reversal learning
Terms related to the query
Term Similarity Weight in brain map N In query
orbitofrontal
0.030706015471801122
1.0
3508 In expansion
ofc
0.02626464069938285
0.6512903096669765
1511 In expansion
orbitofrontal cortex
0.024554385428197267
0.16519125585978892
2586 In expansion
amygdala
0.0009823153555381487
0.08069530079279318
4540 In expansion
striatum
0.0023919464794114253
0.06130439615717528
3024 In expansion
task
0.0028157166170906713
0.051285249063606764
12194 In expansion
insula
0.0004378523229772167
0.04907123109183849
7050 In expansion
prefrontal
0.0008848956914455643
0.04711006105668394
10017 In expansion
putamen
0.0012281767531709827
0.03922905584071295
3208 In expansion
visual
0.0004464759789317283
0.037895436441872155
10448 In expansion
cingulate
0.0004526648220809775
0.03540600997129986
9501 In expansion
hippocampus
0.0003519971687845057
0.032599853489877866
4610 In expansion
reward
0.0007986311969430739
0.03216126314742771
2823 In expansion
auditory cortex
0.0006462125414887761
0.029068847628272165
846 In expansion
frontal
0.0006600986138962798
0.02487071793958925
11471 In expansion
visual cortex
0.0008733325942792799
0.01959864751508477
2165 In expansion
left
0.0006961427871932691
0.019597078604313565
12782 In expansion
cerebellum
0.00018313351453033968
0.018680980677163082
5578 In expansion
parietal
0.00016175347006445114
0.018488701869071627
10159 In expansion
motor
0.00020049575560130708
0.01722288735339657
7928 In expansion
vmpfc
0.0016800171658930628
0.01629855062359737
1037 In expansion
striatal
0.002575171348399554
0.015369873294876844
2076 In expansion
caudate
0.0005661400652830895
0.015245168462309652
3615 In expansion
motion
0.00018156702617062406
0.012760674013986603
9061 In expansion
thalamus
0.00013624576558458827
0.011890796730244686
4891 In expansion
right
0.0009657789943282685
0.011172315183932906
13076 In expansion
parahippocampal
0.00020585165935903716
0.0105974885875774
3512 In expansion
superior
0.0003986841937620111
0.010036517198883299
9978 In expansion
face
0.0001334637677451123
0.007995022148597944
4405 In expansion
movement
0.00034924829627762936
0.007718022390071794
8260 In expansion
anterior
0.0003561772630757111
0.007711314510323951
11200 In expansion
occipital
9.085054761544028e-05
0.007031867730711999
6796 In expansion
precuneus
0.00010233461346132135
0.006657100717110189
5186 In expansion
inferior
0.0002554306304745956
0.00616035436557171
10215 In expansion
motor cortex
0.0005896783523371652
0.006065721675831791
1500 In expansion
hope
0.0004195649876890993
0.005890709504728492
353 In expansion
inferior frontal gyrus
0.00026083237159605125
0.005793568547384098
5245 In expansion
memory
0.0005128351627005936
0.005289861177714723
8405 In expansion
word
0.00022056538844649796
0.00510973259339306
6479 In expansion
temporal
7.792806952274694e-05
0.0045777964680446355
11897 In expansion
performance
0.00438255424252588
0.0
9105 In expansion
punishment
0.012817208073797772
0.0
617 In expansion
practice
0.003052523803009423
0.0
3877 In expansion
motivation
0.005020374767969857
0.0
2377 In expansion
motor learning
0.008267428592021309
0.0
401 In expansion
motor sequence learning
0.004696416593219516
0.0
120 In expansion
outcome
0.004218952140999354
0.0
4269 In expansion
switching
0.007581846551601662
0.0
1476 In expansion
task switching
0.005453238403696064
0.0
502 In expansion
switch
0.0029193754094653927
0.0
986 In expansion
trial
0.00333319264806866
0.0
7031 In expansion
reversal
0.008344319502536257
0.0
631 In expansion
reversal learning
1.0
0.0
174 In query
response inhibition
0.006221494707712514
0.0
1092 In expansion
rule
0.0037153045663323755
0.0
3437 In expansion
reinforcement
0.006539517078504736
0.0
810 In expansion
reinforcement learning
0.004400265087994488
0.0
290 In expansion
skill
0.0037743462014118824
0.0
2168 In expansion
skill learning
0.0033755568419145125
0.0
164 In expansion
sequence
0.00798606072310281
0.0
10577 In expansion
sequence learning
0.008497891504488556
0.0
176 In expansion
disorder
0.00451878999923234
0.0
8378 In expansion
cortex
0.01817396914969255
0.0
13015 In expansion
acquisition
