Exercise metabolism

Gespeichert in:
Bibliographische Detailangaben
Deutscher übersetzter Titel:Energiestoffwechsel
Herausgeber:Hargreaves, Mark
Veröffentlicht:Champaign: Human Kinetics (Verlag), 1995, VIII, 263 S., Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Monografie
Medienart: Gedruckte Ressource
Sprache:Englisch
ISBN:0873224531
Schlagworte:
Online Zugang:
Erfassungsnummer:PU199810305184
Quelle:BISp
id PU199810305184
bisp-collection db
format Literatur
last_indexed 2015-06-01T11:14:48Z
first_indexed 2001-07-24T13:43:49Z
publication_source BISp
subformat Monographie
recordtype bispbook
publishDate 1995
publishDate_facet 1995
language eng
title Exercise metabolism
spellingShingle Exercise metabolism
Aminosäure
Ammoniak
Ausdauertraining
Belastung, körperliche
Energiestoffwechsel
Kohlenhydratstoffwechsel
Leberstoffwechsel
Lipidstoffwechsel
Muskelermüdung
Muskelstoffwechsel
Sportmedizin
Stoffwechsel, anaerober
Substratutilisation
title_sort exercise metabolism
title_short Exercise metabolism
title_alt Energiestoffwechsel
title_alt_lang deu
media_type Gedruckte Ressource
city Champaign
abstract This book provides biochemists, sport nutritionists, and exercise physiologists with an up-to-date source on metabolic processes during exercise. `Exercise Metabolism' is a complete review of the literature, synthesizing the research to provide a unique perspective on the topic. And with over 975 references, it makes a valuable reference for professionals and a thorough text for graduate students in muscle metabolism. Written by a team of 12 internationally recognized researchers, `Exercise Metabolism' examines in depth the mobilization and utilization of substrates during physical activity. While the focus is primarily on skeletal muscle, this complete resource also discusses the important roles of liver and adipose tissue in exercise metabolism. The first five chapters summarize the metabolic responses to exercise. Metabolism during high-intensity exercise is covered in chapter 1, which details the regulation of the so-called anaerobic energy pathways. Chapter 2 discusses the effects of exercise on muscle glycogenolysis and glucose uptake and summarizes the potential regulatory mechanisms. Because the liver has a critical role in maintaining glucose homeostasis during exercise, this is discussed in chapter 3, which also includes a brief summary of some of the other metabolic functions of the liver during exercise. Together with carbohydrates, lipids provide the vast majority of energy during prolonged exercise. The sources, role, and regulation of lipid metabolism during exercise are discussed in detail in chapter 4. Chapter 5 describes the emerging role of protein metabolism in the metabolic response to exercise and the potential interactions between amino acid, purine nucleotide, and ammonia metabolism. Whereas the first five chapters provide an overview of exercise metabolism, the final two chapters of the book describe the metabolic adaptations to endurance training (chapter 6) and the potential metabolic bases of fatigue (chapter 7). Wherever possible, authors have reviewed the most recent literature, and although an attempt has been made to avoid significant overlap, there are instances where a particular topic has been covered by more than one author. Klappentext und aus dem Vorwort
abstract_lang eng
abstract_type abstract
author2 Hargreaves, Mark
author_facet Hargreaves, Mark
author2-role Hrsg.
author2-authorityid
editor_author_facet Hargreaves, Mark
author2-synonym
author2_hierarchy_facet 0/Hrsg./
1/Hrsg./Hargreaves, Mark/
isbn 0873224531
spelling 0873224531
Aminosäure
Ammoniak
Ausdauertraining
Belastung, körperliche
Energiestoffwechsel
Kohlenhydratstoffwechsel
Leberstoffwechsel
Lipidstoffwechsel
Muskelermüdung
Muskelstoffwechsel
Sportmedizin
Stoffwechsel, anaerober
Substratutilisation
amino acid
ammonia
anaerobic metabolism
carbohydrate metabolism
endurance training
energy metabolism
lipid metabolism
liver metabolism
muscle fatigue
muscle metabolism
physical load
sports medicine
substrate utilization
Energiehaushalt
Anstrengung
Belastung, physische
Belastung
Ausdauerschulung
Dauertraining
Fett
Fettstoffwechsel
Glutamat
Glutaminsäure
Lysinoalanin

Medizin
Geschichte der Medizin
Untersuchung, sportmedizinische
Wasserdampf
physical workload
physical strain
physical exercise
physical work
physical stress
Exercise metabolism
PU199810305184
199810305184
publisher Human Kinetics
publisher-role Verlag
publisher-address Champaign
publisher-synonym
publisher-authorityid
publisher_publisher_facet Human Kinetics
publisher_hierarchy_facet 0/Verlag/
1/Verlag/Human Kinetics/
location_hierarchy_facet 0/USA/
1/USA/Illinois/
topic Aminosäure
Ammoniak
Ausdauertraining
Belastung, körperliche
Energiestoffwechsel
Kohlenhydratstoffwechsel
Leberstoffwechsel
Lipidstoffwechsel
Muskelermüdung
Muskelstoffwechsel
Sportmedizin
Stoffwechsel, anaerober
Substratutilisation
topic_facet Aminosäure
Ammoniak
Ausdauertraining
Belastung, körperliche
Energiestoffwechsel
Kohlenhydratstoffwechsel
Leberstoffwechsel
Lipidstoffwechsel
Muskelermüdung
Muskelstoffwechsel
Sportmedizin
Stoffwechsel, anaerober
Substratutilisation
topic_en amino acid
ammonia
anaerobic metabolism
carbohydrate metabolism
endurance training
energy metabolism
lipid metabolism
liver metabolism
muscle fatigue
muscle metabolism
physical load
sports medicine
substrate utilization
topic_en_facet amino acid
ammonia
anaerobic metabolism
carbohydrate metabolism
endurance training
energy metabolism
lipid metabolism
liver metabolism
muscle fatigue
muscle metabolism
physical load
sports medicine
substrate utilization
synonym Energiehaushalt
Anstrengung
Belastung, physische
Belastung
Ausdauerschulung
Dauertraining
Fett
Fettstoffwechsel
Glutamat
Glutaminsäure
Lysinoalanin

Medizin
Geschichte der Medizin
Untersuchung, sportmedizinische
Wasserdampf
synonym_en physical workload
physical strain
physical exercise
physical work
physical stress
physical VIII, 263 S.
has_references 1
institution BISp
_version_ 1810306523374551040
score 13,263318