Verweij J, Dacey D M, Peterson B B, Buck S L
Department of Biological Structure, University of Washington, Seattle 98195-7420, USA.
Vision Res. 1999 Nov;39(22):3662-72. doi: 10.1016/s0042-6989(99)00093-0.
We measured the sensitivity, temporal frequency response, latency, and receptive field diameter of rod input to the H1 horizontal cell type in an in vitro preparation of the macaque retina. The H1 cell has both a cone-connected dendritic tree and a long axon-like process that terminates in a rod-connected arbor. We recorded from the H1 cell body where rod signals were distinguished by sensitivity to short wavelength light after dark adaptation. Receptive fields of rod vs. cone mediated responses were coextensive, indicating that the rod signal is transmitted via rod-cone gap junctions. Sensitivity of the H1 cell rod signal was approximately 1 log unit higher than that of the cone signal. Below cone threshold rod signals were temporally low-pass, with a cutoff frequency below 10 Hz. Rod signals became faster and more transient with increasing light levels. We conclude that the H1 cell rod signal is not sensitive in the low scotopic range and, by comparison with the rod signal recorded directly in cones (Schneeweis & Schnapf (1995) Science, 268, 1053-1056), signal transmission across the cone-H1 synapse does not significantly filter the temporal properties of the rod signal.
我们在猕猴视网膜的体外制备物中测量了杆体输入到H1水平细胞类型的敏感度、时间频率响应、潜伏期和感受野直径。H1细胞既有一个与视锥细胞相连的树突状树突,又有一个终止于与杆体相连的树突的长轴突样突起。我们从H1细胞体进行记录,在暗适应后,杆体信号通过对短波长光的敏感度来区分。杆体介导的反应与视锥介导的反应的感受野是共同延伸的,这表明杆体信号是通过杆体-视锥间隙连接进行传递的。H1细胞杆体信号的敏感度比视锥信号高约1个对数单位。在视锥阈值以下,杆体信号在时间上是低通的,截止频率低于10赫兹。随着光水平的增加,杆体信号变得更快且更短暂。我们得出结论,H1细胞杆体信号在低暗视范围内不敏感,并且与直接在视锥细胞中记录的杆体信号相比(施内维斯和施纳普夫(1995年)《科学》,268,1053 - 1056),信号通过视锥 - H1突触传递不会显著过滤杆体信号的时间特性。