Related Experiment Video
Updated: Feb 16, 2026

Author Spotlight: Insights into the Analysis of Human Interaction with 3D Virtual Objects
Published on: October 18, 2024
"Sex differences in the spatial representation of number": Correction to Bull et al. (2013)
Abstract:
Reports an error in "Sex differences in the spatial representation of number" by Rebecca Bull, Alexandra A. Cleland and Thomas Mitchell (Journal of Experimental Psychology: General, 2013[Feb], Vol 142[1], 181-192). In the article, there was an error in the Results section of Experiment 2. The t value incorrectly repeated the beta weight ( .25). The correct value is t(39) = 3.38, p = .002. There was also an error in the Discussion section of Experiment 2. The reported result of F(1, 94) = 4.27, should read F(1, 94) = 4.72, p = .032. Finally, there was an error in the Results section of Experiment 4. The t value for was incorrectly reported as t(50) = 1.56, p = .05. It should be t(50) = 1.98. These typographical errors do not change the overall pattern of results or interpretation of the findings. (The following abstract of the original article appeared in record 2012-10822-001.) There is a large body of accumulated evidence from behavioral and neuroimaging studies regarding how and where in the brain we represent basic numerical information. A number of these studies have considered how numerical representations may differ between individuals according to their age or level of mathematical ability, but one issue rarely considered is whether the representational acuity or automaticity of using numerical representations differs between the sexes. We report 4 studies that suggest that male participants show a stronger influence of the spatial representation of number as revealed through the spatial numerical association of response codes (SNARC) effect, through the numerical distance effect (NDE), and through number-line estimations. Evidence for a sex difference in processing number was present for parity decisions (Experiment 1), color decisions (Experiment 2), number-line estimations (Experiment 3), and magnitude decisions (Experiment 4). We argue that this pattern of results reflects a sex difference in either the acuity of representation or reliance upon spatial representations of number, and that this difference may arise due to differences in the parietal lobes of men and women. (PsycINFO Database Record
Related Concept Videos
Real Number Operations
How Data are Classified: Numerical Data
Quantitative data may be either discrete or continuous. All quantitative data that take on only specific numerical...
Depth Perception and Spatial Vision
The Ratio of X Chromosome to Autosomes
Normal male Drosophila has a ratio of one X chromosome to two sets of autosomes. In contrast, normal female...
Complex Numbers
Sign Test for Matched Pairs
To conduct the sign test, we first calculate the differences in...

