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New evidence for the sensorimotor mismatch theory of weight perception and the size-weight illusion

Jarrod W. C. Harris; Elizabeth J. Saccone; Rebecca Chong; Gavin Buckingham; Melanie J. Murphy; Philippe A. Chouinard
Experimental Brain Research · Vol. 242, Issue 7 · pp. 1623-1643 · 2024

Abstract

The size-weight illusion is a phenomenon where a smaller object is perceived heavier than an equally weighted larger object. The sensorimotor mismatch theory proposed that this illusion occurs because of a mismatch between efferent motor commands and afferent sensory feedback received when lifting large and small objects (i.e., the application of too little and too much lifting force, respectively). This explanation has been undermined by studies demonstrating a separation between the perceived weight of objects and the lifting forces that are applied on them. However, this research suffers from inconsistencies in the choice of lifting force measures reported. Therefore, we examined the contribution of sensorimotor mismatch in the perception of weight in the size-weight illusion and in non-size-weight illusion stimuli and evaluated the use of a lifting force aggregate measure comprising the four most common lifting force measures used in previous research. In doing so, the sensorimotor mismatch theory was mostly supported. In a size-weight illusion experiment, the lifting forces correlated with weight perception and, contrary to some earlier research, did not adapt over time. In a non-size-weight illusion experiment, switches between lifting light and heavy objects resulted in perceiving the weight of these objects differently compared to no switch trials, which mirrored differences in the manner participants applied forces on the objects. Additionally, we reveal that our force aggregate measure can allow for a more sensitive and objective examination of the effects of lifting forces on objects.

Bibliographic Information

JournalExperimental Brain Research
PublisherSpringer
Publication Date2024-07-01
Publication Year2024
Volume242
Issue7
Pages1623-1643
Document TypeJournal Article
Print ISSN0014-4819
eISSN1432-1106
DOI10.1007/s00221-024-06849-0

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NARA Access Coverage1966-01-01~Current
Journal Homepagehttps://www.springer.com/journal/221
Publisher PageOpen Publisher Page
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