Relative Neuroadaptive Effect of Resistance Training along the Descending Neuroaxis in Older Adults
暂无分享,去创建一个
[1] E. Mayo-Wilson,et al. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews , 2021, BMJ.
[2] S. Sidhu,et al. Single joint fatiguing exercise decreases long but not short–interval intracortical inhibition in older adults , 2020, Experimental Brain Research.
[3] D. F. Collins,et al. Neuromuscular determinants of explosive torque: Differences among strength‐trained and untrained young and older men , 2020, Scandinavian journal of medicine & science in sports.
[4] E. Wang,et al. External resistance is imperative for training-induced efferent neural drive enhancement in older adults. , 2020, The journals of gerontology. Series A, Biological sciences and medical sciences.
[5] B. Clark,et al. Reduced neural excitability and activation contribute to clinically-meaningful weakness in older adults. , 2020, The journals of gerontology. Series A, Biological sciences and medical sciences.
[6] D. O’Malley,et al. Interleukin-6: A neuro-active cytokine contributing to cognitive impairment in Duchenne muscular dystrophy? , 2020, Cytokine.
[7] D. Farina,et al. The relative strength of common synaptic input to motor neurons is not a determinant of the maximal rate of force development in humans. , 2019, Journal of applied physiology.
[8] A. Sayer,et al. Sarcopenia , 2019, The Lancet.
[9] R. Carson. Get a grip: individual variations in grip strength are a marker of brain health , 2018, Neurobiology of Aging.
[10] J. Rothwell,et al. Short-interval intracortical inhibition: Comparison between conventional and threshold-tracking techniques , 2018, Brain Stimulation.
[11] M. Pourahmadi,et al. Relationships Between Hoffman Reflex Parameters, Trait Stress, and Athletic Performance , 2018, Perceptual and motor skills.
[12] M. Kjaer,et al. Plasticity in central neural drive with short-term disuse and recovery - effects on muscle strength and influence of aging , 2018, Experimental Gerontology.
[13] J. Rothwell,et al. Neurophysiological adaptations in the untrained side in conjunction with cross-education of muscle strength: a systematic review and meta-analysis. , 2018, Journal of applied physiology.
[14] J. Hoff,et al. Neural Plasticity with Age: Unilateral Maximal Strength Training Augments Efferent Neural Drive to the Contralateral Limb in Older Adults , 2018, The journals of gerontology. Series A, Biological sciences and medical sciences.
[15] Brian C. Clark,et al. Skeletal muscle performance and ageing , 2017, Journal of cachexia, sarcopenia and muscle.
[16] Shao-Wu Ou,et al. Distribution and function of voltage-gated sodium channels in the nervous system , 2017, Channels.
[17] K. Föhr,et al. The Ca2+ influx through the mammalian skeletal muscle dihydropyridine receptor is irrelevant for muscle performance , 2017, Nature Communications.
[18] S. Nabavi,et al. Hebbian plasticity in vivo: relevance and induction , 2017, Current Opinion in Neurobiology.
[19] Jacques Duchateau,et al. Rate Coding and the Control of Muscle Force. , 2017, Cold Spring Harbor perspectives in medicine.
[20] Jonathan P. Folland,et al. Changes in agonist neural drive, hypertrophy and pre-training strength all contribute to the individual strength gains after resistance training , 2017, European Journal of Applied Physiology.
[21] S. Gandevia,et al. Measurement of voluntary activation based on transcranial magnetic stimulation over the motor cortex. , 2016, Journal of applied physiology.
[22] Paolo Caserotti,et al. Voluntary muscle activation improves with power training and is associated with changes in gait speed in mobility-limited older adults — A randomized controlled trial , 2016, Experimental Gerontology.
[23] Roberto Merletti,et al. Surface Electromyography: Physiology, engineering, and applications , 2016 .
[24] E. Wang,et al. Strength training-induced responses in older adults: attenuation of descending neural drive with age , 2015, AGE.
[25] A. King,et al. Correction: Light Intensity Physical Activity and Sedentary Behavior in Relation to Body Mass Index and Grip Strength in Older Adults: Cross-Sectional Findings from the Lifestyle Interventions and Independence for Elders (LIFE) Study , 2015, PloS one.
