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Multi-shape erythrocyte deformability analysis by imaging technique
Sanjay Jayavanth/Dong Hwan Lee/Bock Choon Pak
The Journal of Mechanical Science and Technology, vol. 24, no. 4, pp.931-935, 2010
Abstract : In their extensive circulation through the cardiovascular circuit, erythrocytes are forced to transform and assume different shapes depending
on the varying flow conditions in different blood vessels. The present work aims to visualize various erythrocyte shape transformations
by an in vitro microcirculatory model, and to visualize multi-shape erythrocyte deformability. The model used an in-house
fabricated and inexpensive disposable micro flow channel to mimic certain in vivo conditions, and a fast frame rate video microscopic
system to visualize the shape changes in erythrocytes. Results have shown the multi-shape transformation of erythrocytes as resting discoidal
shape, asymmetrically deformed ¡®hat¡¯ and ¡®bullet-like¡¯ shapes, and axially deformed ¡®slipper- and spindle-like¡¯ shapes. Specific
erythrocytes demonstrated shape transition and transformation while passing through the observed window. The obtained erythrocyte
shaper were thoroughly analyzed based on the deformability index. Findings from the image processing techniques were significant
(P<0.001) for the different shapes compared with the resting shape. The simple glass in-house fabricated microfludic channel allowed for
multi-shape erythrocyte deformability characterization, many of which manifest in human circulation.
Keyword : Erythrocyte imaging; Microcirculatory model; Multi-shape deformability index |
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