Transmission of Mixed Convergent Signals at the Mouse Retinogeniculate Synapse
Sonoda, T.; Jiang, Q.; Acaron Ledesma, H.; Wei, W.; Chen, C.
Show abstract
There are two broad modes of information transfer in the brain: the labeled line model, where neurons relay inputs they receive, and the mixed tuning model, where neurons transform and integrate different inputs. In the visual pathway, information transfer between retinal ganglion cells (RGCs) and the dorsal lateral geniculate nucleus (dLGN) neurons is primarily viewed as a labeled line. However, recent work in mice has demonstrated that different RGC types, encoding distinct visual features, can converge onto a dLGN neuron, raising the fundamental question of whether the dLGN transforms visual information. Using optogenetics we activated distinct RGC populations and assessed spiking output of dLGN neurons by in vivo recordings. We found that visual response properties of dLGN neurons driven by a specific RGC population largely matched properties of the activated RGCs. Furthermore, in vitro dual-opsin experiments demonstrate that strong functional convergence from distinct RGC types rarely occurs. Thus, retinogeniculate information transfer in mice largely adheres to a labeled line model.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The cell adhesion molecule Sdk1 shapes assembly of a retinal circuit that detects localized edges. 98%
- The locus coeruleus broadcasts prediction errors across the cortex to promote sensorimotor plasticity 97%
- Cholinergic input to mouse visual cortex signals a movement state and acutely enhances layer 5 responsiveness 97%
Similar papers in this journal
- Individual thalamic inhibitory interneurons are functionally specialized towards distinct visual features 98%
- Cortical VIP neurons locally control the gain but globally control the coherence of gamma band rhythms 96%
- Bottom-up inputs are required for the establishment of top-down connectivity onto cortical layer 1 neurogliaform cells 96%
Similar papers in this journal
- Neural circuits in the mouse retina support color vision in the upper visual field 98%
- Strong and specific connections between retinal axon mosaics and midbrain neurons revealed by large scale paired recordings 97%
- Distinct information conveyed to the olfactory bulb by feedforward input from the nose and feedback from the cortex 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.