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Calcium pyrophosphate crystal size and characteristics

OBJECTIVE: To describe the characteristics of calcium pyrophosphate (CPP) crystal size and morphology under compensated polarized light microscopy (CPLM). Secondarily, to describe CPP crystals seen only with digital enhancement of CPLM images, confirmed with advanced imaging techniques. METHODS: Cli...

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Autores principales: Zell, Monica, Aung, Thanda, Kaldas, Marian, Rosenthal, Ann K., Bai, Bijie, Liu, Tairan, Ozcan, Aydogan, FitzGerald, John D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8356773/
https://www.ncbi.nlm.nih.gov/pubmed/34386778
http://dx.doi.org/10.1016/j.ocarto.2020.100133
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author Zell, Monica
Aung, Thanda
Kaldas, Marian
Rosenthal, Ann K.
Bai, Bijie
Liu, Tairan
Ozcan, Aydogan
FitzGerald, John D.
author_facet Zell, Monica
Aung, Thanda
Kaldas, Marian
Rosenthal, Ann K.
Bai, Bijie
Liu, Tairan
Ozcan, Aydogan
FitzGerald, John D.
author_sort Zell, Monica
collection PubMed
description OBJECTIVE: To describe the characteristics of calcium pyrophosphate (CPP) crystal size and morphology under compensated polarized light microscopy (CPLM). Secondarily, to describe CPP crystals seen only with digital enhancement of CPLM images, confirmed with advanced imaging techniques. METHODS: Clinical lab-identified CPP-positive synovial fluid samples were collected from 16 joint aspirates. Four raters used a standardized protocol to describe crystal shape, birefringence strength and color. A crystal expert confirmed CPLM-visualized crystal identification. For crystal measurement, a high-pass linear light filter was used to enhance resolution and line discrimination of digital images. This process identified additional enhanced crystals not seen by raters under CPLM. Single-shot computational polarized light microscopy (SCPLM) provided further confirmation of the enhanced crystals’ presence. RESULTS: Of 932 suspected crystals identified by CPLM, 569 met our inclusion criteria, and 293 (51%) were confirmed as CPP crystals. Of 175 unique confirmed crystals, 118 (67%) were rods (median area 3.6 ​μm(2) [range, 1.0–22.9 ​μm(2)]), and 57 (33%) were rhomboids (median area 4.8 ​μm(2) [range, 0.9–16.7 ​μm(2)]). Crystals visualized only after digital image enhancement were smaller and less birefringent than CPLM-identified crystals. CONCLUSIONS: CPP crystals that are smaller and weakly birefringent are more difficult to identify. There is likely a population of smaller, less birefringent CPP crystals that routinely goes undetected by CPLM. Describing the characteristics of poorly visible crystals may be of use for future development of novel crystal identification methods.
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spelling pubmed-83567732021-08-11 Calcium pyrophosphate crystal size and characteristics Zell, Monica Aung, Thanda Kaldas, Marian Rosenthal, Ann K. Bai, Bijie Liu, Tairan Ozcan, Aydogan FitzGerald, John D. Osteoarthr Cartil Open ORIGINAL PAPER OBJECTIVE: To describe the characteristics of calcium pyrophosphate (CPP) crystal size and morphology under compensated polarized light microscopy (CPLM). Secondarily, to describe CPP crystals seen only with digital enhancement of CPLM images, confirmed with advanced imaging techniques. METHODS: Clinical lab-identified CPP-positive synovial fluid samples were collected from 16 joint aspirates. Four raters used a standardized protocol to describe crystal shape, birefringence strength and color. A crystal expert confirmed CPLM-visualized crystal identification. For crystal measurement, a high-pass linear light filter was used to enhance resolution and line discrimination of digital images. This process identified additional enhanced crystals not seen by raters under CPLM. Single-shot computational polarized light microscopy (SCPLM) provided further confirmation of the enhanced crystals’ presence. RESULTS: Of 932 suspected crystals identified by CPLM, 569 met our inclusion criteria, and 293 (51%) were confirmed as CPP crystals. Of 175 unique confirmed crystals, 118 (67%) were rods (median area 3.6 ​μm(2) [range, 1.0–22.9 ​μm(2)]), and 57 (33%) were rhomboids (median area 4.8 ​μm(2) [range, 0.9–16.7 ​μm(2)]). Crystals visualized only after digital image enhancement were smaller and less birefringent than CPLM-identified crystals. CONCLUSIONS: CPP crystals that are smaller and weakly birefringent are more difficult to identify. There is likely a population of smaller, less birefringent CPP crystals that routinely goes undetected by CPLM. Describing the characteristics of poorly visible crystals may be of use for future development of novel crystal identification methods. Elsevier 2021-01-06 /pmc/articles/PMC8356773/ /pubmed/34386778 http://dx.doi.org/10.1016/j.ocarto.2020.100133 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle ORIGINAL PAPER
Zell, Monica
Aung, Thanda
Kaldas, Marian
Rosenthal, Ann K.
Bai, Bijie
Liu, Tairan
Ozcan, Aydogan
FitzGerald, John D.
Calcium pyrophosphate crystal size and characteristics
title Calcium pyrophosphate crystal size and characteristics
title_full Calcium pyrophosphate crystal size and characteristics
title_fullStr Calcium pyrophosphate crystal size and characteristics
title_full_unstemmed Calcium pyrophosphate crystal size and characteristics
title_short Calcium pyrophosphate crystal size and characteristics
title_sort calcium pyrophosphate crystal size and characteristics
topic ORIGINAL PAPER
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8356773/
https://www.ncbi.nlm.nih.gov/pubmed/34386778
http://dx.doi.org/10.1016/j.ocarto.2020.100133
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