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Developing digital tissue phantoms for hyperspectral imaging of ischemic wounds

机译:开发数字组织体模用于缺血性伤口的高光谱成像

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Hyperspectral imaging has the potential to achieve high spatial resolution and high functional sensitivity for non-invasive assessment of tissue oxygenation. However, clinical acceptance of hyperspectral imaging in ischemic wound assessment is hampered by its poor reproducibility, low accuracy, and misinterpreted biology. These limitations are partially caused by the lack of a traceable calibration standard. We proposed a digital tissue phantom (DTP) platform for quantitative calibration and performance evaluation of spectral wound imaging devices. The technical feasibility of such a DTP platform was demonstrated by both in vitro and in vivo experiments. The in vitro DTPs were developed based on a liquid blood phantom model. The in vivo DTPs were developed based on a porcine ischemic skin flap model. The DTPs were projected by a Hyperspectral Image Projector (HIP) with high fidelity. A wide-gap 2nd derivative oxygenation algorithm was developed to reconstruct tissue functional parameters from hyperspectral measurements. In this study, we have demonstrated not only the technical feasibility of using DTPs for quantitative calibration, evaluation, and optimization of spectral imaging devices but also its potential for ischemic wound assessment in clinical practice.
机译:高光谱成像具有实现组织氧合的非侵入性评估的高空间分辨率和高功能灵敏度的潜力。但是,高光谱成像在缺血性伤口评估中的临床接受度因其可重复性差,准确性低和生物学误解而受到阻碍。这些限制部分是由于缺乏可追溯的校准标准所致。我们提出了一种数字组织体模(DTP)平台,用于频谱伤口成像设备的定量校准和性能评估。通过体外和体内实验都证明了这种DTP平台的技术可行性。体外DTP是基于液体血液幻象模型开发的。基于猪缺血性皮瓣模型开发了体内DTP。 DTP由高保真的高光谱图像投影仪(HIP)投影。开发了宽间隙二阶导数充氧算法,以从高光谱测量重建组织功能参数。在这项研究中,我们不仅证明了使用DTP进行光谱成像设备的定量校准,评估和优化的技术可行性,而且还证明了其在临床实践中对缺血性伤口评估的潜力。

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