Spolidoro Maria, Sale Alessandro, Berardi Nicoletta, Maffei Lamberto
Laboratory of Neurobiology, Scuola Normale Superiore, Via Moruzzi 1, 56100, Pisa, Italy.
Exp Brain Res. 2009 Jan;192(3):335-41. doi: 10.1007/s00221-008-1509-3. Epub 2008 Jul 31.
While cortical circuits display maximal sensitivity to sensory experience during critical periods of early postnatal development, far less plasticity is present in the mature brain. Ocular dominance shift of visual cortical neurons in response to eye occlusion and recovery of visual functions from a period of sensory deprivation are two classical models in the study of critical period determinants in the visual cortex. Recent papers employing various pharmacological and environmental strategies have shown that it is possible to reinstate much greater levels of plasticity in the adult visual cortex than previously suspected. These studies point toward intracortical inhibition as a crucial determinant for critical period regulation in the visual system and have a great potential for therapeutic rehabilitation and recovery from injury in the adult brain.
虽然皮质回路在出生后早期发育的关键时期对感觉经验表现出最大敏感性,但成熟大脑中的可塑性要少得多。视觉皮质神经元因眼遮挡而发生的眼优势转移以及从一段感觉剥夺期恢复视觉功能,是视觉皮质关键期决定因素研究中的两个经典模型。最近采用各种药理学和环境策略的论文表明,在成年视觉皮质中恢复比以前认为的更高水平的可塑性是可能的。这些研究指出皮质内抑制是视觉系统关键期调节的关键决定因素,并且在成人大脑损伤的治疗康复和恢复方面具有巨大潜力。