[26] A. King,et al. Light Intensity Physical Activity and Sedentary Behavior in Relation to Body Mass Index and Grip Strength in Older Adults: Cross-Sectional Findings from the Lifestyle Interventions and Independence for Elders (LIFE) Study , 2015, PloS one.
[27] J. Duchateau,et al. Effects of short-term training combining strength and balance exercises on maximal strength and upright standing steadiness in elderly adults , 2015, Experimental Gerontology.
[28] Dario Farina,et al. The extraction of neural strategies from the surface EMG: an update. , 2014, Journal of applied physiology.
[29] K. Häkkinen,et al. Similar Increases in Strength After Short-Term Resistance Training Due to Different Neuromuscular Adaptations in Young and Older Men , 2014, Journal of strength and conditioning research.
[30] G. Kamen,et al. Cortical inhibition is reduced following short-term training in young and older adults , 2014, AGE.
[31] J. Helgerud,et al. Structural brain changes after 4 wk of unilateral strength training of the lower limb. , 2013, Journal of applied physiology.
[32] Chris J. McNeil,et al. Testing the excitability of human motoneurons , 2013, Front. Hum. Neurosci..
[33] Sven Bestmann,et al. Muscle and Timing-specific Functional Connectivity between the Dorsolateral Prefrontal Cortex and the Primary Motor Cortex , 2013, Journal of Cognitive Neuroscience.
[34] Julien Doyon,et al. Relationship between transcranial magnetic stimulation measures of intracortical inhibition and spectroscopy measures of GABA and glutamate+glutamine. , 2013, Journal of neurophysiology.
[35] C. Cooper,et al. Prevalence of sarcopenia in community-dwelling older people in the UK using the European Working Group on Sarcopenia in Older People (EWGSOP) definition: findings from the Hertfordshire Cohort Study (HCS) , 2013, Age and ageing.
[36] A. Pearce,et al. Reduction in corticospinal inhibition in the trained and untrained limb following unilateral leg strength training , 2012, European Journal of Applied Physiology.
[37] A. Crenshaw,et al. The relationship between oxygenation and myoelectric activity in the forearm and shoulder muscles of males and females , 2011, European Journal of Applied Physiology.
[38] Dario Farina,et al. Decoding the neural drive to muscles from the surface electromyogram , 2010, Clinical Neurophysiology.
[39] Brian C. Clark,et al. Older adults exhibit more intracortical inhibition and less intracortical facilitation than young adults , 2010, Experimental Gerontology.
[40] G. Kamen,et al. Short‐term training adaptations in maximal motor unit firing rates and afterhyperpolarization duration , 2010, Muscle & nerve.
[41] B. Clark,et al. Functional consequences of sarcopenia and dynapenia in the elderly , 2010, Current opinion in clinical nutrition and metabolic care.
[42] C. Heckman,et al. Motoneuron excitability: The importance of neuromodulatory inputs , 2009, Clinical Neurophysiology.
[43] S. Gandevia,et al. The response to paired motor cortical stimuli is abolished at a spinal level during human muscle fatigue , 2009, The Journal of physiology.
[44] T. Manini,et al. Longitudinal study of muscle strength, quality, and adipose tissue infiltration. , 2009, The American journal of clinical nutrition.
[45] M. Kjaer,et al. Effects of aging on human skeletal muscle after immobilization and retraining. , 2009, Journal of applied physiology.
[46] Paul B. Fitzgerald,et al. GABA and cortical inhibition in motor and non-motor regions using combined TMS–EEG: A time analysis , 2009, Clinical Neurophysiology.
[47] L. Griffin,et al. Motor unit firing variability and synchronization during short-term light-load training in older adults , 2009, Experimental Brain Research.
[48] Gary Kamen,et al. Relationships between voluntary activation and motor unit firing rate during maximal voluntary contractions in young and older adults , 2008, European Journal of Applied Physiology.
[49] M. Narici,et al. Changes in antagonist muscles' coactivation in response to strength training in older women. , 2007, The journals of gerontology. Series A, Biological sciences and medical sciences.
