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Challenging the Modeling of Magnetic Hyperthermia of Secondary Bone Tumors Using Magnetic Prosthetic Implants

机译:挑战性的人工骨植入物对继发性骨肿瘤的磁性热疗的建模

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Magnetic biomaterials are powerful multifunctional tools in theranostic. They can be remotely controlled by an external magnetic field. When a radiofrequency field is used, the magnetic nano- or microparticles embedded in the biomaterial dissipate heat, which can be used for therapeutic purposes. Hyperthermia treatment of deep- seated tumors, such as bone cancers, can extensively benefit from the use of such class of magnetic responsive biomaterials. Therefore, in this work it is presented the numerical analysis of the hyperthermia treatment of secondary bone tumors performed using a magnetic hydroxyapatite prosthesis.
机译:磁性生物材料是治疗诊断学中功能强大的多功能工具。它们可以通过外部磁场进行远程控制。当使用射频场时,嵌入生物材料中的磁性纳米颗粒或微粒会散发热量,这些热量可用于治疗目的。对这类深层肿瘤(如骨癌)的热疗可以从此类磁性反应生物材料的使用中广泛受益。因此,在这项工作中,提出了使用磁性羟基磷灰石假体对继发性骨肿瘤进行高温治疗的数值分析。

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