Search results (18)
« Back to PublicationsPathological tau alters head direction signaling and induces spatial disorientation.
Journal article
Jiang S. et al, (2025), Cell Rep, 44
Transient juvenile demyelination impairs maturation and function of parvalbumin-positive interneurons in the prefrontal cortex
Journal article
Hijazi SARA. et al, (2025), PLoS Biology
Transient juvenile demyelination impairs maturation and function of parvalbumin-positive interneurons in the prefrontal cortex.
Journal article
Hijazi S. et al, (2025), PLoS Biol, 23
Pathological tau alters head direction signaling and induces spatial disorientation.
Preprint
Jiang S. et al, (2025)
Human Pluripotent Stem Cell-Derived Astrocyte Functionality Compares Favorably with Primary Rat Astrocytes.
Journal article
Lendemeijer B. et al, (2024), eNeuro, 11
Morphological correlates of pyramidal cell axonal myelination in mouse and human neocortex.
Journal article
Pascual-García M. et al, (2024), Cereb Cortex, 34
Fast-spiking parvalbumin-positive interneurons in brain physiology and Alzheimer's disease.
Journal article
Hijazi S. et al, (2023), Mol Psychiatry, 28, 4954 - 4967
A critical period for prefrontal cortex PV interneuron myelination and maturation
Preprint
Hijazi S. et al, (2023)
A minimum threshold for myelination of pyramidal cells in human and mouse neocortex
Preprint
Pascual-García M. et al, (2023)
Dysfunctional parvalbumin interneurons in a genetic mouse model of schizophrenia
Preprint
Hijazi S. et al, (2023)
Rapid specification of human pluripotent stem cells to functional astrocytes
Preprint
Lendemeijer B. et al, (2022)
Early restoration of parvalbumin interneuron activity prevents memory loss and network hyperexcitability in a mouse model of Alzheimer's disease.
Journal article
Hijazi S. et al, (2020), Mol Psychiatry, 25, 3380 - 3398
Interneuron hyperexcitability as both causal factor and risk factor in Alzheimer’s disease
Journal article
Hijazi S. et al, (2020), Alzheimer's & Dementia, 16
Hyperexcitable PV interneurons render hippocampal microcircuitry vulnerable to amyloid beta
Journal article
Hijazi S. et al, (2020), Alzheimer's & Dementia, 16
