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首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >MicroCT image-generated tumour geometry and SAR distribution for tumour temperature elevation simulations in magnetic nanoparticle hyperthermia
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MicroCT image-generated tumour geometry and SAR distribution for tumour temperature elevation simulations in magnetic nanoparticle hyperthermia

机译:MicroCT图像生成的肿瘤几何形状和SAR分布,用于磁性纳米粒子热疗中的肿瘤温度升高模拟

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Objectives: The objective of this study was to develop and test computer algorithms to export micro computed tomography (microCT) images and to generate tumour geometry and specific absorption rate (SAR) distribution for heat transfer simulation in magnetic nanoparticle hyperthermia. Methods: Computer algorithms were written to analyse and export microCT images of 3D tumours containing magnetic nanoparticles. MATLAB? and ProE? programs were used to generate a prototype of the tumour geometry. The enhancements in the microCT pixel index number due to presence of nanoparticles in the tumours were first converted into corresponding SAR values. The SAR data were then averaged over three-dimensional clusters of pixels using the SAS? program. This greatly decreased the size of the SAR file, while in the meantime it ensured that the amount of total energy deposited in the tumour was conserved. Both the tumour geometry and the SAR file were then imported into the COMSOL? software package to simulate temperature elevations in the tumour and their surrounding tissue region during magnetic nanoparticle hyperthermia. Results: A linear relationship was obtained to relate individual pixel index numbers in the microCT images to the SAR values under a specific magnetic field. The generated prototype of the tumour geometry based on only 30 slices of microCT images resembled the original tumour shape and size. The tumour geometry and the simplified SAR data set were successfully accepted by the COMSOL software for heat transfer simulation. Up to 20?°C temperature elevations from its baseline temperature were found inside the tumours, implying possible thermal damage to the tumour during magnetic nanoparticle hyperthermia.
机译:目的:本研究的目的是开发和测试计算机算法,以输出微型计算机断层扫描(microCT)图像,并生成肿瘤几何形状和比吸收率(SAR)分布,以进行磁性纳米粒子热疗中的传热模拟。方法:编写计算机算法来分析和导出包含磁性纳米粒子的3D肿瘤的microCT图像。 MATLAB?和ProE?程序用于生成肿瘤几何形状的原型。由于肿瘤中存在纳米颗粒,microCT像素指数值的增强首先被转换为相应的SAR值。然后,使用SAS软件对SAR数据在三维像素簇上求平均值。程序。这大大减小了SAR文件的大小,同时确保了保存在肿瘤中的总能量得以保存。然后将肿瘤的几何形状和SAR文件都导入COMSOL?该软件包可模拟磁性纳米粒子热疗过程中肿瘤及其周围组织区域的温度升高。结果:获得了线性关系,以将microCT图像中的各个像素索引号与特定磁场下的SAR值相关联。仅基于30片microCT图像生成的肿瘤几何原型类似于原始肿瘤的形状和大小。肿瘤的几何形状和简化的SAR数据集已被COMSOL软件成功接受以进行传热模拟。在肿瘤内部发现从其基线温度起的最高温度升高了20°C,这意味着在磁性纳米粒子热疗过程中可能对肿瘤造成热损伤。

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