0.003072877236357315
0.0
11284 In expansion
aggressive
0.010155226955346933
0.0
490 In expansion
bipolar disorder
0.007963048516430945
0.0
749 In expansion
bipolar
0.009859035355867705
0.0
1173 In expansion
behavior
0.004326635823631156
0.0
9967 In expansion
implicit
0.006237669132765894
0.0
2063 In expansion
implicit learning
0.0037467362147599642
0.0
169 In expansion
impulsivity
0.002897606482915985
0.0
897 In expansion
inhibition
0.0035121339611958375
0.0
4517 In expansion
learning
0.08706980623273676
0.0
5239 In expansion
learned
0.005900961370503924
0.0
2048 In expansion
explicit
0.0030957843974005325
0.0
2726 In expansion
dopamine
0.009624920564924864
0.0
1814 In expansion
feedback
0.013793359762908929
0.0
3189 In expansion
Predicted distribution of activations in the literature
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Publications related to the query
A functional polymorphism in the prodynorphin gene affects cognitive flexibility and brain activation during reversal learning
Differential Brain Activity During Emotional vs. Non-emotional Reversal Learning
Age-related similarities and differences in brain activity underlying reversal learning
Human Reversal Learning Under Conditions of Certain versus Uncertain Outcomes
Dopaminergic drug effects during reversal learning depend on anatomical connections between the orbitofrontal cortex and the amygdala
Dissociable roles for lateral orbitofrontal cortex and lateral prefrontal cortex during preference driven reversal learning
Neural correlates of a reversal learning task with an affectively neutral baseline: An event-related fMRI study
Test–retest reliability of event-related functional MRI in a probabilistic reversal learning task
Altered neural function in pediatric bipolar disorder during reversal learning
Altered neural function in pediatric bipolar disorder during reversal learning
Dissociable responses to punishment in distinct striatal regions during reversal learning
Parsing decision making processes in prefrontal cortex: Response inhibition, overcoming learned avoidance, and reversal learning
Response Perseveration in Stimulant Dependence Is Associated with Striatal Dysfunction and Can Be Ameliorated by a D2/3 Receptor Agonist
Altered brain activation in a reversal learning task unmasks adaptive changes in cognitive control in writer's cramp
Neural Components Underlying Behavioral Flexibility in Human Reversal Learning
Distinct contributions of lateral orbito-frontal cortex, striatum, and fronto-parietal network regions for rule encoding and control of memory-based implementation during instructed reversal learning
Dissociating Value Representation and Inhibition of Inappropriate Affective Response during Reversal Learning in the Ventromedial Prefrontal Cortex123
Alterations in the functional neural circuitry supporting flexible choice behavior in autism spectrum disorders
Associations between polygenic risk for schizophrenia and brain function during probabilistic learning in healthy individuals
Determining a Role for Ventromedial Prefrontal Cortex in Encoding Action-Based Value Signals During Reward-Related Decision Making
Neural correlates of response reversal: Considering acquisition
Neural networks supporting switching, hypothesis testing, and rule application
Dynamic brain mapping of behavior change: Tracking response initiation and inhibition to changes in reinforcement rate
The feedback-related negativity (FRN) revisited: New insights into the localization, meaning and network organization
Fronto-striatal organization: Defining functional and microstructural substrates of behavioural flexibility
Differential representation of feedback and decision in adolescents and adults
Amygdala tractography predicts functional connectivity and learning during feedback-guided decision-making
Motivational orientation modulates the neural response to reward
Neural Substrates of Contingency Learning and Executive Control: Dissociating Physical, Valuative, and Behavioral Changes
Spatiotemporal neural characterization of prediction error valence and surprise during reward learning in humans