Institute for Diagnostic and Interventional Radiology of the J.W. Goethe University Hospital, Frankfurt am Main, Germany.
Fraunhofer ITWM, Kaiserslautern, Germany.
Int J Hyperthermia. 2022;39(1):1315-1326. doi: 10.1080/02656736.2022.2129102.
We want to investigate whether temperature measurements obtained from MR thermometry are accurate and reliable enough to aid the development and validation of simulation models for Laser-induced interstitial thermotherapy (LITT).
Laser-induced interstitial thermotherapy (LITT) is applied to ex-vivo porcine livers. An artificial blood vessel is used to study the cooling effect of large blood vessels in proximity to the ablation zone. The experimental setting is simulated using a model based on partial differential equations (PDEs) for temperature, radiation, and tissue damage. The simulated temperature distributions are compared to temperature data obtained from MR thermometry.
The overall agreement between measurement and simulation is good for two of our four test cases, while for the remaining cases drift problems with the thermometry data have been an issue. At higher temperatures local deviations between simulation and measurement occur in close proximity to the laser applicator and the vessel. This suggests that certain aspects of the model may need some refinement.
Thermometry data is well-suited for aiding the development of simulations models since it shows where refinements are necessary and enables the validation of such models.
我们旨在探究从磁共振测温中获得的温度测量值是否足够准确可靠,从而辅助激光间质热疗(LITT)模拟模型的开发和验证。
将激光间质热疗(LITT)应用于离体猪肝脏。使用人工血管来研究靠近消融区的大血管的冷却效果。使用基于温度、辐射和组织损伤偏微分方程(PDEs)的模型模拟实验设置。将模拟的温度分布与从磁共振测温中获得的温度数据进行比较。
在我们的四个测试案例中,有两个案例的测量值与模拟值之间的总体一致性较好,而对于其余案例,测温数据存在漂移问题。在较高温度下,模拟和测量之间的局部偏差出现在激光施源器和血管附近。这表明模型的某些方面可能需要进一步改进。
测温数据非常适合辅助模拟模型的开发,因为它可以显示出需要改进的地方,并使这些模型得以验证。