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Published in: Experimental Brain Research 4/2019

01-04-2019 | Research Article

The effects of acute exercise on visuomotor adaptation, learning, and inter-limb transfer

Authors: Jason L. Neva, Jennifer A. Ma, Dan Orsholits, Matthieu P. Boisgontier, Lara A. Boyd

Published in: Experimental Brain Research | Issue 4/2019

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Abstract

Pairing an acute bout of lower-limb cycling exercise with skilled motor practice enhances acquisition and learning. However, it is not known whether an acute bout of exercise enhances a specific form of motor learning, namely motor adaptation, and if subsequent inter-limb transfer of this adaptation is enhanced. Seventeen young healthy participants performed a bout of cycling exercise and rest, on separate days, prior to right-arm reaching movements to visual targets under 45° rotated feedback of arm position (acquisition), followed by an immediate test of inter-limb transfer with the untrained left arm. After a 24-h delay, participants returned for a no-exercise retention test using the right and left arm with the same rotated visual feedback as acquisition. Results demonstrated that exercise enhanced right-arm adaptation during the acquisition and retention phases, and transiently enhanced aspects of inter-limb transfer, irrespective of usual levels of physical activity. Specifically, exercise enhanced movement accuracy, decreased reaction and movement time during acquisition, and increased accuracy during retention. Exercise shortened reaction time during the inter-limb transfer test immediately after right-arm acquisition but did not influence left-arm performance assessed at retention. These results indicate that an acute bout of exercise before practice enhances right-arm visuomotor adaptation (acquisition) and learning, and decreases reaction time during untrained left arm performance. The current results may have implications for the prescription of exercise protocols to enhance motor adaptation for healthy individuals and in clinical populations.
Literature
go back to reference Ainsworth BE, Haskell WL, Whitt MC et al (2000) Compendium of Physical Activities: an MET intensities. Med Sci Sport Exerc 32:S498–S516CrossRef Ainsworth BE, Haskell WL, Whitt MC et al (2000) Compendium of Physical Activities: an MET intensities. Med Sci Sport Exerc 32:S498–S516CrossRef
go back to reference Baayen R, Davidson D, Bates D (2008) Mixed-effects modeling with crossed random effects for subjects and items. J Mem Lang 59:390–412CrossRef Baayen R, Davidson D, Bates D (2008) Mixed-effects modeling with crossed random effects for subjects and items. J Mem Lang 59:390–412CrossRef
go back to reference Booth M (2000) Assessment of physical activity: an international perspective. Res Q Exerc Sport 71:S114–S120CrossRefPubMed Booth M (2000) Assessment of physical activity: an international perspective. Res Q Exerc Sport 71:S114–S120CrossRefPubMed
go back to reference Borg G (1998) Borg’s perceived exertion and pain scales. Human Kinetics, Champaign, IL, USA Borg G (1998) Borg’s perceived exertion and pain scales. Human Kinetics, Champaign, IL, USA
go back to reference Box G, Cox D (1964) An analysis of transformations. J R Stat Soc Ser B Stat Methodol 26:211–252 Box G, Cox D (1964) An analysis of transformations. J R Stat Soc Ser B Stat Methodol 26:211–252
go back to reference Cardoso de Oliveira S (2002) The neuronal basis of bimanual coordination: recent neurophysiological evidence and functional models. Acta Psychol (Amst) 110:139–159CrossRef Cardoso de Oliveira S (2002) The neuronal basis of bimanual coordination: recent neurophysiological evidence and functional models. Acta Psychol (Amst) 110:139–159CrossRef
go back to reference Core Team R (2017) R: a language and environment for statistical computing. R Found. Stat. Comput. Vienna, Au Core Team R (2017) R: a language and environment for statistical computing. R Found. Stat. Comput. Vienna, Au
go back to reference Craig C, Marshall A, Sjostrom M et al (2003) International physical activity questionnaire: 12-country reliability and validity. Med Sci Sport Exerc 35:1381–1395CrossRef Craig C, Marshall A, Sjostrom M et al (2003) International physical activity questionnaire: 12-country reliability and validity. Med Sci Sport Exerc 35:1381–1395CrossRef
go back to reference Doyon J, Owen AM, Petrides M et al (1996) Functional anatomy of visuomotor skill learning in human subjects examined with positron emission tomography. Eur J Neurosci 8:637–648CrossRefPubMed Doyon J, Owen AM, Petrides M et al (1996) Functional anatomy of visuomotor skill learning in human subjects examined with positron emission tomography. Eur J Neurosci 8:637–648CrossRefPubMed
go back to reference Doyon J, Gaudreau D, Laforce R Jr et al (1997) Role of the striatum, cerebellum, and frontal lobes in the learning of a visuomotor sequence. Brain Cogn 34:218–245CrossRefPubMed Doyon J, Gaudreau D, Laforce R Jr et al (1997) Role of the striatum, cerebellum, and frontal lobes in the learning of a visuomotor sequence. Brain Cogn 34:218–245CrossRefPubMed
