1,244
Views
76
CrossRef citations to date
0
Altmetric
Articles

Improving motor imagery practice with synchronous action observation in stroke patients

, , , &

References

  • Platz T, Eickhof C, Van Kaick S, et al. Impairment-oriented training or Bobath therapy for severe arm paresis after stroke: A single-blind, multicentre randomized controlled trial. Clin Rehabil. 2005;19:714–724.10.1191/0269215505cr904oa
  • Summers JJ, Kagerer FA, Garry MI, Hiraga CY, Loftus A, Cauraugh JH. Bilateral and unilateral movement training on upper limb function in chronic stroke patients: A TMS study. J Neural Sci. 2007;252:76–82.10.1016/j.jns.2006.10.011
  • Schaechter JD, Kraft E, Hilliard TS, Dijkhuizen RM, Benner T, et al. Motor recovery and cortical reorganization after constraint-induced movement therapy in stroke patients: A preliminary study. Neurorehabil Neural Repair. 2002;16:1–13.10.1177/0888439002016004003
  • Avanzino L, Gueugneau N, Bisio A, Ruggeri P, Papaxanthis C, Bore M. Motor cortical plasticity induced by motor learning through mental practice. Front Behav Neurosci. 2015;9:1–10.
  • Vries SD, Mulder T. Motor imagery and stroke rehabilitation: A critical discussion. J Rehabil Med. 2007;39:5–13.10.2340/16501977-0020
  • Prasad G, Herman P, Coyle D, McDonough S, Crosbie J. Applying a brain-computer interface to support motor imagery practice in people with stroke for upper limb recovery: A feasibility study. J Neuroeng Rehabil. 2010;7:60–77.10.1186/1743-0003-7-60
  • Mulder T. Motor imagery and action observation: Cognitive tools for rehabilitation. J Neural Transm. 2007;114:1265–1278.10.1007/s00702-007-0763-z
  • Porro C, Cettolo V, Francescato M, Baraldi P. Ipsilateral involvement of primary motor cortex during motor imagery. Eur J Neurosci. 2000;12:3059–3063.10.1046/j.1460-9568.2000.00182.x
  • Sharma N, Baron JC. Does motor imagery share neural networks with executed movement: A multivariate fMRI analysis. Front Hum Neurosci. 2013;7:564–570.
  • Pfurtscheller G, Silva de FL. Event-related EEG/MEG synchronization and desynchronization: Basic principles. Clin Neurophysiol. 1999;110:1842–1857.10.1016/S1388-2457(99)00141-8
  • Johnson SH. Imagining the impossible: Intact motor representations in hemiplegics. NeuroReport. 2000;11:729–732.10.1097/00001756-200003200-00015
  • Johnson-Frey SH. Stimulation through simulation? Motor imagery and functional reorganization in hemiplegic stroke patients. Brain Cognition. 2004;55:328–331.10.1016/j.bandc.2004.02.032
  • Ang KK, Guan C, Chua KSG, Ang BT, Kuah CWK, Wang C, Phua KS, Chin ZY, Zhang H. A large clinical study on the ability of stroke patients to use an EEG-based motor imagery brain-computer interface. Clin EEG Neurosci. 2011;42:253–258.10.1177/155005941104200411
  • Müller K, Bütefisch C, Seitz R, Hömberg V. Mental practice improves hand function after hemiparetic stroke. Restor Neurol Neuros. 2007;25:501–511.
  • Page SJ, Szaflarski JP, Eliassen JC, Pan H, Cramer SC. Cortical plasticity following motor skill learning during mental practice in stroke. Neurorehabil Neural Repair. 2009;23:382–388.
  • Ietswaart M, Johnston M, Dijkerman HC, Joice S, Scott CL, MacWalter RS, et al. Mental practice with motor imagery in stroke recovery: Randomized controlled trial of efficacy. Brain. 2011;134:1373–1386.10.1093/brain/awr077
  • Tomasino B, Rumiati R, Umiltá C. Selective deficit of motor imagery as tapped by a left-right decision of visually presented hands. Brain Cognition. 2003;53:376–380.10.1016/S0278-2626(03)00147-7
  • Braun SM, Beurskens AJ, Borm PJ, Schack T. The effects of mental practice in stroke rehabilitation: A systematic review. Arch Phys Med Rehabil. 2006;87:842–852.10.1016/j.apmr.2006.02.034
  • Butler AJ, Page SJ. Mental practice with motor imagery: Evidence for motor recovery and cortical reorganization after stroke. Arch Phys Med Rehabil. 2006;87:S2–11.10.1016/j.apmr.2006.08.326
  • Grézes J, Decety J. Functional anatomy of execution, mental simulation, observation and verb generation of action: A meta-analysis. Hum Brain Mapp. 2000;12:1–19.
  • Gerardin E, Sirigu A, Lehericy S, Poline JB, Gaymard B, et al. Paroverlapping neural networks for real and imagined hand movement. Cereb Cortex. 2000;10:1093–1104.10.1093/cercor/10.11.1093
  • Samuelkamaleshkumar S, Reethajanetsureka S, Pauljebaraj P, Benshamir B, et al. Mirror therapy enhances motor performance in the paretic upper limb after stroke: A pilot randomized controlled trial. Arch Phys Med Rehabil. 2014;95:2001–2005.
  • Altschuler EL, Wisdom SB, Stone L, et al. Rehabilitation of hemiparesis after stroke with a mirror. Lancet. 1999;353:2035–2036.10.1016/S0140-6736(99)00920-4
  • Dhole C, Pullen J, Nankaten A, Kust J, Rietz C, Karbet H. MT promotes recovery from severe hemiparesis: A randomized controlled trial. Neurorehabil Neural Repair. 2009;23:209–217.
