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光偏振对微血管流动定制体模激光散斑对比成像的影响。

Impact of light polarization on laser speckle contrast imaging with a custom phantom for microvascular flow.

机构信息

Department of Medical Physics & Biomedical Engineering, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

School of Nanoscience, Institute for Research in Fundamental Sciences (IPM), P.O. Box 19395-5531, Tehran, Iran.

出版信息

Sci Rep. 2024 Nov 4;14(1):26652. doi: 10.1038/s41598-024-73757-2.

Abstract

Laser speckle contrast imaging (LSCI) is a non-invasive, powerful, and cost-effective imaging technique that has seen widespread adoption across various medical fields, particularly for blood flow imaging. While LSCI provides physicians with valuable insights into changes or occlusions in blood flow, the technique is susceptible to various factors and parameters that can impact measurement sensitivity and signal-to-noise ratio (SNR). These include the scattering of light, which can affect the quality and reliability of the LSCI data. The polarization of light holds significant promise to enhance the performance of LSCI. In this study, we employed polarization manipulation of light to investigate its impact on the performance of LSCI for measuring flow. Focusing on the application of LSCI in microcirculation within capillaries, we examined the effect of polarization control on the technique's flow measurement capabilities using a custom-designed phantom system. This phantom consisted of three tubes with inner diameters of 1.1 mm, 1.6 mm, and 2.8 mm, embedded in a polydimethylsiloxane (PDMS) matrix with optical properties similar to biological tissue. By manipulating the polarization of both the incident and reflected light, alternating between parallel and perpendicular states, we compared the performance of our LSCI system in detecting flow for different tube diameters and depths within the phantom. Our study revealed that while depth is a critical parameter influencing flow detection using LSCI, employing perpendicular polarization (between incident and reflected light) resulted in the lowest measurement error and highest SNR compared to parallel polarization and the absence of polarization control.

摘要

激光散斑对比成像(LSCI)是一种非侵入性、强大且具有成本效益的成像技术,已在多个医学领域得到广泛应用,特别是在血流成像方面。虽然 LSCI 为医生提供了有关血流变化或阻塞的有价值的见解,但该技术容易受到各种因素和参数的影响,这些因素和参数会影响测量的灵敏度和信噪比(SNR)。其中包括光的散射,这会影响 LSCI 数据的质量和可靠性。光的偏振具有显著提高 LSCI 性能的潜力。在这项研究中,我们利用光的偏振操纵来研究其对测量血流的 LSCI 性能的影响。我们专注于 LSCI 在毛细血管微循环中的应用,使用定制的幻影系统研究了偏振控制对该技术的血流测量能力的影响。这个幻影由三个内径分别为 1.1mm、1.6mm 和 2.8mm 的管子组成,嵌入具有与生物组织相似光学性质的聚二甲基硅氧烷(PDMS)基质中。通过操纵入射光和反射光的偏振,交替平行和垂直状态,我们比较了我们的 LSCI 系统在检测幻影中不同管子直径和深度的流动时的性能。我们的研究表明,尽管深度是使用 LSCI 检测流动的关键参数,但与平行偏振相比,采用垂直偏振(入射光和反射光之间)会导致最低的测量误差和最高的 SNR,而平行偏振和没有偏振控制则会导致较高的测量误差和较低的 SNR。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edb1/11535229/a6ff756e43d6/41598_2024_73757_Fig1_HTML.jpg

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