Limanowski Jakub, Adams Rick A, Kilner James, Parr Thomas
Institute of Psychology, University of Greifswald, 17487 Greifswald, Germany.
Institute of Cognitive Neuroscience, University College London, London WC1N 3AZ, UK.
Entropy (Basel). 2024 Sep 14;26(9):790. doi: 10.3390/e26090790.
Active inference describes (Bayes-optimal) behaviour as being motivated by the minimisation of surprise of one's sensory observations, through the optimisation of a generative model (of the hidden causes of one's sensory data) in the brain. One of active inference's key appeals is its conceptualisation of precision as biasing neuronal communication and, thus, inference within generative models. The importance of precision in perceptual inference is evident-many studies have demonstrated the importance of ensuring precision estimates are correct for normal (healthy) sensation and perception. Here, we highlight the many roles precision plays in action, i.e., the key processes that rely on adequate estimates of precision, from decision making and action planning to the initiation and control of muscle movement itself. Thereby, we focus on the recent development of hierarchical, "mixed" models-generative models spanning multiple levels of discrete and continuous inference. These kinds of models open up new perspectives on the unified description of hierarchical computation, and its implementation, in action. Here, we highlight how these models reflect the many roles of precision in action-from planning to execution-and the associated pathologies if precision estimation goes wrong. We also discuss the potential biological implementation of the associated message passing, focusing on the role of neuromodulatory systems in mediating different kinds of precision.
主动推理将(贝叶斯最优)行为描述为通过优化大脑中(关于自身感官数据隐藏原因的)生成模型,使自身感官观察的意外性最小化从而产生的行为。主动推理的关键吸引力之一在于其将精度概念化为对神经元通信产生偏差,进而在生成模型中进行推理。精度在感知推理中的重要性是显而易见的——许多研究已经证明确保精度估计对于正常(健康)的感觉和感知是正确的至关重要。在这里,我们强调精度在行动中所起的多种作用,即从决策、行动规划到肌肉运动本身的启动和控制等依赖于充分精度估计的关键过程。因此,我们关注分层“混合”模型的最新发展——跨越离散和连续推理多个层次的生成模型。这类模型为行动中分层计算及其实现的统一描述开辟了新的视角。在这里,我们强调这些模型如何反映精度在行动中从规划到执行的多种作用,以及精度估计出错时的相关病理情况。我们还讨论了相关消息传递的潜在生物学实现,重点关注神经调节系统在介导不同类型精度方面的作用。