Data for the manuscript: "Adjustments of balance control during cognitive dual tasking: Evidence from event-related force-plate analysis"
Author(s) / Creator(s)
Koger, Anton
Johannsen, Leif
Kiesel, Andrea
Müller, Hermann
Stephan, Denise N.
Straub, Elisa R.
Koch, Iring
Abstract / Description
Cognitive-motor interference refers to the interaction between cognitive and motor processes occurring at the same time. Recently, balance control parameters while standing on a force plate were analysed using an event-related approach while participants performed a Simon task. Resolving response conflict in incongruent trials reduced balance adjustments prior to manual response execution, suggesting a bottleneck for concurrent cognitive and balance control. In the present study, we combined this approach with a cognitive dual task which comprised a visual-vocal short-term memory task with a delayed vocal response and an auditory-manual reaction time (RT) task. This hybrid psychological refractory period (PRP) paradigm created a functional processing bottleneck during memory consolidation in the visual-vocal short-term memory task. To examine how this cognitive bottleneck influences balance control, 48 participants per experiment stood quietly on a force plate, and balance control was quantified as moment variability (mNm) in 100 ms sliding windows. We varied the stimulus-onset asynchrony (SOA: 100 vs. 1,000 ms) between the targets (Experiment 1) and task load (report vs. ignore the visual object; Experiment 2). As expected, auditory-manual RTs increased at short SOA, showing dual-task interference that persisted in ignore trials, consistent with task-set inertia. Force-plate data were analysed using cluster permutation analysis to identify time-specific effects. Participants were less likely to adjust balance during cognitive task processing and more likely after task completion, independent of the presence of a cognitive bottleneck. These findings suggest that balance control flexibly delays or advances balance adjustments based on cognitive demands, thereby reducing cognitive-motor interference.
Persistent Identifier
Date of first publication
2025-12-01
Publisher
PsychArchives
Citation
-
Codebook.csvUnknown - 1.96KBMD5 : ff0b12666e287d0350705941704afe6cDescription: Codebook with explanations of variables etc.
-
Exp1_Forceplate.RdataUnknown - 859.62KBMD5 : cfebaa600cc4ad2fa2543fbaa7c93482Description: Force-plate data in form of a .Rdata-file of the first experiment
-
Exp1_PsychoPy.RdataUnknown - 4.13MBMD5 : 16da5c3f5e5beb043003336f0b997ddaDescription: PsychoPy data in form of a .Rdata-file of the first experiment
-
Exp2_PsychoPy.RdataUnknown - 1.8MBMD5 : 6028207a7d953193106497bb71d4b695Description: Force-plate data in form of a .Rdata-file of the second experiment
-
Exp2_Forceplate.RdataUnknown - 5.32MBMD5 : 6eac691424c29d25499021289d040fa5Description: PsychoPy data in form of a .Rdata-file of the second experiment
-
There are no other versions of this object.
-
Author(s) / Creator(s)Koger, Anton
-
Author(s) / Creator(s)Johannsen, Leif
-
Author(s) / Creator(s)Kiesel, Andrea
-
Author(s) / Creator(s)Müller, Hermann
-
Author(s) / Creator(s)Stephan, Denise N.
-
Author(s) / Creator(s)Straub, Elisa R.
-
Author(s) / Creator(s)Koch, Iring
-
PsychArchives acquisition timestamp2025-12-01T09:17:40Z
-
Made available on2025-12-01T09:17:40Z
-
Date of first publication2025-12-01
-
Abstract / DescriptionCognitive-motor interference refers to the interaction between cognitive and motor processes occurring at the same time. Recently, balance control parameters while standing on a force plate were analysed using an event-related approach while participants performed a Simon task. Resolving response conflict in incongruent trials reduced balance adjustments prior to manual response execution, suggesting a bottleneck for concurrent cognitive and balance control. In the present study, we combined this approach with a cognitive dual task which comprised a visual-vocal short-term memory task with a delayed vocal response and an auditory-manual reaction time (RT) task. This hybrid psychological refractory period (PRP) paradigm created a functional processing bottleneck during memory consolidation in the visual-vocal short-term memory task. To examine how this cognitive bottleneck influences balance control, 48 participants per experiment stood quietly on a force plate, and balance control was quantified as moment variability (mNm) in 100 ms sliding windows. We varied the stimulus-onset asynchrony (SOA: 100 vs. 1,000 ms) between the targets (Experiment 1) and task load (report vs. ignore the visual object; Experiment 2). As expected, auditory-manual RTs increased at short SOA, showing dual-task interference that persisted in ignore trials, consistent with task-set inertia. Force-plate data were analysed using cluster permutation analysis to identify time-specific effects. Participants were less likely to adjust balance during cognitive task processing and more likely after task completion, independent of the presence of a cognitive bottleneck. These findings suggest that balance control flexibly delays or advances balance adjustments based on cognitive demands, thereby reducing cognitive-motor interference.en
-
Review statusunknown
-
Persistent Identifierhttps://hdl.handle.net/20.500.12034/16825
-
Persistent Identifierhttps://doi.org/10.23668/psycharchives.21435
-
Language of contenteng
-
PublisherPsychArchives
-
Is related tohttps://www.psycharchives.org/handle/20.500.12034/16824
-
Is related tohttps://www.psycharchives.org/handle/20.500.12034/16823
-
Dewey Decimal Classification number(s)150
-
TitleData for the manuscript: "Adjustments of balance control during cognitive dual tasking: Evidence from event-related force-plate analysis"en
-
DRO typeresearchData