Joshua G.A. Cashaback, PhD (candidate)

Affiliations: 
Kinesiology McMaster University, Hamilton, ON, Canada 
Area:
Biomechanics, Neuromechanics
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"Joshua Cashaback"
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Publications

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Cashaback JG, Cluff T. (2015) Increase in joint stability at the expense of energy efficiency correlates with force variability during a fatiguing task. Journal of Biomechanics. 48: 621-6
Cashaback JG, McGregor HR, Gribble PL. (2015) The human motor system alters its reaching movement plan for task-irrelevant, positional forces. Journal of Neurophysiology. 113: 2137-49
Cashaback JG, Fewster K, Potvin JR, et al. (2014) Musculotendon translational stiffness and muscle activity are modified by shear forces. Clinical Biomechanics (Bristol, Avon). 29: 494-9
Seeley CJ, Cashaback JGA, Smith CT, et al. (2014) Altering the Shape of Punishment Distributions Affects Decision Making in a Modified Iowa Gambling Task Journal of Behavioral Decision Making. 27: 170-178
Cashaback JG, Potvin JR, Pierrynowski MR. (2013) On the derivation of a tensor to calculate six degree-of-freedom, musculotendon joint stiffness: implications for stability and impedance analyses. Journal of Biomechanics. 46: 2741-4
Cashaback JG, Pierrynowski MR, Potvin JR. (2013) Calculating individual and total muscular translational stiffness: a knee example. Journal of Biomechanical Engineering. 135: 61006-7
Cashaback JG, Cluff T, Potvin JR. (2013) Muscle fatigue and contraction intensity modulates the complexity of surface electromyography. Journal of Electromyography and Kinesiology : Official Journal of the International Society of Electrophysiological Kinesiology. 23: 78-83
Burd NA, Andrews RJ, West DW, et al. (2012) Muscle time under tension during resistance exercise stimulates differential muscle protein sub-fractional synthetic responses in men. The Journal of Physiology. 590: 351-62
Cashaback JG, Potvin JR. (2012) Knee muscle contributions to joint rotational stiffness. Human Movement Science. 31: 118-28
Burd NA, Holwerda AM, Selby KC, et al. (2010) Resistance exercise volume affects myofibrillar protein synthesis and anabolic signalling molecule phosphorylation in young men. The Journal of Physiology. 588: 3119-30
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