• We found a gradual change in the relationship between brain activation and task performance along the sensorimotor-association (S-A) axis, with the higher-rank regions showing greater concavity (an inverted U-shaped curve) than the lower-rank regions. • The gradual change along the S-A axis only exists in the face and body part conditions in the working memory task. • Many low-rank regions showed a convex pattern with task performance in the place condition. • The inflection point is above the average performance in the concave regions and below the average in the convex regions. In the literature of cognitive neuroscience, researchers tend to assume a linear relationship between brain activation level and task performance; however, conflicting findings have been reported in different studies. Therefore, there may be a non-linear relationship between task performance and brain activation if a full range of task performance is considered. In the current study, using the Human Connectome Project (HCP) dataset, we examined the relationship between brain activation (i.e., beta values) and working memory performance in four conditions (i.e., faces, body parts, tools and places). We found a gradual change along the sensorimotor-association (S-A) axis, with the higher-rank regions showing greater concavity (an inverted U-shaped curve) than the lower-rank regions only in the face and body part conditions. In the tool and place condition, very few high-order regions show a relationship with performance; therefore, the association with S-A ranking is missing. Instead, in the place condition, many regions showed a convex pattern with task performance. Moreover, the inflection point is above the average performance in the concave regions and below the average in the convex regions. In summary, our study revealed a novel functional property of the brain in response to task performance along the S-A axis.
Yuan et al. (Tue,) studied this question.