Login / Signup

Nonuniform and pathway-specific laminar processing of spatial frequencies in the primary visual cortex of primates.

Tian WangWeifeng DaiYujie WuYang LiYi YangYange ZhangTingting ZhouXiaowen SunGang WangLiang LiFei DouDajun Xing 邢大军
Published in: Nature communications (2024)
The neocortex comprises six cortical layers that play a crucial role in information processing; however, it remains unclear whether laminar processing is consistent across all regions within a single cortex. In this study, we demonstrate diverse laminar response patterns in the primary visual cortex (V1) of three male macaque monkeys when exposed to visual stimuli at different spatial frequencies (SFs). These response patterns can be categorized into two groups. One group exhibit suppressed responses in the output layers for all SFs, while the other type shows amplified responses specifically at high SFs. Further analysis suggests that both magnocellular (M) and parvocellular (P) pathways contribute to the suppressive effect through feedforward mechanisms, whereas amplification is specific to local recurrent mechanisms within the parvocellular pathway. These findings highlight the non-uniform distribution of neural mechanisms involved in laminar processing and emphasize how pathway-specific amplification selectively enhances representations of high-SF information in primate V1.
Keyphrases
  • nucleic acid
  • health information
  • working memory
  • healthcare