Budd J M
School of Cognitive and Computing Sciences, University of Sussex, Brighton, UK.
Proc Biol Sci. 1998 Jun 7;265(1400):1037-44. doi: 10.1098/rspb.1998.0396.
Knowledge-based or top-down influences on primary visual cortex (area V1) are believed to originate from information conveyed by extrastriate feedback axon connections. Understanding how this information is communicated to area V1 neurons relies in part on elucidating the quantitative as well as the qualitative nature of extrastriate pathway connectivity. A quantitative analysis of the connectivity based on anatomical data regarding the feedback pathway from extrastriate area V2 to area V1 in macaque monkey suggests (i) a total of around ten million or more area V2 axons project to area V1; (ii) the mean number of synaptic inputs from area V2 per upper-layer pyramidal cell in area V1 is less than 6% of all excitatory inputs; and (iii) the mean degree of convergence of area V2 afferents may be high, perhaps more than 100 afferent axons per cell. These results are consistent with empirical observations of the density of radial myelinated axons present in the upper layers in macaque area V1 and the proportion of excitatory extrastriate feedback synaptic inputs onto upper-layer neurons in rat visual cortex. Thus, in primate area V1, extrastriate feedback synapses onto upper-layer cells may, like geniculocortical afferent synapses onto layer IVC neurons, form only a small percentage of the total excitatory synaptic input.
基于知识或自上而下对初级视觉皮层(V1区)的影响被认为源于纹外反馈轴突连接所传递的信息。了解这些信息如何传递给V1区神经元,部分依赖于阐明纹外通路连接的数量和质量特性。基于猕猴从纹外V2区到V1区反馈通路的解剖学数据对连接性进行的定量分析表明:(i)共有约一千万或更多的V2区轴突投射到V1区;(ii)V1区上层锥体细胞从V2区接收的突触输入平均数不到所有兴奋性输入的6%;(iii)V2区传入纤维的平均汇聚程度可能很高,每个细胞可能有超过100条传入轴突。这些结果与猕猴V1区上层中径向有髓轴突密度以及大鼠视觉皮层上层神经元上兴奋性纹外反馈突触输入比例的实证观察结果一致。因此,在灵长类动物的V1区,纹外反馈突触到上层细胞上,可能像膝状体皮质传入突触到IVC层神经元上一样,仅占总兴奋性突触输入的一小部分。