• Gå till sidans innehåll
  • Logga in
  • Translate
  • In English
  • Press
  • Webbkarta
  • Kontakt
Till Startsidan - Gymnastik och idrottshögskolan GIH-logotype Till Startsidan
Sök
  • Startsida
  • Utbildning
  • Forskning
  • Samverkan
  • Om GIH
  • Bibliotek
Ok
In English
  • STUDIES
  • About studies at GIH
  • Programmes and Courses
  • Exchange students
  • International students
  • International collaboration
  • International Office
  • Student union
  • RESEARCH
  • Research
    • Sport science - subject areas at GIH
    • Performance and Training Unit
    • Physical activity and brain health
    • Sport Pedagogy Research
    • Physiology
    • Movement, Health and Environment
    • The EKBLOM-BAK test
  • ABOUT GIH
  • Campus
  • Contact GIH
  • Press and Media
  • Library
  • Vacancies
  • History of GIH
  • Policies and guidelines
  • Processing your personal data
You are here: Startpage Research Performance and Training Unit

Performance and Training Unit

Research area profiles

Muscle Metabolism & Biochemistry (Eva Blomstrand)

Skeletal muscle is a highly adaptive tissue responding to varying forms of acute and chronic exercise loading as well as dietary factors that induce specific intracellular signaling cascades involved in muscle protein anabolism and catabolism. Areas of research include the effect of combined endurance and strength training on AMPK-dependent inhibition of mTORC1 signaling, and gene and protein expression in the regulation of muscle hypertrophy and mitochondrial biogenesis. Our recent findings in this area demonstrate that signaling of muscle growth through the mTORC1-S6K1 axis after heavy resistance exercise is not inhibited by subsequent endurance exercise. Markers for protein catabolism are differently influenced by the two modes of exercise, however elevation in AMPK activity does not inhibit mTOR signaling after subsequent resistance exercise. Recent studies include the investigation of peroxisome proliferator-activated receptor gamma coactivator-1 alpha (PGC-1α) splice variant induction by resistance exercise, the specific stimulatory effect of dietary leucine on mTORC1 signalling and amino acid metabolism in connection with resistance exercise.

Sample Publications

Sida 1 av 20 (Totalt antal hämtade artiklar: 59)

 Författare Titel År URL
Ydfors, Mia
Fischer, Helene
Mascher, Henrik
Blomstrand, Eva
Norrbom, Jessica
Gustafsson, Thomas
The truncated splice variants, NT-PGC-1alpha and PGC-1alpha4, increase with both endurance and resistance exercise in human skeletal muscle 2013 Fulltext
Terzis, Gerasimos
Spengos, Konstantinos
Mascher, Henrik
Georgiadis, Giorgos
Manta, Panagiota
Blomstrand, Eva
The degree of p70(S6k) and S6 phosphorylation in human skeletal muscle in response to resistance exercise depends on the training volume. 2010 -
Esbjörnsson, M
Rundqvist, H C
Mascher, H
Österlund, T
Rooyackers, O
Blomstrand, Eva
Jansson, E
Sprint exercise enhances skeletal muscle p70S6k phosphorylation and more so in women than in men. 2012 -
Gå till sida
  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • Nästa

Biological Profile and Exercise Performance (Mikael Mattsson)

There is evidence for the contribution of genetic differences in training responsiveness as a factor in sport performance. Whole exome and genome sequencing and omics profiling offer the possibility to profile individual genetic makeup that may impact the tolerance, biological effects, and performance expected from training. Athletic personal omics profiling can facilitate monitoring over time and of different training approaches integrating biological information with change in physiological states (e.g., activity intensity, duration, response to training or performance level). This includes proteomic, transcriptomic, and metabolomic analyses during a period of training or recovery. This research approach is being undertaken in studies in competitive athletes in a variety of sports, including the effects of unilateral versus bilateral complex training combined with high intensity interval training on the development of strength, power and performance for elite male and female handball players. A similar approach is being undertaken in studies examining the response to prolonged physical exertion in military personnel.

