Draganski B, May A
Wellcome Trust Centre for Neuroimaging, NHNN Institute of Neurology, University College London, London, UK.
Behav Brain Res. 2008 Sep 1;192(1):137-42. doi: 10.1016/j.bbr.2008.02.015. Epub 2008 Feb 17.
Structural and functional brain reorganisation can occur beyond the developmental maturation period and this was recently recognised as an intrinsic property of the human central nervous system. Brain injury or altered afferent input due to environmental changes, novel experience and learning new skills are known as modulators of brain function and underlying neuroanatomic circuitry. During the past decade invasive animal studies and in vivo imaging techniques have delineated the correlates of experience dependent reorganisation. The major future challenge is to understand the behavioural consequences and cellular mechanisms underlying training-induced neuroanatomic plasticity in order to adapt treatment strategies for patients with brain injury or neurodegenerative disorders.
大脑的结构和功能重组可以发生在发育成熟阶段之后,最近这被认为是人类中枢神经系统的一种内在特性。脑损伤或由于环境变化、新的经历以及学习新技能导致的传入输入改变,被称为脑功能和潜在神经解剖回路的调节因素。在过去十年中,侵入性动物研究和体内成像技术已经阐明了经验依赖性重组的相关因素。未来的主要挑战是了解训练诱导的神经解剖可塑性背后的行为后果和细胞机制,以便为脑损伤或神经退行性疾病患者调整治疗策略。