Xiaoyin Chen, Ph.D.
Affiliations: | 2005-2013 | Biological Sciences | Columbia University, New York, NY |
2015-2021 | Cold Spring Harbor Laboratory, Cold Spring Harbor, NY | ||
2021- | Allen Institute for Brain Science | Allen Institute |
Area:
Neuroanatomy, spatial transcriptomics, in situ sequencingGoogle:
"Xiaoyin Chen"Mean distance: 15.91 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorMartin Chalfie | grad student | 2013 | Columbia | |
(Modulation of touch sensitivity in Caenorhabditis elegans .) | ||||
Anthony M. Zador | post-doc | 2015-2021 |
BETA: Related publications
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Publications
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Yuan L, Chen X, Zhan H, et al. (2024) Massive multiplexing of spatially resolved single neuron projections with axonal BARseq. Nature Communications. 15: 8371 |
Chen X, Fischer S, Rue MCP, et al. (2024) Whole-cortex in situ sequencing reveals input-dependent area identity. Nature |
Yuan L, Chen X, Zhan H, et al. (2023) Massive Multiplexing of Spatially Resolved Single Neuron Projections with Axonal BARseq. Biorxiv : the Preprint Server For Biology |
Chen Y, Chen X, Baserdem B, et al. (2022) High-throughput sequencing of single neuron projections reveals spatial organization in the olfactory cortex. Cell. 185: 4117-4134.e28 |
Muñoz-Castañeda R, Zingg B, Matho KS, et al. (2021) Cellular anatomy of the mouse primary motor cortex. Nature. 598: 159-166 |
Sun YC, Chen X, Fischer S, et al. (2021) Integrating barcoded neuroanatomy with spatial transcriptional profiling enables identification of gene correlates of projections. Nature Neuroscience |
Chen S, Loper J, Chen X, et al. (2021) BARcode DEmixing through Non-negative Spatial Regression (BarDensr). Plos Computational Biology. 17: e1008256 |
Chen X, Sun YC, Zhan H, et al. (2019) High-Throughput Mapping of Long-Range Neuronal Projection Using In Situ Sequencing. Cell. 179: 772-786.e19 |
Chen X, Sun YC, Church GM, et al. (2017) Efficient in situ barcode sequencing using padlock probe-based BaristaSeq. Nucleic Acids Research |
Chen X, Chalfie M. (2015) Regulation of mechanosensation in C. elegans through ubiquitination of the MEC-4 mechanotransduction channel. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 35: 2200-12 |