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Wide-field imaging of birefringent synovial fluid crystals using lens-free polarized microscopy for gout diagnosis

机译:使用无透镜偏光显微镜对双折射滑膜液晶进行大视野成像以诊断痛风

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摘要

Gout is a form of crystal arthropathy where monosodium urate (MSU) crystals deposit and elicit inflammation in a joint. Diagnosis of gout relies on identification of MSU crystals under a compensated polarized light microscope (CPLM) in synovial fluid aspirated from the patient’s joint. The detection of MSU crystals by optical microscopy is enhanced by their birefringent properties. However, CPLM partially suffers from the high-cost and bulkiness of conventional lens-based microscopy, and its relatively small field-of-view (FOV) limits the efficiency and accuracy of gout diagnosis. Here we present a lens-free polarized microscope which adopts a novel differential and angle-mismatched polarizing optical design achieving wide-field and high-resolution holographic imaging of birefringent objects with a color contrast similar to that of a standard CPLM. The performance of this computational polarization microscope is validated by imaging MSU crystals made from a gout patient’s tophus and steroid crystals used as negative control. This lens-free polarized microscope, with its wide FOV (>20 mm2), cost-effectiveness and field-portability, can significantly improve the efficiency and accuracy of gout diagnosis, reduce costs, and can be deployed even at the point-of-care and in resource-limited clinical settings.
机译:痛风是一种晶体关节炎的形式,其中尿酸钠(MSU)晶体沉积并引起关节发炎。痛风的诊断取决于在补偿偏振光显微镜(CPLM)下从患者关节吸出的滑液中MSU晶体的鉴定。通过光学显微镜对MSU晶体的检测由于其双折射特性而得到增强。然而,CPLM部分地遭受了传统的基于透镜的显微镜的高成本和体积的困扰,并且其相对较小的视野(FOV)限制了痛风诊断的效率和准确性。在这里,我们介绍了一种无透镜的偏光显微镜,它采用新颖的微分和角度不匹配的偏光光学设计,可实现双折射对象的宽视野和高分辨率全息成像,其色差与标准CPLM相似。这种计算偏振显微镜的性能可以通过对痛风患者tophus制成的MSU晶体和用作阴性对照的类固醇晶体进行成像验证。这种无透镜的偏光显微镜具有宽视野(> 20OVmm 2 ),成本效益和现场便携性,可以显着提高痛风诊断的效率和准确性,降低成本,并且可以甚至可以在现场和资源有限的临床环境中进行部署。

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