go back to reference Doyon J, Penhune V, Ungerleider LG (2003) Distinct contribution of the cortico-striatal and cortico-cerebellar systems to motor skill learning. Neuropsychologia 41:252–262CrossRefPubMed Doyon J, Penhune V, Ungerleider LG (2003) Distinct contribution of the cortico-striatal and cortico-cerebellar systems to motor skill learning. Neuropsychologia 41:252–262CrossRefPubMed
go back to reference Elliott D, Roy EA (1981) Interlimb transfer after adaptation to visual displacement: patterns predicted from the functional closeness of limb neural control centres. Perception 10:383–387CrossRefPubMed Elliott D, Roy EA (1981) Interlimb transfer after adaptation to visual displacement: patterns predicted from the functional closeness of limb neural control centres. Perception 10:383–387CrossRefPubMed
go back to reference Judd C, Westfall J, Kenny D (2012) Treating stimuli as a random factor in social psychology: a new and comprehensive solution to a pervasive but largely ignored problem. J Pers Soc Psychol 103:54–69CrossRefPubMed Judd C, Westfall J, Kenny D (2012) Treating stimuli as a random factor in social psychology: a new and comprehensive solution to a pervasive but largely ignored problem. J Pers Soc Psychol 103:54–69CrossRefPubMed
go back to reference Kagerer F, Contreras-Vidal J, Stelmach G (1997) Adaptation to gradual as compared with sudden visuo-motor distortions. Exp Brain Res 115:557–561CrossRefPubMed Kagerer F, Contreras-Vidal J, Stelmach G (1997) Adaptation to gradual as compared with sudden visuo-motor distortions. Exp Brain Res 115:557–561CrossRefPubMed
go back to reference Krakauer JW, Pine ZM, Ghilardi MF, Ghez C (2000) Learning of visuomotor transformations for vectorial planning of reaching trajectories. J Neurosci 20:8916–8924CrossRefPubMed Krakauer JW, Pine ZM, Ghilardi MF, Ghez C (2000) Learning of visuomotor transformations for vectorial planning of reaching trajectories. J Neurosci 20:8916–8924CrossRefPubMed
go back to reference Laszlo J, Baguley R, Bairstow P (1970) Bilateral transfer in tapping skill in the absence of peripheral information. J Mot Behav 2:261–271CrossRefPubMed Laszlo J, Baguley R, Bairstow P (1970) Bilateral transfer in tapping skill in the absence of peripheral information. J Mot Behav 2:261–271CrossRefPubMed
go back to reference Oldfield R (1971) The assessment and analysis of handedness: the Edinburgh inventory. Neuropsychologia Mar 9:97–113CrossRef Oldfield R (1971) The assessment and analysis of handedness: the Edinburgh inventory. Neuropsychologia Mar 9:97–113CrossRef
go back to reference Osborne J (2010) Improving your data transformation: applying the Box-Cox transformation. Pr Assess Res Eval 15:1–9 Osborne J (2010) Improving your data transformation: applying the Box-Cox transformation. Pr Assess Res Eval 15:1–9
go back to reference Papathanasiou G, Georgoudis G, Georgakopoulos D et al (2010) Criterion-related validity of the short International Physical Activity Questionnaire against exercise capacity in young adults. Eur J Cardiovasc Prev Rehabil 17:380–386CrossRefPubMed Papathanasiou G, Georgoudis G, Georgakopoulos D et al (2010) Criterion-related validity of the short International Physical Activity Questionnaire against exercise capacity in young adults. Eur J Cardiovasc Prev Rehabil 17:380–386CrossRefPubMed
go back to reference Schmidt RA, Zelaznik H, Hawkins B et al (1979) Motor-output variability: a theory for the accuracy of rapid motor acts. Psychol Rev 47:415–451CrossRefPubMed Schmidt RA, Zelaznik H, Hawkins B et al (1979) Motor-output variability: a theory for the accuracy of rapid motor acts. Psychol Rev 47:415–451CrossRefPubMed
go back to reference Shadmehr R, Brashers-Krug T (1997) Functional stages in the formation of human long-term motor memory. J Neurosci 17:409–419CrossRefPubMed Shadmehr R, Brashers-Krug T (1997) Functional stages in the formation of human long-term motor memory. J Neurosci 17:409–419CrossRefPubMed
go back to reference Shadmehr R, Mussa-Ivaldi FA (1994) Adaptive representation of dynamics during learning of a motor task. J Neurosci 14:3208–3224CrossRefPubMed Shadmehr R, Mussa-Ivaldi FA (1994) Adaptive representation of dynamics during learning of a motor task. J Neurosci 14:3208–3224CrossRefPubMed
go back to reference Spampinato D, Celnik P (2018) Deconstructing skill learning and its physiological mechanisms. Cortex 104:90–102CrossRefPubMed Spampinato D, Celnik P (2018) Deconstructing skill learning and its physiological mechanisms. Cortex 104:90–102CrossRefPubMed
go back to reference Thoroughman KA, Shadmehr R (1999) Electromyographic correlates of learning an internal model of reaching movements. J Neurosci 19:8573–8588CrossRefPubMed Thoroughman KA, Shadmehr R (1999) Electromyographic correlates of learning an internal model of reaching movements. J Neurosci 19:8573–8588CrossRefPubMed
Metadata
Title
The effects of acute exercise on visuomotor adaptation, learning, and inter-limb transfer
Authors
Jason L. Neva
Jennifer A. Ma
Dan Orsholits
Matthieu P. Boisgontier
Lara A. Boyd
Publication date
01-04-2019
Publisher
Springer Berlin Heidelberg
Published in
Experimental Brain Research / Issue 4/2019
Print ISSN: 0014-4819
Electronic ISSN: 1432-1106
DOI
https://doi.org/10.1007/s00221-019-05491-5

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