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- W2023657901 abstract "The flow behavior of human red cells and plasma through a semi-infinite parallel plate channel (similar to blood flow paths in multi-layer artificial kidneys) was analysed from residence time curves of radioactive labelled blood exiting from the channel. For a plate separation gap of 239 μm and wall shear rates 117–226 sec −1 , red cells possessed a lower residence time hence higher mean velocity than plasma within the duct. This velocity difference was interpreted in terms of plasma layer formation adjacent to the duct walls. Using an idealised plasma layer thickness of 1·07, 2·32 and 2·5 μm for wall shear rates of 117, 197 and 226 sec −1 respectively. Future application of the experimental method to analysis of artificial kidney fluid dynamic design from consideration of minimal red cell damage is discussed." @default.
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- W2023657901 date "1973-05-01" @default.
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- W2023657901 title "Thin film blood flow in rectangular channels with application to artificial kidney haemodynamics" @default.
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- W2023657901 doi "https://doi.org/10.1016/0021-9290(73)90046-8" @default.
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