Produktbild: Voltage-gated Sodium Channels: Structure, Function and Channelopathies
Band 246

Voltage-gated Sodium Channels: Structure, Function and Channelopathies

Fr. 192.00

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

14.06.2018

Abbildungen

X, 80 illus., 55 illus. in color., farbige Illustrationen, schwarz-weiss Illustrationen

Herausgeber

Mohamed Chahine

Verlag

Springer

Seitenzahl

450

Maße (L/B/H)

24.1/16/3.1 cm

Gewicht

856 g

Auflage

1st ed. 2018

Sprache

Englisch

ISBN

978-3-319-90283-8

Beschreibung

Portrait

Dr. Mohamed Chahine is a Professor at the Department of Medicine of Université Laval and Head of the Laboratory of Cellular Electrophysiology at the CERVO Brain Research Center of the Institut universitaire en santé mentale de Québec. He has published over 160 articles in refereed journals as well as several book chapters in the field of voltage-gated Na+ channels and related diseases. Dr. Chahine has served or is currently serving on various committees of the Canadian Institutes of Health Research and the Heart and Stroke Foundation of Canada. He is associate editor of Frontiers Journal and editor of Scientific Reports. He is a member of the editorial boards of the Canadian Journal of Cardiology (Canada), the World Journal of Cardiology (China), the Journal of Cardiovascular Research (USA), Advances in Bioscience and Biotechnology (USA), and the Journal of Cardiology and Therapy (Hong Kong). He has also organized several national and International symposia and workshops on the role ofion channels in disease. Dr. Chahine has been invited to present his research at several national and international conferences and academic institutions.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

14.06.2018

Abbildungen

X, 80 illus., 55 illus. in color., farbige Illustrationen, schwarz-weiss Illustrationen

Herausgeber

Mohamed Chahine

Verlag

Springer

Seitenzahl

450

Maße (L/B/H)

24.1/16/3.1 cm

Gewicht

856 g

Auflage

1st ed. 2018

Sprache

Englisch

ISBN

978-3-319-90283-8

Herstelleradresse

Springer-Verlag GmbH
Tiergartenstr. 17
69121 Heidelberg
DE

Email: ProductSafety@springernature.com

Kundinnen und Kunden meinen

0 Bewertungen

Informationen zu Bewertungen

Zur Abgabe einer Bewertung ist eine Anmeldung im Konto notwendig. Die Authentizität der Bewertungen wird von uns nicht überprüft. Wir behalten uns vor, Bewertungstexte, die unseren Richtlinien widersprechen, entsprechend zu kürzen oder zu löschen.

Die Bewertungen sind nach Format, Anzahl Sterne und Datum sortiert.

Verfassen Sie die erste Bewertung zu diesem Artikel

Helfen Sie anderen Kund*innen durch Ihre Meinung

Kundinnen und Kunden meinen

0 Bewertungen filtern

  • Produktbild: Voltage-gated Sodium Channels: Structure, Function and Channelopathies
  • Preface.- Part I.- Evolution of voltage-gated sodium channels.- 1. Evolutionary History of Voltage-Gated Sodium Channels.- 2. Mining Protein Evolution for Insights into Mechanisms of Voltage-Dependent Sodium Channel Auxiliary Subunits. - Part II. The structural basis of sodium channel function.- 3. Structural and Functional Analysis of Sodium Channels Viewed from an Evolutionary Perspective.- 4. The Cardiac Sodium Channel and Its Protein Partners.- 5. : Posttranslational Modification of Sodium Channels.- 6. Sodium Channel Trafficking.- 7. pH Modulation of Voltage-Gated Sodium Channels.- 8. Regulation of Cardiac Voltage-Gated Sodium Channel by Kinases: Roles of Protein Kinases A and C.- Part III. Drugs and toxins interactions with sodium channels.- 9. Toxins That Affect Voltage-Gated Sodium Channels.- 10. Mechanisms of Drug Binding to Voltage-Gated Sodium Channels.- 11. Effects of Benzothiazolamines on Voltage-Gated Sodium Channels.- 12. Structural Models of Ligand-Bound Sodium Channels.- 13. Selective Ligands and Drug Discovery Targeting the Voltage-Gated Sodium Channel Nav1.7.- Part IV. Pathophysiology of sodium channels.- 14. Sodium Channelopathies of Skeletal Muscle.- 15. Cardiac Arrhythmias Related to Sodium Channel Dysfunction.- 16. Translational Model Systems for Complex Sodium Channel Pathophysiology in Pain.- 17. Gating Pore Currents in Sodium Channels.- 18. Calculating the Consequences of Left-Shifted Nav Channel Activity in Sick Excitable Cells.- 19. Voltage-Gated Sodium Channel b Subunits and Their Related Diseases.