[50] Alain Martin,et al. Adaptations to long-term strength training of ankle joint muscles in old age , 2007, European Journal of Applied Physiology.
[51] Jacques Duchateau,et al. Voluntary activation during maximal contraction with advancing age: a brief review , 2007, European Journal of Applied Physiology.
[52] F. Marino,et al. Comparative effects of resistance training on peak isometric torque, muscle hypertrophy, voluntary activation and surface EMG between young and elderly women , 2007, Clinical physiology and functional imaging.
[53] C. Maganaris,et al. Muscle activation assessment: Effects of method, stimulus number, and joint angle , 2006, Muscle & nerve.
[54] Gary Kamen,et al. Decreases in motor unit firing rate during sustained maximal-effort contractions in young and older adults. , 2005, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[55] Christopher A Knight,et al. Training-related adaptations in motor unit discharge rate in young and older adults. , 2004, The journals of gerontology. Series A, Biological sciences and medical sciences.
[56] Per Aagaard,et al. Training-induced changes in muscle CSA, muscle strength, EMG, and rate of force development in elderly subjects after long-term unilateral disuse. , 2004, Journal of applied physiology.
[57] Christopher D Ingersoll,et al. The hoffmann reflex: methodologic considerations and applications for use in sports medicine and athletic training research. , 2004, Journal of athletic training.
[58] Naofumi Tanaka,et al. Spinal excitation and inhibition decrease as humans age. , 2004, Canadian journal of physiology and pharmacology.
[59] Catherine Sherrington,et al. Reliability of the PEDro scale for rating quality of randomized controlled trials. , 2003, Physical therapy.
[60] S. Binder-Macleod,et al. Are voluntary muscle activation deficits in older adults meaningful? , 2003, Muscle & nerve.
[61] A. Kossev,et al. Increased intracortical inhibition in middle-aged humans; a study using paired-pulse transcranial magnetic stimulation , 2002, Neuroscience Letters.
[62] P Capodaglio,et al. Plantar flexor activation capacity and H reflex in older adults: adaptations to strength training. , 2002, Journal of applied physiology.
[63] E. Simonsen,et al. Neural adaptation to resistance training: changes in evoked V-wave and H-reflex responses. , 2002, Journal of applied physiology.
[64] G. Kamen,et al. Adaptations in muscular activation of the knee extensor muscles with strength training in young and older adults. , 2001, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[65] S. Binder-Macleod,et al. Characterization of the human quadriceps muscle in active elders. , 2001, Archives of physical medicine and rehabilitation.
[66] Samuel C. K. Lee,et al. Maximum voluntary activation in nonfatigued and fatigued muscle of young and elderly individuals. , 2001, Physical therapy.
[67] G Kamen,et al. Adaptations in maximal motor unit discharge rate to strength training in young and older adults , 2001, Muscle & nerve.
[68] W Herzog,et al. Effect of number of stimuli and timing of twitch application on variability in interpolated twitch torque. , 2001, Journal of applied physiology.
[69] F. Felici,et al. Electromyogram changes during sustained contraction after resistance training in women in their 3rd and 8th decades , 2000, European Journal of Applied Physiology.
[70] M. Buffelli,et al. Hebbian Mechanisms Revealed by Electrical Stimulation at Developing Rat Neuromuscular Junctions , 2000, The Journal of Neuroscience.
[71] S. Gandevia,et al. Twitch interpolation in human muscles: mechanisms and implications for measurement of voluntary activation. , 1999, Journal of neurophysiology.
[72] J. Kent‐Braun,et al. Slowed muscle contractile properties are not associated with a decreased EMG/force relationship in older humans. , 1999, The journals of gerontology. Series A, Biological sciences and medical sciences.
[73] S. Harridge,et al. Knee extensor strength, activation, and size in very elderly people following strength training , 1999, Muscle & nerve.
[74] Simon C. Gandevia,et al. Neural control in human muscle fatigue: changes in muscle afferents, moto neurones and moto cortical drive , 1998 .
