Research map: Transcranial direct current stimulation enhances delayed retention after 5 days of lower‐limb motor skill learning

Back to the article

Papers in this map

  1. Data Analysis Using Regression and Multilevel/Hierarchical Models · Andrew Gelman · 2006 · 14005 citations · Cited by this paper
  2. Sample size – not a one‐size‐fits‐all solution · 2026 · Related
  3. Stan : A Probabilistic Programming Language · Bob Carpenter · 2017 · 8394 citations · Cited by this paper
  4. Decoding the molecular memory of obesity using machine learning and microRNA dynamics · 2026 · Related
  5. Practical Bayesian model evaluation using leave-one-out cross-validation and WAIC · Aki Vehtari · 2016 · 5686 citations · Cited by this paper
  6. The multicellular environment of the re‐entrant circuit in post‐myocardial infarction ventricular tachycardia: Beyond fibrosis · 2026 · Related
  7. Advanced Bayesian Multilevel Modeling with the R Package brms · Paul‐Christian Bürkner · 2018 · 3240 citations · Cited by this paper
  8. Ca V 1.2 dynamics in native male arterial myocytes · 2026 · Related
  9. Sustained excitability elevations induced by transcranial DC motor cortex stimulation in humans · Michael Andreas Nitsche · 2001 · 2671 citations · Cited by this paper
  10. Fasting‐induced glucose intolerance is not impacted by the addition of daily exercise: A randomized crossover study · 2026 · Related
  11. Physiological Basis of Transcranial Direct Current Stimulation · Charlotte Jane Stagg · 2011 · 1759 citations · Cited by this paper
  12. Tonotopically distinct OFF responses arise in the mouse auditory midbrain following sideband suppression · 2026 · Related
  13. Direct Current Stimulation Promotes BDNF-Dependent Synaptic Plasticity: Potential Implications for Motor Learning · Brita Fritsch · 2010 · 1451 citations · Cited by this paper
  14. Peripheral regeneration of Aβ low‐threshold mechanoreceptors is limited despite activation of regenerative transcriptional pathways · 2026 · Related
  15. Noninvasive cortical stimulation enhances motor skill acquisition over multiple days through an effect on consolidation · Janine Reis · 2009 · 1436 citations · Cited by this paper
  16. TMEM16A Ca 2+ ‐activated Cl − channel: Functional interactions with cytoskeletal and membrane‐associated proteins · 2026 · Related
  17. Pharmacological approach to the mechanisms of transcranial DC-stimulation-induced after-effects of human motor cortex excitability · David Liebetanz · 2002 · 1406 citations · Cited by this paper
  18. Modelling the memory of unmyelinated axons: Integration of a data‐driven approach with physiological memory concept · 2026 · Related
  19. Low intensity transcranial electric stimulation: Safety, ethical, legal regulatory and application guidelines · Andrea Antal · 2017 · 1369 citations · Cited by this paper
  20. TNFSF14/LIGHT responses in intestinal and oesophageal fibroblasts are differentially modulated by hydroxylase inhibitors · 2026 · Related
  21. Facilitation of Implicit Motor Learning by Weak Transcranial Direct Current Stimulation of the Primary Motor Cortex in the Human · Michael Andreas Nitsche · 2003 · 1075 citations · Cited by this paper
  22. Learning-Induced LTP in Neocortex · Mengia-S. Rioult-Pedotti · 2000 · 1037 citations · Cited by this paper
  23. Consolidation in human motor memory · Thomas M. Brashers-Krug · 1996 · 1023 citations · Cited by this paper
  24. The action of brief polarizing currents on the cerebral cortex of the rat (1) during current flow and (2) in the production of long‐lasting after‐effects · Lynn J. Bindman · 1964 · 991 citations · Cited by this paper
  25. How to determine leg dominance: The agreement between self-reported and observed performance in healthy adults · Nicky van Melick · 2017 · 813 citations · Cited by this paper
  26. Direct effects of transcranial electric stimulation on brain circuits in rats and humans · Mihály Vöröslakos · 2018 · 783 citations · Cited by this paper
  27. Rejecting or Accepting Parameter Values in Bayesian Estimation · John K. Kruschke · 2018 · 781 citations · Cited by this paper
  28. A quantitative meta-analysis and review of motor learning in the human brain · Robert M. Hardwick · 2012 · 648 citations · Cited by this paper
  29. Immediate neurophysiological effects of transcranial electrical stimulation · Anli A. Liu · 2018 · 639 citations · Cited by this paper
  30. Motor Cortex Is Required for Learning but Not for Executing a Motor Skill · Risa Kawai · 2015 · 628 citations · Cited by this paper
  31. Low-Intensity Electrical Stimulation Affects Network Dynamics by Modulating Population Rate and Spike Timing · Davide Reato · 2010 · 615 citations · Cited by this paper
  32. Cellular effects of acute direct current stimulation: somatic and synaptic terminal effects · Asif Rahman · 2013 · 592 citations · Cited by this paper
  33. Motor skill training induces changes in the excitability of the leg cortical area in healthy humans · Mónica A. Pérez · 2004 · 479 citations · Cited by this paper
  34. Learning–performance distinction and memory processes for motor skills: A focused review and perspective · Shailesh S. Kantak · 2011 · 465 citations · Cited by this paper
  35. Modulating functional connectivity patterns and topological functional organization of the human brain with transcranial direct current stimulation · Rafael Polanía · 2010 · 446 citations · Cited by this paper
  36. Origins of specificity during tDCS: anatomical, activity-selective, and input-bias mechanisms · Marom Bikson · 2013 · 430 citations · Cited by this paper
  37. Modulating cortico‐striatal and thalamo‐cortical functional connectivity with transcranial direct current stimulation · Rafael Polanía · 2011 · 429 citations · Cited by this paper
  38. Effects of tDCS on motor learning and memory formation: A consensus and critical position paper · Ethan R. Buch · 2017 · 393 citations · Cited by this paper
  39. The uses and interpretations of the motor-evoked potential for understanding behaviour · Sven Bestmann · 2015 · 375 citations · Cited by this paper

Source: OpenAlex (CC0)