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1. Erratum: GWAS meta-analysis reveals novel loci and genetic correlates for general cognitive function: a report from the COGENT consortium

2. GWAS meta-analysis reveals novel loci and genetic correlates for general cognitive function: a report from the COGENT consortium.

3. A phenome-wide examination of neural and cognitive function.

4. Centering inclusivity in the design of online conferences-An OHBM-Open Science perspective

5. Identifying nootropic drug targets via large-scale cognitive GWAS and transcriptomics

9. Study of 300,486 individuals identifies 148 independent genetic loci influencing general cognitive function

10. GWAS meta-analysis reveals novel loci and genetic correlates for general cognitive function: a report from the COGENT consortium (vol 22, pg 336, 2017)

11. BIDS apps: Improving ease of use, accessibility, and reproducibility of neuroimaging data analysis methods

13. A phenome-wide examination of neural and cognitive function

19. The neural basis of visual skill learning: an fMRI study of mirror reading.

20. Quantifying brain development in the HEALthy Brain and Child Development (HBCD) Study: The magnetic resonance imaging and spectroscopy protocol.

21. A Data-Driven Latent Variable Approach to Validating the Research Domain Criteria Framework.

22. Reporting checklists in neuroimaging: promoting transparency, replicability, and reproducibility.

23. Quality assessment and control of unprocessed anatomical, functional, and diffusion MRI of the human brain using MRIQC .

24. Moving beyond processing- and analysis-related variation in resting-state functional brain imaging.

25. Predicting Task Activation Maps from Resting-State Functional Connectivity using Deep Learning.

26. Cognitive tasks, anatomical MRI, and functional MRI data evaluating the construct of self-regulation.

27. Impact of analytic decisions on test-retest reliability of individual and group estimates in functional magnetic resonance imaging: a multiverse analysis using the monetary incentive delay task.

28. Author Correction: brainlife.io: a decentralized and open-source cloud platform to support neuroscience research.

29. REFORMS: Consensus-based Recommendations for Machine-learning-based Science.

30. brainlife.io: a decentralized and open-source cloud platform to support neuroscience research.

31. hyve, a compositional visualisation engine for brain imaging data.

32. The past, present, and future of the brain imaging data structure (BIDS).

33. A multi-sample evaluation of the measurement structure and function of the modified monetary incentive delay task in adolescents.

34. The response time paradox in functional magnetic resonance imaging analyses.

36. Functional neuroimaging as a catalyst for integrated neuroscience.

37. A comparison of neuroelectrophysiology databases.

38. Controversies and progress on standardization of large-scale brain network nomenclature.

39. Cognitive tasks, anatomical MRI, and functional MRI data evaluating the construct of self-regulation.

40. brainlife.io : A decentralized and open source cloud platform to support neuroscience research.

42. Improving the Rigor of Mechanistic Behavioral Science: The Introduction of the Checklist for Investigating Mechanisms in Behavior-Change Research (CLIMBR).

43. Modelling human behaviour in cognitive tasks with latent dynamical systems.

44. Benchmarking explanation methods for mental state decoding with deep learning models.

45. On the Long-term Archiving of Research Data.

46. A dual-task approach to inform the taxonomy of inhibition-related processes.

47. TemplateFlow: FAIR-sharing of multi-scale, multi-species brain models.

48. NEMAR: an open access data, tools and compute resource operating on neuroelectromagnetic data.

49. Can we have a second helping? A preregistered direct replication study on the neurobiological mechanisms underlying self-control.

50. Interpreting mental state decoding with deep learning models.

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