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首页> 外文期刊>Journal of Thermal Biology >Simulation and investigation of quantum dot effects as internal heat-generator source in breast tumor site
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Simulation and investigation of quantum dot effects as internal heat-generator source in breast tumor site

机译:量子点作为乳腺癌内部热发生器源的模拟研究

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The Pennes bio-heat transfer equation, which introduces the exchange magnitude of heat transfer between tissue and blood, is often used to solve the temperature distribution for thermal imaging and sensing. Near-infrared light has the ability to be used as a non-invasive means of diagnostic imaging within the woman's breast. Due to the diffusive nature of light in different tissue, computational model-based methods are required for functional imaging within the breast. In this article, the time-dependent bio-heat transfer is solved by a numerical method. In our model, the heat generation source (intrinsic and extrinsic) involves laser, metabolism, and quantum dot that the metabolism and heat generated by QDs are considered as intrinsic. We supposed the injected quantum dots would target the tumor site by a passive targeting process and then by interaction of laser radiation and quantum dot, the photoluminescence of quantum dot is converted to heat in the tumor site. The extra generated heat can impact on the extracted heat profile. One of the important applications of this research has led to a sensitivity improvement of the imaging system, which is potentially useful in the diagnosis and detection of breast cancer
机译:引入组织和血液之间热交换的交换量的Pennes生物热传递方程式通常用于求解热成像和感测的温度分布。近红外光具有用作女性乳房内诊断成像的非侵入性手段的能力。由于光在不同组织中的扩散性质,因此需要基于计算模型的方法对乳房进行功能成像。在本文中,通过数值方法解决了时间依赖性生物传热问题。在我们的模型中,热量产生源(内部和外部)都涉及激光,新陈代谢和量子点,量子点所产生的新陈代谢和热量被认为是内在的。我们假设注入的量子点将通过被动靶向过程靶向肿瘤部位,然后通过激光辐射和量子点的相互作用,量子点的光致发光在肿瘤部位转化为热量。多余的热量会影响提取的热量。这项研究的重要应用之一已导致成像系统的灵敏度提高,这可能对乳腺癌的诊断和检测有用

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