Meng Xiangying, Mukherjee Didhiti, Kao Joseph P Y, Kanold Patrick O
Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD 21205, USA.
Department of Biology, University of Maryland, College Park, MD 20742, USA.
Sci Adv. 2021 Feb 12;7(7). doi: 10.1126/sciadv.abc9155. Print 2021 Feb.
Cortical function can be shaped by sensory experience during a critical period. The onset of the critical period is thought to coincide with the onset of thalamocortical transmission to the thalamo-recipient layer 4 (L4). In early development, subplate neurons (SPNs), and not L4 neurons, are the first targets of thalamic afferents. SPNs are transiently involved in early development and are largely eliminated during development. Activation of L4 by thalamic afferents coincides with the opening of ear canal (~P11 in mice) and precedes the later critical period. Here, we show in mice that abolishing peripheral function or presenting sound stimuli even before P11 leads to bidirectionally altered functional connectivity of SPNs in auditory cortex. Thus, early sensory experience can sculpt subplate circuits before thalamocortical circuits to L4 are mature. Our results show that peripheral activity shapes cortical circuits in a sequential manner and from earlier ages than has been appreciated.
在关键期内,感觉经验可塑造皮质功能。关键期的开始被认为与丘脑皮质向丘脑接受层4(L4)的传递开始相吻合。在早期发育中,板下神经元(SPN)而非L4神经元是丘脑传入神经的首批靶点。SPN短暂参与早期发育,并在发育过程中大量被清除。丘脑传入神经对L4的激活与耳道开放(小鼠约为出生后第11天)同时发生,并先于后期关键期。在此,我们在小鼠中发现,消除外周功能或在出生后第11天之前给予声音刺激会导致听觉皮质中SPN的功能连接发生双向改变。因此,早期感觉经验可在丘脑皮质到L4的回路成熟之前塑造板下回路。我们的结果表明,外周活动以一种有序的方式塑造皮质回路,且起始年龄比之前认为的更早。