The grasping side of odours

Research on multisensory integration during natural tasks such as reach-to-grasp is still in its infancy. Crossmodal links between vision, proprioception and audition have been identified, but how olfaction contributes to plan and control reach-to-grasp movements has not been decisively shown. We us...

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Published inPloS one Vol. 3; no. 3; p. e1795
Main Authors Tubaldi, Federico, Ansuini, Caterina, Tirindelli, Roberto, Castiello, Umberto
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 19.03.2008
Public Library of Science (PLoS)
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Summary:Research on multisensory integration during natural tasks such as reach-to-grasp is still in its infancy. Crossmodal links between vision, proprioception and audition have been identified, but how olfaction contributes to plan and control reach-to-grasp movements has not been decisively shown. We used kinematics to explicitly test the influence of olfactory stimuli on reach-to-grasp movements. Subjects were requested to reach towards and grasp a small or a large visual target (i.e., precision grip, involving the opposition of index finger and thumb for a small size target and a power grip, involving the flexion of all digits around the object for a large target) in the absence or in the presence of an odour evoking either a small or a large object that if grasped would require a precision grip and a whole hand grasp, respectively. When the type of grasp evoked by the odour did not coincide with that for the visual target, interference effects were evident on the kinematics of hand shaping and the level of synergies amongst fingers decreased. When the visual target and the object evoked by the odour required the same type of grasp, facilitation emerged and the intrinsic relations amongst individual fingers were maintained. This study demonstrates that olfactory information contains highly detailed information able to elicit the planning for a reach-to-grasp movement suited to interact with the evoked object. The findings offer a substantial contribution to the current debate about the multisensory nature of the sensorimotor transformations underlying grasping.
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Conceived and designed the experiments: UC FT. Performed the experiments: FT. Analyzed the data: FT CA. Contributed reagents/materials/analysis tools: RT. Wrote the paper: UC FT CA.
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0001795