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Miniature microwave applicator for murine bladder hyperthermia studies

机译:微型微波辐射器,用于小鼠膀胱热疗研究

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摘要

Purpose: Novel combinations of heat with chemotherapeutic agents are often studied in murine tumour models. Currently, no device exists to selectively heat small tumours at depth in mice. In this project we modelled, built and tested a miniature microwave heat applicator, the physical dimensions of which can be scaled to adjust the volume and depth of heating to focus on the tumour volume. Of particular interest is a device that can selectively heat murine bladder. Materials and methods: Using Avizo? segmentation software, we created a numerical mouse model based on micro-MRI scan data. The model was imported into HFSS? (Ansys) simulation software and parametric studies were performed to optimise the dimensions of a water-loaded circular waveguide for selective power deposition inside a 0.15?mL bladder. A working prototype was constructed operating at 2.45?GHz. Heating performance was characterised by mapping fibre-optic temperature sensors along catheters inserted at depths of 0–1?mm (subcutaneous), 2–3?mm (vaginal), and 4–5?mm (rectal) below the abdominal wall, with the mid depth catheter adjacent to the bladder. Core temperature was monitored orally. Results: Thermal measurements confirm the simulations which demonstrate that this applicator can provide local heating at depth in small animals. Measured temperatures in murine pelvis show well-localised bladder heating to 42–43°C while maintaining normothermic skin and core temperatures. Conclusions: Simulation techniques facilitate the design optimisation of microwave antennas for use in pre-clinical applications such as localised tumour heating in small animals. Laboratory measurements demonstrate the effectiveness of a new miniature water-coupled microwave applicator for localised heating of murine bladder.
机译:目的:经常在鼠肿瘤模型中研究热与化学治疗剂的新型结合。当前,不存在用于选择性地加热小鼠深处的小肿瘤的装置。在这个项目中,我们对微型微波加热器进行了建模,建造和测试,该微型微波加热器的物理尺寸可以按比例调整,以调节加热的体积和深度,从而专注于肿瘤体积。特别感兴趣的是一种可以选择性地加热鼠膀胱的装置。材料和方法:使用Avizo?分割软件,我们基于微MRI扫描数据创建了数字鼠标模型。该模型已导入HFSS? (Ansys)仿真软件和参数研究进行了优化,以优化水载圆形波导的尺寸,以便在0.15?mL的膀胱内选择性沉积功率。构建了一个工作频率为2.45?GHz的原型。通过沿插入在腹壁以下0–1?mm(皮下),2–3?mm(阴道)和4–5?mm(直肠)深度处的导管绘制光纤温度传感器来表征加热性能。靠近膀胱的中深度导管。口服监测核心温度。结果:热测量结果证实了模拟结果,该模拟表明该施药器可以为小动物深处提供局部加热。在鼠骨盆中测得的温度显示出定位良好的膀胱加热到42–43°C,同时保持皮肤和核心温度正常。结论:仿真技术促进了微波天线的设计优化,以用于临床前应用,例如小型动物的局部肿瘤加热。实验室测量表明,新型微型水耦合微波辐射器可有效地局部加热鼠膀胱。

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