[1] Neves G, Cooke SF, Bliss TV. Synaptic plasticity, memory and the hippocampus: a neural network approach to causality[J]. Nat Rev Neurosci, 2008, 9(1):65-75.
[2] Zhang X, Poo MM. Progress in neural plasticity[J]. Sci China Life Sci, 2010, 53(3): 322-329.
[3] Zeltser LM, Seeley RJ, Tschop MH. Synaptic plasticity in neuronal circuits regulating energy balance[J]. Nat Neurosci, 2012, 15(10):1336-1342.
[4] 黄红云, 陈琳. 神经修复学[C]//. 中国医师协会神经外科医师分会-第四届全国代表大会论文汇编. 北京: 人民卫生出版社, 2009: 895-900.
[5] Gillick BT, Zirpel L. Neuroplasticity: an appreciation from synapse to system[J]. Arch Phys Med Rehabil, 2012, 93(10):1846-1855.
[6] Miyamoto E.Molecular mechanism of neuronal plasticity: induction and maintenance of long-term potentiation in the hippocampus[J]. J Pharmacol Sci, 2006, 100(5):433-442.
[7] Song I, Huganir RL. Regulation of AMPA receptors during synaptic plasticity[J]. Trends Neurosci, 2002, 25(11):578-588.
[8] Zhang XL, Sullivan JA, Moskal JR, et al. A NMDA receptor glycine site partialagonist, GLYX-13, simultaneously enhances LTP and reduces Ltd at Schaffer collateral-CA1 synapses in hippocampus[J]. Neuropharmacology, 2008, 55(7):1238-1250.
[9] Levite M, Ganor Y. Autoantibodies to glutamate receptors can damage the brain in epilepsy, systemic lupus erythematosus and encephalitis[J]. Expert Rev Neurother, 2008, 8(7):1141-1160.
[10] Liao D, Scannevin RH, Huganir R. Activation of silent synapses by rapid activity-dependent synaptic recruitment of AMPA receptors[J]. Neurosci, 2001, 21(16):6008-6017.
[11] 陈忠,魏尔清. 第七讲 突触可塑性的机制[J]. 中国神经科学杂志, 2001, 17(3):248-253.
[12] Eric H, Henrik S, IIse R. AMPA-silent synapses in brain development and pathology[J]. Nat Rev Neurosci, 2013, 14(12):839-850.
[13] Thomas GM, Huganir RL. MAPK cascade signaling and synaptic plasticity[J]. Nature Neuros, 2004, 5:173-183.
[14] Tyc F, Boyadjian A. Plasticity of motor cortex induced by coordination and training[J]. Clin Neurophysiol, 2011, 122(1):153-162.
[15] Classen J, Liepert J, Wise SP, et al. Rapid plasticity of human cortical movement representation induced by practice[J]. J Neurophysiol, 1998, 79(2):1117-1123.
[16] Sessle BJ. Chapter 5-face sensorimotor cortex: its role and neuroplasticity in the control of orofacial movements[J]. Prog Brain Res, 2011, 188(1):71-82.
[17] Monfiles MH, Plautz EJ, Kleim JA.In search of the motor engram: motor map plasticity as a mechanism for encoding motor experience[J]. Neuroscientist, 11(5):471-483.
[18] Lida T, Komiyama O, Obara R, et al. Repeated clenching causes plasticity in corticomotor control of jaw muscles[J]. Eur J Oral Sci, 2014, 122(1):42-48.
[19] Catania KC, Remple MS. Somatosensory cortex dominated by the representation of teeth in the naked mole-rat brain[J]. Proc Natl Acad Sci U S A, 2002, 99(8):5692-5697.
[20] Jain N, Qi HX, Catania KC, et al. Anatomic correlates of the face and oral cavity representations in the somatosensory cortical area 3b of monkeys[J]. J Comp Neurol, 2001, 429(3):455-468.
[21] Remple MS, Henry EC, Catania KC. Organization of somatosensory cortex in the laboratory rat: evidence for two lateral areas joined at the representation of the teeth[J]. J Comp Neurol, 467(1):105-118.
[22] Henry EC, Marasco PD, Catania KC. Plasticity of the cortical dentition representation after tooth extraction in naked mole-rats[J]. J Comp Neurol, 2005, 485(1):64-74.
[23] Henry EC, Marasco PD, Catania KC. Plasticity of the Cortical Dentition Representation after Tooth Extraction in Naked Mole-Rats[J]. J Comp Neurol, 2005, 485(1):64-74.
[24] Yan C, Ye L, Zhen J, et al. Neuroplasticity of edentulous patients with implant-supported full dentures[J]. Eur J Oral Sci, 2008, 116(5):387-393.
[25] Bjorkman A, Waites A, Rosen B,et al. Cortical reintegration of a replanted hand and an osseointegrated thumb prosthesis[J]. Acta Neurochir Suppl, 2007, 100:109-112.
[26] Bjorkman A, Waites A, Rosen B, et al. Cortical sensory and motor response in a patient whose hand has been replanted: one-year follow up with functional magnetic resonance imaging[J]. Scand J Plast Reconstr Surg Hand Surg, 2007, 41(2):70-76.
[27] Sessle BJ, Aachi K, Avivi AL, et al. Neuroplasticity of face primary motor cortex control of orofacial movements[J]. Arch Oral Biol, 2007, 52(4): 334-337.
[28] Polley DB, Heiser MA, Blake DT, et al. Associative learning shapes the neural code for stimulus magnitude in primary auditory cortex[J]. Proc Natl Acad Sci U S A, 2004, 101(46):16351-16356.
[29] Henry EC, Marasco PD, Catania KC. Plasticity of the cortical dentition representation after tooth extraction in naked mole-rats[J]. J Comp Neurol, 2005, 485(1):64-74.
[30] Yan C, Ye L, Zhen J, et al. Neuroplasticity of edentulous patients with implant-supported full dentures[J]. Eur J Oral Sci, 2008, 116(5):387-393.
[31] Fox K. Experience-dependent plasticity mechanisms for neural rehabilitation in somatosensory cortex[J]. Philos Trans R Soc Lond B Biol Sci, 2009, 364(1515):369-381.
[32] Avivi-Arber L, Lee JC, Sessle BJ. Effects of incisor extraction on jaw and tongue motor representations within face sensorimotor cortex of adult rats[J]. J Comp Neurol,2010, 518(7):1030-1045.
[33] Svensson P. Romaniello A, Wang K, et al. One hour of tongue-task training is associated with plasticity in corticomotor control of the human tongue musclature[J]. Exp Brain Res, 2006,173:165-173.
[34] Svensson P. Romaniello A, Arendt-Nielsen, et al. Plasticity in corticomotor control of the human tongue musculature induced by tongue-task training[J]. Exp Brain Res, 2003, 152:42-51. |