Neuronal Connectivity as a Determinant of Cell Types and Subtypes
Liu, L.; Yun, Z.; Manubens-Gil, L.; Chen, H.; Xiong, F.; Dong, H.; Zeng, H.; Hawrylycz, M.; Ascoli, G. A.; Peng, H.
Show abstract
Classifications of single neurons at brain-wide scale is a powerful way to characterize the structural and functional organization of a brain. We acquired and standardized a large morphology database of 20,158 mouse neurons, and generated a whole-brain scale potential connectivity map of single neurons based on their dendritic and axonal arbors. With such an anatomy-morphology-connectivity mapping, we defined neuron connectivity types and subtypes (both called "c-types" for simplicity) for neurons in 31 brain regions. We found that neuronal subtypes defined by connectivity in the same regions may share statistically higher correlation in their dendritic and axonal features than neurons having contrary connectivity patterns. Subtypes defined by connectivity show distinct separation with each other, which cannot be recapitulated by morphology features, population projections, transcriptomic, and electrophysiological data produced to date. Within this paradigm, we were able to characterize the diversity in secondary motor cortical neurons, and subtype connectivity patterns in thalamocortical pathways. Our finding underscores the importance of connectivity in characterizing the modularity of brain anatomy, as well as the cell types and their subtypes. These results highlight that c-types supplement conventionally recognized transcriptional cell types (t-types), electrophysiological cell types (e-types), and morphological cell types (m-types) as an important determinant of cell classes and their identities.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Non-homogenous axonal bouton distribution in whole-brain single cell neuronal networks 97%
- A Comprehensive Atlas of Perineuronal Net Distribution and Colocalization with Parvalbumin in the Adult Mouse Brain 96%
- Regional and cell type-specific afferent and efferent projections of the mouse claustrum 95%
Similar papers in this journal
- Whole-brain connectivity atlas of glutamatergic and GABAergic neurons in mouse dorsal and median raphe nucleus 95%
- Long-term stability of neuronal ensembles in mouse visual cortex 95%
- Mesotrode: chronic simultaneous mesoscale cortical imaging and subcortical or peripheral nerve spiking activity recording in mice. 95%
Similar papers in this journal
- Reconstruction of 1,000 projection neurons reveals new cell types and organization of long-range connectivity in the mouse brain 95%
- Toward an integrated classification of neuronal cell types: morphoelectric and transcriptomic characterization of individual GABAergic cortical neurons 95%
- A taxonomy of transcriptomic cell types across the isocortex and hippocampal formation 95%
Similar papers in this journal
- Specific inhibition and disinhibition in the higher-order structure of a cortical connectome 95%
- Long-range interhemispheric projection neurons show biased response properties and fine-scale local subnetworks in mouse visual cortex 94%
- Time course of homeostatic structural plasticity in response to optogenetic stimulation in mouse anterior cingulate cortex 94%
"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.