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焦磷酸钙晶体大小及特征

Calcium pyrophosphate crystal size and characteristics.

作者信息

Zell Monica, Aung Thanda, Kaldas Marian, Rosenthal Ann K, Bai Bijie, Liu Tairan, Ozcan Aydogan, FitzGerald John D

机构信息

Department of Medicine, David Geffen School of Medicine, UCLA Medical Center, USA.

Division of Rheumatology, Department of Medicine, David Geffen School of Medicine, UCLA Medical Center, USA.

出版信息

Osteoarthr Cartil Open. 2021 Mar;3(1). doi: 10.1016/j.ocarto.2020.100133. Epub 2021 Jan 6.

Abstract

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 crystals not seen by raters under CPLM. Single-shot computational polarized light microscopy (SCPLM) provided further confirmation of the 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 [range, 1.0-22.9 μm]), and 57 (33%) were rhomboids (median area 4.8 μm [range, 0.9-16.7 μm]). 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.

摘要

目的

描述焦磷酸钙(CPP)晶体在补偿偏振光显微镜(CPLM)下的大小和形态特征。其次,描述仅通过CPLM图像数字增强才能看到的CPP晶体,并通过先进成像技术进行确认。

方法

从16份关节穿刺液中收集临床实验室鉴定为CPP阳性的滑液样本。四名评估者使用标准化方案描述晶体形状、双折射强度和颜色。晶体专家确认CPLM可视化的晶体鉴定结果。对于晶体测量,使用高通线性滤光片提高数字图像的分辨率和线条辨别力。该过程识别出评估者在CPLM下未看到的其他晶体。单次计算偏振光显微镜(SCPLM)进一步证实了这些晶体的存在。

结果

在CPLM鉴定出的932个疑似晶体中,569个符合我们的纳入标准,其中293个(51%)被确认为CPP晶体。在175个独特的已确认晶体中,118个(67%)为棒状(中位面积3.6μm[范围,1.0 - 22.9μm]),57个(33%)为菱形(中位面积4.8μm[范围,0.9 - 16.7μm])。仅在数字图像增强后才可视化的晶体比CPLM鉴定的晶体更小且双折射性更弱。

结论

更小且双折射性弱的CPP晶体更难识别。可能存在一群更小、双折射性更弱的CPP晶体,常规情况下CPLM无法检测到。描述难以看清的晶体特征可能有助于未来新型晶体识别方法的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c46/9718235/6935af4a48b7/gr1.jpg

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