Author:
Desclides Manon,Ozenne Valéry,Bour Pierre,Faller Thibaut,Machinet Guillaume,Pierre Christophe,Chemouny Stéphane,Quesson Bruno
Abstract
AbstractPrecise control of tissue temperature during Laser-Induced Thermotherapy (LITT) procedures has the potential to improve the clinical efficiency and safety of such minimally invasive therapies. We present a method to automatically regulate in vivo the temperature increase during LITT using real-time rapid volumetric Magnetic Resonance thermometry (8 slices acquired every second, with an in-plane resolution of 1.4 mmx1.4 mm and a slice thickness of 3 mm) using the proton-resonance frequency (PRF) shift technique. The laser output power is adjusted every second using a feedback control algorithm (proportional-integral-derivative controller) to force maximal tissue temperature in the targeted region to follow a predefined temperature–time profile. The root-mean-square of the difference between the target temperature and the measured temperature ranged between 0.5 °C and 1.4 °C, for temperature increases between + 5 °C to + 30 °C above body temperature and a long heating duration (up to 15 min), showing excellent accuracy and stability of the method. These results were obtained on a 1.5 T clinical MRI scanner, showing a potential immediate clinical application of such a temperature controller during MR-guided LITT.
Funder
Agence Nationale de la Recherche
Publisher
Springer Science and Business Media LLC
Reference43 articles.
1. Diaz, R. et al. Laser interstitial thermal therapy: Lighting the way to a new treatment option in neurosurgery. Neurosurgery 79, S3–S7 (2016).
2. Karampelas, I. & Sloan, A. E. Laser-induced interstitial thermotherapy of gliomas. Prog. Neurol. Surg. 32, 14–26 (2018).
3. Schena, E., Saccomandi, P. & Fong, Y. Laser ablation for cancer: past, present and future. J. Funct. Biomater. 8, 19 (2017).
4. Walser, E. et al. Focal laser ablation of prostate cancer: Results in 120 patients with low- to intermediate-risk disease. J. Vasc. Interv. Radiol. 30, 401-409.e2 (2019).
5. Augustine, M. R. et al. Percutaneous MR imaging-guided laser ablation for the treatment of symptomatic cervicofacial vascular malformations. J. Vasc. Interv. Radiol. S1051–0443(22), 01261–01271 (2022).
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