论文标题

在微波辅助高温期间,介电纳米颗粒注入的组织幻像的热响应

Thermal Response of Dielectric Nanoparticle Infused Tissue Phantoms during Microwave Assisted Hyperthermia

论文作者

Kumar, Dhiraj, Dhar, Purbarun, Paul, Anup

论文摘要

热疗已经使用了很多年了。作为癌症治疗的潜在替代方式。在本文中,据报道,使用家用微波炉对组织幻像的微波热加热(MWATH)进行了实验研究。还进行了使用基于有限元方法的工具的计算机模拟,以支持组织幻影内部深处的热传输方面的实验观测和探测洞察力。实现了预测温度和测量温度之间的良好一致性。此外,进行了实验以研究介电纳米颗粒的功效。在纳米颗粒注入肿瘤幻像的MWATH期间,氧化铝(AL2O3)和氧化钛(TiO2)。在实验中特别模仿了注入纳米颗粒溶液的深座肿瘤。根据纳米颗粒注入组织幻像的时空热史获得了有趣的结果。由于纳米颗粒的存在,在目标区附近达到了温度分布的升高,并且温度的空间分布明显变形。我们最终使用了与其他纳米颗粒介导的高温技术不同的实验和模拟,直接注射肿瘤内的纳米颗粒会导致邻居or的健康组织的热量产生增强。高温事件的不均匀性分别从热点和冷点的出现中很明显。目前的发现可能具有很大的影响,作为预测MWA期间温度分布的框架。

Hyperthermia has been in use for many years; as a potential alternative modality for cancer treatment. In this paper, an experimental investigation of microwave assisted thermal heating (MWATH) of tissue phantom using a domestic microwave oven has been reported. Computer simulations using finite element method based tools was also carried out to support the experimental observations and probe insight on the thermal transport aspects deep within the tissue phantom. A good agreement between predicted and measured temperature were achieved. Furthermore, experiments were conducted to investigate the efficacy of dielectric nanoparticles viz. alumina (Al2O3) and titanium oxide (TiO2) during the MWATH of nanoparticle infused tumor phantoms. A deep seated tumor injected with nanoparticle solution was specifically mimicked in the experiments. Interesting results were obtained in terms of spatiotemporal thermal history of the nanoparticle infused tissue phantoms. An elevation in the temperature distribution was achieved in the vicinity of the targeted zone due to the presence of nanoparticles, and the spatial distribution of temperature was grossly morphed. We conclusively show, using experiments and simulations that unlike other nanoparticle mediated hyperthermia techniques, direct injection of the nanoparticles within the tumor leads to enhanced heat generation in the neighb oring healthy tissues. The inhomogeneity of the hyperthermia event is evident from the lo cal occurrence of hot spots and cold spots respectively. The present findings may have far reaching implications as a framework in predicting temperature distributions during MWA.

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