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Breast Cancer Estimate Modeling via PDE Thermal Analysis Algorithms

机译:通过PDE热分析算法进行的乳腺癌评估模型

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The significance of this study lies in the importance of (1) nondestructive testing in defect studies and (2) securing the reliability of breast cancer prediction through thermal analysis in nondestructive testing. Most nondestructive tests have negative effects on the human body. Moreover, the precision and accuracy of such tests are poor. This study analyzes these drawbacks and increases the reliability of such methods. A theoretical model was constructed, by which simulated inner breast tissue was observed in a nondestructive way through thermal analysis, and the presence and extent of simulated breast cancer were estimated based on the thermal observations. Herein, we studied the medical diagnosis of breast cancer by creating a theoretical environment that simulated breast cancer in a real-world setting; the model used two-dimensional modeling and partial differential equation (PDE) thermal analysis. Our theoretical analysis, based on partial differential equations, allowed us to demonstrate that non-wounding defect detection is possible and, in many ways, preferable. The main contribution of this paper lies in studying long-term estimates. In addition, the model in this study can be extended to predict breast cancer through pure heat and can also be used for various other cancer and tumor analyses in the human body.
机译:这项研究的意义在于(1)在缺陷研究中进行非破坏性测试的重要性,以及(2)通过在非破坏性测试中进行热分析来确保乳腺癌预测的可靠性。大多数无损检测对人体都有负面影响。而且,这种测试的精度和准确性很差。这项研究分析了这些缺点并提高了这种方法的可靠性。建立了理论模型,通过热分析以无损方式观察了模拟的内部乳腺组织,并根据热观察结果估计了模拟的乳腺癌的存在和程度。在这里,我们通过创建在现实环境中模拟乳腺癌的理论环境来研究乳腺癌的医学诊断。该模型使用了二维建模和偏微分方程(PDE)热分析。我们基于偏微分方程的理论分析使我们能够证明非损伤性缺陷检测是可能的,并且在许多方面都是可取的。本文的主要贡献在于研究长期估计。此外,本研究中的模型可以扩展为通过纯热预测乳腺癌,也可以用于人体中其他各种癌症和肿瘤分析。

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