Jorrit Steven Montijn

University of Amsterdam, Amsterdam, Netherlands 
visual neuroscience, population coding, calcium imaging, mouse, stimulus detection
"Jorrit Montijn"
Mean distance: 16.28 (cluster 17)
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Meijer GT, Marchesi P, Mejias JF, et al. (2020) Neural Correlates of Multisensory Detection Behavior: Comparison of Primary and Higher-Order Visual Cortex. Cell Reports. 31: 107636
Meijer GT, Montijn JS, Pennartz CMA, et al. (2017) Audio-visual modulation in mouse V1 depends on cross-modal stimulus configuration and congruency. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Montijn JS, Meijer GT, Lansink CS, et al. (2016) Population-Level Neural Codes Are Robust to Single-Neuron Variability from a Multidimensional Coding Perspective. Cell Reports
Montijn JS, Olcese U, Pennartz CM. (2016) Visual Stimulus Detection Correlates with the Consistency of Temporal Sequences within Stereotyped Events of V1 Neuronal Population Activity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 36: 8624-40
Montijn JS, Goltstein PM, Pennartz CM. (2015) Mouse V1 population correlates of visual detection rely on heterogeneity within neuronal response patterns. Elife. 4
Goltstein PM, Montijn JS, Pennartz CM. (2015) Effects of isoflurane anesthesia on ensemble patterns of Ca2+ activity in mouse v1: reduced direction selectivity independent of increased correlations in cellular activity. Plos One. 10: e0118277
Montijn JS, Vinck M, Pennartz CM. (2014) Population coding in mouse visual cortex: response reliability and dissociability of stimulus tuning and noise correlation. Frontiers in Computational Neuroscience. 8: 58
Montijn JS, Klink PC, van Wezel RJ. (2012) Divisive normalization and neuronal oscillations in a single hierarchical framework of selective visual attention. Frontiers in Neural Circuits. 6: 22
Klink PC, Montijn JS, van Wezel RJ. (2011) Crossmodal duration perception involves perceptual grouping, temporal ventriloquism, and variable internal clock rates. Attention, Perception & Psychophysics. 73: 219-36
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