[1] Pascolo PB, Cattarinussi A. On the relationship between mouth opening and "broken mirror neurons" in autistic individuals [J]. J Electromyogr Kinesiol, 2012, 22(1): 98-102. [2] Michielsen ME, Selles RW, van der Geest JN, et al. Motor recovery and cortical reorganization after mirror therapy in chronic stroke patients: a phase II randomized controlled trial [J]. Neural Repair, 2011, 25(3):223-233. [3] Altschuler EL. Motor rehabilitation in a stroke patient using a mirror [C]. Los Angeles, CA: the Annual Meeting of the Society for Neurosciences, 1998. [4] Casile A. Mirror neurons (and beyond) in the macaque brain: an overview of 20 years of research [J]. Neurosci Lett, 2013, 540: 3-14. [5] Ethier C, Oby ER, Bauman MJ, et al. Restoration of grasp following paralysis through brain-controlled stimulation of muscles [J]. Nature, 2012, 485(7398): 368-371. [6] Lundquist CB, Nielsen JF. Left/right judgement does not influence the effect of mirror therapy after stroke [J]. Disabil Rehabil, 2014, 36(17): 1452-1456. [7] Kim H, Miller LM, Fedulow I, et al. Kinematic data analysis for post-stroke patients following bilateral versus unilateral rehabilitation with an upper limb wearable robotic system [J]. IEEE Trans Neural Syst Rehabil Eng, 2013, 21(2): 153-164. [8] Cauraugh JH, Summers JJ. Neural plasticity and bilateral movements: a rehabilitation approach for chronic stroke [J]. Prog Neurobiol, 2013, 75(5): 309-320. [9] Thieme H, Mehrholz J, Pohl M, et al. Mirror therapy for improving motor function after stroke [J]. Cochrane Database Syst Rev, 2012, 3: 8449 [10] Pollock A, Farmer SE, Brady MC, et al. Interventions for improving upper limb function after stroke [J]. Cochrane Database Syst Rev, 2014, 11: 10820. [11] Thieme H, Bayn M, Wurg M, et al. Mirror therapy for patients with severe arm paresis after stroke #x02013; a randomized controlled trial [J]. Clin Rehabil, 2013, 27(4): 314-324. [12] Kojima K, Ikuno K, Morii Y, et al. Feasibility study of a combined treatment of electromyography-triggered neural-muscular-stimulation and mirror therapy in stroke patients: a randomized crossover trial [J]. Neural Rehabilitation, 2014, 34(2): 235-244. [13] Kim H, Lee G, Song C. Effect of functional electrical stimulation with mirror therapy on upper extremity motor function in post stroke patients [J]. J Stroke Cerebrovasc Dis, 2014, 23(4):655-661. [14] Rizzolatti G, Craighero L. The mirror-neuron system [J]. Annu Rev Neurosci, 2004, 27(1): 169-192. [15] Waller S, Whitall J, Jenkins T, et al. Sequencing bilateraland unilateral task- oriented training versus task oriented training alone to improve arm function in individuals with chronic stroke [J]. BMC Neurol, 2014, 14(1): 236. [16] Lee D, Lee M, Lee K, et al. Asymmetric training using virtual reality reflection equipment and the enhancement of upper limb function in stroke patients: a randomized controlled trial [J]. J Stroke Cerebrovasc Dis, 2014, 23(6): 1319-1326. [17] Nirkko AC, R#x000f6;sler KM, Ozdoba C, et al. Human cortical plasticity functional recovery with mirror movements [J]. Neurology, 1997, 48(4): 1090-1093. [18] Elnady AM, Xin Z, Zhen GX, et al. A Single-session preliminary evaluation of an affordable BCI-controlled arm exoskeleton and motor- proprioception platform [J]. Front Hum Neurosci, 2015, 9(168): 1-12. [19] Caria A, Weber C, Br D, et al. Chronic stroke recovery after combined BCI training and physiotherapy: a case report [J]. Psychophysiology, 2011, 48(4): 578-582. [20] Lin KC, Huang PC, Chen YT, et al. Combining afferent stimulation and mirror therapy for rehabilitating motor function, motor control, ambulation, and daily functions after stroke [J]. Neuro Rehabil Neural Repair, 2014, 28(2): 153-162. [21] Hsu E, Cohen SP. Post pain: epidemiology, mechanism, and treatment [J]. J Pain Res, 2013, 6(default): 121-136. [22] Griffin SC, Tsao JW. A mechanism-based classification of phantom limb pain [J]. Pain, 2014, 155(11): 2236-2242. [23] Kim SY, Kim YY. Mirror therapy for phantom limb pain [J]. Korean J Pain, 2012, 25(4): 272-274. [24] Neva JL, Vesia M, Singh AM, et al. Modulation of left primary motor cortex excitability after bimanual training and intermittent theta burst stimulation to left dorsal premotor cortex [J]. Behav Brain Res, 2014, 261: 289-296. [25] Hasanzadeh Kiabi F, Habibi MR, Soleimani A, et al. Mirror therapy an alternative treatment for phantom limb pain: a short literature review [J]. Korean J Pain, 2013, 26(3): 309-311. [26] Tseng CC, Chen PY, Lee YC. Successful treatment of phantom limb pain and phantom limb sensation in the traumatic amputee using scalp acupuncture [J]. Acupunct Med, 2014, 32(4): 356-358. [27] Moseley GL, Parsons TJ, Spence C. Visual distortion of a limb modulates the pain and swelling evoked by movement [J]. Curr Biol, 2008, 18(22): 1047-1048. [28] Sale P, Franceschini M. Action observation and mirror neuron network: a tool for motor stroke rehabilitation [J]. Eur J Phys Rehabil Med, 2012, 48(2): 313-318. [29] Pollock A, Farmer SE, Brady MC, et al. Interventions for improving upper limb function after stroke [J]. Cochrane Database Syst Rev, 2014, 11: 10820. [30] Young BM, Nigogosyan Z, Remsik A, et al. Changes in functional connectivity correlate with behavioral gains in stroke patients after therapy using a brain-computer interface device [J]. Front Neuroeng, 2014, 7: 25. [31] Ertelt D, Binkofski F. Action observation as a tool for neurorehabilitation to moderate motor deficits and aphasia following stroke [J]. Neural Regen Res, 2012, 7(26): 2063-2074. [32] 王伟,季相通,单春雷,等. 基于镜像神经元理论的偏侧忽略症康复新方法初探[J]. 中华物理医学与康复杂志, 2014, 36(12): 930-931. [33] Oztop E, Kawato M, Arbib MA. Mirror neurons: functions, mechanismsand models [J]. Neurosci Lett, 2013, 12(540): 43-55. [34] 陈文莉,夏扬,杨玺,等. 手动作观察训练对脑卒中失语患者语言功能的影响[J]. 中国康复医学杂志, 2014, 29(2): 141-144. [35] Marangolo P, Bonifazi S, Tomaiuolo F, et al. Improving language without words: first evidence from aphasia [J]. Neuropsychologia, 2010, 48(13): 3824-3833. [36] Park EC, Hwangbo G. The effects of action-observation gait training on the static balance and walking ability of stroke patients [J]. J Phys Ther Sci, 2015, 27(2): 341-344. |