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Topic: Single-cell RNAseq

Seminar
2 seminars
Seminar · Genomics

What transcriptomics tells us about retinal development, disease and evolution

Joshua Sanes · Harvard University

Mon, Nov 22, 2021 · 14:00 UTC

Classification of neurons, long viewed as a fairly boring enterprise, has emerged as a major bottleneck in analysis of neural circuits. High throughput single cell RNA-seq has provided a new way to improve the situation. We initially applied this method to mouse retina, showing that its five neuronal classes (photoreceptors, three groups of interneurons, and retinal ganglion cells) can be divided into 130 discrete types. We then applied the method to other species including human, macaque, zebrafish and chick. With the atlases in hand, we are now using them to address questions about how retin

Seminar · Neuroscience

Organization of Midbrain Serotonin System

Jing Ren · MRC Laboratory of Molecular Biology, Cambridge

Tue, Mar 9, 2021 · 15:00 UTC

The serotonin system is the most frequently targeted neural system pharmacologically for treating psychiatric disorders, including depression and anxiety. Serotonin neurons of the dorsal and median raphe nuclei (DR, MR) collectively innervate the entire forebrain and midbrain, modulating diverse physiology and behaviour. By using viral-genetic methods, we found that DR serotonin system contains parallel sub-systems that differ in input and output connectivity, physiological response properties, and behavioural functions. To gain a fundamental understanding of the molecular heterogeneity of DR

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