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Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO)

PURPOSE: The purpose of this paper was to review the available approaches for bone strength assessment, osteoporosis diagnosis and fracture risk prediction, and to provide insights into radiofrequency echographic multi spectrometry (REMS), a non-ionizing axial skeleton technique. METHODS: A working...

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Autores principales: Diez-Perez, Adolfo, Brandi, Maria Luisa, Al-Daghri, Nasser, Branco, Jaime C., Bruyère, Olivier, Cavalli, Loredana, Cooper, Cyrus, Cortet, Bernard, Dawson-Hughes, Bess, Dimai, Hans Peter, Gonnelli, Stefano, Hadji, Peyman, Halbout, Philippe, Kaufman, Jean-Marc, Kurth, Andreas, Locquet, Medea, Maggi, Stefania, Matijevic, Radmila, Reginster, Jean-Yves, Rizzoli, René, Thierry, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6763416/
https://www.ncbi.nlm.nih.gov/pubmed/31422565
http://dx.doi.org/10.1007/s40520-019-01294-4
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author Diez-Perez, Adolfo
Brandi, Maria Luisa
Al-Daghri, Nasser
Branco, Jaime C.
Bruyère, Olivier
Cavalli, Loredana
Cooper, Cyrus
Cortet, Bernard
Dawson-Hughes, Bess
Dimai, Hans Peter
Gonnelli, Stefano
Hadji, Peyman
Halbout, Philippe
Kaufman, Jean-Marc
Kurth, Andreas
Locquet, Medea
Maggi, Stefania
Matijevic, Radmila
Reginster, Jean-Yves
Rizzoli, René
Thierry, Thomas
author_facet Diez-Perez, Adolfo
Brandi, Maria Luisa
Al-Daghri, Nasser
Branco, Jaime C.
Bruyère, Olivier
Cavalli, Loredana
Cooper, Cyrus
Cortet, Bernard
Dawson-Hughes, Bess
Dimai, Hans Peter
Gonnelli, Stefano
Hadji, Peyman
Halbout, Philippe
Kaufman, Jean-Marc
Kurth, Andreas
Locquet, Medea
Maggi, Stefania
Matijevic, Radmila
Reginster, Jean-Yves
Rizzoli, René
Thierry, Thomas
author_sort Diez-Perez, Adolfo
collection PubMed
description PURPOSE: The purpose of this paper was to review the available approaches for bone strength assessment, osteoporosis diagnosis and fracture risk prediction, and to provide insights into radiofrequency echographic multi spectrometry (REMS), a non-ionizing axial skeleton technique. METHODS: A working group convened by the European Society for Clinical and Economic Aspects of Osteoporosis and Osteoarthritis met to review the current image-based methods for bone strength assessment and fracture risk estimation, and to discuss the clinical perspectives of REMS. RESULTS: Areal bone mineral density (BMD) measured by dual-energy X-ray absorptiometry (DXA) is the consolidated indicator for osteoporosis diagnosis and fracture risk assessment. A more reliable fracture risk estimation would actually require an improved assessment of bone strength, integrating also bone quality information. Several different approaches have been proposed, including additional DXA-based parameters, quantitative computed tomography, and quantitative ultrasound. Although each of them showed a somewhat improved clinical performance, none satisfied all the requirements for a widespread routine employment, which was typically hindered by unclear clinical usefulness, radiation doses, limited accessibility, or inapplicability to spine and hip, therefore leaving several clinical needs still unmet. REMS is a clinically available technology for osteoporosis diagnosis and fracture risk assessment through the estimation of BMD on the axial skeleton reference sites. Its automatic processing of unfiltered ultrasound signals provides accurate BMD values in view of fracture risk assessment. CONCLUSIONS: New approaches for improved bone strength and fracture risk estimations are needed for a better management of osteoporotic patients. In this context, REMS represents a valuable approach for osteoporosis diagnosis and fracture risk prediction.
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spelling pubmed-67634162019-10-07 Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO) Diez-Perez, Adolfo Brandi, Maria Luisa Al-Daghri, Nasser Branco, Jaime C. Bruyère, Olivier Cavalli, Loredana Cooper, Cyrus Cortet, Bernard Dawson-Hughes, Bess Dimai, Hans Peter Gonnelli, Stefano Hadji, Peyman Halbout, Philippe Kaufman, Jean-Marc Kurth, Andreas Locquet, Medea Maggi, Stefania Matijevic, Radmila Reginster, Jean-Yves Rizzoli, René Thierry, Thomas Aging Clin Exp Res Review PURPOSE: The purpose of this paper was to review the available approaches for bone strength assessment, osteoporosis diagnosis and fracture risk prediction, and to provide insights into radiofrequency echographic multi spectrometry (REMS), a non-ionizing axial skeleton technique. METHODS: A working group convened by the European Society for Clinical and Economic Aspects of Osteoporosis and Osteoarthritis met to review the current image-based methods for bone strength assessment and fracture risk estimation, and to discuss the clinical perspectives of REMS. RESULTS: Areal bone mineral density (BMD) measured by dual-energy X-ray absorptiometry (DXA) is the consolidated indicator for osteoporosis diagnosis and fracture risk assessment. A more reliable fracture risk estimation would actually require an improved assessment of bone strength, integrating also bone quality information. Several different approaches have been proposed, including additional DXA-based parameters, quantitative computed tomography, and quantitative ultrasound. Although each of them showed a somewhat improved clinical performance, none satisfied all the requirements for a widespread routine employment, which was typically hindered by unclear clinical usefulness, radiation doses, limited accessibility, or inapplicability to spine and hip, therefore leaving several clinical needs still unmet. REMS is a clinically available technology for osteoporosis diagnosis and fracture risk assessment through the estimation of BMD on the axial skeleton reference sites. Its automatic processing of unfiltered ultrasound signals provides accurate BMD values in view of fracture risk assessment. CONCLUSIONS: New approaches for improved bone strength and fracture risk estimations are needed for a better management of osteoporotic patients. In this context, REMS represents a valuable approach for osteoporosis diagnosis and fracture risk prediction. Springer International Publishing 2019-08-17 2019 /pmc/articles/PMC6763416/ /pubmed/31422565 http://dx.doi.org/10.1007/s40520-019-01294-4 Text en © The Author(s) 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Review
Diez-Perez, Adolfo
Brandi, Maria Luisa
Al-Daghri, Nasser
Branco, Jaime C.
Bruyère, Olivier
Cavalli, Loredana
Cooper, Cyrus
Cortet, Bernard
Dawson-Hughes, Bess
Dimai, Hans Peter
Gonnelli, Stefano
Hadji, Peyman
Halbout, Philippe
Kaufman, Jean-Marc
Kurth, Andreas
Locquet, Medea
Maggi, Stefania
Matijevic, Radmila
Reginster, Jean-Yves
Rizzoli, René
Thierry, Thomas
Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO)
title Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO)
title_full Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO)
title_fullStr Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO)
title_full_unstemmed Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO)
title_short Radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the European Society for Clinical and Economic Aspects of Osteoporosis, Osteoarthritis and Musculoskeletal Diseases (ESCEO)
title_sort radiofrequency echographic multi-spectrometry for the in-vivo assessment of bone strength: state of the art—outcomes of an expert consensus meeting organized by the european society for clinical and economic aspects of osteoporosis, osteoarthritis and musculoskeletal diseases (esceo)
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6763416/
https://www.ncbi.nlm.nih.gov/pubmed/31422565
http://dx.doi.org/10.1007/s40520-019-01294-4
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