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基于光纤的超高速漫散斑对比度分析系统,用于使用大型单光子雪崩二极管相机进行深部血流传感。

Fiber-Based Ultra-High-Speed Diffuse Speckle Contrast Analysis System for Deep Blood Flow Sensing Using a Large SPAD Camera.

作者信息

Wang Quan, Bi Renzhe, Zheng Songhua, Erdogan Ahmet T, Qi Yi, Li Chenxu, Hua Yuanyuan, Pan Mingliang, Wang Yining, Finlayson Neil, Olivo Malini, Henderson Robert K, Li David Day-Uei

机构信息

Department of Biomedical Engineering, Faculty of Engineering, University of Strathclyde, Glasgow G4 0NW, UK.

A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669, Singapore.

出版信息

Biosensors (Basel). 2025 Aug 7;15(8):514. doi: 10.3390/bios15080514.

Abstract

Diffuse speckle contrast analysis (DSCA), also called speckle contrast optical spectroscopy (SCOS), has emerged as a groundbreaking optical imaging technique for tracking dynamic biological processes, including blood flow and tissue perfusion. Recent advancements in single-photon avalanche diode (SPAD) cameras have unlocked exceptional sensitivity, time resolution, and high frame-rate imaging capabilities. Despite this, the application of large-format SPAD arrays in speckle contrast analysis is still relatively uncommon. This study introduces a pioneering use of a large-format SPAD camera for DSCA. By harnessing the camera's high temporal resolution and photon-detection efficiency, we significantly enhance the accuracy and robustness of speckle contrast measurements. Our experimental results demonstrate the system's remarkable ability to capture rapid temporal variations over a broad field of view, enabling detailed spatiotemporal analysis. Through simulations, phantom experiments, and in vivo studies, we validated the proposed approach's potential for cerebral blood flow and functional tissue monitoring. This work highlights the transformative impact of large SPAD cameras on DSCA, setting the stage for breakthroughs in optical imaging.

摘要

散斑对比分析(DSCA),也称为散斑对比光学光谱(SCOS),已成为一种开创性的光学成像技术,用于跟踪包括血流和组织灌注在内的动态生物过程。单光子雪崩二极管(SPAD)相机的最新进展带来了卓越的灵敏度、时间分辨率和高帧率成像能力。尽管如此,大幅面SPAD阵列在散斑对比分析中的应用仍然相对较少。本研究介绍了大幅面SPAD相机在DSCA中的开创性应用。通过利用相机的高时间分辨率和光子探测效率,我们显著提高了散斑对比测量的准确性和稳健性。我们的实验结果表明,该系统具有在宽视场范围内捕捉快速时间变化的卓越能力,能够进行详细的时空分析。通过模拟、体模实验和体内研究,我们验证了所提出方法在脑血流和功能组织监测方面的潜力。这项工作突出了大型SPAD相机对DSCA的变革性影响,为光学成像领域的突破奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39b7/12384200/8a8de7442172/biosensors-15-00514-g001.jpg

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