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1. Analysis of somatic mutations in 131 human brains reveals aging-associated hypermutability

2. Comprehensive identification of somatic nucleotide variants in human brain tissue

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

4. Genome-wide analyses of smoking behaviors in schizophrenia: Findings from the Psychiatric Genomics Consortium

5. Using brain cell-type-specific protein interactomes to interpret neurodevelopmental genetic signals in schizophrenia

6. Pleiotropic Meta-Analysis of Cognition, Education, and Schizophrenia Differentiates Roles of Early Neurodevelopmental and Adult Synaptic Pathways.

7. Dysregulated protocadherin-pathway activity as an intrinsic defect in induced pluripotent stem cell–derived cortical interneurons from subjects with schizophrenia

8. Mapping genomic loci implicates genes and synaptic biology in schizophrenia

9. Multi-Trait Analysis of GWAS and Biological Insights Into Cognition: A Response to Hill (2018)

10. Publisher Correction: Variations in Dysbindin-1 are associated with cognitive response to antipsychotic drug treatment.

11. Genome-wide association meta-analysis in 269,867 individuals identifies new genetic and functional links to intelligence

12. Variations in Dysbindin-1 are associated with cognitive response to antipsychotic drug treatment.

13. Genome-wide analyses of smoking behaviors in schizophrenia: Findings from the Psychiatric Genomics Consortium

14. Large-Scale Cognitive GWAS Meta-Analysis Reveals Tissue-Specific Neural Expression and Potential Nootropic Drug Targets

18. Variation in GRM3 Affects Cognition, Prefrontal Glutamate, and Risk for Schizophrenia

20. Intersection of diverse neuronal genomes and neuropsychiatric disease : The Brain Somatic Mosaicism Network

21. Genetic and Physiological Data Implicating the New Human Gene G72 and the Gene for D-Amino Acid Oxidase in Schizophrenia

22. Dissecting transcriptomic signatures of neuronal differentiation and maturation using iPSCs

24. Developmental and genetic regulation of the human cortex transcriptome illuminate schizophrenia pathogenesis

25. Convergence of placenta biology and genetic risk for schizophrenia

26. 302. Investigating the Impact of Common Genetic Risk Variants for Schizophrenia on Neuronal Function Elucidates Relationships Between Cellular Phenotypes, Clinical Status and Cognitive Performance

28. Author Correction: Study of 300,486 individuals identifies 148 independent genetic loci influencing general cognitive function

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

31. A human-specific AS3MT isoform and BORCS7 are molecular risk factors in the 10q24.32 schizophrenia-associated locus

32. A polygenic resilience score moderates the genetic risk for schizophrenia

33. Mapping genomic loci prioritises genes and implicates synaptic biology in schizophrenia

34. Mapping genomic loci implicates genes and synaptic biology in schizophrenia

36. Interaction Testing and Polygenic Risk Scoring to Estimate the Association of Common Genetic Variants With Treatment Resistance in Schizophrenia

37. Reading and Responding to Student Writing: A Heuristic for Reflective Practice.

38. The Evolutionarily Conserved G Protein-Coupled Receptor SREB2/GPR85 Influences Brain Size, Behavior, and Vulnerability to Schizophrenia

39. Electrophysiological measures from human iPSC-derived neurons are associated with schizophrenia clinical status and predict individual cognitive performance

40. Sex-Dependent Shared and Nonshared Genetic Architecture Across Mood and Psychotic Disorders

42. A Comparison of Ten Polygenic Score Methods for Psychiatric Disorders Applied Across Multiple Cohorts

43. Dysregulated protocadherin-pathway activity as an intrinsic defect in iPSC-derived cortical interneurons from patients with schizophrenia

44. Independent evidence for an association between general cognitive ability and a genetic locus for educational attainment

46. Additional file 1 of Comprehensive identification of somatic nucleotide variants in human brain tissue

47. Additional file 5 of Comprehensive identification of somatic nucleotide variants in human brain tissue

48. Additional file 6 of Comprehensive identification of somatic nucleotide variants in human brain tissue

49. Comprehensive identification of somatic nucleotide variants in human brain tissue

50. Biological validation of increased schizophrenia risk with NRG1, ERBB4, and AKT1 epistasis via functional neuroimaging in healthy controls

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