Rapid adjustment of pecking trajectory to prism-induced visual shifts in crows as compared to pigeons

Author:

Matsui Hiroshi12ORCID,Izawa Ei-Ichi1ORCID

Affiliation:

1. Department of Psychology, Keio University, Tokyo, Japan

2. Japan Society of Promotion for Science, Tokyo, Japan

Abstract

Pecking in birds is analogous to reaching and grasping movements in primates. Earlier studies on visuomotor control in birds, which were conducted mostly in pigeons, suggested that avian pecking is controlled feedforwardly, and is out of the control of visual guidance during movement. However, recent studies using crows suggested a role of vision in pecking control during movement. To unveil what visuomotor mechanisms underlie the flexibility of pecking in crows, the current study examined whether pigeons and crows adjust their pecking to the visual distortion induced by prisms. Because prisms induce visual shifts of object positions, birds were required to adjust their movements. Pecking kinematics were examined before and after attaching prisms in front of the birds’ eyes. Analysis of lateral deviation caused by the prisms showed that crows rapidly adjusted their pecking trajectories, but pigeons did slowly. Angular displacement also increased in pigeons after attachment of the prism but decreased in crows. These responses to prisms were consistent among individuals in pigeons but varied in crows, though the adjustment of pecking commonly succeeded in crows. These results suggest that pecking in pigeons predominantly involves feedforward control and that the movement is determined depending on the visual information available before the initiation of pecking. In contrast, the results from crows suggest that their pecking trajectories are corrected during the movement, supporting on-line visual control. Our findings were the first evidence to suggest the on-line visual control of pecking in birds.

Funder

Japan Society for the Promotion of Science

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

Reference20 articles.

1. Fitting linear mixed effects models using lme4;Bates;J. Stat. Soft.,2015

2. Prehension in the pigeon;Bermejo;Exp. Brain Res.,1989

3. Jaw muscle (EMG) activity and amplitude scaling of jaw movements during eating in pigeon (Columba livia);Bout;J. Comp. Physiol. A,1994

4. The peck of the pigeon: free for all;Delius,1985

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