Literature DB >> 33198534

Evaluation of a numerical simulation for cryoablation - comparison with bench data, clinical kidney and lung cases.

Christian Rieder1, Michael Schwenke1, Torben Pätz1, Joachim Georgii1, Hanne Ballhausen1, Lars Ole Schwen1, Sabrina Haase1, Tobias Preusser1.   

Abstract

PURPOSE: The accuracy of a numerical simulation of cryoablation ice balls was evaluated in gel phantom data as well as clinical kidney and lung cases.
MATERIALS AND METHODS: To evaluate the accuracy, 64 experimental single-needle cryoablations and 12 multi-needle cryoablations in gel phantoms were re-simulated with the corresponding freeze-thaw-freeze cycles. The simulated temperatures were compared over time with the measurements of thermocouples. For single needles, temperature values were compared at each thermocouple location. For multiple needles, Euclidean distances between simulated and measured isotherms (10 °C, 0 °C, -20 °C, -40 °C) were computed. Furthermore, surface and volume of simulated 0 °C isotherms were compared to cryoablation-induced ice balls in 14 kidney and 13 lung patients. For this purpose, needle positions and relevant anatomical structures defining material parameters (kidney/lung, tumor) were reconstructed from pre-ablation CT images and fused with postablation CT images (from which ice balls were extracted by manual delineation).
RESULTS: The single-needle gel phantom cases showed less than 5 °C prediction error on average. Over all multiple needle experiments in gel, the mean and maximum isotherm distance were less than 2.3 mm and 4.1 mm, respectively. Average Dice coefficients of 0.82/0.63 (kidney/lung) and mean surface distances of 2.59/3.12 mm quantify the prediction performance of the numerical simulation. However, maximum surface distances of 10.57/10.8 mm indicate that locally larger errors have to be expected.
CONCLUSION: A very good agreement of the numerical simulations for gel experiments was measured and a satisfactory agreement of the numerical simulations with measured ice balls in patient data was shown.

Entities:  

Keywords:  Cryoablation; evaluation; kidney; lung; numerical simulation

Mesh:

Year:  2020        PMID: 33198534     DOI: 10.1080/02656736.2020.1845402

Source DB:  PubMed          Journal:  Int J Hyperthermia        ISSN: 0265-6736            Impact factor:   3.914


  1 in total

1.  Hybrid Simulation and Planning Platform for Cryosurgery with Microsoft HoloLens.

Authors:  Sara Condino; Fabrizio Cutolo; Nadia Cattari; Simone Colangeli; Paolo Domenico Parchi; Roberta Piazza; Alfio Damiano Ruinato; Rodolfo Capanna; Vincenzo Ferrari
Journal:  Sensors (Basel)       Date:  2021-06-29       Impact factor: 3.576

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.