| Keyword search (4,163 papers available) | ![]() |
"Sehm B" Authored Publications:
| Title | Authors | PubMed ID | |
|---|---|---|---|
| 1 | Patterns of Structural Disconnection Driving Proprioceptive Deficits in Chronic Stroke | Kaeja M; Gajiyeva L; Iturria-Medina Y; Villringer A; Sehm B; Steele C; | 41392885 SOH |
| 2 | The impact of lesion side on bilateral upper limb coordination after stroke | Shih PC; Steele CJ; Hoepfel D; Muffel T; Villringer A; Sehm B; | 38093308 PSYCHOLOGY |
| 3 | Alpha and beta neural oscillations differentially reflect age-related differences in bilateral coordination | Shih PC; Steele CJ; Nikulin VV; Gundlach C; Kruse J; Villringer A; Sehm B; | 33979705 PSYCHOLOGY |
| 4 | Modulation of premotor cortex response to sequence motor learning during escitalopram intake. | Molloy EN; Mueller K; Beinhölzl N; Blöchl M; Piecha FA; Pampel A; Steele CJ; Scharrer U; Zheleva G; Regenthal R; Sehm B; Nikulin VV; Möller HE; Villringer A; Sacher J; | 33148103 PSYCHOLOGY |
| 5 | Kinematic profiles suggest differential control processes involved in bilateral in-phase and anti-phase movements. | Shih PC, Steele CJ, Nikulin V, Villringer A, Sehm B | 30824858 PSYCHOLOGY |
| Title: | The impact of lesion side on bilateral upper limb coordination after stroke | ||||
| Authors: | Shih PC, Steele CJ, Hoepfel D, Muffel T, Villringer A, Sehm B | ||||
| Link: | https://pubmed.ncbi.nlm.nih.gov/38093308/ | ||||
| DOI: | 10.1186/s12984-023-01288-4 | ||||
| Publication: | Journal of neuroengineering and rehabilitation | ||||
| Keywords: | Movement kinematic; Rehabilitation; Stroke; Synchronization; Upper extremity; | ||||
| PMID: | 38093308 | Category: | Date Added: | 2023-12-14 | |
| Dept Affiliation: |
PSYCHOLOGY
1 Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany. 2 Sony Computer Science Laboratories, Inc, Tokyo, Japan. 3 Department of Psychology, Concordia University, Montreal, QC, Canada. 4 Clinic and Polyclinic for Psychiatry and Psychotherapy, Leipzig, Germany. 5 Charité Universitätsmedizin Berlin, Berlin, Germany. 6 Department of Cognitive Neurology, University Hospital Leipzig, Leipzig, Germany. 7 Department of Neurology, Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany. sehm@cbs.mpg.de. 8 Department of Cognitive Neurology, University Hospital Leipzig, Leipzig, Germany. sehm@cbs.mpg.de. 9 Department of Neurology, University Hospital Halle (Saale), Halle, Germany. sehm@cbs.mpg.de. |
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Description: |
Background: A stroke frequently results in impaired performance of activities of daily life. Many of these are highly dependent on effective coordination between the two arms. In the context of bimanual movements, cyclic rhythmical bilateral arm coordination patterns can be classified into two fundamental modes: in-phase (bilateral homologous muscles contract simultaneously) and anti-phase (bilateral muscles contract alternately) movements. We aimed to investigate how patients with left (LHS) and right (RHS) hemispheric stroke are differentially affected in both individual-limb control and inter-limb coordination during bilateral movements. Methods: We used kinematic measurements to assess bilateral coordination abilities of 18 chronic hemiparetic stroke patients (9 LHS; 9 RHS) and 18 age- and sex-matched controls. Using KINARM upper-limb exoskeleton system, we examined individual-limb control by quantifying trajectory variability in each hand and inter-limb coordination by computing the phase synchronization between hands during anti- and in-phase movements. Results: RHS patients exhibited greater impairment in individual- and inter-limb control during anti-phase movements, whilst LHS patients showed greater impairment in individual-limb control during in-phase movements alone. However, LHS patients further showed a swap in hand dominance during in-phase movements. Conclusions: The current study used individual-limb and inter-limb kinematic profiles and showed that bilateral movements are differently impaired in patients with left vs. right hemispheric strokes. Our results demonstrate that both fundamental bilateral coordination modes are differently controlled in both hemispheres using a lesion model approach. From a clinical perspective, we suggest that lesion side should be taken into account for more individually targeted bilateral coordination training strategies. Trial registration: the current experiment is not a health care intervention study. |



