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David Feng

Researcher at Allen Institute for Brain Science

Publications -  60
Citations -  10953

David Feng is an academic researcher from Allen Institute for Brain Science. The author has contributed to research in topics: Visual cortex & Neocortex. The author has an hindex of 27, co-authored 55 publications receiving 7545 citations. Previous affiliations of David Feng include University of North Carolina at Chapel Hill & Northwestern University.

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An anatomically comprehensive atlas of the adult human brain transcriptome

TL;DR: A transcriptional atlas of the adult human brain is described, comprising extensive histological analysis and comprehensive microarray profiling of ∼900 neuroanatomically precise subdivisions in two individuals, to form a high-resolution transcriptional baseline for neurogenetic studies of normal and abnormal human brain function.
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A mesoscale connectome of the mouse brain

TL;DR: A brain-wide, cellular-level, mesoscale connectome for the mouse, using enhanced green fluorescent protein-expressing adeno-associated viral vectors to trace axonal projections from defined regions and cell types, and high-throughput serial two-photon tomography to image the EGFP-labelled axons throughout the brain.
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Transcriptional landscape of the prenatal human brain

TL;DR: An anatomically comprehensive atlas of the mid-gestational human brain is described, including de novo reference atlases, in situ hybridization, ultra-high-resolution magnetic resonance imaging (MRI) and microarray analysis on highly discrete laser-microdissected brain regions.
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Conserved cell types with divergent features in human versus mouse cortex.

TL;DR: RNA-sequencing analysis of cells in the human cortex enabled identification of diverse cell types, revealing well-conserved architecture and homologous cell types as well as extensive differences when compared with datasets covering the analogous region of the mouse brain.
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The Allen Mouse Brain Common Coordinate Framework: A 3D Reference Atlas.

TL;DR: This work constructed an average template brain at 10 μm voxel resolution by interpolating high resolution in-plane serial two-photon tomography images with 100 μm z-sampling from 1,675 young adult C57BL/6J mice and parcellated the entire brain directly in 3D.