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Dual-mode quantitative imaging of wound tissue oxygenation and perfusion

机译:伤口组织氧合和灌注的双模式定量成像

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Accurate assessment of wound oxygenation and perfusion is important for evaluating wound healing/regression and guiding following therapeutic processes. However, many existing techniques and clinical practices are subjective and qualitative due to background bias, tissue heterogeneity, and inter-patient variation. To overcome these limitations, we developed a dual-modal imaging system for in vivo, non-invasive, real-time quantitative assessment of wound tissue oxygenation and perfusion. The imaging system integrated a broadband light source, a high-resolution CCD camera, a highly sensitive thermal camera, and a liquid crystal tunable filter. A user-friendly interface was developed to control all the components systematically. Advanced algorithms were explored for reliable reconstruction of tissue oxygenation and appropriate co-registration between thermal images and multispectral images. Dual-mode oxygenation and perfusion imaging was demonstrated on both benchtop models and human subjects, nd compared with measurements using other methods, such as Laser Doppler and tissue oximeter. The test results suggested that the dual-modal imaging system has the potential for non-contact real-time imaging of wound tissue oxygenation and perfusion.
机译:准确评估伤口氧合和灌注对于评估伤口愈合/回归并引导治疗过程中的灌注是重要的。然而,由于背景偏置,组织异质性和患者间变异,许多现有技术和临床实践是主观和定性。为了克服这些限制,我们开发了一种用于体内的双模态成像系统,对伤口组织氧合和灌注进行了体内,非侵入性,实时定量评估。成像系统集成了宽带光源,高分辨率CCD摄像机,高度敏感的热敏摄像机和液晶可调滤波器。开发了一种用户友好的界面以系统地控制所有组件。探讨了高级算法,可用于可靠地重建组织氧合和热图像和多光谱图像之间的适当共同登记。双模氧合和灌注成像在Benchtop模型和人受试者上证明了Nd,与使用其他方法的测量相比,例如激光多普勒和组织血氧计。测试结果表明,双模态成像系统具有伤口组织氧合和灌注的非接触式实时成像的可能性。

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