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1. Modulating the unfolded protein response with ISRIB mitigates cisplatin ototoxicity.

2. Monoallelic de novo AJAP1 loss-of-function variants disrupt trans-synaptic control of neurotransmitter release.

3. Exome copy number variant detection, analysis, and classification in a large cohort of families with undiagnosed rare genetic disease.

5. TMTC4 is a hair cell-specific human deafness gene.

6. ARF1-related disorder: phenotypic and molecular spectrum.

7. Stretch-activated ion channel TMEM63B associates with developmental and epileptic encephalopathies and progressive neurodegeneration.

8. Diagnostic yield of pediatric and prenatal exome sequencing in a diverse population

9. Loss of non-motor kinesin KIF26A causes congenital brain malformations via dysregulated neuronal migration and axonal growth as well as apoptosis.

10. Heterozygous variants in MYH10 associated with neurodevelopmental disorders and congenital anomalies with evidence for primary cilia-dependent defects in Hedgehog signaling.

11. O’Donnell-Luria-Rodan syndrome: description of a second multinational cohort and refinement of the phenotypic spectrum

12. Newborn screening for neurodevelopmental diseases: Are we there yet?

13. De Novo GLI3 Pathogenic Variants May Cause Hypotonia and a Range of Brain Malformations Without Skeletal Abnormalities

14. Whole-exome sequencing with targeted analysis and epilepsy after acute symptomatic neonatal seizures.

15. Major brain malformations: corpus callosum dysgenesis, agenesis of septum pellucidum and polymicrogyria in patients with BCORL1-related disorders

16. Systematic analysis and prediction of genes associated with monogenic disorders on human chromosome X

17. Autism-associated biomarkers: test–retest reliability and relationship to quantitative social trait variation in rhesus monkeys

20. Author Correction: Diagnostic yield of pediatric and prenatal exome sequencing in a diverse population

21. Unique variants in CLCN3, encoding an endosomal anion/proton exchanger, underlie a spectrum of neurodevelopmental disorders

22. Bi-allelic loss-of-function variants in BCAS3 cause a syndromic neurodevelopmental disorder

23. Missense variants in DPYSL5 cause a neurodevelopmental disorder with corpus callosum agenesis and cerebellar abnormalities

24. A team science approach to discover novel targets for infantile spasms (IS)

26. Stretch-activated ion channel TMEM63B associates with developmental and epileptic encephalopathies and progressive neurodegeneration

27. Histone H3.3 beyond cancer: Germline mutations in Histone 3 Family 3A and 3B cause a previously unidentified neurodegenerative disorder in 46 patients.

28. Overcoming presynaptic effects of VAMP2 mutations with 4-aminopyridine treatment.

29. De novo variants in SUPT16H cause neurodevelopmental disorders associated with corpus callosum abnormalities

30. Sensorimotor Cortical Oscillations during Movement Preparation in 16p11.2 Deletion Carriers

31. Deletion of Tmtc4 activates the unfolded protein response causing postnatal hearing loss

32. NFIB Haploinsufficiency Is Associated with Intellectual Disability and Macrocephaly

33. Infantile Spasms of Unknown Cause: Predictors of Outcome and Genotype-Phenotype Correlation

34. Cerebrospinal fluid vasopressin and symptom severity in children with autism

35. Arginine vasopressin in cerebrospinal fluid is a marker of sociality in nonhuman primates

36. Genotype–phenotype correlations in individuals with pathogenic RERE variants

37. Abnormal Speech Motor Control in Individuals with 16p11.2 Deletions.

38. DCC mutation update: Congenital mirror movements, isolated agenesis of the corpus callosum, and developmental split brain syndrome

41. Linking tuberous sclerosis complex, excessive mTOR signaling, and age-related neurodegeneration: a new association between TSC1 mutation and frontotemporal dementia

42. ARHGEF9 disease

43. ARHGEF9 disease: Phenotype clarification and genotype-phenotype correlation.

44. Mutations in DCC cause isolated agenesis of the corpus callosum with incomplete penetrance

49. Astroglial-Mediated Remodeling of the Interhemispheric Midline Is Required for the Formation of the Corpus Callosum.

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