about
Personalized preventive medicine: genetics and the response to regular exercise in preventive interventionsUltraendurance exercise increases the production of reactive oxygen species in isolated mitochondria from human skeletal muscle.Sports genetics moving forward: lessons learned from medical research.Regular moist snuff dipping does not affect endurance exercise performance.Extensive inflammatory cell infiltration in human skeletal muscle in response to an ultraendurance exercise bout in experienced athletes.Lack of sex differences in the IGF-IGFBP response to ultra endurance exercise.Increased autophagy signaling but not proteasome activity in human skeletal muscle after prolonged low-intensity exercise with negative energy balance.Rhabdomyolysis/myoglobinemia and NSAID during 48 h ultra-endurance exercise (adventure racing).Effects of Flywheel Training on Strength-Related Variables: a Meta-analysisReduced efficiency, but increased fat oxidation, in mitochondria from human skeletal muscle after 24-h ultraendurance exerciseLate cardiovascular drift observable during ultraendurance exerciseReversed drift in heart rate but increased oxygen uptake at fixed work rate during 24 h ultra-endurance exerciseEnergy turnover during 24 hours and 6 days of adventure racingSR Ca2+ leak in skeletal muscle fibers acts as an intracellular signal to increase fatigue resistancePerformance and cardiac evaluation before and after a 3-week training camp for 400-meter sprinters - An observational, non-randomized study
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P50
description
researcher ORCID ID = 0000-0002-0642-4838
@en
name
C. Mikael Mattsson
@ast
C. Mikael Mattsson
@en
C. Mikael Mattsson
@es
C. Mikael Mattsson
@nl
type
label
C. Mikael Mattsson
@ast
C. Mikael Mattsson
@en
C. Mikael Mattsson
@es
C. Mikael Mattsson
@nl
prefLabel
C. Mikael Mattsson
@ast
C. Mikael Mattsson
@en
C. Mikael Mattsson
@es
C. Mikael Mattsson
@nl
P1153
24500694800
P31
P496
0000-0002-0642-4838