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用于实验验证磁共振引导下射频头颈部加热的实验室原型。

Laboratory prototype for experimental validation of MR-guided radiofrequency head and neck hyperthermia.

机构信息

Erasmus Medical Center, Rotterdam, Netherlands.

出版信息

Phys Med Biol. 2014 May 7;59(9):2139-54. doi: 10.1088/0031-9155/59/9/2139. Epub 2014 Apr 4.

DOI:10.1088/0031-9155/59/9/2139
PMID:24699230
Abstract

Clinical studies have established a strong benefit from adjuvant mild hyperthermia (HT) to radio- and chemotherapy for many tumor sites, including the head and neck (H&N). The recently developed HYPERcollar allows the application of local radiofrequency HT to tumors in the entire H&N. Treatment quality is optimized using electromagnetic and thermal simulators and, whenever placement risk is tolerable, assessed using invasively placed thermometers. To replace the current invasive procedure, we are investigating whether magnetic resonance (MR) thermometry can be exploited for continuous and 3D thermal dose assessment. In this work, we used our simulation tools to design an MR compatible laboratory prototype applicator. By simulations and measurements, we showed that the redesigned patch antennas are well matched to 50 Ω (S11<-10 dB). Simulations also show that, using 300 W input power, a maximum specific absorption rate (SAR) of 100 W kg(-1) and a temperature increase of 4.5 °C in 6 min is feasible at the center of a cylindrical fat/muscle phantom. Temperature measurements using the MR scanner confirmed the focused heating capabilities and MR compatibility of the setup. We conclude that the laboratory applicator provides the possibility for experimental assessment of the feasibility of hybrid MR-HT in the H&N region. This versatile design allows rigorous analysis of MR thermometry accuracy in increasingly complex phantoms that mimic patients' anatomies and thermodynamic characteristics.

摘要

临床研究已经证实,辅助轻度热疗(HT)对许多肿瘤部位的放射治疗和化学治疗有显著益处,包括头颈部(H&N)。最近开发的 HYPERcollar 允许将局部射频 HT 应用于整个 H&N 的肿瘤。使用电磁和热模拟器来优化治疗质量,并在可耐受的情况下,使用侵入性放置的温度计进行评估。为了替代当前的侵入性程序,我们正在研究磁共振(MR)测温是否可用于连续和 3D 热剂量评估。在这项工作中,我们使用我们的模拟工具设计了一种与 MR 兼容的实验室原型应用器。通过模拟和测量,我们表明重新设计的贴片天线与 50 Ω(S11<-10 dB)匹配良好。模拟还表明,使用 300 W 输入功率,在圆柱形脂肪/肌肉体模的中心处,最大比吸收率(SAR)为 100 W kg(-1)和 4.5°C 的温升是可行的。使用磁共振扫描仪进行的温度测量证实了该设置的聚焦加热能力和与磁共振的兼容性。我们得出结论,实验室应用器为在 H&N 区域中进行混合 MR-HT 的可行性的实验评估提供了可能性。这种多功能设计允许在越来越复杂的模拟体模中对磁共振测温精度进行严格分析,这些模拟体模模仿了患者的解剖结构和热力学特征。

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