Oxygen Transport to Tissue VIII

Oxygen Transport to Tissue VIII

Ian S. Longmuir

136,96 €
IVA incluido
Disponible
Editorial:
Springer Nature B.V.
Año de edición:
2012
Materia
Bioquímica
ISBN:
9781468451900
136,96 €
IVA incluido
Disponible

Selecciona una librería:

  • Librería Samer Atenea
  • Librería Aciertas (Toledo)
  • Kálamo Books
  • Librería Perelló (Valencia)
  • Librería Elías (Asturias)
  • Donde los libros
  • Librería Kolima (Madrid)
  • Librería Proteo (Málaga)

In this volume the policy of review by anonymous referees and minor correction by the editor has been continued, but perhaps should not be extended without an agreed policy statement by the Society. Our choice is minimal revision with rapid publication or proper review with some delay in publication. The editor wishes to express his gratitude to Ann Richardson, Joann Fish, Lance Johnson, and Philip Weinbrecht for their invaluable help in the preparation of this volume. Ian S. Longmuir v BRIEF HISTORY OF ISOTT The Society endured a long gestation period. During the 1960s its formation was discussed at a number of international meetings devoted to oxygen in biological systems. Prominent among a great number of such gatherings were those held at the Institute of Diseases of the Chest, London 1960; Bedford College, London 1963; Queen Elizabeth College, London 1963; and the Seventh Bad Oeynhausen Conference, 1967. At first, reservations were expressed about the desirability of forming a highly specialized society which might not achieve the 'critical mass' necessary for its continued existence. However, the 1971 meeting in the Max Planck Institut fur Arbeitsphysiologie, Dortmund, answered these doubts, and Dr. Melvin Knisely commenced planning a very successful inaugural meeting in South Carolina. At this meeting in 1973 in Charleston and Clemson, the Society was formed with the customary remit of the promotion of scientific exchanges.

Artículos relacionados

  • Implementation of Automated Urinary Sediment Analyzer UF1000
    Adriana Manuel
    Comparative work of Urinary Sediment between data obtained in automated platform, Roche UF 1000 flow cytometer versus the gold standard optical microscopy method. This work was carried out with raw data from known patients whose expected results allowed us to define the non-pathological sample parameters obtained in automated equipment. The experience was enriching, working wit...
    Disponible

    48,30 €

  • Bioprocess Technology
    I Arul Pandi / P T Kalaichelvan
    Dive into the dynamic world of Bioprocess Technology, where biology, engineering, materials science, and clinical procedures seamlessly converge to create a multidisciplinary marvel. In an era where innovation knows no bounds, Bioprocessing stands at the forefront, transcending boundaries to shape diverse facets of the biological landscape.This illuminating book is meticulously...
    Disponible

    45,13 €

  • Produção De Membrana Barreira Para Regeneração Óssea Guiada Com Zeína
    Cristiane Michele Bonadio De Oliveira
    O Presente Estudo Desenvolveu Uma Membrana Com Proteína De Origem Vegetal Conhecida Por Zeína, Com Possibilidades Biodegradáveis Para Regeneração Óssea Guiada (Rog), Sendo Suas Particularidades Discutidas Ao Longo Do Trabalho. Para Melhor Entendimento A Respeito Do Tema, Serão Discutidos Alguns Conceitos E Definições Acerca Da Proteína E Da Rog. 10 ...
    Disponible

    17,16 €

  • Hydrolysis of cashew bagasse to obtain bioethanol
    João Paulo Dantas de Carvalho
    Recently, the global demand for fuel ethanol has been expanding very rapidly, and almost all fuel ethanol is produced by fermenting sucrose in Brazil or corn glucose in the United States, but these raw materials will not be enough to satisfy international demand. Agro-industrial lignocellulosic residues, such as cashew bagasse, sugarcane bagasse, soybean hulls, etc., are abunda...
    Disponible

    54,32 €

  • Hydrolyse de la bagasse de cajou pour obtenir du bioéthanol
    João Paulo Dantas de Carvalho
    Récemment, la demande mondiale d’éthanol-carburant a augmenté très rapidement, et presque tout l’éthanol-carburant est produit par fermentation de saccharose au Brésil ou de glucose de maïs aux États-Unis, mais ces matières premières ne suffiront pas à satisfaire la demande internationale. Les résidus lignocellulosiques agro-industriels, tels que la bagasse de cajou, la bagasse...
    Disponible

    54,38 €

  • Hydrolyse von Cashew-Bagasse zur Gewinnung von Bioethanol
    João Paulo Dantas de Carvalho
    In letzter Zeit ist die weltweite Nachfrage nach Ethanol-Kraftstoff sehr schnell gestiegen, und fast der gesamte Ethanol-Kraftstoff wird durch die Fermentierung von Saccharose in Brasilien oder Maisglukose in den Vereinigten Staaten hergestellt, aber diese Rohstoffe reichen nicht aus, um die internationale Nachfrage zu decken. Agroindustrielle lignozellulosehaltige Rückstände w...
    Disponible

    54,38 €