Tagawa Yoshiaki, Kanold Patrick O, Majdan Marta, Shatz Carla J
Department of Neurobiology, Harvard Medical School, 220 Longwood Avenue, Boston, Massachusetts 02115, USA.
Nat Neurosci. 2005 Mar;8(3):380-8. doi: 10.1038/nn1410. Epub 2005 Feb 20.
The precise period when experience shapes neural circuits in the mouse visual system is unknown. We used Arc induction to monitor the functional pattern of ipsilateral eye representation in cortex during normal development and after visual deprivation. After monocular deprivation during the critical period, Arc induction reflects ocular dominance (OD) shifts within the binocular zone. Arc induction also reports faithfully expected OD shifts in cat. Shifts towards the open eye and weakening of the deprived eye were seen in layer 4 after the critical period ends and also before it begins. These shifts include an unexpected spatial expansion of Arc induction into the monocular zone. However, this plasticity is not present in adult layer 6. Thus, functionally assessed OD can be altered in cortex by ocular imbalances substantially earlier and far later than expected.
经验塑造小鼠视觉系统神经回路的确切时期尚不清楚。我们利用Arc诱导来监测正常发育过程中以及视觉剥夺后皮质中同侧眼表征的功能模式。在关键期进行单眼剥夺后,Arc诱导反映了双眼区域内的眼优势(OD)转移。Arc诱导也如实地报告了猫中预期的OD转移。在关键期结束后以及开始前,第4层均出现了向睁眼的转移以及被剥夺眼的减弱。这些转移包括Arc诱导意外地向单眼区域的空间扩展。然而,这种可塑性在成年第6层中并不存在。因此,从功能上评估,眼的不平衡可在皮质中改变OD,时间比预期的要早得多,也晚得多。