Dr. Patrick Wiegel

Institut für Hochschuldidaktik

Funktionen an der Hochschule

Anschrift:
Albert-Einstein-Allee 53-55
89081 Ulm
Raum: Q235
Anschrift:
Albert-Einstein-Allee 53-55
89081 Ulm
Raum: Q271

Schwerpunkte in Lehre und Forschung

Forschungsinteressen

  • Motorisches Lernen

  • Körperliches Training

  • Assisistive Technologien

Lehrveranstaltungen

  • Trainingslehre

  • Medizinische Trainingstherapie

  • Bewegungserziehung

  • Nielsen AL, Norup M, Bjørndal JR, Wiegel P, Spedden ME, Lundbye-Jensen J (2025). Increased functional and directed corticomuscular connectivity after dynamic motor practice but not isometric motor practice. Journal of Neurophysiology, 133(3), 930–943. DOI
  • Wiegel P, Fotteler ML, Kohn B, Mayer S, Verri FM, Dallmeier D, Denkinger M (2024). Perceived Benefit and Satisfaction With a Tablet Computer and an Emergency Smartwatch by Older Adults and Their Relatives: Prospective Real-World Pilot Study. JMIR Human Factors, 11, e53811. DOI
  • Norup M, Nielsen AL, Bjørndal JR, Wiegel P, Spedden ME, Lundbye-Jensen J (2023). Effects of dynamic and isometric motor practice on position control, force control and corticomuscular coherence in preadolescent children. Human Movement Science, 90, 103114. DOI
  • Norup M, Bjørndal JR, Nielsen AL, Wiegel P, Lundbye-Jensen J (2023). Dynamic motor practice improves movement accuracy, force control and leads to increased corticospinal excitability compared to isometric motor practice. Frontiers in Human Neuroscience, 16, 1019729. DOI
  • Wiegel P, Spedden ME, Ramsenthaler C, Beck MM, Lundbye-Jensen J (2022). Trial-to-trial Variability and Cortical Processing Depend on Recent Outcomes During Human Reinforcement Motor Learning. Neuroscience, 501, 85–102. DOI
  • Wiegel P, Leukel C (2020). Training of a discrete motor skill in humans is accompanied by increased excitability of the fastest corticospinal connections at movement onset. The Journal of Physiology, 598(16), 3485–3500. (Editor's Choice) DOI
  • Wiegel P, Kurz A, Leukel C (2020). Evidence that distinct human primary motor cortex circuits control discrete and rhythmic movements. The Journal of Physiology, 598(6), 1235–1251. DOI
  • Kurz A, Xu W, Wiegel P, Leukel C, Baker SN (2019). Non-invasive assessment of superficial and deep layer circuits in human motor cortex. The Journal of Physiology, 597(12), 2975–2991. DOI
  • Wiegel P, Centner C, Kurz A (2019). How motor unit recruitment speed and discharge rates determine the rate of force development (Comment). The Journal of Physiology, 597(9), 2331–2332. DOI
  • Centner C, Wiegel P, Gollhofer A, König D (2019). Correction to: Effects of Blood Flow Restriction Training on Muscular Strength and Hypertrophy in Older Individuals: A Systematic Review and Meta-Analysis. Sports Medicine, 49(1), 109–111. DOI
  • Centner C, Wiegel P, Gollhofer A, König D (2019). Effects of Blood Flow Restriction Training on Muscular Strength and Hypertrophy in Older Individuals: A Systematic Review and Meta-Analysis. Sports Medicine, 49(1), 95–108. DOI
  • Herold F, Wiegel P, Scholkmann F, Müller NG (2018). Applications of Functional Near-Infrared Spectroscopy (fNIRS) Neuroimaging in Exercise–Cognition Science: A Systematic, Methodology-Focused Review. Journal of Clinical Medicine, 7(12), 466. DOI
  • Wiegel P, Niemann N, Rothwell JC, Leukel C (2018). Evidence for a subcortical contribution to intracortical facilitation. The European Journal of Neuroscience, 47(11), 1311–1319. DOI
  • Niemann N, Wiegel P, Kurz A, Rothwell JC, Leukel C (2017). Assessing TMS-induced D and I waves with spinal H-reflexes. Journal of Neurophysiology, 119(3), 933–943. DOI
  • Herold F, Wiegel P, Scholkmann F, Thiers A, Hamacher D, Schega L (2017). Functional near-infrared spectroscopy in movement science: a systematic review on cortical activity in postural and walking tasks. Neurophotonics, 4(4), 041403. DOI
  • Hamacher D, Herold F, Wiegel P, Hamacher D, Schega L (2015). Brain activity during walking: A systematic review. Neuroscience and Biobehavioral Reviews, 57, 310–327. DOI