Anatoly Buchin, PhD

Affiliations: 
2008-2015 Computional Physics Laboratory A. F. Ioffe Institute of Physics and Technology  
 2012-2015 Departement des Etudes Cognitives École normale supérieure Paris, Paris, Île-de-France, France 
 2016-2017 Physiology and Biophysics University of Washington, Seattle, Seattle, WA 
 2017-2021 MAT Allen Institute for Brain Science, Seattle, WA, United States 
 2021- Human multi-omics Cajal Neuroscience 
Area:
Computational Biology, Neuroscience, Epilepsy, Parkinson's disease, Alzheimeri's disease
Website:
http://www.buchin.info/
Google:
"Anatoly Buchin"
Bio:

Hi everybody, my name is Anatoly Buchin. I am computational biologist working at Cajal Neuroscience. I use methods of statistics, machine learning and numerical simulations to study the brain function and pathology. Specifically I am interested in single cell genomics, pathologies of the nervous system (Alzheimer's, Parkinson's, Epilepsy) and biological neural networks. My current projects are related to multimodal neural data analysis and development of novel drug targets against Alzheimer's and Parkinson's diseases.

Mean distance: 16.83 (cluster 17)
 

Parents

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Anton Chizhov research assistant 2010-2010 Ioffe Physico-Technical Institute
Boris Gutkin grad student 2012-2015 ENS Paris
Adrienne Fairhall post-doc 2016-2017 University of Washington - Seattle/ NIH
Benjamin A. Logsdon research scientist 2021- (Computational Biology Tree)
Costas A. Anastassiou research scientist 2017-2021 Allen Institute

Collaborators

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Gilles Huberfeld collaborator 2011- Hôpital Necker-Enfants
Richard Miles collaborator 2011- Institut du Cerveau et de la Moelle épinière (ICM), Paris
Rafael Yuste collaborator 2016- Columbia
Michael Häusser collaborator 2010-2016 UCL
Arnd Roth collaborator 2010-2016 UCL
BETA: Related publications

Publications

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Wei Y, Nandi A, Jia X, et al. (2023) Associations between , and cell classes in mouse primary visual cortex. Biorxiv : the Preprint Server For Biology
Wei Y, Nandi A, Jia X, et al. (2023) Associations between in vitro, in vivo and in silico cell classes in mouse primary visual cortex. Nature Communications. 14: 2344
Buchin A, de Frates R, Nandi A, et al. (2022) Multi-modal characterization and simulation of human epileptic circuitry. Cell Reports. 41: 111873
Nandi A, Chartrand T, Van Geit W, et al. (2022) Single-neuron models linking electrophysiology, morphology, and transcriptomics across cortical cell types. Cell Reports. 41: 111659
Nandi A, Chartrand T, Van Geit W, et al. (2022) Single-neuron models linking electrophysiology, morphology, and transcriptomics across cortical cell types. Cell Reports. 40: 111176
Berg J, Sorensen SA, Ting JT, et al. (2022) Author Correction: Human neocortical expansion involves glutamatergic neuron diversification. Nature
Berg J, Sorensen SA, Ting JT, et al. (2021) Human neocortical expansion involves glutamatergic neuron diversification. Nature. 598: 151-158
Kalmbach BE, Buchin A, Long B, et al. (2018) h-Channels Contribute to Divergent Intrinsic Membrane Properties of Supragranular Pyramidal Neurons in Human versus Mouse Cerebral Cortex. Neuron
Buchin A, Kerr CC, Huberfeld G, et al. (2018) Adaptation and Inhibition Control Pathological Synchronization in a Model of Focal Epileptic Seizure. Eneuro. 5
Rubchinsky LL, Ahn S, Klijn W, et al. (2017) 26th Annual Computational Neuroscience Meeting (CNS*2017): Part 2 Bmc Neuroscience. 18
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