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Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo

OBJECTIVE: We investigated the feasibility of delayed computed tomography (CT) arthrography for evaluation of human knee cartilage in vivo. Especially, the diffusion of contrast agent out of the joint space and the optimal time points for imaging were determined. DESIGN: Two patients were imaged usi...

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Autores principales: Kokkonen, Harri T., Aula, Antti S., Kröger, Heikki, Suomalainen, Juha-Sampo, Lammentausta, Eveliina, Mervaala, Esa, Jurvelin, Jukka S., Töyräs, Juha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4297151/
https://www.ncbi.nlm.nih.gov/pubmed/26069643
http://dx.doi.org/10.1177/1947603512447300
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author Kokkonen, Harri T.
Aula, Antti S.
Kröger, Heikki
Suomalainen, Juha-Sampo
Lammentausta, Eveliina
Mervaala, Esa
Jurvelin, Jukka S.
Töyräs, Juha
author_facet Kokkonen, Harri T.
Aula, Antti S.
Kröger, Heikki
Suomalainen, Juha-Sampo
Lammentausta, Eveliina
Mervaala, Esa
Jurvelin, Jukka S.
Töyräs, Juha
author_sort Kokkonen, Harri T.
collection PubMed
description OBJECTIVE: We investigated the feasibility of delayed computed tomography (CT) arthrography for evaluation of human knee cartilage in vivo. Especially, the diffusion of contrast agent out of the joint space and the optimal time points for imaging were determined. DESIGN: Two patients were imaged using delayed CT arthrography and delayed gadolinium-enhanced magnetic resonance imaging of cartilage (dGEMRIC) techniques. RESULTS: Two hours after injection, the concentration of contrast agent in the joint space was still high enough (20% to 24.5% of the initial concentration at 0 minutes) to allow delayed CT arthrography. The half-life of the contrast agent in the joint space varied from 30 to 60 minutes. The contrast agent concentration in patellar and femoral cartilage reached the maximum after 30 and 60 minutes, respectively. According to dGEMRIC, there were no differences between patients. However, in delayed CT arthrography, the penetration of the contrast agent was higher in the osteoarthritic knee cartilage. CONCLUSIONS: Contrast agent remained in the joint space long enough to enable delayed CT arthrography of cartilage. After 30 minutes, the normalized contrast agent concentration was higher in the cartilage of the osteoarthritic knee in comparison with the healthy knee. To conclude, delayed CT arthrography exhibited potential for use in the clinical evaluation of cartilage integrity.
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spelling pubmed-42971512015-06-11 Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo Kokkonen, Harri T. Aula, Antti S. Kröger, Heikki Suomalainen, Juha-Sampo Lammentausta, Eveliina Mervaala, Esa Jurvelin, Jukka S. Töyräs, Juha Cartilage Article OBJECTIVE: We investigated the feasibility of delayed computed tomography (CT) arthrography for evaluation of human knee cartilage in vivo. Especially, the diffusion of contrast agent out of the joint space and the optimal time points for imaging were determined. DESIGN: Two patients were imaged using delayed CT arthrography and delayed gadolinium-enhanced magnetic resonance imaging of cartilage (dGEMRIC) techniques. RESULTS: Two hours after injection, the concentration of contrast agent in the joint space was still high enough (20% to 24.5% of the initial concentration at 0 minutes) to allow delayed CT arthrography. The half-life of the contrast agent in the joint space varied from 30 to 60 minutes. The contrast agent concentration in patellar and femoral cartilage reached the maximum after 30 and 60 minutes, respectively. According to dGEMRIC, there were no differences between patients. However, in delayed CT arthrography, the penetration of the contrast agent was higher in the osteoarthritic knee cartilage. CONCLUSIONS: Contrast agent remained in the joint space long enough to enable delayed CT arthrography of cartilage. After 30 minutes, the normalized contrast agent concentration was higher in the cartilage of the osteoarthritic knee in comparison with the healthy knee. To conclude, delayed CT arthrography exhibited potential for use in the clinical evaluation of cartilage integrity. SAGE Publications 2012-10 /pmc/articles/PMC4297151/ /pubmed/26069643 http://dx.doi.org/10.1177/1947603512447300 Text en © The Author(s) 2012
spellingShingle Article
Kokkonen, Harri T.
Aula, Antti S.
Kröger, Heikki
Suomalainen, Juha-Sampo
Lammentausta, Eveliina
Mervaala, Esa
Jurvelin, Jukka S.
Töyräs, Juha
Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo
title Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo
title_full Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo
title_fullStr Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo
title_full_unstemmed Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo
title_short Delayed Computed Tomography Arthrography of Human Knee Cartilage In Vivo
title_sort delayed computed tomography arthrography of human knee cartilage in vivo
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4297151/
https://www.ncbi.nlm.nih.gov/pubmed/26069643
http://dx.doi.org/10.1177/1947603512447300
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