivotal importance for monitoring the development of certain pathologies as well as engineering synthetic replacements. Laser Speckle Rheology (LSR) is a novel optical technology that enables mechanical evaluation of tissue. In LSR, a coherent laser beam illuminates the tissue and temporal speckle intensity fluctuations are analyzed to evaluate mechanical properties. The rate of temporal speckle fluctuations is, however, influenced by both optical and mechanical properties of tissue. Therefore, in this paper, we develop and validate an approach to estimate and compensate for the contributions of light scattering to speckle dynamics and demonstrate the capability of LSR for the accurate extraction of viscoelastic moduli in phantom samples and biological fluids of varying optical and mechanical properties.

摘要

生物流体具有多种关键功能,如在各个器官系统中为细胞和组织提供水合、保护和营养。它们之所以能够执行这些多功能任务,是因为它们具有独特的结构和粘弹性特性。生物流体的粘弹性特性的特征对于监测某些病理的发展以及工程合成替代品的研发都至关重要。激光散斑流变学(LSR)是一种新颖的光学技术,可实现组织的力学评估。在 LSR 中,相干激光束照亮组织,并分析时变散斑强度波动以评估力学性能。然而,时变散斑波动的速率受到组织的光学和力学性质的影响。因此,在本文中,我们开发并验证了一种方法来估计和补偿光散射对散斑动力学的贡献,并展示了 LSR 用于准确提取具有不同光学和力学性质的仿真样本和生物流体的粘弹性模量的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c806/3660338/1aba9618ce86/pone.0065014.g001.jpg

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