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Titlebook: Hemoglobin Function in Vertebrates; Molecular Adaptation G. Prisco,B. Giardina,R. E. Weber Conference proceedings 2000 Springer-Verlag Ital

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, despite the leisurely pace and emphasis on readability. The author‘s heartfelt enthusiasm enables readers to see what is magical about the subject. Topics included are: The Partition Function; The Erdös-Fuchs Theorem; Sequences without Arithmetic Professions; The Waring Problem; A "Natural" Proof
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Molecular Aspects of Temperature Adaptation,often a stringent driving factor. Consequently, their evolution has included special adaptations, some of which have caused special modifications that have significant implications at the biochemical, physiological and molecular levels. Along these lines, scrutiny of macromolecules, e.g. proteins, p
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Recent Evolution of the Hemoglobinless Condition of the Antarctic Icefishes,tarctic icefishes (family Channichthyidae, suborder Nototheniodei). Lacking an oxygen transporter, the icefishes nonetheless maintain normal metabolic function by delivering oxygen to their tissues in physical solution in their “colorless” or “white” blood. In the chronically cold (−1.86 to+1 C) and
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Oxygen Transport in Diving Vertebrates,cording to the physiological needs of a given species. Considering the variety of species that depend on hemoglobin for oxygen transport, these molecules must execute their primary function under extreme environmental conditions. In general, these mechanisms appear to be based on a thermodynamic lin
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Transport of Oxygen during Hibernation: the Hemoglobin of ,,ve the problem of oxygen supply in accordance with the physiological requirements of the specific tissues of a given organism. This is clearly demonstrated by various mammalian hemoglobins which have developed a number of complex regulatory mechanisms involving binding with allosteric effectors (suc
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