Background: Psychobiological processes linking stress and vascular diseases remain poorly understood. The retina and the brain share a common embryonic-diencephalon origin and blood-barrier physiology e.g. ongoing ischemia facilitates S100B release with astrocytic activity and glial-fibrillary-acidic-protein expression (GFAP). However, GFAP decreases revealed astrocyte pathology in the prefrontal cortex of depression/suicide cases; and might be a key mechanism in stress – disease pathways. Methods: A chronic emotional stress phenotype independent of age, ethnicity or sex was used to stratify the current prospective cohort (N = 359; aged 46 ± 9 years) into Stress (N = 236) and no-Stress groups (N = 123). Prospective data for glia isc...
Cerebral microvascular dysfunction may contribute to depression via disruption of brain structures i...
Chronic stress is well recognized to decrease the number of GFAP⁺ astrocytes within the prefrontal c...
Structural and functional similarities exist between the retinal, cerebral and, as previously sugges...
Background Psychobiological processes linking stress and vascular diseases remain poorly understo...
Background Psychobiological processes linking stress and vascular diseases remain poorly understo...
The brain is the key organ that orchestrates the stress response which translates to the retina. The...
Purpose: The roles of vascular dysfunction and chronic stress have been extensively discussed in the...
Type 3 diabetes (T3D) accurately reflects that dementia, e.g., Alzheimer’s disease, represents insul...
Type 3 diabetes (T3D) accurately reflects that dementia, e.g., Alzheimer’s disease, represents insul...
Type 3 diabetes (T3D) accurately reflects that dementia, e.g., Alzheimer’s disease, represents insul...
Research Doctorate - Doctor of Philosophy (PhD)Stress is a ubiquitous sensation that everyone has ex...
OBJECTIVES: Low or high sympatho-adrenal-medullary axis (SAM) and hypothalamic-pituitary-adrenal axi...
OBJECTIVES Low or high sympatho-adrenal-medullary axis (SAM) and hypothalamic-pituitary-adrenal a...
OBJECTIVES: Low or high sympatho-adrenal-medullary axis (SAM) and hypothalamic-pituitary-adrenal axi...
Cerebral microvascular dysfunction may contribute to depression via disruption of brain structures i...
Cerebral microvascular dysfunction may contribute to depression via disruption of brain structures i...
Chronic stress is well recognized to decrease the number of GFAP⁺ astrocytes within the prefrontal c...
Structural and functional similarities exist between the retinal, cerebral and, as previously sugges...
Background Psychobiological processes linking stress and vascular diseases remain poorly understo...
Background Psychobiological processes linking stress and vascular diseases remain poorly understo...
The brain is the key organ that orchestrates the stress response which translates to the retina. The...
Purpose: The roles of vascular dysfunction and chronic stress have been extensively discussed in the...
Type 3 diabetes (T3D) accurately reflects that dementia, e.g., Alzheimer’s disease, represents insul...
Type 3 diabetes (T3D) accurately reflects that dementia, e.g., Alzheimer’s disease, represents insul...
Type 3 diabetes (T3D) accurately reflects that dementia, e.g., Alzheimer’s disease, represents insul...
Research Doctorate - Doctor of Philosophy (PhD)Stress is a ubiquitous sensation that everyone has ex...
OBJECTIVES: Low or high sympatho-adrenal-medullary axis (SAM) and hypothalamic-pituitary-adrenal axi...
OBJECTIVES Low or high sympatho-adrenal-medullary axis (SAM) and hypothalamic-pituitary-adrenal a...
OBJECTIVES: Low or high sympatho-adrenal-medullary axis (SAM) and hypothalamic-pituitary-adrenal axi...
Cerebral microvascular dysfunction may contribute to depression via disruption of brain structures i...
Cerebral microvascular dysfunction may contribute to depression via disruption of brain structures i...
Chronic stress is well recognized to decrease the number of GFAP⁺ astrocytes within the prefrontal c...
Structural and functional similarities exist between the retinal, cerebral and, as previously sugges...