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通过圆偏振成像定量测量非均匀介质中颗粒大小和浊度的空间螺旋响应度量。

Spatial helicity response metric to quantify particle size and turbidity of heterogeneous media through circular polarization imaging.

机构信息

Department of Medical Biophysics, University of Toronto, Toronto, ON, Canada.

Department of Radiation Oncology, University of Toronto, Toronto, ON, Canada.

出版信息

Sci Rep. 2023 Feb 8;13(1):2231. doi: 10.1038/s41598-023-29444-9.

Abstract

Backscattered circularly polarized light from turbid media consists of helicity-flipped and helicity-preserved photon sub-populations (i.e., photons of perpendicular and parallel circular handedness). Their intensities and spatial distributions are found to be acutely sensitive to average scatterer size and modestly sensitive to the scattering coefficient (medium turbidity) through an interplay of single and multiple scattering effects. Using a highly sensitive intensified-CCD camera, helicity-based images of backscattered light are captured, which, with the aid of corroborating Monte Carlo simulation images and statistics, enable (1) investigation of subsurface photonic pathways and (2) development of the novel 'spatial helicity response' metric to quantify average scatterer size and turbidity of tissue-like samples. An exciting potential application of this work is noninvasive early cancer detection since malignant tissues exhibit alterations in scatterer size (larger nuclei) and turbidity (increased cell density).

摘要

从混浊介质中反向散射的圆偏振光由螺旋翻转和螺旋保持光子子群(即垂直和平行圆手性的光子)组成。通过单次和多次散射效应的相互作用,发现它们的强度和空间分布对平均散射体尺寸非常敏感,对散射系数(介质混浊度)也有适度的敏感。使用高灵敏度的增强型 CCD 相机,捕获反向散射光的基于螺旋的图像,借助于证实的蒙特卡罗模拟图像和统计数据,实现了(1)对亚表面光子路径的研究,以及(2)开发了新颖的“空间螺旋响应”度量标准,用于量化类似组织样本的平均散射体尺寸和混浊度。这项工作的一个令人兴奋的潜在应用是无创早期癌症检测,因为恶性组织表现出散射体尺寸(更大的核)和混浊度(增加的细胞密度)的改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8022/9908950/9d7e0e2ebde1/41598_2023_29444_Fig1_HTML.jpg

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