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The feasibility of biophotonic technologies (laser tweezers, diffuse light scattering, laser diffractometry and digital capillaroscopy) for sensing microrheological effects of various molecular mechanisms affecting erythrocyte aggregation and deformability will be discussed. We will show that laser tweezers and diffuse light scattering allow for assessing the changes in erythrocyte aggregation in whole blood samples and cell suspensions both on the level of single cells and on the level of large ensembles of cells. Application of these methods in vitro enable one to study the mechanisms of erythrocyte aggregation because they are sensitive to changes in the medium surrounding the cells (i.e., blood plasma, serum or model solutions of blood plasma proteins) and to changes in the cellular properties of the erythrocytes. Using the laser diffractometry technique we can assess the distribution of the erythrocytes in sizes and deformabilities. Using digital capillaroscopy we can monitor in vivo the alterations of blood flow parameters on the microcirculatory level where the major exchange of gases between blood and tissues takes place. We have been applying all these techniques to monitor and analyze the alterations of blood microrheology and microcirculation in patients suffering from such socially important diseases as arterial hypertention, diabetes mellitus, etc.
№ | Имя | Описание | Имя файла | Размер | Добавлен |
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1. | Полный текст | Тезисы доклада | Priezzhev_Abstract_ACP_POEM23.docx | 13,2 КБ | 19 ноября 2023 [avpriezz] |