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Tota 2012 Handout--Neuroplasticity and OT
1. Motor
Neuroplasticity
and
Occupational
Therapy
REFERENCES
Bryanton, C., Bossé, J., Brien, M., McLean, J., McCormick, A., & Sveistrup, H.
(2006). Feasibility, motivation, and selective motor control: Virtual reality
compared to conventional home exercise in children with cerebral palsy.
Cyberpsychology & Behavior: The Impact of the Internet, Multimedia and
Virtual Reality on Behavior and Society, 9(2), 123-128.
TOTA
Case-Smith, J., DeLuca, S. C., Stevenson, R., & Ramey, S. L. (2012). Multicenter
randomized controlled trial of pediatric constraint-induced movement therapy:
6-month follow-up. The American Journal of Occupational Therapy: Official
2012 Publication of the American Occupational Therapy Association, 66(1), 15-23.
doi: 10.5014/ajot.2012.002386
Cramer, S.C, Sur, M., Dobkin, B. H., O’Brien, C.O., Sanger, T.D., Trojanowski, J.
Q., Rumsey, J. M., Hicks, R., … Cameron, J., Chen, D. (2011). Harnessing
Neuroplasticity
neuroplasticity for clinical applications. Brain: A journal of Neurology, 134.
videos on YouTube:
159-1609. doi:10.1093/brain/awr039
The Plastic Brain
Duffau, H. (2006). Brain plasticity: From pathophysiological mechanisms to
therapeutic applications. Journal of Clinical Neuroscience, 13, 885-897.
Hemispherectomy Gogtay, N., Giedd, J. N., Lusk, L., Hayashi, K. M., Greenstein, D., Vaituzis, A. C., .
. . Thompson, P. M. (2004). Dynamic mapping of human cortical development
during childhood through early adulthood. Proceedings of the National
Dr. Norman Doidge--
Academy of Sciences of the United States of America, 101(21), 8174-8179.
The Brain Changes
Itself doi: 10.1073/pnas.040268010
ANGIE BOISSELLE, OTR, ATP EMAIL PRESENTATION
Cook Children’s Northeast Rehab aboisselle@att.net www.slideshare.net/
aboisselle/neuroplasticityOT-15003459
2. Motor Neuroplasticity
and
Occupational Therapy
REFERENCES
Masia, L., Frascarelli, F., Morasso, P., Di Rosa, G., Petrarca, M., Castelli, E., & Cappa, P. (2011). Reduced short
term adaptation to robot generated dynamic environment in children affected by cerebral palsy. Journal of
Neuroengineering and Rehabilitation, 8, 28-28.
Nudo, R. J., Wise, B. M., SiFuentes, F., & Milliken, G. W. (1996). Neural substrates for the effects of rehabilitative
training on motor recovery after ischemic infarct. Science (New York, N.Y.), 272(5269), 1791-1794.
Reid, D. T. (2002). Benefits of a virtual play rehabilitation environment for children with cerebral palsy on perceptions
of self-efficacy: A pilot study. Pediatric Rehabilitation, 5(3), 141-148.
Snider, L., Majnemer, A., & Darsaklis, V. (2010). Virtual reality as a therapeutic modality for children with cerebral palsy.
Developmental Neurorehabilitation, 13(2), 120-128. doi: 10.3109/17518420903357753
Takahashi, C. D., Der-Yeghiaian, L., Le, V., Motiwala, R. R., & Cramer, S. C. (2008). Robot-based hand motor
therapy after stroke. Brain: A Journal of Neurology, 131, 425-437.
Taub, E. (2004). Harnessing brain plasticity through behavioral techniques to produce new treatments in
neurorehabilitation. The American Psychologist, 59(8), 692-704. Retrieved from:
http://www.apa.org/pubs/journals/amp/index.aspx.
Taub, E., Griffin, A., Nick, J., Gammons, K., Uswatte, G., & Law, C. R. (2007). Pediatric CI therapy for stroke-induced
hemiparesis in young children. Developmental Neurorehabilitation, 10(1), 3-18.
Taub, E., Uswatte, G., Elbert, T. (2002). New treatments in neurorehabiltation founded on basic research. Nature
Reviews Neuroscience 3. 228–236. doi:10.1038/nrn754
Thickbroom, G. W., Byrnes, M. L., Archer, S. A., & Mastaglia, F. L. (2004). Motor outcome after subcortical stroke
correlates with the degree of cortical reorganization. Clinical Neurophysiology: Official Journal of the International
Federation of Clinical Neurophysiology, 115(9), 2144-2150.
Weiss, P. L., Rand, D., Katz, N., & Kizony, R. (2004). Video capture virtual reality as a flexible and effective
rehabilitation tool. Journal of NeuroEngineering & Rehabilitation (JNER), 1, 12-12. doi: 10.1186/1743-0003-1-12
Wittenberg, G. F. (2009). Neural plasticity and treatment across the lifespan for motor deficits in cerebral palsy.
Developmental Medicine and Child Neurology, 51 Suppl 4, 130-133. doi: 10.1111/j.1469-8749.2009.03425.x
You, S. H., Jang, S. H., Kim, Y. H., Kwon, Y. H., Barrow, I., & Hallett, M. (2005). Cortical reorganization induced by
virtual reality therapy in a child with hemiparetic cerebral palsy. Developmental Medicine and Child Neurology,
47(9), 628-635.
TOTA ANGIE BOISSELLE, OTR, ATP EMAIL
Cook Children’s Northeast Rehab aboisselle@att.net
WEB
www.slideshare.net/
aboisselle/neuroplasticityOT-15003459
2012