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Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation

Osteoporosis causes bones to become weak, porous and fracture more easily. While a vertebral fracture is the archetypal fracture of osteoporosis, it is also the most difficult to diagnose clinically. Patients often suffer further spine or other fractures, deformity, height loss and pain before diagn...

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Autores principales: Aggarwal, Veena, Maslen, Christina, Abel, Richard L., Bhattacharya, Pinaki, Bromiley, Paul A, Clark, Emma M., Compston, Juliet E., Crabtree, Nicola, Gregory, Jennifer S., Kariki, Eleni P., Harvey, Nicholas C., Ward, Kate A., Poole, Kenneth E. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8274099/
https://www.ncbi.nlm.nih.gov/pubmed/34290831
http://dx.doi.org/10.1177/1759720X211024029
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author Aggarwal, Veena
Maslen, Christina
Abel, Richard L.
Bhattacharya, Pinaki
Bromiley, Paul A
Clark, Emma M.
Compston, Juliet E.
Crabtree, Nicola
Gregory, Jennifer S.
Kariki, Eleni P.
Harvey, Nicholas C.
Ward, Kate A.
Poole, Kenneth E. S.
author_facet Aggarwal, Veena
Maslen, Christina
Abel, Richard L.
Bhattacharya, Pinaki
Bromiley, Paul A
Clark, Emma M.
Compston, Juliet E.
Crabtree, Nicola
Gregory, Jennifer S.
Kariki, Eleni P.
Harvey, Nicholas C.
Ward, Kate A.
Poole, Kenneth E. S.
author_sort Aggarwal, Veena
collection PubMed
description Osteoporosis causes bones to become weak, porous and fracture more easily. While a vertebral fracture is the archetypal fracture of osteoporosis, it is also the most difficult to diagnose clinically. Patients often suffer further spine or other fractures, deformity, height loss and pain before diagnosis. There were an estimated 520,000 fragility fractures in the United Kingdom (UK) in 2017 (costing £4.5 billion), a figure set to increase 30% by 2030. One way to improve both vertebral fracture identification and the diagnosis of osteoporosis is to assess a patient’s spine or hips during routine computed tomography (CT) scans. Patients attend routine CT for diagnosis and monitoring of various medical conditions, but the skeleton can be overlooked as radiologists concentrate on the primary reason for scanning. More than half a million CT scans done each year in the National Health Service (NHS) could potentially be screened for osteoporosis (increasing 5% annually). If CT-based screening became embedded in practice, then the technique could have a positive clinical impact in the identification of fragility fracture and/or low bone density. Several companies have developed software methods to diagnose osteoporosis/fragile bone strength and/or identify vertebral fractures in CT datasets, using various methods that include image processing, computational modelling, artificial intelligence and biomechanical engineering concepts. Technology to evaluate Hounsfield units is used to calculate bone density, but not necessarily bone strength. In this rapid evidence review, we summarise the current literature underpinning approved technologies for opportunistic screening of routine CT images to identify fractures, bone density or strength information. We highlight how other new software technologies have become embedded in NHS clinical practice (having overcome barriers to implementation) and highlight how the novel osteoporosis technologies could follow suit. We define the key unanswered questions where further research is needed to enable the adoption of these technologies for maximal patient benefit.
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spelling pubmed-82740992021-07-20 Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation Aggarwal, Veena Maslen, Christina Abel, Richard L. Bhattacharya, Pinaki Bromiley, Paul A Clark, Emma M. Compston, Juliet E. Crabtree, Nicola Gregory, Jennifer S. Kariki, Eleni P. Harvey, Nicholas C. Ward, Kate A. Poole, Kenneth E. S. Ther Adv Musculoskelet Dis Review Osteoporosis causes bones to become weak, porous and fracture more easily. While a vertebral fracture is the archetypal fracture of osteoporosis, it is also the most difficult to diagnose clinically. Patients often suffer further spine or other fractures, deformity, height loss and pain before diagnosis. There were an estimated 520,000 fragility fractures in the United Kingdom (UK) in 2017 (costing £4.5 billion), a figure set to increase 30% by 2030. One way to improve both vertebral fracture identification and the diagnosis of osteoporosis is to assess a patient’s spine or hips during routine computed tomography (CT) scans. Patients attend routine CT for diagnosis and monitoring of various medical conditions, but the skeleton can be overlooked as radiologists concentrate on the primary reason for scanning. More than half a million CT scans done each year in the National Health Service (NHS) could potentially be screened for osteoporosis (increasing 5% annually). If CT-based screening became embedded in practice, then the technique could have a positive clinical impact in the identification of fragility fracture and/or low bone density. Several companies have developed software methods to diagnose osteoporosis/fragile bone strength and/or identify vertebral fractures in CT datasets, using various methods that include image processing, computational modelling, artificial intelligence and biomechanical engineering concepts. Technology to evaluate Hounsfield units is used to calculate bone density, but not necessarily bone strength. In this rapid evidence review, we summarise the current literature underpinning approved technologies for opportunistic screening of routine CT images to identify fractures, bone density or strength information. We highlight how other new software technologies have become embedded in NHS clinical practice (having overcome barriers to implementation) and highlight how the novel osteoporosis technologies could follow suit. We define the key unanswered questions where further research is needed to enable the adoption of these technologies for maximal patient benefit. SAGE Publications 2021-07-10 /pmc/articles/PMC8274099/ /pubmed/34290831 http://dx.doi.org/10.1177/1759720X211024029 Text en © The Author(s), 2021 https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution 4.0 License (https://creativecommons.org/licenses/by/4.0/) which permits any use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access page (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Review
Aggarwal, Veena
Maslen, Christina
Abel, Richard L.
Bhattacharya, Pinaki
Bromiley, Paul A
Clark, Emma M.
Compston, Juliet E.
Crabtree, Nicola
Gregory, Jennifer S.
Kariki, Eleni P.
Harvey, Nicholas C.
Ward, Kate A.
Poole, Kenneth E. S.
Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation
title Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation
title_full Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation
title_fullStr Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation
title_full_unstemmed Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation
title_short Opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine CT scans; a review of approved technology systems and pathways to implementation
title_sort opportunistic diagnosis of osteoporosis, fragile bone strength and vertebral fractures from routine ct scans; a review of approved technology systems and pathways to implementation
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8274099/
https://www.ncbi.nlm.nih.gov/pubmed/34290831
http://dx.doi.org/10.1177/1759720X211024029
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