Neuropathological Evidence of Reduced Amyloid Beta and Neurofibrillary Tangles in Multiple Sclerosis Cortex.
Pansieri J. et al, (2025), Ann Neurol
Cachexia Alters Central Nervous System Morphology and Functionality in Cancer Patients.
Simoes E. et al, (2025), J Cachexia Sarcopenia Muscle, 16
Traumatic Brain Injury and Alzheimer's Disease: A Shared Neurovascular Hypothesis.
Cognacq G. et al, (2025), Neurosci Insights, 20
The contributions of vascular comorbidities on self-reported functional issues in persons with multiple sclerosis.
Gromisch ES. et al, (2024), Disabil Rehabil, 1 - 10
The influence of MOGAD on diagnosis of multiple sclerosis using MRI.
Geraldes R. et al, (2024), Nat Rev Neurol
A role for vessel-associated extracellular matrix proteins in multiple sclerosis pathology.
Pisa M. et al, (2024), Brain Pathol
Death and the Doctor: the museum as a tool for understanding the needs of the dying
HARRIS J. et al, (2024), University Museums and Collections Journal, 16, 25 - 37
The prevalence and topography of spinal cord demyelination in multiple sclerosis: a retrospective study.
Waldman AD. et al, (2024), Acta Neuropathol, 147
Posterior circulation ischaemic stroke diagnosis and management.
Schneider AM. et al, (2023), Clin Med (Lond), 23, 219 - 227
Tuberous Sclerosis Complex-1 (TSC1) contributes to selective neuronal vulnerability in Alzheimer's Disease.
Adriaanse BA. et al, (2023), Neuropathol Appl Neurobiol
Microglia directly associate with pericytes in the central nervous system.
Morris GP. et al, (2023), Glia
A potential protective role of the nuclear receptor-related factor 1 (Nurr1) in multiple sclerosis motor cortex: a neuropathological study.
Pansieri J. et al, (2023), Brain Commun, 5
Regional contribution of vascular dysfunction in white matter dementia: clinical and neuropathological insights.
Pansieri J. et al, (2023), Front Neurol, 14
Microglia associations with brain pericytes and the vasculature are reduced in Alzheimer’s disease
Morris GP. et al, (2022)
Identification of early neurodegenerative pathways in progressive multiple sclerosis.
Kaufmann M. et al, (2022), Nat Neurosci
Histopathological Characterization of Staged Lesion Topography in the Multiple Sclerosis Spinal Cord
Waldman AD. et al, (2022)
Quantification of upper limb dysfunction in the activities of the daily living in persons with multiple sclerosis.
Pisa M. et al, (2022), Mult Scler Relat Disord, 63