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Titlebook: Cell Mechanics and Cellular Engineering; Van C. Mow,Roger Tran-Son-Tay,Robert M. Hochmuth Book 1994 Springer-Verlag New York, Inc. 1994 DN

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Vadim V. Ivanov,Igor M. Filanovsky effects to the organs involved (Lichtman, 1984). Thus, it is of interest to have a more accurate picture of white cell deformability to more thoroughly understand their behavior and potential influence in the microvasculature.
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https://doi.org/10.1007/b105873ng minimal amounts of concanavalin A, the adhesion efficiency was found to be proportional to the first power of the lectin concentration (Capo et al., 1982), thus supporting the view that the rate limiting step was the formation of the first bond.
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https://doi.org/10.1007/b105872ecifically, the neutrophils. White blood cells have been found to be more resistant to flow and to have more complex functions and structures than red blood cells. In addition to the complexities of the internal structure, the white blood cells can activate under various conditions. During activatio
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Vadim V. Ivanov,Igor M. Filanovskyir influence on blood flow and oxygen delivery is disproportionate to their numbers. Leukocyte mechanical deformability has been shown to play an important role in cell retention in the capillaries during ischemia or prior to tissue injury (Worthen ., 1988; Erzurum ., 1991; Harris and Skalak, 1993).
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https://doi.org/10.1007/b105872ies with function-blocking reagents (Abbasi . 1991) and with planar membranes containing selectin molecules (Lawrence and Springer 1991) showed that this interesting mode of cell-substrate adhesion is mediated by cell surface adhesion molecules called selectins.
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Vadim V. Ivanov,Igor M. Filanovskyought to be simply a passive, non-thrombogenic barrier, the vascular endothelium is now recognized as being a dynamic participant in the biology of a blood vessel (Kaiser and Sparks 1987). Part of its dynamic character is due to the regulation of the biology of the endothelium by the mechanical envi
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