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首页> 外文期刊>The Open Chemical Engineering Journal >Heat Transfer Modeling in Bone Tumour Hyperthermia Induced by Hydroxyapatite Magnetic Thermo-Seeds
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Heat Transfer Modeling in Bone Tumour Hyperthermia Induced by Hydroxyapatite Magnetic Thermo-Seeds

机译:羟基磷灰石磁性热籽骨肿瘤热疗中的传热建模

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Background: Hyperthermia is an adjuvant oncologic thermal therapy. In the case of deep-seated bone cancers, the interstitial hyperthermia treatment can be performed using thermo-seeds, implanted biomaterial components that are able to convert external electromagnetic power into thermal one. Several magnetic biomaterials have been synthesized for thermal treatments of cancer. However, less attention has been paid to the modeling description of the therapy, especially when the bio-heat transfer process is coupled to the electromagnetic heating. Objective: In this work, a comparison between the available analytical and numerical models is presented. Methods: A non-linear multiphysics model is used to study and describe the performance of cylindrical magnetic hydroxyapatite thermo-seeds to treat residual cancer cells of bone tumours. Results: The thermal dynamics and treatment outcome are carefully evaluated. Under the exposure of a magnetic field of 30 mT, working at 300 kHz, it was found that magnetic hydroxyapatite implants with a size of 10 mm × 10 mm could increase the temperature above 42?°C for 60 min. Conclusion: The proposed model overcomes the limitations of the available theoretical frameworks, and the results reveal the relevancy of the implant geometry to the effectiveness of the hyperthermia treatment.
机译:背景:热疗是一种佐剂肿瘤热疗。在坐在深层骨癌的情况下,可以使用热籽,植入的生物材料部件进行间质热疗治疗,该组分能够将外部电磁功率转换为热量。已经合成了几种磁性生物材料以用于癌症的热处理。然而,对疗法的建模描述已经不注意,特别是当生物传热过程耦合到电磁加热时。目的:在这项工作中,提出了可用分析和数值模型之间的比较。方法:采用非线性多体学型模型研究和描述圆柱磁性羟基磷灰石热籽的性能,治疗骨肿瘤残留癌细胞。结果:仔细评估热动力学和治疗结果。在30mt的磁场暴露下,工作在300kHz的情况下,发现尺寸为10mm×10mm的磁性羟基磷灰石植入物可以将温度提高42℃以上60分钟。结论:拟议模式克服了可用理论框架的局限性,结果揭示了植入物几何与热疗治疗有效性的相关性。

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