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Mapping of non-numerical domains on space: a systematic review and meta-analysis.

Authors :
Macnamara, Anne
Keage, Hannah A. D.
Loetscher, Tobias
Source :
Experimental Brain Research; Feb2018, Vol. 236 Issue 2, p335-346, 12p
Publication Year :
2018

Abstract

The spatial numerical association of response code (SNARC) effect is characterized by low numbers mapped to the left side of space and high numbers mapped to the right side of space. In addition to numbers, SNARC-like effects have been found in non-numerical magnitude domains such as time, size, letters, luminance, and more, whereby the smaller/earlier and larger/later magnitudes are typically mapped to the left and right of space, respectively. The purpose of this systematic and meta-analytic review was to identify and summarise all empirical papers that have investigated horizontal (left-right) SNARC-like mappings using non-numerical stimuli. A systematic search was conducted using EMBASE, Medline, and PsycINFO, where 2216 publications were identified, with 57 papers meeting the inclusion criteria (representing 112 experiments). Ninety-five of these experiments were included in a meta-analysis, resulting in an overall effect size of d = .488 for a SNARC-like effect. Additional analyses revealed a significant effect size advantage for explicit instruction tasks compared with implicit instructions, yet yielded no difference for the role of expertise on SNARC-like effects. There was clear evidence for a publication bias in the field, but the impact of this bias is likely to be modest, and it is unlikely that the SNARC-like effect is a pure artefact of this bias. The similarities in the response properties for the spatial mappings of numerical and non-numerical domains support the concept of a general higher order magnitude system. Yet, further research will need to be conducted to identify all the factors modulating the strength of the spatial associations. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00144819
Volume :
236
Issue :
2
Database :
Complementary Index
Journal :
Experimental Brain Research
Publication Type :
Academic Journal
Accession number :
127966133
Full Text :
https://doi.org/10.1007/s00221-017-5154-6