  • Thieme H, Bayn M, Wurg M, Zange C, Pohl M, Behren J. MT for patients with severe arm paresis after stroke- a randomized controlled trial. Clin Rehabil. 2013;27:314–324.10.1177/0269215512455651
  • Wu CY, Huang PC, Chen YT, Lin KC, Yang HW. Effect of mirror therapy on motor and sensory recovery in chronic stroke: A randomized controlled trial. Arch Phys Med Rehabil. 2013;94:1023–1030.10.1016/j.apmr.2013.02.007
  • Jeannerod M. Neural simulation of action: A unifying mechanism for motor cognition. NeuroImage. 2001;14:S103–S109.10.1006/nimg.2001.0832
  • Munzert J, Lorey B, Zentgraf K. Cognitive motor processes: The role of motor imagery in the study of motor representations. Brain Res Rev. 2009;60:306–326.10.1016/j.brainresrev.2008.12.024
  • Ramachandran VS, Rogers-Ramachandran D. Synaesthesia in phantom limbs induced with mirrors. Proc R Soc Lond B Biol Sci. 1996;263:377–386.10.1098/rspb.1996.0058
  • Conson M, Sarà M, Pistoia F, Trojano L. Action observation improve motor imagery: specific interactions between simulative processes. Exp Brain Res. 2009;199:71–81.10.1007/s00221-009-1974-3
  • Stevens J, Stoykov M. Using motor imagery in the rehabilitation of hemiparesis. Arch Phys Med Rehabil. 2003;84:1090–1092.10.1016/S0003-9993(03)00042-X
  • Pfurtscheller G, Neuper C, Schlogl A, Lugger K. Separability of EEG signals recorded during right and left motor imagery using adaptive autoregressive parameters. IEEE T Rehabil Eng. 1998;6:316–325.10.1109/86.712230
  • Solis-Escalante T, Müller-Putz G, Brunner C, Kaiser V, Pfurtscheller G. Analysis of sensorimotor rhythms for the implementation of a brain switch for healthy subjects. Biomed Signal Process Control. 2010;5:15–20.10.1016/j.bspc.2009.09.002
  • Neuper C, Wörtz M, Pfurtscheller G. ERD/ERS patterns reflecting sensorimotor activation and deactivation. Prog Brain Res. 2006;159:211–222.10.1016/S0079-6123(06)59014-4
  • Neuper C, Scherver R, Reiner M, Pfurtscheller G. Imagery of motor actions: Differential effects of kinesthetic and visual–motor mode of imagery in single-trial EEG. Cognitive Brain Res. 2005;25:668–677.10.1016/j.cogbrainres.2005.08.014
  • Pineda JA. The functional significance of mu rhythms: Translating “seeing” and “hearing” into “doing”. Brain Res Rev. 2005;50:57–68.10.1016/j.brainresrev.2005.04.005
  • Lapenta OM, Boggio PS. Motor network activation during human action observation and imagery: Mu rhythm EEG evidence on typical and atypical neurodevelopment. Res Autism Spect Dis. 2014;8:759–766.10.1016/j.rasd.2014.03.019
  • Davision A, Hinkley D. Bootstrap methods and their application. Cambridge: Cambridge University Press; 1997.10.1017/CBO9780511802843
  • Graimann B, Huggins J, Levine S, Pfurtscheller G. Visualization of significant ERD/ERS patterns in multichannel EEG and ECoG data. Clin Physiol. 2002;113:43–47.
  • Fugl-Meyer AR, Jaasko L, Leyman I, Olsson S, Steglind S. The poststroke hemiplegic patient I. A method for evaluation of physical performance. Scand J Rehabil Med. 1975;7:13–31.
  • Gladstone DJ, Danells CJ, Black SE. The Fugl-Meyer assessment of motor recovery after stroke: A critical review of its measurement properties. Neurorehabil Neural Repair. 2002;16:232–240.10.1177/154596802401105171
  • Pandian S, Narayan K. Stroke-related motor outcome measures: Do they quantify the neurophysiological aspects of upper extremity recovery? J Bodyw Mov Ther. 2014;18:412–423.10.1016/j.jbmt.2013.11.006
  • Dromerick A, Edwards D, Hahn M. Does the application of constraint-induced movement therapy during acute rehabilitation reduce arm impairment after ischemic stroke? Stroke. 2000;31:2984–2988.10.1161/01.STR.31.12.2984
  • Thalheimer W, Cook S. How to calculate effect sizes from published research: A simplified methodology. Work-learning research. 2002;1–9. http://www.worklearning.com/effect_sizes.htm. Accessed August
  • Shindo K, Kawashima K, Ushiba J, Ota N, Ito M, et al. Effects of neurofeedback training with an electroencephalogram-based brain-computer interface for hand paralysis in patients with chronic stroke: A preliminary case series study. J Rehabil Med. 2011;43:951–957.
  • Baeck JS, Kim YT, Seo JH, Ryeom HK, Lee J, et al. Brain activation patterns of motor imagery reflect plastic changes associated with intensive shooting training. Behav Brain Res. 2012;234:26–32.10.1016/j.bbr.2012.06.001
  • Binkofski F, Buccino G. The role of ventral premotor cortex in action execution and action understanding. J Physiol Paris. 2006;99:396–405.10.1016/j.jphysparis.2006.03.005
  • Handy TC, Borg JS, Turk DJ, Tipper CM, Grafton ST, Gazzaniga MS. Placing a tool in the spotlight: Spatial attention modulates visuomotor responses in cortex. NeuroImage. 2005;26:266–276.10.1016/j.neuroimage.2005.01.029

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.