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Direct Quantification of Single Red Blood Cell Hemoglobin Concentration with Multiphoton Microscopy

机译:用多相显微镜直接定量单红细胞血红蛋白浓度

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Blood disorders, diseases, and infections often affect the shape, number, and content of red blood cells (RBCs) dramatically. To combat these pathologies, many therapies target RBCs and their contents directly. Mean corpuscular hemoglobin concentration (MCHC) is an important pathological metric in both identification and treatment. However, current methods for RBC analysis and MCHC quantification rely on bulk measurements. Single RBC measurements could provide necessary insight into the heterogeneity of RBC health and improve therapeutic efficacy. In this study, we present a novel multimodal multiphoton approach for quantifying hemoglobin concentration at single RBC resolution. We achieve this by collecting two images simultaneously that allows us to excite water with stimulated Raman scattering and hemoglobin with transient absorption. This multimodal imaging is enabled by a newly designed orthogonal modulation theme for dual-channel lock-in detection. By leveraging water as an internal standard, we quantify MCHC of healthy RBCs and RBCs infected with Plasmodium yoelii, a commonly studied rodent parasite model.
机译:血液疾病,疾病和感染通常会显着影响红细胞(RBC)的形状,数量和含量。为了解决这些病理,许多疗法直接针对RBC和它们的内容。平均猪血红蛋白浓度(MCHC)是鉴定和治疗的重要病理学。然而,RBC分析的当前方法和MCHC定量依赖于批量测量。单个RBC测量可以为RBC健康的异质性提供必要的洞察力,提高治疗效果。在这项研究中,我们提出了一种用于量化单次RBC分辨率的血红蛋白浓度的新型多峰多相方法。我们通过同时收集两个图像来实现这一点,使我们能够通过刺激的拉曼散射和具有瞬态吸收的血红蛋白激发水。这种多模式成像通过新设计的正交调制主题来实现,用于双通道锁定检测。通过利用水作为内标,我们量化了用疟原虫寄生虫疟原虫疟原虫感染的健康RBCS和RBC的MCHC。

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