[75] J. Hoffer,et al. A Measure of Peripheral Nerve Stimulation Efficacy Applicable to H-Reflex Studies , 1996, Canadian Journal of Neurological Sciences / Journal Canadien des Sciences Neurologiques.
[76] S Shimai,et al. Effects of immersion in tepid bath water on recovery from fatigue after submaximal exercise in man. , 1996, Ergonomics.
[77] G Kamen,et al. Motor unit discharge behavior in older adults during maximal-effort contractions. , 1995, Journal of applied physiology.
[78] C. D. De Luca,et al. Effects of muscle fiber type and size on EMG median frequency and conduction velocity. , 1995, Journal of applied physiology.
[79] David G. Behm,et al. Velocity Specificity of Resistance Training , 1993, Sports medicine.
[80] L. Larsson,et al. Effects of age on calcium transport activity of sarcoplasmic reticulum in fast‐ and slow‐twitch rat muscle fibres. , 1989, The Journal of physiology.
[81] D N Ghista,et al. Electrodiagnostic model for motor unit action potential (MUAP) generation. , 1985, American journal of physical medicine.
[82] B Bigland-Ritchie,et al. EMG/FORCE RELATIONS AND FATIGUE OF HUMAN VOLUNTARY CONTRACTIONS , 1981, Exercise and sport sciences reviews.
[83] W Irnich,et al. The Chronaxie Time and Its Practical Importance , 1980, Pacing and clinical electrophysiology : PACE.
[84] H Hultborn,et al. Changes in recurrent inhibition during voluntary soleus contractions in man studied by an H‐reflex technique. , 1979, The Journal of physiology.
[85] E Henneman,et al. Rank order of motoneurons within a pool: law of combination. , 1974, Journal of neurophysiology.
[86] A. McComas,et al. Potentiation of `late' responses evoked in muscles during effort , 1971, Journal of neurology, neurosurgery, and psychiatry.
[87] G. Somjen,et al. FUNCTIONAL SIGNIFICANCE OF CELL SIZE IN SPINAL MOTONEURONS. , 1965, Journal of neurophysiology.
[88] L. Brain. The Nervous System , 1963, Nature.
[89] P. Merton. Voluntary strength and fatigue , 1954, The Journal of physiology.
[90] P. Hoffmann. Reflex inhibition and voluntary action of normal human muscles. , 1952, The Journal of nervous and mental disease.
[91] Alexander Sandow,et al. Excitation-Contraction Coupling in Muscular Response * , 1952, The Yale journal of biology and medicine.
[92] B. Renshaw. INFLUENCE OF DISCHARGE OF MOTONEURONS UPON EXCITATION OF NEIGHBORING MOTONEURONS , 1941 .
[93] Todd M Manini,et al. Dynapenia and aging: an update. , 2012, The journals of gerontology. Series A, Biological sciences and medical sciences.
[94] B. Clark,et al. Sarcopenia =/= dynapenia. , 2008, The journals of gerontology. Series A, Biological sciences and medical sciences.
[95] M. Mcmurdo,et al. How to Get Older People Included in Clinical Studies , 2007, Drugs & aging.
[96] T. Moritani,et al. Motor unit activity and surface electromyogram power spectrum during increasing force of contraction , 2004, European Journal of Applied Physiology and Occupational Physiology.
[97] Roberto Merletti,et al. Biophysics of the Generation of EMG Signals , 2004 .
[98] W J Kraemer,et al. Changes in electromyographic activity, muscle fibre and force production characteristics during heavy resistance/power strength training in middle-aged and older men and women. , 2001, Acta physiologica Scandinavica.
[99] C. Patten,et al. Maximal motor unit discharge rates in the quadriceps muscles of older weight lifters. , 1999, Medicine and science in sports and exercise.
[100] K. Häkkinen,et al. Bilateral and unilateral neuromuscular function and muscle cross-sectional area in middle-aged and elderly men and women. , 1996, The journals of gerontology. Series A, Biological sciences and medical sciences.
[101] Michael Faraday,et al. I. Experimental researches in electricity. —fifteenth series , 1839, Philosophical Transactions of the Royal Society of London.