Laboratoire de Physique de la Matière Condensée et Technologie, UFR SSMT, Université Félix Houphouët-Boigny, 22 BP 582 Abidjan 22, Côte d'Ivoire.
Laboratoire d'Instrumentation d'Image et Spectroscopie, Institut National Polytechnique Félix Houphouët-Boigny (INPH-B), BP 1093 Yamoussoukro, Côte d'Ivoire.
Sensors (Basel). 2019 Jul 10;19(14):3045. doi: 10.3390/s19143045.
The accuracy, reliability, speed and cost of the methods used for malaria diagnosis are key to the diseases' treatment and eventual eradication. However, improvement in any one of these requirements can lead to deterioration of the rest due to their interdependence. We propose an optical method that provides fast detection of malaria-infected red blood cells (RBCs) at a lower cost. The method is based on the combination of deconvolution, topography and three-dimensional (3D) refractive index reconstruction of the malaria-infected RBCs by use of the transport of intensity equation. Using our method, healthy RBCs were identified by their biconcave shape, quasi-uniform spatial distribution of their refractive indices and quasi-uniform concentration of hemoglobin. The values of these optical and biochemical parameters were found to be in agreement with the values reported in the literature. Results for the malaria-infected RBCs were significantly different from those of the healthy RBCs. The topography of the cells and their optical and biochemical parameters enabled identification of their stages of infection. This work introduces a significant method of analyzing malaria-infected RBCs at a lower cost and without the use of fluorescent labels for the parasites.
用于疟疾诊断的方法的准确性、可靠性、速度和成本是疾病治疗和最终根除的关键。然而,由于它们的相互依存关系,任何一个要求的提高都可能导致其他要求的恶化。我们提出了一种光学方法,该方法可以以较低的成本快速检测感染疟原虫的红细胞(RBC)。该方法基于通过使用强度传输方程对疟原虫感染的 RBC 进行反卷积、形貌和三维(3D)折射率重建的组合。使用我们的方法,健康的 RBC 通过双凹形形状、折射率的准均匀空间分布和血红蛋白的准均匀浓度来识别。这些光学和生化参数的值与文献中报道的值一致。疟原虫感染 RBC 的结果与健康 RBC 的结果有显著差异。细胞的形貌及其光学和生化参数能够识别它们的感染阶段。这项工作介绍了一种以较低成本分析疟原虫感染 RBC 的重要方法,而无需使用荧光标记物来标记寄生虫。