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Cited 111 time in webofscience Cited 123 time in scopus
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Three-dimensional volumetric measurement of red blood cell motion using digital holographic microscopy SCIE SCOPUS

Title
Three-dimensional volumetric measurement of red blood cell motion using digital holographic microscopy
Authors
Choi, YSLee, SJ
Date Issued
2009-06-01
Publisher
OPTICAL SOC AMER
Abstract
Measurement of blood flow with high spatial and temporal resolutions in a three-dimensional (3D) volume is a challenge in biomedical research fields. In this study, digital holographic microscopy is used to measure the 3D motion of human red blood cells (RBCs) in a microscale volume. The cinematographic holography technique, which uses a high-speed camera, enabled the continuous tracking of individual RBCs in a microtube flow. Several autofocus functions that quantify the sharpness of reconstructed RBC images are evaluated to locate the accurate depthwise position of RBCs. In this study, the squared Laplacian function yields the smallest depth of focus and locates the depthwise positions of RBCs with a root mean square error of 2.3 mu m. By applying this method, we demonstrate the measurement of four-dimensional (space and time) trajectories as well as 3D velocity profiles of RBCs. The measurement uncertainties of the present method are also discussed. (C) 2009 Optical Society of America
Keywords
PARTICLE-TRACKING VELOCIMETRY; FLOW; RECONSTRUCTION; TOMOGRAPHY; HEMATOCRIT
URI
https://oasis.postech.ac.kr/handle/2014.oak/26429
DOI
10.1364/AO.48.002983
ISSN
0003-6935
Article Type
Article
Citation
APPLIED OPTICS, vol. 48, no. 16, page. 2983 - 2990, 2009-06-01
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