Nassi Jonathan J, Callaway Edward M
Systems Neurobiology Laboratories, The Salk Institute for Biological Studies, La Jolla, California 92037, USA.
J Neurosci. 2006 Dec 6;26(49):12789-98. doi: 10.1523/JNEUROSCI.4044-06.2006.
Parallel pathways in the primate visual system parse the sensory signal into magnocellular (M), parvocellular (P), and koniocellular (K) streams. These pathways remain anatomically separate and distinct from their origination in different retinal ganglion cell types, through distinct layers of the lateral geniculate nucleus, and into primary visual cortex (V1), with the M pathway terminating primarily in layer 4Calpha, the P pathway in layer 4Cbeta, and the K pathway in the cytochrome oxidase blobs of layer 2/3. Recent studies indicate that outputs from V1 are less compartmental than previously thought, making it difficult to assess the contributions of M and P pathways to areas beyond V1 in the dorsal and ventral streams. Here we use rabies virus as a retrograde transsynaptic tracer to study the contributions of M and P pathways to areas middle temporal (MT), V3, and V2 of macaque monkey. We find that, although disynaptic inputs through layer 4C of V1 to dorsal stream area MT are dominated by the M pathway, within an additional three synapses MT receives a substantial P input. This P input is unlikely to reach MT via V3, which we show also receives disynaptic inputs dominated by the M pathway. We find that disynaptic inputs to V2, however, can be more balanced and may carry convergent M and P input to MT. Our observations provide evidence for multiple pathways from V1 to MT, with varying degrees of M and P convergence. Each pathway likely provides functionally specialized information to MT and dorsal stream visual processing.
灵长类视觉系统中的并行通路将感觉信号解析为大细胞(M)、小细胞(P)和侏儒细胞(K)流。这些通路在解剖学上保持分离,从不同类型的视网膜神经节细胞起始,经过外侧膝状体核的不同层,再进入初级视觉皮层(V1),M通路主要终止于4Cα层,P通路终止于4Cβ层,K通路终止于2/3层的细胞色素氧化酶斑。最近的研究表明,V1的输出比之前认为的分区性要小,这使得评估M和P通路对背侧和腹侧流中V1以外区域的贡献变得困难。在这里,我们使用狂犬病毒作为逆行跨突触示踪剂,来研究M和P通路对猕猴颞中回(MT)、V3和V2区域的贡献。我们发现,虽然通过V1的4C层到背侧流区域MT的双突触输入以M通路为主,但在另外三个突触内,MT会接收大量的P输入。这种P输入不太可能通过V3到达MT,我们的研究表明V3也接收以M通路为主的双突触输入。然而,我们发现到V2的双突触输入可能更加平衡,并且可能将汇聚的M和P输入传递到MT。我们的观察结果为从V1到MT的多条通路提供了证据,这些通路具有不同程度的M和P汇聚。每条通路可能为MT和背侧流视觉处理提供功能上专门化的信息。