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Computational modeling of drug diffusion and inductive heating in an implantable biomedical device for localized thermo-chemotherapy of cancer cells/tissue

机译:用于癌细胞/组织局部热化学疗法的可植入生物医学设备中药物扩散和感应加热的计算模型

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This paper presents the study of an implantable biomedical device for the localized released of chemotherapeutic drugs and the controlled heating of surrounding tumor tissue to enable cancer treatment via a hyperthermia and chemotherapy combination. The coupling of magnetic induction, heat transfer, and mass diffusion concepts used?to model temperature changes and drug release from the biomedical device to a surrounding environment that mimics breast tumor tissue and normal breast tissue. The predictions of temperature change in the residual tumor cells and the normal breast tissue show that when an excitation current of 25?mA supplied to the device generates heat that required to kill the residual cancer cells without damaging the nearby healthy tissue. Also,?the predictions of?prodigiosin?concentration released from the biomedical device into selected depths in the breast phantom model show that the residual tumor has a higher concentration than the healthy tissue. The proposed system proved capable for prolonged drug delivery and temperature rise of tumor to therapeutic values for effective localize cancer treatment.
机译:本文介绍了一种可植入生物医学装置的研究,该装置用于局部释放化学治疗药物并控制周围肿瘤组织的加热,从而能够通过高温和化学疗法相结合的方式进行癌症治疗。磁感应,热传递和质量扩散概念的耦合用于模拟温度变化和药物从生物医学设备到模拟乳腺肿瘤组织和正常乳腺组织的周围环境的释放。残留肿瘤细胞和正常乳腺组织中温度变化的预测表明,当提供给该设备的25?mA的激发电流产生的热量足以杀死残留的癌细胞而不会损害附近的健康组织。而且,从生物医学装置释放到乳房体模模型中选定深度中的“ Prodigiosin”浓度的预测表明,残留肿瘤的浓度高于健康组织。所提出的系统被证明能够延长药物的递送并将肿瘤的温度升高至有效定位癌症治疗的治疗价值。

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