Deception of cycling distance on pacing strategies, perceptual responses, and neural activity
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[1] F. Zanow,et al. Cerebrocortical activity during self‐paced exercise in temperate, hot and hypoxic conditions , 2018, Acta physiologica.
[2] F. Hettinga,et al. Will the Conscious–Subconscious Pacing Quagmire Help Elucidate the Mechanisms of Self-Paced Exercise? New Opportunities in Dual Process Theory and Process Tracing Methods , 2017, Sports Medicine.
[3] Jeanick Brisswalter,et al. Saving mental effort to maintain physical effort: a shift of activity within the prefrontal cortex in anticipation of prolonged exercise , 2017, Cognitive, affective & behavioral neuroscience.
[4] Suresh C. Mehrotra,et al. Introduction to EEG- and Speech-Based Emotion Recognition , 2016 .
[5] F. Marino,et al. Prefrontal and motor cortex EEG responses and their relationship to ventilatory thresholds during exhaustive incremental exercise , 2015, European Journal of Applied Physiology.
[6] Hiroshi Iizuka,et al. Chronic Treatment with a Water-Soluble Extract from the Culture Medium of Ganoderma lucidum Mycelia Prevents Apoptosis and Necroptosis in Hypoxia/Ischemia-Induced Injury of Type 2 Diabetic Mouse Brain , 2015, Evidence-based complementary and alternative medicine : eCAM.
[7] I. Wakayama,et al. The Effect of Electroacupuncture with Different Frequencies on Muscle Oxygenation in Humans , 2015, Evidence-based complementary and alternative medicine : eCAM.
[8] F. Marino. If only I were paramecium too! A case for the complex, intelligent system of anticipatory regulation in fatigue , 2014 .
[9] Adrian W Midgley,et al. Physiological and Psychological Effects of Deception on Pacing Strategy and Performance: A Review , 2013, Sports Medicine.
[10] S. Perrey,et al. What Does Cerebral Oxygenation Tell Us About Central Motor Output , 2012 .
[11] R. Eston,et al. Effect of deception and expected exercise duration on psychological and physiological variables during treadmill running and cycling. , 2012, Psychophysiology.
[12] R. Pascual-Marqui,et al. Fatigue‐induced increase in intracortical communication between mid/anterior insular and motor cortex during cycling exercise , 2011, The European journal of neuroscience.
[13] V. Brümmer,et al. Primary motor cortex activity is elevated with incremental exercise intensity , 2011, Neuroscience.
[14] D. Bishop,et al. Influence of knowledge of sprint number on pacing during repeated-sprint exercise. , 2011, Medicine and science in sports and exercise.
[15] John P. Porcari,et al. Regulation of Pacing Strategy during Athletic Competition , 2011, PloS one.
[16] Kevin Thomas,et al. Consistency of perceptual and metabolic responses to a laboratory-based simulated 4,000-m cycling time trial , 2011, European Journal of Applied Physiology.
[17] Masaki Fumoto,et al. Ventral prefrontal cortex and serotonergic system activation during pedaling exercise induces negative mood improvement and increased alpha band in EEG , 2010, Behavioural Brain Research.
[18] F. Marino. The limitations of the constant load and self-paced exercise models of exercise physiology , 2010 .
[19] T. Noakes,et al. Cerebral oxygenation decreases but does not impair performance during self‐paced, strenuous exercise , 2010, Acta physiologica.
[20] R. Tucker,et al. The anticipatory regulation of performance: the physiological basis for pacing strategies and the development of a perception-based model for exercise performance , 2009, British Journal of Sports Medicine.
[21] T D Noakes,et al. Experimental evaluation of the power balance model of speed skating. , 2005, Journal of applied physiology.
[22] T D Noakes,et al. Exercising with reserve: exercise regulation by perceived exertion in relation to duration of exercise and knowledge of endpoint , 2009, British Journal of Sports Medicine.
[23] Andrew M. Jones,et al. Influence of feedback and prior experience on pacing during a 4-km cycle time trial. , 2009, Medicine and science in sports and exercise.
