Active inference, smooth pursuit and oculomotor delays
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appeared in J. S. Pezaris and N. G. Hatsopoulos (editors) Proceedings of AREADNE 2012, Santorini, Greece, 21-24 June 2012, published by The AREADNE Foundation, Inc., Cambridge, Massachusetts, USA, http://areadne.org, page 78.
- Laurent U. Perrinet, Rick A. Adams, Karl Friston. Active inference, smooth pursuit and oculomotor delays.. In Proceedings of AREADNE, Santorini, Greece, 21-24 June 2012, published by The AREADNE Foundation, Inc., Cambridge, Massachusetts, USA, http://areadne.org., 2012 abstractWe consider the problem of sensorimotor delays in the optimal control of movement under un-certainty. Speciﬁcally, we consider axonal conduction delays in the visuo-oculomotor loop andtheir implications for active inference. Active inference uses a generalisation of Kalman ﬁlter-ing to provide Bayes optimal estimates of hidden states and action in generalised coordinatesof motion. Representing hidden states in generalised coordinates provides a simple means ofcompensating for both sensory and oculomotor delays. This compensation is illustrated us-ing neuronal simulations of oculomotor following responses with and without compensation.We then consider an extension of the generative model that produces ocular followingto simulate smooth pursuit eye movements — in which the system believes both the target andits centre of gaze are attracted by a (ﬁctive) point moving in the visual ﬁeld. Finally, the gen-erative model is equipped with a hierarchical structure, so that it can register and rememberunseen (occluded) trajectories and emit anticipatory responses. These simulations speak to astraightforward and neurobiologically plausible solution to the generic problem of integratinginformation from different sources with different temporal delays and the particular difﬁcultiesencountered when a system — like the oculomotor system — tries to control its environmentwith delayed signals.This work was supported from the European Community’s Seventh Framework Program FP7/2007-2013 under grant agreement number 214728-2, "CODDE"..
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This work was supported from the European Community’s Seventh Framework Program FP7/2007-2013 under grant agreement number 214728-2, "CODDE".