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Potentialities of steady-state and transient thermography in breast tumour depth detection: A numerical study

机译:稳态和瞬时热成像在乳腺肿瘤深度检测中的潜力:一项数值研究

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摘要

Breast thermography still has inherent limitations that prevent it from being fully accepted as a breast screening modality in medicine. The main challenges of breast thermography are to reduce false positive results and to increase the sensitivity of a thermogram. Further, it is still difficult to obtain information about tumour parameters such as metabolic heat, tumour depth and diameter from a thermogram. However, infrared technology and image processing have advanced significantly and recent clinical studies have shown increased sensitivity of thermography in cancer diagnosis. The aim of this paper is to study numerically the possibilities of extracting information about the tumour depth from steady state thermography and transient thermography after cold stress with no need to use any specific inversion technique. Both methods are based on the numerical solution of Pennes bioheat equation for a simple three-dimensional breast model. The effectiveness of two approaches used for depth detection from steady state thermography is assessed. The effect of breast density on the steady state thermal contrast has also been studied. The use of a cold stress test and the recording of transient contrasts during rewarming were found to be potentially suitable for tumour depth detection during the rewarming process. Sensitivity to parameters such as cold stress temperature and cooling time is investigated using the numerical model and simulation results reveal two prominent depth-related characteristic times which do not strongly depend on the temperature of the cold stress or on the cooling period. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:乳房热成像技术仍然有其固有的局限性,使其无法在医学上被完全接受为乳房筛查手段。乳房热成像的主要挑战是减少假阳性结果并增加热成像图的敏感性。此外,仍然难以从热分析图中获得关于肿瘤参数的信息,例如代谢热,肿瘤深度和直径。但是,红外技术和图像处理已取得了显着进步,最近的临床研究表明,热成像技术在癌症诊断中的敏感性提高。本文的目的是通过数值研究从冷应激后的稳态热成像和瞬态热成像中提取肿瘤深度信息的可能性,而无需使用任何特定的反演技术。两种方法都基于Pennes生物热方程的数值解,用于简单的三维乳房模型。评估了两种用于稳态热成像深度检测的方法的有效性。还研究了乳房密度对稳态热对比度的影响。发现在重新加热过程中使用冷应力测试和记录瞬态对比可能适合在重新加热过程中检测肿瘤深度。使用数值模型研究了对诸如冷应力温度和冷却时间之类的参数的敏感性,并且仿真结果揭示了两个突出的深度相关特征时间,它们与温度和冷却时间的依赖性并不强烈。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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