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Journal Article
The Journal of Physiology, ISSN 0022-3751, 09/2015, Volume 593, Issue 17, pp. 4043 - 4054
Key points Critical power represents an important threshold for neuromuscular fatigue development and may, therefore, dictate intensities for which exercise tolerance is determined by the magnitude of fatigue accrued... 
Con, control exercise | CP, critical power | Occ, blood flow occlusion exercise | PCr, phosphocreatine | W ′, curvature constant | deoxy‐[Hb + Mb], deoxygenated‐[haemoglobin + myoglobin] | R, resistance | oxy‐[Hb + Mb], oxygenated‐[haemoglobin + myoglobin] | f, contraction frequency | iEMG, intergrated electromyography | MedPF, median power frequency | Sat‐[Hb + Mb], %Saturation‐[haemoglobin + myoglobin] | total‐[Hb + Mb], total‐[haemoglobin + myoglobin] | VA, voluntary activation | P, power | MVC, maximal voluntary contraction | Pi, inorganic phosphate | Con + Occ, control exercise with 5 min post‐exercise blood flow occlusion | LED, light‐emitting diodes | d, displacement | Ppeak, peak power | Occ + Occ, blood flow occlusion exercise with 5 min post‐exercise blood flow occlusion | NIRS, near infrared spectroscopy | Qtw, potentiated doublet force | Tlim, task failure | EMG, electromyography | W', curvature constant | task failure | Oxy-[Hb + Mb], oxygenated-[haemoglobin + myoglobin] | Total-[Hb + Mb], total-[haemoglobin + myoglobin] | D, displacement | inorganic phosphate | peak power | F, contraction frequency | potentiated doublet force | Occ + Occ, blood flow occlusion exercise with 5 min post-exercise blood flow occlusion | Con + Occ, control exercise with 5 min post-exercise blood flow occlusion | Sat-[Hb + Mb], %Saturation-[haemoglobin + myoglobin] | Deoxy-[Hb + Mb], deoxygenated-[haemoglobin + myoglobin] | LED, light-emitting diodes | IEMG, intergrated electromyography | POWER-DURATION RELATIONSHIP | PULMONARY O-2 UPTAKE | PHYSIOLOGY | PROLONGED EXERCISE | METABOLIC-RESPONSES | ENDURANCE EXERCISE | CENTRAL MOTOR DRIVE | NEUROMUSCULAR FATIGUE | GROUP-III | NEUROSCIENCES | HUMAN SKELETAL-MUSCLE | INTENSITY EXERCISE | Young Adult | Exercise Test | Humans | Adult | Male | Electromyography | Exercise - physiology | Muscle, Skeletal - physiology | Muscle Fatigue - physiology | Regional Blood Flow - physiology | Hand Strength - physiology | Brachial Artery - physiology | Myoglobin | Phosphates | Analysis | Hemoglobin | Fatigue | Light-emitting diodes | Blood flow | oxy-[Hb + Mb], oxygenated-[haemoglobin + myoglobin] | Occ + Occ, blood flow occlusion exercise with 5 min post-exercise blood flow occlusion | total-[Hb + Mb], total-[haemoglobin + myoglobin] | Con + Occ, control exercise with 5 min post-exercise blood flow occlusion | Integrative | Sat-[Hb + Mb], %Saturation-[haemoglobin + myoglobin] | deoxy-[Hb + Mb], deoxygenated-[haemoglobin + myoglobin]
Journal Article
Trends in Cognitive Sciences, ISSN 1364-6613, 2017, Volume 21, Issue 5, pp. 310 - 312
Exercise can improve human cognition. A mechanistic connection between exercise and cognition has been revealed in several recent studies... 
Neurology | Psychiatry | exercise | offline processing | motor skill | consolidation | cortical excitability | PRIMARY MOTOR CORTEX | BEHAVIORAL SCIENCES | GAINS | NEUROSCIENCES | PSYCHOLOGY, EXPERIMENTAL | CARDIOVASCULAR EXERCISE | Memory Consolidation | Cognition - physiology | Exercise | Motor Skills | Humans | Memory - physiology | Neurosciences
Journal Article
2015, Routledge research in sport and exercise science, ISBN 9780203157862, Volume 8, xii, 197
Book
JAMA : the journal of the American Medical Association, ISSN 0098-7484, 11/2015, Volume 314, Issue 18, pp. 1915 - 1916
Journal Article
Circulation, ISSN 0009-7322, 06/2003, Volume 107, Issue 24, pp. 3109 - 3116
Journal Article
PLoS ONE, ISSN 1932-6203, 09/2012, Volume 7, Issue 9, p. e44218
.... Therefore, the present study compared the effects of a clinically-relevant form of exercise on cerebral BDNF levels and localization in control versus stroke rats... 
CONTROLLED-TRIAL | BEHAVIORAL RECOVERY | HIPPOCAMPAL PLASTICITY | TRKB | CORTEX | NEUROTROPHIC FACTOR | MULTIDISCIPLINARY SCIENCES | FOCAL BRAIN ISCHEMIA | AXONAL-TRANSPORT | MOTOR RECOVERY | EXPRESSION | Rats, Wistar | Blood Vessels - metabolism | Blood Vessels - pathology | Cerebral Cortex - pathology | Male | Corpus Striatum - metabolism | Stroke - physiopathology | Cerebral Cortex - metabolism | Stroke - pathology | Exercise Test | Neuronal Plasticity - physiology | Brain-Derived Neurotrophic Factor - biosynthesis | Corpus Striatum - pathology | Physical Conditioning, Animal | Disease Models, Animal | Enzyme-Linked Immunosorbent Assay | Rats | Hippocampus - pathology | Organ Specificity | Blotting, Western | Hippocampus - metabolism | Stroke - metabolism | Animals | Endothelium, Vascular - metabolism | Protein Precursors - biosynthesis | Synaptophysin - biosynthesis | Endothelium, Vascular - pathology | Physiological aspects | Brain | Ischemia | Comparative analysis | Neurophysiology | Physical exercise | Synaptophysin | Stroke | Neurosciences | Change detection | Fitness equipment | Cortex | Metabolism | Western blotting | Endothelium | Brain-derived neurotrophic factor | Rodents | Treadmills | Neostriatum | Plasticity | Running | Localization | Enzyme-linked immunosorbent assay | Animal cognition | Neuroscience | Cognitive science
Journal Article
Biological Psychiatry, ISSN 0006-3223, 2013, Volume 73, Issue 9, pp. 895 - 903
... mechanisms through which the endocannabinoid system exerts a tonic control on running performance remain unknown...