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Comparison of photometric stereo and spectral analysis for visualization and assessment of burn injury from hyperspectral imaging

机译:光度立体和光谱分析的比较,用于可视化和评估高光谱成像的烧伤

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Burn wounds resulting from thermal insult to the skin are typically classified according to varying depth and therefore require differential levels of medical intervention. In this paper, two methods are proposed for assessing burn injury. The two methods compared are photometric stereo (PS) and spectral analysis. Firstly, PS represents a robust topography recovery algorithm that is implemented to reconstruct the burn and normal skin tissue from multiple hyperspectral images under different illumination conditions. This enabled the visualization of a 3D skin depth map which is used to assess the burn degree. Next, the hyperspectral measurement data of the skin are analyzed to assess partial thickness thermal injury with functional correlation through hemodynamic parameters related to tissue perfusion and oxygen delivery. Two dimensional principle component analysis (2DPCA) is used for noise reduction towards extracting features from the hyperspectral images within the wavelength range from 375 nm to 1050 nm. This is followed by applying the spectral analysis algorithm to calculate oxygen saturation fraction and concentration of total hemoglobin, where each parameter provided a biomarker of injured tissue. The two methods yielded alternative indicators for burn assessment that could be correlated with each other. Specifically, the spectral measurement result could be used as a reference value for the physical skin site depth map.
机译:由热损伤皮肤引起的烧伤创面通常根据变化的深度进行分类,因此需要不同程度的医疗干预。本文提出了两种评估烧伤伤害的方法。比较的两种方法是光度立体(PS)和光谱分析。首先,PS表示一种鲁棒的地形恢复算法,该算法用于在不同光照条件下从多个高光谱图像重建烧伤和正常皮肤组织。这使3D皮肤深度图的可视化成为可能,该深度图用于评估烧伤程度。接下来,分析皮肤的高光谱测量数据,以通过与组织灌注和氧气输送有关的血液动力学参数来评估具有功能相关性的局部厚度热损伤。二维主成分分析(2DPCA)用于降低噪声,以从375 nm至1050 nm波长范围内的高光谱图像中提取特征。接下来是应用光谱分析算法来计算氧饱和度分数和总血红蛋白浓度,其中每个参数都提供了受伤组织的生物标记。两种方法得出的烧伤评估替代指标可以相互关联。具体地,光谱测量结果可以用作物理皮肤部位深度图的参考值。

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