Völgyi Béla, Deans Michael R, Paul David L, Bloomfield Stewart A
Department of Ophthalmology, New York University School of Medicine, New York, New York 10016, USA.
J Neurosci. 2004 Dec 8;24(49):11182-92. doi: 10.1523/JNEUROSCI.3096-04.2004.
Using a multidisciplinary approach, we demonstrate that three different pathways are responsible for the transmission of rod signals across the mouse retina. Each pathway serves a primarily nonoverlapping range of stimulus intensities, with ganglion cells receiving either segregated or convergent inputs. For both on-center (ON) and off-center (OFF) ganglion cells, the primary rod pathway carries signals with the lowest threshold, whereas the secondary rod pathway is less sensitive by approximately 1 log unit. In addition, OFF signaling uses a tertiary rod pathway that is approximately 1 log unit less sensitive than the secondary. Although some ganglion cells received rod inputs exclusively from one of the pathways, others showed convergent inputs. Using pharmacological and genetic approaches, we defined classes of ON and OFF ganglion cells for which the scotopic inputs derive only from the primary pathway or from both primary and secondary pathways. In addition, we observed a class of OFF ganglion cell receiving mixed input from primary and tertiary pathways. Interestingly, OFF ganglion cells receiving convergent inputs from all three rod pathways or from the secondary and tertiary pathways together were never observed. Overall, our data show a complex arrangement of convergence and segregation of rod inputs to ganglion cells in the mammalian retina.
通过采用多学科方法,我们证明了三种不同的途径负责杆状细胞信号在小鼠视网膜中的传递。每种途径主要服务于不重叠的刺激强度范围,神经节细胞接收分离或汇聚的输入。对于中心开(ON)和中心关(OFF)神经节细胞,主要的杆状细胞途径携带阈值最低的信号,而次要的杆状细胞途径的敏感性约低1个对数单位。此外,OFF信号传导使用第三条杆状细胞途径,其敏感性比次要途径低约1个对数单位。虽然一些神经节细胞仅从其中一条途径接收杆状细胞输入,但其他神经节细胞则显示出汇聚输入。通过药理学和遗传学方法,我们定义了ON和OFF神经节细胞的类别,其暗视输入仅来自主要途径或来自主要和次要途径两者。此外,我们观察到一类OFF神经节细胞接收来自主要和第三条途径的混合输入。有趣的是,从未观察到OFF神经节细胞从所有三条杆状细胞途径或从次要和第三条途径一起接收汇聚输入。总体而言,我们的数据显示了哺乳动物视网膜中杆状细胞输入到神经节细胞的汇聚和分离的复杂排列。