Department of Radiology, Hospital del Mar, Universitat Pompeu Fabra, Barcelona, Spain.
BioMIT, Department of Applied Mathematics, Universitat Politècnica de València, Valencia, Spain.
Int J Hyperthermia. 2021;38(1):409-420. doi: 10.1080/02656736.2021.1894358.
To study the differences between continuous and short-pulse mode microwave ablation (MWA).
We built a computational model for MWA including a 200 mm long and 14 G antenna from Amica-Gen and solved an electromagnetic-thermal coupled problem using COMSOL Multiphysics. We compared the coagulation zone (CZ) sizes created with pulsed and continuous modes under and conditions. The model was used to compare long vs. short pulses, and 1000 W high-powered short pulses. experiments were conducted to validate the model.
The computational models predicted the axial diameter of the CZ with an error of 2-3% and overestimated the transverse diameter by 9-11%. For short pulses, the computer modeling results showed a trend toward larger CZ when duty cycles decreases. In general, short pulsed mode yielded higher CZ diameters and volumes than continuous mode, but the differences were not significant (<5%), as in terms of CZ sphericity. The same trends were observed in the simulations mimicking conditions. Both CZ diameter and sphericity were similar with short and long pulses. Short 1000 W pulses produced smaller sphericity and similar CZ sizes under and conditions.
The characteristics of the CZ created by continuous and pulsed MWA show no significant differences from experiments and computer simulations. The proposed idea of enlarging coagulation zones and improving their sphericity in pulsed mode was not evident in this study.
研究连续模式和短脉冲模式微波消融(MWA)之间的差异。
我们建立了一个包括 Amica-Gen 的 200mm 长和 14G 天线的 MWA 计算模型,并使用 COMSOL Multiphysics 解决了一个电磁-热耦合问题。我们比较了在 和 条件下,脉冲模式和连续模式产生的凝固区(CZ)大小。该模型用于比较长脉冲与短脉冲,以及 1000W 高功率短脉冲。进行了 实验来验证模型。
计算模型预测的 CZ 轴向直径误差为 2-3%,横向直径高估了 9-11%。对于短脉冲,随着占空比的降低,计算机建模结果显示 CZ 直径有增大的趋势。一般来说,短脉冲模式产生的 CZ 直径和体积比连续模式大,但差异不显著(<5%),就 CZ 的球形度而言也是如此。在模拟 条件的模拟中也观察到了相同的趋势。短脉冲和长脉冲的 CZ 直径和球形度相似。在 和 条件下,短 1000W 脉冲产生的球形度较小,但 CZ 大小相似。
连续模式和脉冲模式 MWA 产生的 CZ 特性与 实验和计算机模拟没有显著差异。在这项研究中,脉冲模式中扩大凝固区和提高其球形度的设想并不明显。