3-way anova matlab function 'anovan (MathWorks Inc)
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MathWorks Inc
3-way anova matlab function 'anovan
3 Way Anova Matlab Function 'Anovan, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/3-way+anova+matlab+function+anovan/pm28521137-362-14-16
Average 90 stars, based on 1 article reviews
3 Way Anova Matlab Function 'Anovan, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/3-way+anova+matlab+function+anovan/pm28521137-362-14-16
Average 90 stars, based on 1 article reviews
3-way anova matlab function 'anovan - by Bioz Stars,
2026-09
90/100 stars
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other:Article Title: A Map of Anticipatory Activity in Mouse Motor Cortex. Article Snippet: For each time point t, we tested the significance of each contributing factor using Article Title: Superior colliculus bidirectionally modulates choice activity in frontal cortex. Article Snippet: We modeled the neuronal response using a linear model, where the spike count (R) is a linear combination of 3 potential contributing variables (i.e. object location, α; choice, β; and outcome, γ), plus a constant a: R=a+ b1 α + b2 β + b3 γ ð1Þ Nature Communications | (2023) 14:7358 15 where: α = 1 if stimulus is anterior 0 if stimulus is posterior ð2Þ β = 1 if choice is right 0 if choice is lef t ð3Þ γ = 1 if the trial is rewarded ðcorrect trialÞ 0 if the trial is unrewarded ðerror trialÞ ð4Þ To test if a neuron is selective for stimulus or choice, we tested the significance of each contribution factor using Article Title: Superior colliculus cell types bidirectionally modulate choice activity in frontal cortex Article Snippet: We modeled the neuronal response using a linear model, where the spike count ( R ) is a linear combination of 3 potential contributing variables (i.e. object location, α ; choice, β ; and outcome, γ ), plus a constant a : R = a + b 1 ⋅ α + b 2 ⋅ β + b 3 ⋅ γ where: α = 1 i f s t i m u l u s i s a n t e r i o r 0 i f s t i m u l u s i s p o s t e r i o r β = 1 i f c h o i c e i s r i g h t 0 i f c h o i c e i s l e f t γ = 1 i f the t r i a l i s r e w a r d e d ( c o r r e c t t r i a l ) 0 i f t h e t r i a l i s u n r e w a r d e d ( e r r o r t r i a l ) To test if a neuron is selective for stimulus or choice, we tested the significance of each contribution factor using Article Title: Superior colliculus cell types bidirectionally modulate choice activity in frontal cortex Article Snippet: We modeled the neuronal response using a linear model, where the spike count ( R ) is a linear combination of 3 potential contributing variables (i.e. object location, α ; choice, β ; and outcome, γ ), plus a constant a : where: To test if a neuron is selective for stimulus or choice, we tested the significance of each contribution factor using |