Working memory for movement rhythms given spatial relevance: Effects of sequence length and maintenance delay.

Temporal information is an essential component of human movements. However, it is still unclear how the temporal information is extracted from complex whole-body movements through observation and how it is encoded and retained in working memory. In the current study, we investigated how the sequence...

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Publicado en:Visual Cognition Vol. 30; no. 9; pp. 597 - 617
Autores principales: Chiou, Shiau-Chuen, Schack, Thomas
Formato: algorithm equations & formulas pictorial research tables/charts randomized controlled trial Journal Article
Publicado: Taylor & Francis Ltd Oct2022
Acceso en línea:Ver este registro en EBSCOhost
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      dt: Oct2022
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      pub: Taylor & Francis Ltd
      place: Philadelphia, Pennsylvania
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        10.1080/13506285.2022.2162173
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        atl: Working memory for movement rhythms given spatial relevance: Effects of sequence length and maintenance delay.
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        au:
          Chiou, Shiau-Chuen
          Schack, Thomas
        affil: Neurocognition and Action Research Group, Center for Cognitive Interaction Technology (CITEC), Bielefeld University, Bielefeld, Germany
      sug:
        subj:
          Memory, Short Term Evaluation
          Movement Evaluation
          Spatial Perception
          Task Performance and Analysis
          Human
          Male
          Female
          Young Adult
          Adult
          Funding Source
          Mental Processes
          Pilot Studies
          Power Analysis
          Questionnaires
          Music
          Videorecording
          Acoustic Stimulation
          Feedback
          Comparative Studies
          Repeated Measures
          Analysis of Variance
          Descriptive Statistics
          Confidence Intervals
          Coefficient alpha
          Post Hoc Analysis
          Randomized Controlled Trials
          Random Assignment
          Adult: 19-44 years
          Male
          Female
      ab: Temporal information is an essential component of human movements. However, it is still unclear how the temporal information is extracted from complex whole-body movements through observation and how it is encoded and retained in working memory. In the current study, we investigated how the sequence length and maintenance delay influence working memory for movement rhythms (i.e., temporal structures of movement sequences) after considering the task-relevance of the corresponding spatial information and the sensitivity difference between spatial and temporal processing in visual perception. We found that the sequence length – in the sense of information load more than temporal duration – may act as the first bottleneck in the processing of movement rhythms, deciding whether temporal information can be encoded as individual units in high precision or it might be encoded as an ensemble "whole" in relatively low precision. In addition, the maintenance delay may act as the second bottleneck, determining to what extent the encoded information can be retained in memory.
      pubtype: Academic Journal
      doctype:
        algorithm
        equations & formulas
        pictorial
        research
        tables/charts
        randomized controlled trial
        Journal Article
      ougenre: Article
    language: English
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