Jeffrey M. Beck
Duke University
US
Core Metrics
Total Citations
5,623
H-Index
22
Publications
49
i10-Index
27
2-Year Citedness
0.0
avg citations per work
Ability Dimensions
5,623 citations, h=22
Based on publication trend
49 papers (2.2/year)
115 cites/paper
5 unique research topics
5 topic areas
Top 3 papers: 50% of citations
* Percentile scores are calculated relative to all scholars in the computational neuroscience dataset. Tags are assigned based on dimension combinations. Hover over the radar chart for details.
Scholar Profile Analysis
Jeffrey M. Beck is a rising scholar with 5k+ citations in computational neuroscience, currently affiliated with Duke University.
Over a 22-year academic career, published 49 papers (averaging 2.2 per year), with 5,623 citations.
Primary research areas include Poisson distribution, Extinction (optical mineralogy), Description logic.
Key Findings
Signature Work
"Bayesian inference with probabilistic population codes" is the most influential work, with 1,509 citations, published in 2006.
Consistent Output
Averaging 115 citations per paper, maintaining steady high-quality output.
Early Career Analysis (First 5 Years)
Career Start
2003 - 2007
Early Citations
1,652
Early Works
7
Early Impact %
29.4%
Top Early Career Paper
Bayesian inference with probabilistic population codes
Publication Timeline
Research Topics
Top Publications
Bayesian inference with probabilistic population codes
1,509
Citations
Probabilistic Population Codes for Bayesian Decision Making
681
Citations
Probabilistic brains: knowns and unknowns
643
Citations
Information-limiting correlations
618
Citations
Not Noisy, Just Wrong: The Role of Suboptimal Inference in Behavioral Variability
351
Citations
An insula-frontostriatal network mediates flexible cognitive control by adaptively predicting changing control demands
164
Citations
Marginalization in Neural Circuits with Divisive Normalization
150
Citations
Perceptual learning as improved probabilistic inference in early sensory areas
129
Citations
Behavior and neural basis of near-optimal visual search
119
Citations
Spiking networks for Bayesian inference and choice
114
Citations