[24] S. Folger,et al. Changes in EEG during graded exercise on a recumbent cycle ergometer. , 2008, Journal of sports science & medicine.
[25] Stéphane Perrey,et al. Non-invasive NIR spectroscopy of human brain function during exercise. , 2008, Methods.
[26] T. Noakes,et al. Does a central governor regulate maximal exercise during combined arm and leg exercise? A rebuttal , 2008, European Journal of Applied Physiology.
[27] Stéphane Perrey,et al. Prefrontal cortex oxygenation and neuromuscular responses to exhaustive exercise , 2007, European Journal of Applied Physiology.
[28] T D Noakes,et al. Effect of anticipation during unknown or unexpected exercise duration on rating of perceived exertion, affect, and physiological function , 2005, British Journal of Sports Medicine.
[29] Ross Tucker,et al. Psychobiology and Behavioral Strategies Effect of Distance Feedback on Pacing Strategy and Perceived Exertion during Cycling , 2005 .
[30] T. Noakes,et al. From catastrophe to complexity: a novel model of integrative central neural regulation of effort and fatigue during exercise in humans: summary and conclusions , 2005, British Journal of Sports Medicine.
[31] F. Marino,et al. Anticipatory regulation and avoidance of catastrophe during exercise-induced hyperthermia. , 2004, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[32] F. Marino,et al. Effect of Deception of Distance on Prolonged Cycling Performance , 2004, Perceptual and motor skills.
[33] Ross Tucker,et al. Impaired exercise performance in the heat is associated with an anticipatory reduction in skeletal muscle recruitment , 2004, Pflügers Archiv.
[34] Timothy D Noakes,et al. Anticipatory pacing strategies during supramaximal exercise lasting longer than 30 s. , 2004, Medicine and science in sports and exercise.
[35] Mutsuo Yamada,et al. Systemic inflammatory response to exhaustive exercise. Cytokine kinetics. , 2002, Exercise immunology review.
[36] Andrew M. Jones,et al. Maximal lactate steady state, critical power and EMG during cycling , 2002, European Journal of Applied Physiology.
[37] Daniel C. Krawczyk,et al. Contributions of the prefrontal cortex to the neural basis of human decision making , 2002, Neuroscience & Biobehavioral Reviews.
[38] L. Nybo,et al. Perceived exertion is associated with an altered brain activity during exercise with progressive hyperthermia. , 2001, Journal of applied physiology.
[39] J A Hawley,et al. Pacing strategy in simulated cycle time-trials is based on perceived rather than actual distance. , 2001, Journal of science and medicine in sport.
[40] J. Nielsen,et al. Cerebral activation during bicycle movements in man , 2000, Experimental Brain Research.
[41] H. Ulmer,et al. Concept of an extracellular regulation of muscular metabolic rate during heavy exercise in humans by psychophysiological feedback , 1996, Experientia.
[42] K. Kubitz,et al. EEG power spectral densities during and after cycle ergometer exercise. , 1996, Research quarterly for exercise and sport.
[43] F. Marino,et al. Cerebral responses to exercise and the influence of heat stress in human fatigue. , 2017, Journal of thermal biology.
[44] Benno M Nigg,et al. Changes in cortical activity measured with EEG during a high-intensity cycling exercise. , 2016, Journal of neurophysiology.
[45] Suresh C. Mehrotra,et al. Chapter 5 – Emotion Recognition , 2016 .
[46] Chris R Abbiss,et al. Describing and Understanding Pacing Strategies during Athletic Competition , 2008, Sports medicine.
[47] Will G. Hopkins,et al. A spreadsheet for deriving a confidence interval, mechanistic inference and clinical inference from a P value , 2007 .
[48] Rupp Thomas,et al. Prefrontal cortex oxygenation and neuromuscular responses to exhaustive exercise , 2007, European Journal of Applied Physiology.
[49] Alan St Clair Gibson,et al. Evidence for neuromuscular fatigue during high-intensity cycling in warm, humid conditions , 2001, European Journal of Applied Physiology.
[50] G. Borg. Psychophysical bases of perceived exertion. , 1982, Medicine and science in sports and exercise.