Leif Johannsen
Biographic Data
| ID | 4502552 |
|---|---|
| NAME | Leif Johannsen |
| GIVEN NAMES | Leif |
| FAMILY NAME | Johannsen |
| SIGNATURE | JOHANNSEN L |
| AFFILIATIONS | RWTH Aachen University |
| ORCID | 0000-0002-2441-3163 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 1 |
| FIRST PUBLICATION YEAR | 2022 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
Adjustments of balance control during cognitive dual tasking: Evidence from event-related force-plate analysis
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 bala…
Learning a covert sequence of effector movements: Limits to its acquisition
Sequence learning in serial reaction time (SRT) tasks is an established, lab-based experimental paradigm to study acquisition and transfer of skills based on the detection of predictable regularities in stimulus and motor response sequences. Participants learn a sequence of targets and responses to these targets by associating the responses with subsequently presented targets. In the traditional paradigm, however, actions and response targets are…
Assessing the influence of cognitive response conflict on balance control: An event-related approach using response-aligned force-plate time series data
Process interference or sharing of attentional resources between cognitive tasks and balance control during upright standing has been well documented. Attentional costs increase with greater balancing demands of a balance activity, for example in standing compared to sitting. The traditional approach for analyzing balance control using posturography with a force plate integrates across relative long trial periods of up to several minutes, which b…
Handbook of Human Multitasking
Handbook of Human Multitasking
No prominent works on this page.
Handbook of Human Multitasking
Handbook of Human Multitasking
Assessing the influence of cognitive response conflict on balance control: An event-related approach using response-aligned force-plate time series data
Process interference or sharing of attentional resources between cognitive tasks and balance control during upright standing has been well documented. Attentional costs increase with greater balancing demands of a balance activity, for example in standing compared to sitting. The traditional approach for analyzing balance control using posturography with a force plate integrates across relative long trial periods of up to several minutes, which b…
Learning a covert sequence of effector movements: Limits to its acquisition
Sequence learning in serial reaction time (SRT) tasks is an established, lab-based experimental paradigm to study acquisition and transfer of skills based on the detection of predictable regularities in stimulus and motor response sequences. Participants learn a sequence of targets and responses to these targets by associating the responses with subsequently presented targets. In the traditional paradigm, however, actions and response targets are…
Adjustments of balance control during cognitive dual tasking: Evidence from event-related force-plate analysis
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 bala…
Action Observation and Synchronization (3 works) · Cognition (3 works) · Cognitive psychology (3 works) · Computer Science (3 works) · Motor Control and Adaptation (3 works) · Psychology (3 works) · Artificial Intelligence (2 works) · Balance, Gait, and Falls Prevention (2 works) · Neuroscience (2 works) · Biology (1 works)