Department of Biomedical Engineering, Duke University, Durham, North Carolina, USA.
Int J Hyperthermia. 2012;28(5):456-65. doi: 10.3109/02656736.2012.677931. Epub 2012 Jun 12.
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.
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.
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.
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.
新型热疗联合化疗药物的方案经常在鼠肿瘤模型中进行研究。目前,尚无设备可用于选择性地对小鼠深部小肿瘤进行加热。在本项目中,我们设计、制造并测试了一种微型微波加热设备,其物理尺寸可缩放以调节加热的体积和深度,从而聚焦于肿瘤体积。特别感兴趣的是一种能够选择性加热小鼠膀胱的设备。
我们使用 Avizo(®)分割软件,根据 micro-MRI 扫描数据创建了一个数值化的小鼠模型。该模型被导入 HFSS(Ansys)模拟软件中,并进行参数研究,以优化水负载圆形波导的尺寸,以实现选择性在 0.15 毫升膀胱内的功率沉积。构建了一个工作原型,在 2.45GHz 下运行。通过在腹壁下 0-1 毫米(皮下)、2-3 毫米(阴道)和 4-5 毫米(直肠)深度插入的导管中映射光纤温度传感器,来描述加热性能,其中中间深度导管紧邻膀胱。核心温度通过口腔监测。
热测量证实了模拟结果,表明该设备可以在小动物深部提供局部加热。在小鼠骨盆中的测量温度显示,在保持皮肤和核心温度正常的情况下,可将膀胱局部加热至 42-43°C。
模拟技术有助于优化微波天线的设计,以用于临床前应用,如小动物局部肿瘤加热。实验室测量证明了新型微型水耦合微波加热设备在局部加热小鼠膀胱方面的有效性。