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Lower-level associations in Gilles de la Tourette syndrome: Convergence between hyperbinding of stimulus and response features and procedural hyperfunctioning theories

Adam Takacs*, Alexander Münchau, Dezso Nemeth, Veit Roessner, Christian Beste

*Corresponding author for this work

Abstract

Gilles de la Tourette syndrome (GTS) can be characterized by enhanced cognitive functions related to creating, modifying and maintaining connections between stimuli and responses (S-R links). Specifically, two areas, procedural sequence learning and, as a novel finding, also event file binding, show converging evidence of hyperfunctioning in GTS. In this review, we describe how these two enhanced functions can be considered as cognitive mechanisms behind habitual behaviour, such as tics in GTS. Moreover, the presence of both procedural sequence learning and event file binding hyperfunctioning in the same disorder can be treated as evidence for their functional connections, even beyond GTS. Importantly though, we argue that hyperfunctioning of event file binding and procedural learning are not interchangeable: they have different time scales, different sensitivities to potential impairment in action sequencing and distinguishable contributions to the cognitive profile of GTS. An integrated theoretical account of hyperbinding and hyperlearning in GTS allows to formulate predictions for the emergence, activation and long-term persistence of tics in GTS.

Original languageEnglish
JournalEuropean Journal of Neuroscience
Volume54
Issue number3
Pages (from-to)5143-5160
Number of pages18
ISSN0953-816X
DOIs
Publication statusPublished - 08.2021

Funding

FundersFunder number
Deutsche ForschungsgemeinschaftTA1616/2‐1, FOR 2698

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Research Areas and Centers

    • Academic Focus: Center for Brain, Behavior and Metabolism (CBBM)
    • Centers: Center for Rare Diseases (ZSE)

    DFG Research Classification Scheme

    • 2.23-07 Clinical Neurology, Neurosurgery and Neuroradiology
    • 2.23-08 Human Cognitive and Systems Neuroscience

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    • FOR/RU 2698: Cognitive theory for Tourette syndrome – a novel perspective

      Münchau, A. (Speaker), Beste, C. (Principal Investigator (PI)), Bäumer, T. (Principal Investigator (PI)), Münte, T. (Principal Investigator (PI)), Roessner, V. (Principal Investigator (PI)), Bluschke, A. (Principal Investigator (PI)), Friedrich, J. (Principal Investigator (PI)), Wolff, N. (Principal Investigator (PI)), Frings, C. (Principal Investigator (PI)), Q. Park , S. Y. (Principal Investigator (PI)), Weißbach, A. (Principal Investigator (PI)), Li, S. C. (Principal Investigator (PI)), Krach, S. (Principal Investigator (PI)), Krämer, U. (Principal Investigator (PI)) & Friedrich, J. (Principal Investigator (PI))

      01.01.1831.12.27

      Project: DFG Joint ResearchDFG Research Units (RU)

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