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Titlebook: Cerebral Ischemia and Hemorheology; Alexander Hartmann,Wolfgang Kuschinsky Conference proceedings 1987Latest edition Springer-Verlag Berli

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https://doi.org/10.1007/978-3-662-34512-2s have been recognized for many years [10, 15], although their etiology is still unclear. Many factors, including hematocrit [16, 17], blood viscosity [15], and disorders of blood cells [1, 8, 9, 13], seem to be involved. However, the relationship between the hemorheological disorder and the CVA its
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https://doi.org/10.1007/978-3-662-34512-2nd Köhler found an impaired red cell filterability in patients with chronic occlusive peripheral diseases [8, 4]. Reviewing the literature to date, there are a lot of papers describing impaired flow properties of blood in various ischemic diseases [7]. So it is not surprising that the term hypervisc
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https://doi.org/10.1007/978-3-662-34512-2last decade, a series of studies have focused specifically on the action of shear stress due to fluid motion on human blood platelets. The shear field may modify the platelet directly, in addition to the role of increasing platelet motion, collision, and contact with solid surfaces. Also, it is clea
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https://doi.org/10.1007/978-3-662-34512-2ing the flow behavior of whole blood should be considered to improve our understanding as to the pathophysiology of microcirculation in various diseases. For example, the shape of platelets has been proved to be changed from discoid to spheroid in the presence of platelet aggregation inducers, such
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Oxydations-Reductions-Potentialeped its own cohort of experts with their own methodologies. On the one side, we have the clinical scientists whose primary concern is the diagnosis, etiology, and treatment of patients with cerebral ischemia. On the other, there are the engineers, biophysical scientists, and a small group of physiol
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Organische Synthese und Biologie interendothelial slits associated with the basement membrane fenestrations of the spleen. A significant aspect of red cell deformability is the tendency of the red cell membrane to rotate around its cytoplasmic contents when the cell is subjected to shearing action by the surrounding plasma [14]. T
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