作者: Jonghwan Lee , Weicheng Wu , Frederic Lesage , David A Boas
关键词: Capillary action 、 Microscopy 、 Microvascular flow 、 Optics 、 Optical imaging 、 Materials science 、 Optical coherence tomography 、 Flux 、 Pathology 、 Linear density 、 Rats sprague dawley
摘要: As capillaries exhibit heterogeneous and fluctuating dynamics even during baseline, a technique measuring red blood cell (RBC) speed flux over many at the same time is needed. Here, we report that optical coherence tomography can capture individual RBC passage simultaneously located different depths. Further, demonstrate ability to quantify speed, flux, linear density. This will provide means monitor microvascular flow depths time.