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A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments

SIMPLE SUMMARY: Locoregional hyperthermia has been widely used in combination with radiation therapy in several cancer types, including radiorecurrent tumors. Radiorecurrent prostate cancer is a challenging clinical situation, with few treatments available. Reirradiation combined with hyperthermia r...

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Autores principales: Guillemin, Pauline Coralie, Sinden, David, M’Rad, Yacine, Schwenke, Michael, Le Guevelou, Jennifer, Uiterwijk, Johannes W. E., Lorton, Orane, Scheffler, Max, Poletti, Pierre-Alexandre, Jenne, Juergen, Zilli, Thomas, Salomir, Rares
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9818476/
https://www.ncbi.nlm.nih.gov/pubmed/36612159
http://dx.doi.org/10.3390/cancers15010163
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author Guillemin, Pauline Coralie
Sinden, David
M’Rad, Yacine
Schwenke, Michael
Le Guevelou, Jennifer
Uiterwijk, Johannes W. E.
Lorton, Orane
Scheffler, Max
Poletti, Pierre-Alexandre
Jenne, Juergen
Zilli, Thomas
Salomir, Rares
author_facet Guillemin, Pauline Coralie
Sinden, David
M’Rad, Yacine
Schwenke, Michael
Le Guevelou, Jennifer
Uiterwijk, Johannes W. E.
Lorton, Orane
Scheffler, Max
Poletti, Pierre-Alexandre
Jenne, Juergen
Zilli, Thomas
Salomir, Rares
author_sort Guillemin, Pauline Coralie
collection PubMed
description SIMPLE SUMMARY: Locoregional hyperthermia has been widely used in combination with radiation therapy in several cancer types, including radiorecurrent tumors. Radiorecurrent prostate cancer is a challenging clinical situation, with few treatments available. Reirradiation combined with hyperthermia represents an appealing treatment strategy, although few studies have been reported to date. We aimed to design a specific transperineal focused ultrasound transducer for prostate cancer regional deep hyperthermia treatment, apt to ensure optimal target coverage and patient comfort. The existing prostate transducers (endorectal or transurethral) are not designed for treatments longer than 1h and are able to act upon limited volumes only. ABSTRACT: Design, embodiment, and experimental study of a novel concept of extracorporeal phased array ultrasound transducer for prostate cancer regional deep hyperthermia treatments using a transperineal acoustic window is presented. An optimized design of hyperthermia applicator was derived from a modelling software where acoustic and thermal fields were computed based on anatomical data. Performance tests have been experimentally conducted on gel phantoms and tissues, under 3T MRI guidance using PRFS thermometry. Feedback controlled hyperthermia (ΔT = 5 °C during 20min) was performed on two ex vivo lamb carcasses with prostate mimicking pelvic tissue, to demonstrate capability of spatio-temporal temperature control and to assess potential risks and side effects. Our optimization approach yielded a therapeutic ultrasound transducer consisting of 192 elements of variable shape and surface, pseudo randomly distributed on 6 columns, using a frequency of 700 kHz. Radius of curvature was 140 mm and active water circulation was included for cooling. The measured focusing capabilities covered a volume of 24 × 50 × 60 mm(3). Acoustic coupling of excellent quality was achieved. No interference was detected between sonication and MR acquisitions. On ex vivo experiments the target temperature elevation of 5 °C was reached after 5 min and maintained during another 15 min with the predictive temperature controller showing 0.2 °C accuracy. No significant temperature rise was observed on skin and bonny structures. Reported results represent a promising step toward the implementation of transperineal ultrasound hyperthermia in a pilot study of reirradiation in prostate cancer patients.
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spelling pubmed-98184762023-01-07 A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments Guillemin, Pauline Coralie Sinden, David M’Rad, Yacine Schwenke, Michael Le Guevelou, Jennifer Uiterwijk, Johannes W. E. Lorton, Orane Scheffler, Max Poletti, Pierre-Alexandre Jenne, Juergen Zilli, Thomas Salomir, Rares Cancers (Basel) Article SIMPLE SUMMARY: Locoregional hyperthermia has been widely used in combination with radiation therapy in several cancer types, including radiorecurrent tumors. Radiorecurrent prostate cancer is a challenging clinical situation, with few treatments available. Reirradiation combined with hyperthermia represents an appealing treatment strategy, although few studies have been reported to date. We aimed to design a specific transperineal focused ultrasound transducer for prostate cancer regional deep hyperthermia treatment, apt to ensure optimal target coverage and patient comfort. The existing prostate transducers (endorectal or transurethral) are not designed for treatments longer than 1h and are able to act upon limited volumes only. ABSTRACT: Design, embodiment, and experimental study of a novel concept of extracorporeal phased array ultrasound transducer for prostate cancer regional deep hyperthermia treatments using a transperineal acoustic window is presented. An optimized design of hyperthermia applicator was derived from a modelling software where acoustic and thermal fields were computed based on anatomical data. Performance tests have been experimentally conducted on gel phantoms and tissues, under 3T MRI guidance using PRFS thermometry. Feedback controlled hyperthermia (ΔT = 5 °C during 20min) was performed on two ex vivo lamb carcasses with prostate mimicking pelvic tissue, to demonstrate capability of spatio-temporal temperature control and to assess potential risks and side effects. Our optimization approach yielded a therapeutic ultrasound transducer consisting of 192 elements of variable shape and surface, pseudo randomly distributed on 6 columns, using a frequency of 700 kHz. Radius of curvature was 140 mm and active water circulation was included for cooling. The measured focusing capabilities covered a volume of 24 × 50 × 60 mm(3). Acoustic coupling of excellent quality was achieved. No interference was detected between sonication and MR acquisitions. On ex vivo experiments the target temperature elevation of 5 °C was reached after 5 min and maintained during another 15 min with the predictive temperature controller showing 0.2 °C accuracy. No significant temperature rise was observed on skin and bonny structures. Reported results represent a promising step toward the implementation of transperineal ultrasound hyperthermia in a pilot study of reirradiation in prostate cancer patients. MDPI 2022-12-27 /pmc/articles/PMC9818476/ /pubmed/36612159 http://dx.doi.org/10.3390/cancers15010163 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guillemin, Pauline Coralie
Sinden, David
M’Rad, Yacine
Schwenke, Michael
Le Guevelou, Jennifer
Uiterwijk, Johannes W. E.
Lorton, Orane
Scheffler, Max
Poletti, Pierre-Alexandre
Jenne, Juergen
Zilli, Thomas
Salomir, Rares
A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments
title A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments
title_full A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments
title_fullStr A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments
title_full_unstemmed A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments
title_short A Novel Concept of Transperineal Focused Ultrasound Transducer for Prostate Cancer Local Deep Hyperthermia Treatments
title_sort novel concept of transperineal focused ultrasound transducer for prostate cancer local deep hyperthermia treatments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9818476/
https://www.ncbi.nlm.nih.gov/pubmed/36612159
http://dx.doi.org/10.3390/cancers15010163
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