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Analysis and diagnosis of basal cell carcinoma (BCC) via infrared imaging

机译:基底细胞癌(BCC)的红外成像分析与诊断

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摘要

In this work, a structured methodology is proposed and tested through infrared imaging temperature measurements of a healthy control group to establish expected normality ranges and of basal cell carcinoma patients (a type of skin cancer) previously diagnosed through biopsies of the affected regions. A method of conjugated gradients is proposed to compare measured dimensionless temperature difference values (Δθ) between two symmetric regions of the patient's body, that takes into account the skin, the surrounding ambient and the individual core temperatures and doing so, the limitation of the results interpretation for different individuals become simple and nonsubjective. The range of normal temperatures in different regions of the body for seven healthy individuals was determined, and admitting that the human skin exhibits a unimodal normal distribution, the normal range for each region was considered to be the mean dimensionless temperature difference plus/minus twice the standard deviation of the measurements (Δθ? mean~(±2σΔ)θ?) in order to represent 95% of the population. Eleven patients with previously diagnosed basal cell carcinoma through biopsies were examined with the method, which was capable of detecting skin abnormalities in all cases. Therefore, the conjugated gradients method was considered effective in the identification of the basal cell carcinoma through infrared imaging even with the use of a low optical resolution camera (160 × 120 pixels) and a thermal resolution of 0.1 °C. The method could also be used to scan a larger area around the lesion in order to detect the presence of other lesions still not perceptible in the clinical exam. However, it is necessary that a temperature differences mesh-like mapping of the healthy human body skin is produced, so that the comparison of the patient Δθ could be made with the exact region of such mapping in order to possibly make a more effective diagnosis. Finally, the infrared image analyzed through the conjugated gradients method could be useful in the definition of a better safety margin in the surgery for the removal of the lesion, both minimizing esthetics damage to the patient and possibly avoiding basal cell carcinoma recurrence.
机译:在这项工作中,提出了一种结构化的方法,并通过健康对照组的红外成像温度测量进行测试,以建立预期的正常范围以及先前通过受影响区域的活检诊断出的基底细胞癌患者(一种皮肤癌)的正常范围。提出了一种共轭梯度方法来比较患者身体的两个对称区域之间的测量到的无量纲温差值(Δθ),该温度因数考虑了皮肤,周围环境和各个核心温度,并因此限制了结果对不同个体的解释变得简单和非主观。确定了七个健康个体在身体不同区域的正常温度范围,并承认人的皮肤表现出单峰正态分布,每个区域的正常范围被认为是平均无量纲温差加/减温度的两倍。测量值的标准偏差(Δθ?平均值〜(±2σΔ)θ?),以代表95%的总体。该方法检查了11名先前通过活检诊断出的基底细胞癌的患者,该方法能够在所有情况下检测皮肤异常。因此,即使使用低光学分辨率的相机(160×120像素)和0.1°C的热分辨率,共轭梯度法也被认为可通过红外成像有效识别基底细胞癌。该方法还可用于扫描病变周围的较大区域,以检测在临床检查中仍无法感知的其他病变的存在。然而,必须产生健康的人体皮肤的温差网状映射,以便可以将患者Δθ与该映射的确切区域进行比较,以便可能进行更有效的诊断。最后,通过共轭梯度法分析的红外图像可用于定义手术中清除病灶的更好的安全裕度,既可将对患者的美学损害降至最低,又可避免基底细胞癌的复发。

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