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Titlebook: Vertebrate Red Blood Cells; Adaptations of Funct Mikko Nikinmaa Book 1990 Springer-Verlag Berlin Heidelberg 1990 H?moglobin.Mammalia.blood.

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書目名稱Vertebrate Red Blood Cells
副標(biāo)題Adaptations of Funct
編輯Mikko Nikinmaa
視頻videohttp://file.papertrans.cn/983/982313/982313.mp4
叢書名稱Zoophysiology
圖書封面Titlebook: Vertebrate Red Blood Cells; Adaptations of Funct Mikko Nikinmaa Book 1990 Springer-Verlag Berlin Heidelberg 1990 H?moglobin.Mammalia.blood.
描述This book reviews the respiratory function of vertebrate red cells. I have defined the phrase "respiratory function" broadly to include, in addition to the actual oxygen and carbon dioxide transport, erythropoiesis, haemoglobin synthesis, red cell structure, the deformability of red cells in circulation, ion and substrate transport across the cell membrane, cellular metabolism, and control of cellular volume and pH. All of these aspects of the red cell function may affect gas transport between the respiratory epithelia and the tissues. Throughout the book, I have tried to relate our current knowledge about the nucleated red cell function to the wealth of information about the function of mammalian red cells. However, whenever possible, I have placed the emphasis on the nucleated red cell function for two reasons. First, the erythro- cytes of 90% of vertebrate species are nucleated, and, second, nucleated red cell function has not been reviewed earlier in a single volume. This being the case, I have tried to make the reference list as complete as I could with regard to nucleated red cells. I hope that the approach adopted is useful for both com- parative and human physiologists. Man
出版日期Book 1990
關(guān)鍵詞H?moglobin; Mammalia; blood; blood cell; blood cells; cell; cell membrane; cells; erythrocyte; haemoglobin; io
版次1
doihttps://doi.org/10.1007/978-3-642-83909-2
isbn_softcover978-3-642-83911-5
isbn_ebook978-3-642-83909-2Series ISSN 0720-1842
issn_series 0720-1842
copyrightSpringer-Verlag Berlin Heidelberg 1990
The information of publication is updating

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Red Cells in Circulation: Factors Affecting Red Cell Shape and Deformability,stance to blood flow in circulation. The apparent viscosity of blood in a given vessel is determined by plasma viscosity, the number of cells in unit volume of blood, and the aggregation and deformability of the cells, especially the red cells, since they are by far the most numerous cell type in bl
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Energy Metabolism and Regulation of Organic Phosphate Concentrations,4), are reviewed by Rapoport (1986). The ion pumps which maintain the internal ion concentrations consume a little over one-quarter of the total energy consumption. The sodium pump accounts for 25% of the total energy consumption of the human erythrocyte, and the calcium pump ca. 1%. Phosphorylation
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Major Ion Transporting Pathways, ion transport across the membrane. Ion transport across the red cell membrane is also responsible for the generation of membrane potential, maintenance and regulation of cell volume, and control of intracellular pH. In this chapter the properties of the major pathways for ion transport are examined
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Control of Volume and pH,heory. The red cell was considered to be impermeable to cations and large intracellular anions such as haemoglobin, but permeable to small anions, water and carbon dioxide. In addition, the hydration/dehydration reactions of carbon dioxide were known to be catalysed by carbonic anhydrase within the
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Carbon Dioxide Transport,1985; Perry 1986; Klocke 1987, 1988; Bidani and Crandall 1988). Carbon dioxide excretion is a passive phenomenon in which metabolically produced CO. is transferred down an electrochemical gradient from the site of production to the environment. Initially, carbon dioxide diffuses from metabolizing ti
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