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Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions

PURPOSE: To demonstrate that interleaved MR thermometry can monitor temperature in water and fat with adequate temporal resolution. This is relevant for high intensity focused uUltrasounds (HIFU) treatment of bone lesions, which are often found near aqueous tissues, as muscle, or embedded in adipose...

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Autores principales: Lena, Beatrice, Bartels, Lambertus W., Ferrer, Cyril J., Moonen, Chrit T. W., Viergever, Max A., Bos, Clemens
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8596687/
https://www.ncbi.nlm.nih.gov/pubmed/34061390
http://dx.doi.org/10.1002/mrm.28877
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author Lena, Beatrice
Bartels, Lambertus W.
Ferrer, Cyril J.
Moonen, Chrit T. W.
Viergever, Max A.
Bos, Clemens
author_facet Lena, Beatrice
Bartels, Lambertus W.
Ferrer, Cyril J.
Moonen, Chrit T. W.
Viergever, Max A.
Bos, Clemens
author_sort Lena, Beatrice
collection PubMed
description PURPOSE: To demonstrate that interleaved MR thermometry can monitor temperature in water and fat with adequate temporal resolution. This is relevant for high intensity focused uUltrasounds (HIFU) treatment of bone lesions, which are often found near aqueous tissues, as muscle, or embedded in adipose tissues, as subcutaneous fat and bone marrow. METHODS: Proton resonance frequency shift (PRFS)‐based thermometry scans and T(1)‐based 2D variable flip angle (2D‐VFA) thermometry scans were acquired alternatingly over time. Temperature in water was monitored using PRFS thermometry, and in fat by 2D‐VFA thermometry with slice profile effect correction. The feasibility of interleaved water/fat temperature monitoring was studied ex vivo in porcine bone during MR‐HIFU sonication. Precision and stability of measurements in vivo were evaluated in a healthy volunteer under non‐heating conditions. RESULTS: The method allowed observing temperature change over time in muscle and fat, including bone marrow, during MR‐HIFU sonication, with a temporal resolution of 6.1 s. In vivo, the apparent temperature change was stable on the time scale of the experiment: In 7 min the systematic drift was <0.042°C/min in muscle (PRFS after drift correction) and <0.096°C/min in bone marrow (2D‐VFA). The SD of the temperature change averaged over time was 0.98°C (PRFS) and 2.7°C (2D‐VFA). CONCLUSIONS: Interleaved MR thermometry allows temperature measurements in water and fat with a temporal resolution high enough for monitoring HIFU ablation. Specifically, combined fat and water thermometry provides uninterrupted information on temperature changes in tissue close to the bone cortex.
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spelling pubmed-85966872021-11-22 Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions Lena, Beatrice Bartels, Lambertus W. Ferrer, Cyril J. Moonen, Chrit T. W. Viergever, Max A. Bos, Clemens Magn Reson Med Technical Notes—Imaging Methodology PURPOSE: To demonstrate that interleaved MR thermometry can monitor temperature in water and fat with adequate temporal resolution. This is relevant for high intensity focused uUltrasounds (HIFU) treatment of bone lesions, which are often found near aqueous tissues, as muscle, or embedded in adipose tissues, as subcutaneous fat and bone marrow. METHODS: Proton resonance frequency shift (PRFS)‐based thermometry scans and T(1)‐based 2D variable flip angle (2D‐VFA) thermometry scans were acquired alternatingly over time. Temperature in water was monitored using PRFS thermometry, and in fat by 2D‐VFA thermometry with slice profile effect correction. The feasibility of interleaved water/fat temperature monitoring was studied ex vivo in porcine bone during MR‐HIFU sonication. Precision and stability of measurements in vivo were evaluated in a healthy volunteer under non‐heating conditions. RESULTS: The method allowed observing temperature change over time in muscle and fat, including bone marrow, during MR‐HIFU sonication, with a temporal resolution of 6.1 s. In vivo, the apparent temperature change was stable on the time scale of the experiment: In 7 min the systematic drift was <0.042°C/min in muscle (PRFS after drift correction) and <0.096°C/min in bone marrow (2D‐VFA). The SD of the temperature change averaged over time was 0.98°C (PRFS) and 2.7°C (2D‐VFA). CONCLUSIONS: Interleaved MR thermometry allows temperature measurements in water and fat with a temporal resolution high enough for monitoring HIFU ablation. Specifically, combined fat and water thermometry provides uninterrupted information on temperature changes in tissue close to the bone cortex. John Wiley and Sons Inc. 2021-06-01 2021-11 /pmc/articles/PMC8596687/ /pubmed/34061390 http://dx.doi.org/10.1002/mrm.28877 Text en © The Authors. Magnetic Resonance in Medicine published by Wiley Periodicals LLC on behalf of International Society for Magnetic Resonance in Medicine. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Technical Notes—Imaging Methodology
Lena, Beatrice
Bartels, Lambertus W.
Ferrer, Cyril J.
Moonen, Chrit T. W.
Viergever, Max A.
Bos, Clemens
Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions
title Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions
title_full Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions
title_fullStr Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions
title_full_unstemmed Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions
title_short Interleaved water and fat MR thermometry for monitoring high intensity focused ultrasound ablation of bone lesions
title_sort interleaved water and fat mr thermometry for monitoring high intensity focused ultrasound ablation of bone lesions
topic Technical Notes—Imaging Methodology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8596687/
https://www.ncbi.nlm.nih.gov/pubmed/34061390
http://dx.doi.org/10.1002/mrm.28877
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