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The Effects of Evidence Bounds on Decision-Making: Theoretical and Empirical Developments

机译:证据范围对决策的影响:理论和经验发展

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摘要

Converging findings from behavioral, neurophysiological, and neuroimaging studies suggest an integration-to-boundary mechanism governing decision formation and choice selection. This mechanism is supported by sequential sampling models of choice decisions, which can implement statistically optimal decision strategies for selecting between multiple alternative options on the basis of sensory evidence. This review focuses on recent developments in understanding the evidence boundary, an important component of decision-making raised by experimental findings and models. The article starts by reviewing the neurobiology of perceptual decisions and several influential sequential sampling models, in particular the drift-diffusion model, the Ornstein–Uhlenbeck model and the leaky-competing-accumulator model. In the second part, the article examines how the boundary may affect a model’s dynamics and performance and to what extent it may improve a model’s fits to experimental data. In the third part, the article examines recent findings that support the presence and site of boundaries in the brain. The article considers two questions: (1) whether the boundary is a spontaneous property of neural integrators, or is controlled by dedicated neural circuits; (2) if the boundary is variable, what could be the driving factors behind boundary changes? The review brings together studies using different experimental methods in seeking answers to these questions, highlights psychological and physiological factors that may be associated with the boundary and its changes, and further considers the evidence boundary as a generic mechanism to guide complex behavior.
机译:行为,神经生理学和神经影像学研究的一致发现表明,决定决策和选择选择的一种整合边界机制。该机制由选择决策的顺序抽样模型支持,该模型可以实现统计上最优的决策策略,以便根据感官证据在多个替代选项之间进行选择。这篇综述着重于了解证据边界的最新进展,证据边界是实验结果和模型提出的决策的重要组成部分。本文首先回顾了感知决策的神经生物学和几种有影响的顺序采样模型,尤其是漂移扩散模型,Ornstein-Uhlenbeck模型和竞争竞争积累模型。在第二部分中,文章探讨了边界如何影响模型的动力学和性能,以及在何种程度上可以改善模型对实验数据的适应性。在第三部分中,本文探讨了支持大脑中边界存在和位置的最新发现。本文考虑了两个问题:(1)边界是神经积分器的自然属性还是受专用神经回路控制? (2)如果边界是可变的,边界变化背后的驱动因素是什么?这篇综述汇集了使用不同实验方法的研究,以寻求这些问题的答案,强调了可能与边界及其变化有关的心理和生理因素,并进一步将证据边界视为指导复杂行为的通用机制。

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