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1. Corrigendum.

2. Natural History and Developmental Trajectories of Individuals With Disease-Causing Variants in STXBP1.

3. ANK2 loss-of-function variants are associated with epilepsy, and lead to impaired axon initial segment plasticity and hyperactive network activity in hiPSC-derived neuronal networks.

4. Ketogenic Diet Treatment of Defects in the Mitochondrial Malate Aspartate Shuttle and Pyruvate Carrier

5. Modulating effects of FGF12 variants on Na(V)1.2 and Na(V)1.6 being associated with developmental and epileptic encephalopathy and Autism spectrum disorder: A case series

6. The gain of function SCN1A disorder spectrum: novel epilepsy phenotypes and therapeutic implications

9. Complementing the Phenotypical Spectrum of TUBA1A Tubulinopathy and Its Role in Early-Onset Epilepsies

10. Further evidence for de novo variants in SYNCRIP as the cause of a neurodevelopmental disorder

11. Disruption of RFX family transcription factors causes autism, attention-deficit/hyperactivity disorder, intellectual disability, and dysregulated behavior

12. ATP1A2- and ATP1A3-associated early profound epileptic encephalopathy and polymicrogyria

13. Germline AGO2 mutations impair RNA interference and human neurological development

14. De novo variants in neurodevelopmental disorders with epilepsy

16. Treatment Responsiveness in KCNT1-Related Epilepsy

17. Heterozygous Variants in KMT2E Cause a Spectrum of Neurodevelopmental Disorders and Epilepsy

18. KCNB1 MUTATIONS ARE CAUSING A NEURODEVELOPMENTAL DISORDER INCLUDING EPILEPSY AND AUTISM

22. STXBP1 encephalopathy: A neurodevelopmental disorder including epilepsy

25. DE NOVO LOSS- OR GAIN-OF-FUNCTION MUTATIONS IN KCNA2 CAUSE EPILEPTIC ENCEPHALOPATHY

26. V28. KCNA2 mutations cause epileptic encephalopathy by gain- or loss-of channel function

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