Full-field amplitude speckle decorrelation angiography.

IF 2.9 2区 医学 Q2 BIOCHEMICAL RESEARCH METHODS
Biomedical optics express Pub Date : 2024-09-06 eCollection Date: 2024-10-01 DOI:10.1364/BOE.530993
Giulia Mansutti, Martin Villiger, Brett E Bouma, Néstor Uribe-Patarroyo
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引用次数: 0

Abstract

We propose a new simple and cost-effective optical imaging technique, full-field amplitude speckle decorrelation angiography (FASDA), capable of visualizing skin microvasculature with high resolution, and sensitive to small, superficial vessels with slow blood flow and larger, deeper vessels with faster blood flow. FASDA makes use of a laser source with limited temporal coherence, can be implemented with cameras with conventional frame rates, and does not require raster scanning. The proposed imaging technique is based on the simultaneous evaluation of two metrics: the blood flow index, a contrast-based metric used in laser speckle contrast imaging, and the adaptive speckle decorrelation index (ASDI), a new metric that we defined based on the second-order autocorrelation function that considers the limited speckle modulation that occurs in partially-coherent imaging. We demonstrate excellent delineation of small, superficial vessels with slow blood flow in skin nevi using ASDI and larger, deeper vessels with faster blood flow using BFI, providing a powerful new tool for the imaging of microvasculature with significantly lower hardware complexity and cost than other optical imaging techniques.

全场振幅斑点相关血管造影术
我们提出了一种新的简单而经济的光学成像技术--全场振幅斑点相关血管造影术(FASDA),它能以高分辨率观察皮肤微血管,对血流缓慢的浅表小血管和血流较快的深层大血管都很敏感。FASDA 使用的激光源具有有限的时间相干性,可以用常规帧频的相机实现,而且不需要光栅扫描。所提出的成像技术基于两个指标的同时评估:血流指数(一种用于激光斑点对比成像的基于对比度的指标)和自适应斑点去相关指数(ASDI),后者是我们根据二阶自相关函数定义的一种新指标,考虑了部分相干成像中出现的有限斑点调制。我们利用 ASDI 对皮肤痣中血流缓慢的浅表小血管进行了出色的描绘,并利用 BFI 对血流较快的深层大血管进行了描绘,从而为微血管成像提供了一种强大的新工具,其硬件复杂性和成本均大大低于其他光学成像技术。
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来源期刊
Biomedical optics express
Biomedical optics express BIOCHEMICAL RESEARCH METHODS-OPTICS
CiteScore
6.80
自引率
11.80%
发文量
633
审稿时长
1 months
期刊介绍: The journal''s scope encompasses fundamental research, technology development, biomedical studies and clinical applications. BOEx focuses on the leading edge topics in the field, including: Tissue optics and spectroscopy Novel microscopies Optical coherence tomography Diffuse and fluorescence tomography Photoacoustic and multimodal imaging Molecular imaging and therapies Nanophotonic biosensing Optical biophysics/photobiology Microfluidic optical devices Vision research.
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