Selected Publications

Sida 1 av 17 (Totalt antal hämtade artiklar: 51)

 Författare Titel År URL
Mattsson, C. Mikael
Vad vet vi idag om konditionsträning? 2010 Fulltext
Sahlin, Kent
Shabalina, Irina G
Mattsson, C Mikael
Bakkman, Linda
Fernström, Maria
Rozhdestvenskaya, Zinaida
Enqvist, Jonas K
Nedergaard, Jan
Ekblom, Björn T
Tonkonogi, Michail
Ultra-endurance exercise increases the production of reactive oxygen species in isolated mitochondria from human skeletal muscle. 2010 -
Mattsson, C. Mikael
Enqvist, Jonas K.
Träning för långdistans 2007 Fulltext
Gå till sida
  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • Nästa

Applied Sports Physiology (Hans Rosdahl & Johnny Nilsson)

GIH has a rich tradition in sport physiology research and has led the field in establishment of gold-standard methods for measurement of oxidative metabolism in sport-specific events such as cross-country skiing and kayaking. Metabolic measurements coupled with kinematic, kinetic and electromyographic methods have been developed to examine components of performance enhancement in elite athletes. Development and validation of new ergometer technology and measurement software continues in close collaboration with Monark AB and Oxycon Mobile in combination with state-of-the art applications to field-monitoring of training and performance in rowing kayaking and skiing. Extending from this foundation, a central area of research is focused on the physiology of upper body sport performance, merging GIH's tradition and expertise in cardiovascular and muscle physiology.

Selected Publications

Sida 1 av 12 (Totalt antal hämtade artiklar: 35)

 Författare Titel År URL
Calbet, J A L
Holmberg, H-C
Rosdahl, Hans
van Hall, Gerrit
Jensen-Urstad, Mats
Saltin, Bengt
Why do arms extract less oxygen than legs during exercise? 2005 -
Salier Eriksson, Jane
Rosdahl, Hans
Schantz, Peter
Validity of the Oxycon Mobile metabolic system under field measuring conditions 2012 -
Schantz, Peter
Salier Eriksson, Jane
Rosdahl, Hans
The heart rate method for estimating oxygen uptake 2019 Fulltext
Gå till sida
  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • Nästa

Biomechanics (Toni Arndt)

GIH scientists have unique expertise in methods to study neuromuscular function and musculoskeletal biomechanical factors in sport performance and training. Application areas in advanced musculoskeletal biomechanics entail analysis of loading and behavior of specific anatomical structures during controlled physical activity. A specific focus of biomechanics research at GIH is the study of the muscle-tendon complex during different forms of loading exercise. Tendons and aponeuroses transmit forces from contracting muscles to bone, but these load-bearing tissues also act as biological springs, storing and releasing elastic energy. This elasticity enables tendons to fulfil a number of functions related to the mechanical efficiency and effectiveness of animal and human movement. Ongoing research projects include application of ultrasound-based methods coupled with force measures to quantify tendon mechanical properties in vivo during exercise performance. In partnership with Monark AB, cutting-edge research is also focused on the biomechanics of the lower extremity to develop world leading bicycle ergometers to optimize training for athletes. Developments within sensor technology, GPS systems and computer availability and performance have facilitated widespread interest in such monitoring. Specialized ergometry performance protocols and in-crank measurement of 3-dimensional forces to measure and visualize the effectiveness of the pedal cycle are being developed for aerobic endurance performance assessment.

