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Automatic Controlling the Tissue Temperature during Treatment of Deep Tumor: A Numerical Study Using Finite Element Method

机译:深肿瘤治​​疗过程中的组织温度自动控制:使用有限元法的数值研究

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Several methods of treating unhealthy cell in human tissue are used by the physicians. Transferring the heat to the infected cell is one of the methods to remove that cell. Point heating is an available technique to transfer heat to the infected cell. But in this technique, there is a possibility to damage the healthy tissue nearby the infected cell. Only controlling the temperature of the applicator cannot save the unhealthy tissue from damage. In this paper, the two dimensional finite code for bio-heat equation has been developed to measure the temperature during the treatment of point heating. Pennes bio heat equation is the main mathematical model for the transient heat transfer analysis considered in this research. Three cases of point heating techniques are considered to study the temperature profile of the tissue using the developed code. Those are constant point heating, step point heating and temperature controlled point heating. The tissue temperature controlled point heating is designed to restrict the healthy tissue temperature below the damage threshold temperature. Using the temperature profile, tissue damage rate is measured with the help of Arrhenius rate equation. Among these three techniques tissue temperature controlled point heating is shown as better one. The outcome of this research will be helpful for the physicians as well as bio-medical engineer.
机译:医生使用治疗人体组织中不健康细胞的几种方法。将热量转移到感染的细胞是去除该细胞的方法之一。点加热是将热量传递到感染的细胞的可用技术。但在这种技术中,有可能损害感染细胞附近的健康组织。仅控制涂抹器的温度不能拯救不健康的组织损坏。本文已经开发出生物热方程的二维有限码,以测量点加热处理期间的温度。彭尼斯生物热方程是该研究中考虑的瞬态传热分析的主要数学模型。考虑三种点加热技术,用于使用开发的代码研究组织的温度曲线。那些是恒定点加热,步进点加热和温度控制点加热。组织温控点加热设计用于限制低于损伤阈值温度的健康组织温度。使用温度曲线,借助Arhenius速率方程测量组织损伤率。在这三种技术中,组织温控点加热显示为更好。该研究的结果将有助于医生以及生物医学工程师。

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