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利用红外热成像技术精确测定体内磁性纳米颗粒热疗过程中的热传递。

Precise determination of the heat delivery during in vivo magnetic nanoparticle hyperthermia with infrared thermography.

作者信息

Rodrigues Harley F, Capistrano Gustavo, Mello Francyelli M, Zufelato Nicholas, Silveira-Lacerda Elisângela, Bakuzis Andris F

机构信息

Universidade Federal de Goiás, Goiânia, GO 74690-900 Brazil.

出版信息

Phys Med Biol. 2017 May 21;62(10):4062-4082. doi: 10.1088/1361-6560/aa6793. Epub 2017 Mar 17.

Abstract

Non-invasive and real-time monitoring of the heat delivery during magnetic nanoparticle hyperthermia (MNH) is of fundamental importance to predict clinical outcomes for cancer treatment. Infrared thermography (IRT) can determine the surface temperature due to three-dimensional heat delivery inside a subcutaneous tumor, an argument that is supported by numerical simulations. However, for precise temperature determination, it is of crucial relevance to use a correct experimental configuration. This work reports an MNH study using a sarcoma 180 murine tumor containing 3.9 mg of intratumorally injected manganese-ferrite nanoparticles. MNH was performed at low field amplitude and non-uniform field configuration. Five 30 min in vivo magnetic hyperthermia experiments were performed, monitoring the surface temperature with a fiber optical sensor and thermal camera at distinct angles with respect to the animal's surface. The results indicate that temperature errors as large as [Formula: see text]C can occur if the experiment is not properly designed. A new IRT error model is found to explain the data. More importantly, we show how to precisely monitor temperature with IRT during hyperthermia, which could positively impact heat dosimetry and clinical planning.

摘要

在磁性纳米颗粒热疗(MNH)过程中对热传递进行无创实时监测对于预测癌症治疗的临床结果至关重要。红外热成像(IRT)可以根据皮下肿瘤内部三维热传递情况确定表面温度,数值模拟支持了这一观点。然而,为了精确测定温度,使用正确的实验配置至关重要。这项工作报告了一项使用含有3.9毫克瘤内注射锰铁氧体纳米颗粒的肉瘤180小鼠肿瘤进行的MNH研究。MNH在低场强和非均匀场配置下进行。进行了五次30分钟的体内磁热疗实验,使用光纤传感器和热成像相机在相对于动物表面的不同角度监测表面温度。结果表明,如果实验设计不当,可能会出现高达[公式:见原文]℃的温度误差。发现了一个新的IRT误差模型来解释这些数据。更重要的是,我们展示了如何在热疗期间用IRT精确监测温度,这可能对热剂量测定和临床规划产生积极影响。

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