Sample Publications

Sida 1 av 21 (Totalt antal hämtade artiklar: 61)

 Författare Titel År URL
Seynnes, Olivier R
Bojsen-Møller, Jens
Albracht, Kirsten
Arndt, Anton
Cronin, Neil J
Finni, Taija
Magnusson, S Peter
Ultrasound-Based Testing Of Tendon Mechanical Properties 2015 -
Bjerkefors, Anna
Rosén, Johanna S
Tarassova, Olga
Arndt, Anton
Three-Dimensional Kinematics and Power Output in Elite Para-Kayakers and Elite Able-Bodied Flat-Water Kayakers. 2019 -
Bjerkefors, Anna
Tarassova, Olga
Rosén, Johanna S
Zakaria, Pascal
Arndt, Anton
Three-dimensional kinematic analysis and power output of elite flat-water kayakers. 2018 -
Gå till sida
  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • Nästa

Motor Control (Maria Ekblom)

The study of brain function in motor activation is of high interest for sport performance. A primary focus of research in motor control in sport performance at GIH is on central neural mechanisms involved in activation of motor units and measurement of intracortical facilitation and inhibition. An additional area of research is to examine the interplay between muscle and cortex mechanisms involved in of fatigue and the link between brain and muscle measures of oxygenation. Applying various modes of muscle activation, our research group also investigates the mechanisms by which the nervous system regulates muscle activation in the upper and lower limbs of sedentary and resistance trained individuals. Ongoing projects include the measurement of V-waves and MEPs in limbs and examining how short interval intracortical inhibition in the upper limbs is regulated with increased muscle activation.

Sample Publications

Sida 1 av 21 (Totalt antal hämtade artiklar: 62)

 Författare Titel År URL
Ekblom, Maria
Är du chef? Överraska mig! 2015 -
Nordlund Ekblom, Maria M
Thorstensson, Alf
Cresswell, Andrew G
Variations in the soleus H-reflex as a function of activation during controlled lengthening and shortening actions. 2002 -
Ter Hoeve, Nienke
Ekblom, Maria
Galanti, Maria R
Forsell, Yvonne
Nooijen, Carla F J
Unfavourable sedentary and physical activity behaviour before and after retirement 2020 Fulltext
Gå till sida
  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • Nästa

Sport Psychology (Sanna Nordin-Bates)

Research in the psychology of sport performance at GIH includes the investigation of psychological correlates of adherence, maturation and physical factors relating to dance performance. Integration of psychological, physical and enviromental factors reveal that greater levels of harmonious passion predict greater likelihood of adherence to dance programs, and greater ego-involving motivational climate perceptions predict less likelihood of adherence in young talented dancers. Other research findings indicate that perfectionistic concerns may color perceptions of training/performing environments. They also suggest that perceptions of a task-involving climate in training/performing environments may encourage striving for excellence and perfection without promoting excessive concerns regarding their attainment. Further research includes examination of applied perspectives on perfectionism and creativity in elite dancers, burnout and motivation in dance, teacher perceptions of dancer talent, and predictive indices of disordered eating. An extended area of research is directed towards promoting adolescent mental health in the school environment including the effect of dance participation.

Sample Publications

Sida 1 av 15 (Totalt antal hämtade artiklar: 45)

 Författare Titel År URL
Nordin-Bates, Sanna M.
Schwarz, Johanna F.A.
Quested, Eleanor
Cumming, Jennifer
Aujla, Imogen J.
Redding, Emma
Within- and between-person predictors of disordered eating attitudes among male and female dancers 2016 -
Nordin, Sanna M
Cumming, Jennifer
Where, when, and how 2007 -
Nordin, Sanna M
Cumming, Jennifer
Types and functions of athletes’ imagery 2008 -
Gå till sida
  • 1
  • 2
  • 3
  • 4
  • 5
  • 6
  • 7
  • 8
  • Nästa

  • Content Manager: David Lundström
  • Last modified by: Karin Jäppinen 2022-06-14

Copyright © 2022

Gymnastik- och idrottshögskolan,
Lidingövägen 1, vid Stockholm Stadion
08-120 537 00  

  • Om webbplatsen
  • Personuppgifter
  • Cookies
  • Mejla registrator
  • Kontakta oss
  • Nödsituationer
  • GIH på Facebook
  • GIH på Instagram
  • GIH på LinkedIn
  • GIH på YouTube