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探寻内在动机的神经回路。

In search of the neural circuits of intrinsic motivation.

作者信息

Kaplan Frederic, Oudeyer Pierre-Yves

机构信息

EPFL-CRAFT, Ecole Polytechnique Federale de Lausanne, Switzerland.

出版信息

Front Neurosci. 2007 Oct 15;1(1):225-36. doi: 10.3389/neuro.01.1.1.017.2007. eCollection 2007 Nov.

Abstract

Children seem to acquire new know-how in a continuous and open-ended manner. In this paper, we hypothesize that an intrinsic motivation to progress in learning is at the origins of the remarkable structure of children's developmental trajectories. In this view, children engage in exploratory and playful activities for their own sake, not as steps toward other extrinsic goals. The central hypothesis of this paper is that intrinsically motivating activities correspond to expected decrease in prediction error. This motivation system pushes the infant to avoid both predictable and unpredictable situations in order to focus on the ones that are expected to maximize progress in learning. Based on a computational model and a series of robotic experiments, we show how this principle can lead to organized sequences of behavior of increasing complexity characteristic of several behavioral and developmental patterns observed in humans. We then discuss the putative circuitry underlying such an intrinsic motivation system in the brain and formulate two novel hypotheses. The first one is that tonic dopamine acts as a learning progress signal. The second is that this progress signal is directly computed through a hierarchy of microcortical circuits that act both as prediction and metaprediction systems.

摘要

儿童似乎以一种持续且无限制的方式获取新技能。在本文中,我们假设在学习中取得进步的内在动力是儿童发展轨迹显著结构的根源。从这个角度来看,儿童进行探索性和趣味性活动是出于活动本身,而非作为迈向其他外在目标的步骤。本文的核心假设是,具有内在激励作用的活动对应于预测误差的预期降低。这种动机系统促使婴儿避开可预测和不可预测的情况,以便专注于那些有望使学习进步最大化的情况。基于一个计算模型和一系列机器人实验,我们展示了这一原理如何导致具有越来越复杂特征的有组织行为序列,这些特征是在人类身上观察到的几种行为和发展模式所具有的。然后,我们讨论了大脑中这种内在动机系统背后的假定神经回路,并提出了两个新的假设。第一个假设是,持续性多巴胺充当学习进步信号。第二个假设是,这个进步信号是通过作为预测和元预测系统的微皮质回路层级直接计算得出的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/063c/2518057/a9313c32af21/fnins-01-225-g001.jpg

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