Chronic effects of superimposed electromyostimulation during cycling on aerobic and anaerobic capacity
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W. Bloch | J. Mester | S. Mathes | P. Wahl | Niklas Lehnen | T. Link | Tobias Link
[1] R. Miniero,et al. Effect of Recombinant Human Growth Hormone (rhGH) on Hemoglobin Concentration in Children With Idiopathic Growth Hormone Deficiency-related Anemia , 2012, Journal of pediatric hematology/oncology.
[2] T. Raastad,et al. High volume of endurance training impairs adaptations to 12 weeks of strength training in well-trained endurance athletes , 2011, European Journal of Applied Physiology.
[3] K. McCully,et al. Muscle injury after repeated bouts of voluntary and electrically stimulated exercise. , 2008, Medicine and science in sports and exercise.
[4] W. Bloch,et al. Acute Metabolic, Hormonal, and Psychological Responses to Different Endurance Training Protocols , 2013, Hormone and Metabolic Research.
[5] J Bangsbo,et al. Metabolic response and muscle glycogen depletion pattern during prolonged electrically induced dynamic exercise in man. , 1995, Scandinavian journal of rehabilitation medicine.
[6] Nicola A. Maffiuletti,et al. Physiological and methodological considerations for the use of neuromuscular electrical stimulation , 2010, European Journal of Applied Physiology.
[7] D. Swain,et al. Effect of intensity of aerobic training on VO2max. , 2008, Medicine and science in sports and exercise.
[8] W. Bloch,et al. Effects of a Whole-Body Electrostimulation Program on Strength, Sprinting, Jumping, and Kicking Capacity in Elite Soccer Players. , 2016, Journal of sports science & medicine.
[9] T. Chen. Variability in Muscle Damage After Eccentric Exercise and the Repeated Bout Effect , 2006, Research quarterly for exercise and sport.
[10] D. Lake. Neuromuscular Electrical Stimulation , 1992, Sports medicine.
[11] C. Zinner,et al. [High intensity training (HIT) for the improvement of endurance capacity of recreationally active people and in prevention & rehabilitation]. , 2010, Wiener medizinische Wochenschrift.
[12] G. Brooks,et al. Intra- and extra-cellular lactate shuttles. , 2000, Medicine and science in sports and exercise.
[13] L. Gladden. A lactatic perspective on metabolism. , 2008, Medicine and science in sports and exercise.
[14] M. Hagger,et al. Why sprint interval training is inappropriate for a largely sedentary population , 2014, Front. Psychol..
[15] Jesse C. Dean,et al. Motor unit recruitment during neuromuscular electrical stimulation: a critical appraisal , 2011, European Journal of Applied Physiology.
[16] G. Brooks. Lactate shuttle – between but not within cells? , 2002, The Journal of physiology.
[17] M. Koutsilieris,et al. Muscle regeneration: cellular and molecular events. , 2009, In vivo.
[18] J. Mester,et al. Electromyostimulation—A Systematic Review of the Influence of Training Regimens and Stimulation Parameters on Effectiveness in Electromyostimulation Training of Selected Strength Parameters , 2011, Journal of strength and conditioning research.
[19] Espen Tønnessen,et al. Intervals, Thresholds, and Long Slow Distance: the Role of Intensity and Duration in Endurance Training , 2009 .
[20] C. Zinner,et al. Effects of Loaded Squat Exercise with and without Application of Superimposed EMS on Physical Performance. , 2016, Journal of sports science & medicine.
[21] D. Bishop,et al. The relationship between plasma lactate parameters, Wpeak and 1-h cycling performance in women. , 1998, Medicine and science in sports and exercise.
[22] L. Snyder-Mackler,et al. The use of neuromuscular electrical stimulation to improve activation deficits in a patient with chronic quadriceps strength impairments following total knee arthroplasty. , 2006, The Journal of orthopaedic and sports physical therapy.
[23] T. Karlsen,et al. Aerobic high-intensity intervals improve VO2max more than moderate training. , 2007, Medicine and science in sports and exercise.
[24] Alan M. Batterham,et al. High-intensity interval exercise training for public health: a big HIT or shall we HIT it on the head? , 2015, International Journal of Behavioral Nutrition and Physical Activity.
[25] C. Davies,et al. The training stimulus , 1971, Internationale Zeitschrift für angewandte Physiologie einschließlich Arbeitsphysiologie.
[26] Marc Jubeau,et al. Comparison between voluntary and stimulated contractions of the quadriceps femoris for growth hormone response and muscle damage. , 2008, Journal of applied physiology.
[27] Malachy P. McHugh,et al. Exercise-Induced Muscle Damage and Potential Mechanisms for the Repeated Bout Effect , 1999, Sports medicine.
[28] F. Apple,et al. Alterations in the expression and activity of creatine kinase-M and mitochondrial creatine kinase subunits in skeletal muscle following prolonged intense exercise in rats , 2000, European Journal of Applied Physiology.
[29] T. Moritani,et al. Metabolic and cardiovascular responses during voluntary pedaling exercise with electrical muscle stimulation , 2014, European Journal of Applied Physiology.
