The State of Motion: Demographic and representational consequences of motion-based exclusion in fMRI
Sadil, P.; Ansari, B.; Casamento-Moran, A.; Choe, A. S.; Choi, J.; Farahani, F. V.; Ismaila, L. E.; Johnson, M. A.; Kannan, A.; Nebel, M. B.; Pekar, J. J.; Sair, H. I.; Stim, J.; Svingos, A. M.; Wager, T. D.; Lindquist, M. A.
Show abstract
Large-scale neuroimaging datasets are increasingly used to map relationships between brain structure, function, and behavior across the human lifespan. Routinely, analyses exclude participants who moved too much during imaging. While this decision is framed as quality control, it is increasingly recognized that head motion is not randomly distributed across individuals within a study, and so motion-based exclusion may preferentially remove people with particular characteristics relevant to the scientific goals of the study. Here we survey head motion and how it relates to participant characteristics across six large, publicly available datasets spanning nearly the entire human lifespan, namely the Human Connectome Project (HCP) Young Adult, HCP in Development, HCP in Aging, Adolescent Brain Cognitive DevelopmentSM Study, UK Biobank, and Spatial Topology project. These six datasets comprise more than 50,000 unique participants and 300,000 scans. We further benchmark our findings against motion distributions aggregated by MRIQC across more than 1.5 million scans. Under commonly applied strict exclusion thresholds, large fractions of participants would be removed (exceeding 80 % in the UK Biobank task data), and these removals were demographically structured, disproportionately excluding younger and older participants, those with higher BMI, and those with motion-associated clinical conditions. Respiratory pseudo-motion inflated estimates of head motion in adult cohorts, and applying notch filtering to remove respiratory frequencies from these estimates meaningfully reduced exclusion rates. Exclusion also carried downstream consequences. Strict thresholds reduced statistical power, inflated study costs, and altered the apparent predictability of behavioral phenotypes by removing a non-random, behaviorally distinct subgroup. These findings demonstrate that motion exclusion thresholds are not neutral quality-control decisions but structured selection mechanisms that reshape the composition of neuroimaging samples. We recommend that studies report the demographic characteristics of excluded participants, prefer data-driven censoring methods over fixed motion cutoffs, and clarify the target population while considering appropriate weighting techniques.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Impact of analytic decisions on test-retest reliability of individual and group estimates in functional magnetic resonance imaging: a multiverse analysis using the monetary incentive delay task 96%
- High performers demonstrate greater neural synchrony than low performers across behavioral domains 96%
- Mapping individual differences in intermodal coupling in neurodevelopment 96%
Similar papers in this journal
- Video-evoked fMRI BOLD responses are highly consistent across different data acquisition sites 97%
- Differences in directed functional brain connectivity related to age, sex and mental health 96%
- Voxel-wise Intermodal Coupling Analysis of Two or More Modalities using Local Covariance Decomposition 96%
Similar papers in this journal
- Removal of high frequency contamination from motion estimates in single-band fMRI saves data without biasing functional connectivity 97%
- Brain-Environment Alignment during Movie Watching Predicts Cognitive-Affective Function in Adulthood 96%
- Act Natural: Functional Connectivity from Naturalistic Stimuli fMRI Outperforms Resting-State in Predicting Brain Activity 96%
Similar papers in this journal
Similar papers in this journal
- Developmental changes in story-evoked responses in the neocortex and hippocampus 96%
- Multi-study fMRI outlooks on subcortical BOLD responses in the stop-signal paradigm 95%
- Physiological and head motion signatures in static and time-varying functional connectivity and their subject discriminability 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.