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Heating Induced by Therapeutic Ultrasound in the Presence of Magnetic Nanoparticles

机译:治疗超声在磁性纳米粒子存在下通过治疗诱导的加热

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摘要

The efficiency of ultrasound hyperthermia for anti-cancer treatments such as radiotherapy or chemotherapy can be improved by using sonosensitizers, which are materials that enhance the attenuation and dissipation of acoustic energy. We propose the use of magnetic nanoparticles as sonosensitizers because of their biocompatibility, nontoxicity, and common use in several medical applications. A magnetic material was synthetized and then incorporated in the form of a magnetic fluid in agar tissue-mimicking phantoms. Ultrasound hyperthermia studies were conducted at various ultrasound frequencies and concentrations of magnetic nanoparticles in the phantoms. The theoretical modeling based on a heat transfer equation and the experimental results show good agreement and confirm that the temperature rise during ultrasound heating in tissue mimicking phantoms doped with sonosensitizers is greater than that in a pure agar phantom. Furthermore, on the basis of Pennes' bio-heat equation, which takes into consideration the blood perfusion and metabolic heat, the thermal dose and lesion shapes after sonication were determined for a hypothetical tissue.
机译:通过使用超声溶剂剂可以改善超声热疗的抗癌或化学疗法的抗癌或化疗的效率,这是增强声能量衰减和耗散的材料。由于其生物相容性,无毒性和几种医学应用,我们提出了使用磁性纳米粒子作为超声溶胶。合成磁性材料,然后以琼脂组织 - 模拟粉刺的磁性流体的形式掺入。以不同的超声频率和磁性纳米颗粒的浓度进行超声热疗研究。基于传热方程的理论建模与实验结果表明,良好的一致性,并确认在掺杂有超声胶质沉积物的幽灵中模拟的组织中超声加热期间的温度升高大于纯琼脂幻影。此外,在Pennes的生物热方程的基础上,考虑到血液灌注和代谢热量,测定声音后的热剂量和病变形状对于假想的组织。

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