Kleim Jeffrey A, Chan Sheila, Pringle Erin, Schallert Kellan, Procaccio Vincent, Jimenez Richard, Cramer Steven C
Brain Research Rehabilitation Center, Malcom Randall VA Hospital, 1601 SW Archer Road, Gainesville, Florida 32608, USA.
Nat Neurosci. 2006 Jun;9(6):735-7. doi: 10.1038/nn1699. Epub 2006 May 7.
Motor training can induce profound physiological plasticity within primary motor cortex, including changes in corticospinal output and motor map topography. Using transcranial magnetic stimulation, we show that training-dependent increases in the amplitude of motor-evoked potentials and motor map reorganization are reduced in healthy subjects with a val66met polymorphism in the brain-derived neurotrophic factor gene (BDNF), as compared to subjects without the polymorphism. The results suggest that BDNF is involved in mediating experience-dependent plasticity of human motor cortex.
运动训练可在初级运动皮层内诱导深刻的生理可塑性,包括皮质脊髓输出和运动图谱拓扑结构的变化。通过经颅磁刺激,我们发现,与没有该多态性的受试者相比,脑源性神经营养因子基因(BDNF)存在val66met多态性的健康受试者中,运动诱发电位幅度的训练依赖性增加和运动图谱重组有所减少。结果表明,BDNF参与介导人类运动皮层的经验依赖性可塑性。