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在热疗期间,带有流体流动的圆柱形琼脂凝胶受到交变磁场作用。

Cylindrical agar gel with fluid flow subjected to an alternating magnetic field during hyperthermia.

作者信息

Javidi Mehrdad, Heydari Morteza, Attar Mohammad Mahdi, Haghpanahi Mohammad, Karimi Alireza, Navidbakhsh Mahdi, Amanpour Saeid

机构信息

Tissue Engineering and Biological Systems Research Laboratory, School of Mechanical Engineering, Iran University of Science and Technology , Tehran , Iran .

出版信息

Int J Hyperthermia. 2015 Feb;31(1):33-9. doi: 10.3109/02656736.2014.988661. Epub 2014 Dec 19.

Abstract

PURPOSE

In magnetic fluid hyperthermia (MFH), nanoparticles are injected into diseased tissue and subjected to an alternating high frequency magnetic field. The process triggers sufficient heat to destroy the cancerous cells. One of the challenging problems during MFH is blood flow in tissue. In real conditions the heat which is transferred by blood flow should be considered in the analysis of MFH.

METHODS

In this study, heat transfer was investigated in an agar gel phantom containing fluid flow. Fe3O4 as a nano-fluid was injected into the centre of a gel cylinder which was filled with another gel cylinder and subjected to an alternating magnetic field of 7.3 kA/m and a frequency of 50 kHz for 3600 s. The temperature was measured at three points in the gel. Temperature distributions regarding the time at these three points were experimentally measured. Moreover, the specific absorption rate (SAR) function was calculated with a temperature function.

RESULTS

The SAR function was a key asset in the hyperthermia and was obtained on the condition that the fluid flowed through the gel. Finally, a finite element analysis (FEA) was performed to verify the SAR function. The results revealed that there was good agreement between the measured temperature and the one obtained from FEA. In addition, the effects of fluid flow and accuracy of function obtained for heat production in the gel were presented.

CONCLUSION

It is believed that the proposed model has the potential ability to get close to reality in this type of investigation. The proposed function has implications for use in further modelling studies as a heat generation source.

摘要

目的

在磁流体热疗(MFH)中,纳米颗粒被注入患病组织并置于交变高频磁场中。该过程会引发足够的热量来破坏癌细胞。MFH过程中一个具有挑战性的问题是组织中的血流。在实际情况下,在MFH分析中应考虑由血流传递的热量。

方法

在本研究中,对含有流体流动的琼脂凝胶模型中的热传递进行了研究。将作为纳米流体的Fe3O4注入凝胶圆柱体的中心,该凝胶圆柱体又被另一种凝胶圆柱体填充,并在7.3 kA/m的交变磁场和50 kHz的频率下作用3600秒。在凝胶中的三个点测量温度。实验测量了这三个点处温度随时间的分布。此外,利用温度函数计算比吸收率(SAR)函数。

结果

SAR函数是热疗中的关键要素,是在流体流经凝胶的条件下获得的。最后,进行了有限元分析(FEA)以验证SAR函数。结果表明,测量温度与FEA获得的温度之间具有良好的一致性。此外,还展示了流体流动的影响以及凝胶中热产生函数的准确性。

结论

相信所提出的模型在这类研究中具有接近实际情况的潜在能力。所提出的函数对于作为热源用于进一步的建模研究具有重要意义。

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