Optimizing Nervous System-Specific Gene Targeting with Cre Driver Lines: Prevalence of Germline Recombination and Influencing Factors is a research paper published in Neuron (2020). On theSindex it has a DataRank of 0. It has been cited 197 times.
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Deutsche Forschungsgemeinschaft
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Deutsche Forschungsgemeinschaft
Grant: KA3423/3-1
Ministry of Education, Culture, Sports, Science and Technology
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National Natural Science Foundation of China
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Japan Society for the Promotion of Science
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Japan Society for the Promotion of Science
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Japan Society for the Promotion of Science
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Natural Sciences and Engineering Research Council of Canada
Grant: 06577-2018 RGPIN
Natural Sciences and Engineering Research Council of Canada
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Natural Sciences and Engineering Research Council of Canada
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Natural Sciences and Engineering Research Council of Canada
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Natural Sciences and Engineering Research Council of Canada
Grant: R01MH113349
Natural Sciences and Engineering Research Council of Canada
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Natural Sciences and Engineering Research Council of Canada
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European Molecular Biology Organization
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European Molecular Biology Organization
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European Molecular Biology Organization
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European Molecular Biology Organization
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Science and Technology Commission of Shanghai Municipality
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Simons Foundation Autism Research Initiative
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National Institute of Mental Health
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National Institute of Mental Health
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National Institute of Mental Health
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National Institute of Neurological Disorders and Stroke
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The Neural Functions of Rai1, the Causal Gene for Smith-Magenis Syndrome
National Institute of Neurological Disorders and Stroke
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National Institute of Neurological Disorders and Stroke
Grant: 345098
National Institute of Neurological Disorders and Stroke
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Japan Science and Technology Agency
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Japan Science and Technology Agency
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Japan Science and Technology Agency
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Molecular Pathogenesis Studies of Rett Syndrome
Japan Science and Technology Agency
Grant: 16H06461
National Institutes of Health
Grant: EY5722
National Institutes of Health
Grant: K99/R00 DA041445
National Institutes of Health
Grant: F32 DA038913
European Research Council
Grant: SFB 1286/A9
European Research Council
Grant: 322966
Telling the full story: how neurons send other signals than by classical synaptic transmission
National Institutes of Health
Grant: 1F32DA038913-01
Elucidating input-output relations of rewarding and aversive VTA dopamine neurons
European Commission
Grant: 671048
Myelinic nanochannels in neurodegenerative diseases
National Institutes of Health
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Finding the projection-specific dopaminergic synaptic organizers
Deutsche Forschungsgemeinschaft
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Quantitative Synaptology
European Commission
Grant: 670283
Presynaptic Regulatory Principles in Synaptic Plasticity, Neuronal Network Function, and Behaviour
National Institutes of Health
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Investigating CD47-SIRPa as novel protective signals during CNS synaptic pruning
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Genetic Regulation of Telencephalon Development
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Genetic Control of Basal Telencephalic Development
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Control of synapse formation and maturation by astrocytes
National Institutes of Health
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Dissecting the assembly of neurotransmitter release sites
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Grant: 5R00DA041445-05
INVESTIGATING FUNCTION OF NOVEL DRUG-INDUCED SYNAPTIC CHANGES IN THE VTA
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Synaptic Choices in the Retinotectal System
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How do neurons in the brain decide to refine their synaptic connections in vivo?
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P30 - Center Core Grant for Vision Research
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Control of Tripartite Synapse Formation by Astrocytic Neuroligins
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Molecular Dissection of Active Zone Functions in Neurotransmitter Release
European Commission
Grant: 694584
Alternative Splicing Codes for Synaptic Specificity
National Institutes of Health
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Architecture and function of striatal dopamine release machinery
National Institutes of Health
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Molecular control of neuronal position during retinal development
National Institutes of Health
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Genetic Studies of Cortex Structure and Development
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NEI NIH HHS
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NINDS NIH HHS
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NICHD NIH HHS
Grant: P50 HD103555
Howard Hughes Medical Institute
FWCI
8.87
Citation Percentile
1.0%
Influential Citations
3
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Targeting vulnerable microcircuits in the ventral hippocampus of male transgenic mice to rescue Alzheimer-like social memory loss
Additional file 1 of Targeting vulnerable microcircuits in the ventral hippocampus of male transgenic mice to rescue Alzheimer-like social memory loss
Additional file 5 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 8 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 4 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 1 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 4 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 6 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 7 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 5 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 1 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 8 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 6 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling
Additional file 7 of Synchronization of inspiratory burst onset along the ventral respiratory column in the neonate mouse is mediated by electrotonic coupling