Neural Mechanisms of Human Decision-Making

被引:0
作者
Seth Herd
Kai Krueger
Ananta Nair
Jessica Mollick
Randall O’Reilly
机构
[1] eCortex,
[2] Inc.,undefined
[3] University of Colorado,undefined
[4] Yale University,undefined
[5] University of California,undefined
[6] Davis,undefined
来源
Cognitive, Affective, & Behavioral Neuroscience | 2021年 / 21卷
关键词
Neural network; Decision-making; Basal ganglia; Model-based; Controlled processing;
D O I
暂无
中图分类号
学科分类号
摘要
We present a theory and neural network model of the neural mechanisms underlying human decision-making. We propose a detailed model of the interaction between brain regions, under a proposer-predictor-actor-critic​ ​framework. This theory is based on detailed animal data and theories of action-selection. Those theories are adapted to serial operation to bridge levels of analysis and explain human decision-making. Task-relevant areas of cortex propose a candidate plan using fast, model-free, parallel neural computations. Other areas of cortex and medial temporal lobe can then predict​ likely outcomes of that plan in this situation. This optional prediction- (or model-) based computation can produce better accuracy and generalization, at the expense of speed. Next, linked regions of basal ganglia act​ to accept or reject the proposed plan based on its reward history in similar contexts. If that plan is rejected, the process repeats to consider a new option. The reward-prediction system acts as a critic​ to determine the value of the outcome relative to expectations and produce dopamine as a training signal for cortex and basal ganglia. By operating sequentially and hierarchically, the same mechanisms previously proposed for animal action-selection could explain the most complex human plans and decisions. We discuss explanations of model-based decisions, habitization, and risky behavior based on the computational model.
引用
收藏
页码:35 / 57
页数:22
相关论文
共 236 条
  • [81] O'Doherty JP(1996)The binding problem Current Opinion in Neurobiology 6 70-undefined
  • [82] Graybiel AM(2009)A specific role for posterior dorsolateral striatum in human habit learning European Journal of Neuroscience 29 464-undefined
  • [83] Aosaki T(2018)Competing theories of multialternative, multiattribute preferential choice Psychological Review 125 513-undefined
  • [84] Flaherty AW(2014)Orbitofrontal cortex as a cognitive map of task space Neuron 81 undefined-undefined
  • [85] Kimura M(2003)Moving towards solutions to some enduring controversies in visual search Trends in Cognitive Sciences 7 undefined-undefined
  • [86] Grossberg S(2006)The role of the basal ganglia in habit formation Nat Rev Neurosci 7 undefined-undefined
  • [87] Gurney K(2005)The role of the dorsomedial striatum in instrumental conditioning European Journal of Neuroscience 22 undefined-undefined
  • [88] Prescott TJ(undefined)undefined undefined undefined undefined-undefined
  • [89] Redgrave P(undefined)undefined undefined undefined undefined-undefined
  • [90] Haber SN(undefined)undefined undefined undefined undefined-undefined