[30] Nicola Maffulli,et al. Creatine kinase monitoring in sport medicine. , 2007, British medical bulletin.
[31] G. Gaesser,et al. Effects of high- and low-intensity exercise training on aerobic capacity and blood lipids. , 1984, Medicine and science in sports and exercise.
[32] Nicola A. Maffiuletti,et al. Effects of Neuromuscular Electrical Stimulation Training on Endurance Performance , 2016, Front. Physiol..
[33] J. Kleinert. Adjektivliste zur Erfassung der Wahrgenommenen Körperlichen Verfassung (WKV) , 2006 .
[34] T. Noakes,et al. Peak power output predicts maximal oxygen uptake and performance time in trained cyclists , 2005, European Journal of Applied Physiology and Occupational Physiology.
[35] Chris M Gregory,et al. Recruitment patterns in human skeletal muscle during electrical stimulation. , 2005, Physical therapy.
[36] W. Bloch,et al. Acute metabolic, hormonal and psychological responses to cycling with superimposed electromyostimulation , 2014, European Journal of Applied Physiology.
[37] A. Viru,et al. Cortisol--essential adaptation hormone in exercise. , 2004, International journal of sports medicine.
[38] Physiological Responses and Perceived Exertion During Cycling with Superimposed Electromyostimulation , 2012, Journal of strength and conditioning research.
[39] H. Heck,et al. Diagnostics of anaerobic power and capacity , 2003 .
[40] Gregory C. Bogdanis,et al. Effects of Physical Activity and Inactivity on Muscle Fatigue , 2012, Front. Physio..
[41] G J Bell,et al. The Interactions of Intensity, Frequency and Duration of Exercise Training in Altering Cardiorespiratory Fitness , 1986, Sports medicine.
[42] G. Nader,et al. Concurrent strength and endurance training: from molecules to man. , 2006, Medicine and science in sports and exercise.
[43] M. Jubeau,et al. Comparison between alternating and pulsed current electrical muscle stimulation for muscle and systemic acute responses. , 2010, Journal of applied physiology.
[44] Thierry Paillard,et al. Electrical Stimulation Superimposed onto Voluntary Muscular Contraction , 2005, Sports medicine.
[45] W. Bloch,et al. High Intensity Training (HIT) für die Verbesserung der Ausdauerleistungsfähigkeit von Normalpersonen und im Präventions- & Rehabilitationsbereich , 2010, Wiener Medizinische Wochenschrift.
[46] G. Haralambie,et al. Metabolic changes in man during long-distance swimming , 2004, European Journal of Applied Physiology and Occupational Physiology.
[47] A. Nevill,et al. Changes in cardiorespiratory fitness and coronary heart disease risk factors following 24 wk of moderate- or high-intensity exercise of equal energy cost. , 2005, Journal of applied physiology.
[48] A. Martín,et al. The Effects of Electromyostimulation Training and Basketball Practice on Muscle Strength and Jumping Ability , 2000, International journal of sports medicine.
[49] M. Teschler,et al. [(Very) high Creatinkinase concentration after exertional whole-body electromyostimulation application: health risks and longitudinal adaptations]. , 2015, Wiener medizinische Wochenschrift.
[50] E J Burke,et al. Changes in V02max resulting from bicycle training at different intensities holding total mechanical work constant. , 1975, Research quarterly.
[51] Joachim Mester,et al. Electromyostimulation—A Systematic Review of the Effects of Different Electromyostimulation Methods on Selected Strength Parameters in Trained and Elite Athletes , 2012, Journal of strength and conditioning research.
[52] P. Carlier,et al. A comparison of voluntary and electrically induced contractions by interleaved 1H- and 31P-NMRS in humans. , 2003, Journal of applied physiology.
[53] W. Kemmler,et al. Hohe Kreatinkinase-Werte nach exzessiver Ganzkörper-Elektromyostimulation: gesundheitliche Relevanz und Entwicklung im Trainingsverlauf , 2015, Wiener Medizinische Wochenschrift.
[54] J. Hawley. Molecular responses to strength and endurance training: are they incompatible? , 2009, Applied physiology, nutrition, and metabolism = Physiologie appliquee, nutrition et metabolisme.
[55] B. Roseguini,et al. Mechanisms for exercise training-induced increases in skeletal muscle blood flow capacity: differences with interval sprint training versus aerobic endurance training. , 2008, Journal of physiology and pharmacology : an official journal of the Polish Physiological Society.
[56] H. Hoppeler,et al. Gene expression in skeletal muscle of coronary artery disease patients after concentric and eccentric endurance training , 2006, European Journal of Applied Physiology.
[57] W. Bloch,et al. Acute effects of superimposed electromyostimulation during cycling on myokines and markers of muscle damage , 2015, Journal of musculoskeletal & neuronal interactions.
[58] Joseph Varon,et al. Bench-to-bedside review: Rhabdomyolysis – an overview for clinicians , 2004, Critical care.
[59] C. Däpp,et al. Muscle transcriptome adaptations with mild eccentric ergometer exercise , 2007, Pflügers Archiv - European Journal of Physiology.