Tian Ning, Copenhagen David R
Department of Ophthalmology and Visual Science, Yale University School of Medicine, New Haven, CT 06520, USA.
Neuron. 2003 Jul 3;39(1):85-96. doi: 10.1016/s0896-6273(03)00389-1.
ON and OFF pathways separately relay increment and decrement luminance signals from retinal bipolar cells to cortex. ON-OFF retinal ganglion cells (RGCs) are activated via synaptic inputs onto bistratified dendrites localized in the ON and OFF regions of the inner plexiform layer. Postnatal maturational processes convert bistratifying ON-OFF RGCs to monostratifying ON and OFF RGCs. Although visual deprivation influences refinement of higher visual centers, no previous studies suggest that light regulates either the development of the visual-evoked signaling in retinal ON and OFF pathways, nor pruning of bistratified RGC dendrites. We find that dark rearing blocks both the maturational loss of ON-OFF responsive RGCs and the pruning of dendrites. Thus, in retina, there is a previously unrecognized, pathway-specific maturation that is profoundly affected by visual deprivation.
ON通路和OFF通路分别将视网膜双极细胞的亮度增加和减少信号传递至皮层。ON-OFF视网膜神经节细胞(RGCs)通过突触输入激活位于内网状层ON区和OFF区的双分层树突。出生后的成熟过程将双分层ON-OFF RGCs转变为单分层ON和OFF RGCs。尽管视觉剥夺会影响高级视觉中枢的精细化,但此前尚无研究表明光线会调节视网膜ON和OFF通路中视觉诱发信号的发育,也不会影响双分层RGC树突的修剪。我们发现,暗饲养会阻止ON-OFF反应性RGCs的成熟性丧失以及树突的修剪。因此,在视网膜中,存在一种以前未被认识到的、通路特异性的成熟过程,该过程会受到视觉剥夺的深刻影响。