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Betty, R.

Publications and source records attributed to Betty, R..

2 recordsLinked to original sources

Brain-wide connectivity and novelty response of the dorsal endopiriform nucleus in mice

The dorsal endopiriform nucleus (EPd) is an enigmatic cortical subplate structure located inside the piriform cortex that shares a similar developmental origin with the claustrum. Although the EPd has been previously implicated in epilepsy and olfactory processing, its anatomical organization, connectivity patterns, and function remain largely unclear due to a lack of specific molecular markers. Our previous mapping study serendipitously identified that the Oxt receptor (Oxtr) is densely expressed in the EPd. Subsequent immunohistochemical and spatial transcriptomic analyses confirmed that Oxtr expression is enriched in the EPd, revealing distinct molecular organization compared to the neighboring claustrum. Whole brain input-output mapping of EPd Oxtr-positive neurons unveils extensive bidirectional connections to the ventral half of the brain, orchestrating functional circuits regulating olfaction, internal state, and emotion. Furthermore, our in-vivo miniscope recordings show that EPd Oxtr neurons exhibit high baseline activity during exploratory behavior, with a sharp decrease in activity in response to novel stimuli. This suggests that the EPd regulates interoceptive states and likely plays a role in adapting to novel exteroceptive cues.

neuroscience↗

Developmental Mouse Brain Common Coordinate Framework

3D standard reference brains serve as key resources to understand the spatial organization of the brain and promote interoperability across different studies. However, unlike the adult mouse brain, the lack of standard 3D reference atlases for developing mouse brains has hindered advancement of our understanding of brain development. Here, we present a multimodal 3D developmental common coordinate framework (DevCCF) spanning mouse embryonic day (E) 11.5, E13.5, E15.5, E18.5, and postnatal day (P) 4, P14, and P56 with anatomical segmentations defined by a developmental ontology. At each age, the DevCCF features undistorted morphologically averaged atlas templates created from Magnetic Resonance Imaging and co-registered high-resolution templates from light sheet fluorescence microscopy. Expert-curated 3D anatomical segmentations at each age adhere to an updated prosomeric model and can be explored via an interactive 3D web-visualizer. As a use case, we employed the DevCCF to unveil the emergence of GABAergic neurons in embryonic brains. Moreover, we integrated the Allen CCFv3 into the P56 template with stereotaxic coordinates and mapped spatial transcriptome cell-type data with the developmental ontology. In summary, the DevCCF is an openly accessible resource that can be used for large-scale data integration to gain a comprehensive understanding of brain development.

neuroscience↗