Altenmuller, E., Marco-Pallares, J., Munte, T. F., and Schneider, S. (2009). Neural reorganization underlies improvement in stroke-induced motor dysfunction by music-supported therapy. Ann. N. Y. Acad. Sci. 1169, 395–405. doi: 10.1111/j.1749-6632.2009.04580.x Amengual, J. L., Rojo, N., Veciana de Las Heras, M., Marco-Pallares, J., Grau-Sanchez, J., Schneider, S., et al. (2013). Sensorimotor plasticity after music-supported therapy in chronic stroke patients revealed by transcranial magnetic stimulation. PLoS ONE 8:e61883. doi:10.1371/journal.pone.0061883 Chen, H. M., Chen, C. C., Hsueh, I. P., Huang, S. L., and Hsieh, C. L. (2009). Test-retest reproducibility and smallest real difference of 5 hand function tests in patients with stroke. Neurorehabil. Neural Repair 23, 435–440. doi:10.1177/1545968308331146 Cirstea, M. C., and Levin, M. F. (2007). Improvement of arm movement patterns and endpoint control depends on type of feedback during practice in stroke survivors. Neurorehabil. Neural Repair 21, 398–411. doi:10.1177/1545968306298414 Gowland, C., Stratford, P., Ward, M., Moreland, J., Torresin, W., Van Hullenaar, S., et al. (1993). Measuring physical impairment and disability with the Chedoke-McMaster Stroke Assessment. Stroke 24, 58–63. doi:10.1161/01.STR.24.1.58 Grau-Sanchez, J., Amengual, J. L., Rojo, N., Veciana de Las Heras, M., Montero, J., Rubio, F., et al. (2013). Plasticity in the sensorimotor cortex induced by Music-supported therapy in stroke patients: a TMS study. Front. Hum. Neurosci. 7:494. doi:10.3389/fnhum.2013.00494 Hackel, M. E., Wolfe, G. A., Bang, S. M., and Canfield, J. S. (1992). Changes in hand function in the aging adult as determined by the Jebsen Test of Hand Function. Phys. Ther. 72, 373–377. Hendricks, H. T., van Limbeek, J., Geurts, A. C., and Zwarts, M. J. (2002). Motor recovery after stroke: a systematic review of the literature. Arch. Phys. Med. Rehabil. 83, 1629–1637. doi:10.1053/apmr.2002.35473 Hubbard, I. J., Parsons, M. W., Neilson, C., and Carey, L. M. (2009). Task-specific training: evidence for and translation to clinical practice. Occup. Ther. Int. 16, 175–189. doi:10.1002/oti.275 Leung, D. P., Ng, A. K., and Fong, K. N. (2009). Effect of small group treatment of the modified constraint induced movement therapy for clients with chronic stroke in a community setting. Hum. Mov. Sci. 28, 798–808. doi:10.1016/j.humov.2009.04.006 Mathiowetz, V., Volland, G., Kashman, N., and Weber, K. (1985). Adult norms for the Box and Block Test of manual dexterity. Am. J. Occup. Ther. 39, 386–391. Nasreddine, Z. S., Phillips, N. A., Bedirian, V., Charbonneau, S., Whitehead, V., Collin, I., et al. (2005). The Montreal Cognitive Assessment, MoCA: a brief screening tool for mild cognitive impairment. J. Am. Geriatr. Soc. 53, 695–699. doi:10.1111/j.1532-5415.2005.53221.x Oxford Grice, K., Vogel, K. A., Le, V., Mitchell, A., Muniz, S., and Vollmer, M. A. (2003). Adult norms for a commercially available Nine Hole Peg Test for finger dexterity. Am. J. Occup. Ther. 57, 570–573. doi:10.5014/ajot.57.5.570 Siebers, A., Oberg, U., and Skargren, E. (2010). The effect of modified constraint-induced movement therapy on spasticity and motor function of the affected arm in patients with chronic stroke. Physiother. Can. 62, 388–396. doi:10.3138/physio.62.4.388 Van Peppen, R. P., Kwakkel, G., Wood-Dauphinee, S., Hendriks, H. J., Van der Wees, P. J., and Dekker, J. (2004). The impact of physical therapy on functional outcomes after stroke: what’s the evidence? Clin. Rehabil. 18, 833–862. doi:10.1191/0269215504cr843oa