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1. Serotonergic innervation of the amygdala is increased in autism spectrum disorder and decreased in Williams syndrome

2. Inhibitory Systems in Brain Evolution: Pathways of Vulnerability in Neurodevelopmental Disorders.

4. Brain aging, Alzheimer's disease, and the role of stem cells in primate comparative studies.

6. Comment on "Human TKTL1 implies greater neurogenesis in frontal neocortex of modern humans than Neanderthals".

9. Reintroduction of the archaic variant of NOVA1 in cortical organoids alters neurodevelopment.

10. Anatomical subdivisions of the frontal lobe in the great apes

11. Decreased density of cholinergic interneurons in striatal territories in Williams syndrome.

12. Temporal lobe evolution in Hominidae and the origin of human lobe proportions.

13. Stereological Analysis of the Rhesus Monkey Perirhinal and Parahippocampal Cortices.

14. Evolutionary scaling and cognitive correlates of primate frontal cortex microstructure.

15. Humans and great apes share a large frontal cortex.

16. Serotonergic innervation of the human amygdala and evolutionary implications.

17. Species-specific maturation profiles of human, chimpanzee and bonobo neural cells.

18. The New Science of Practical Wisdom.

19. Neurodevelopmental disorders of the prefrontal cortex in an evolutionary context.

20. Decreased Neuron Density and Increased Glia Density in the Ventromedial Prefrontal Cortex (Brodmann Area 25) in Williams Syndrome.

21. Increased glia density in the caudate nucleus in williams syndrome: Implications for frontostriatal dysfunction in autism.

22. A postmortem stereological study of the amygdala in Williams syndrome.

23. Identification of in vivo Sulci on the External Surface of Eight Adult Chimpanzee Brains: Implications for Interpreting Early Hominin Endocasts.

24. Dendritic Morphology of Pyramidal Neurons in the Chimpanzee Neocortex: Regional Specializations and Comparison to Humans

27. Neuronal deletion of Gtf2i results in developmental microglial alterations in a mouse model related to Williams syndrome.

28. Basal Dendritic Morphology of Cortical Pyramidal Neurons in Williams Syndrome: Prefrontal Cortex and Beyond.

29. Neuron density is decreased in the prefrontal cortex in Williams syndrome.

31. A human neurodevelopmental model for Williams syndrome.

32. Neurodevelopmental and Neuropsychiatric Disorders.

33. The Fractal Geometry of the Human Brain: An Evolutionary Perspective.

34. Changes in neuroinflammatory markers and microglial density in the hippocampus and prefrontal cortex of the C58/J mouse model of autism.

35. Brain function assessment of acupuncture for chronic insomnia disorder with mild cognitive dysfunction based on fNIRS: protocol for a randomized controlled trial.

36. Microglial Dysfunction in Autism Spectrum Disorder.

37. Neural Network Excitation/Inhibition: A Key to Empathy and Empathy Impairment.

38. A map of white matter tracts in a lesser ape, the lar gibbon.

39. What Makes Us Human: Insights from the Evolution and Development of the Human Neocortex.

40. Neurons Structure and Cytokine Expression after Lithium Carbonate Treatment on Melanoma Mice Model.

41. Giant Fusiform Cells of the Brain: Discovery, Identification, and Probable Functions.

42. Micro RNA detection in long-term fixed tissue of cortical glutamatergic pyramidal neurons after targeted laser-capture neuroanatomical microdissection.

43. Novel tools, classic techniques: evolutionary studies using primate pluripotent stem cells.

44. Evidence for evolutionary specialization in human limbic structures.

45. A dual comparative approach: integrating lines of evidence from human evolutionary neuroanatomy and neurodevelopmental disorders.

46. Developmental changes in the spatial organization of neurons in the neocortex of humans and common chimpanzees.

47. Evolution, development, and plasticity of the human brain: from molecules to bones.

48. Dendritic morphology of pyramidal neurons in the chimpanzee neocortex: regional specializations and comparison to humans.

49. A volumetric comparison of the insular cortex and its subregions in primates.

50. Neuronal populations in the basolateral nuclei of the amygdala are differentially increased in humans compared with apes: a stereological study.

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