Osama F. Harraz

Osama F. Harraz

University of Vermont

H-index: 23

North America-United States

About Osama F. Harraz

Osama F. Harraz, With an exceptional h-index of 23 and a recent h-index of 19 (since 2020), a distinguished researcher at University of Vermont, specializes in the field of Vascular physiology, Ion channels, calcium signaling, neurovascular coupling, smooth muscle.

His recent articles reflect a diverse array of research interests and contributions to the field:

Distinct potassium channel types in brain capillary pericytes

Mechanosensing by Vascular Endothelium

Recent insights into channelopathies

Diversity of cells and signals in the cardiovascular system

Endothelial cell metabolism and vascular function: A paradigm shift?

Small and mighty: Brain capillaries in health and disease

Methods to promote cerebral blood flow in the brain

Piezo1 is a mechanosensor channel in central nervous system capillaries

Osama F. Harraz Information

University

Position

Assistant Professor

Citations(all)

1233

Citations(since 2020)

884

Cited By

592

hIndex(all)

23

hIndex(since 2020)

19

i10Index(all)

25

i10Index(since 2020)

23

Email

University Profile Page

Google Scholar

Osama F. Harraz Skills & Research Interests

Vascular physiology

Ion channels

calcium signaling

neurovascular coupling

smooth muscle

Top articles of Osama F. Harraz

Distinct potassium channel types in brain capillary pericytes

Biophysical Journal

2024/3/4

Mechanosensing by Vascular Endothelium

2024/2/12

Recent insights into channelopathies

2024/1/1

Diversity of cells and signals in the cardiovascular system

The Journal of physiology

2023/7

Endothelial cell metabolism and vascular function: A paradigm shift?

Function

2023

Small and mighty: Brain capillaries in health and disease

Frontiers in Molecular Neuroscience

2022/12/13

Methods to promote cerebral blood flow in the brain

2022/6/2

Piezo1 is a mechanosensor channel in central nervous system capillaries

Circulation research

2022/5/13

Vascular calcium signalling and ageing

2021/12

Differential restoration of functional hyperemia by antihypertensive drug classes in hypertension-related cerebral small vessel disease

The Journal of clinical investigation

2021/9/15

Local IP3 receptor–mediated Ca2+ signals compound to direct blood flow in brain capillaries

Science advances

2021/7/21

Zinc drives vasorelaxation by acting in sensory nerves, endothelium and smooth muscle

Nature communications

2021/6/1

PIP2 corrects cerebral blood flow deficits in small vessel disease by rescuing capillary Kir2.1 activity

Proceedings of the National Academy of Sciences

2021/4/27

Traumatic brain injury impairs systemic vascular function through disruption of inward-rectifier potassium channels

Function

2021/4/1

PIP2 improves cerebral blood flow in a mouse model of Alzheimer’s disease

Function

2021/3/1

Aging, calcium channel signaling and vascular tone

2020/10/1

PIP2: A critical regulator of vascular ion channels hiding in plain sight

2020/8/25

Kir mediates Regenerative and Directional Conduction of Hyperpolarization in Brain Capillaries: Importance for Neurovascular Coupling

The FASEB Journal

2018/4

The capillary Kir channel as sensor and amplifier of neuronal signals: Modeling insights on K+-mediated neurovascular communication

Proceedings of the National Academy of Sciences

2020/7/14

See List of Professors in Osama F. Harraz University(University of Vermont)

Co-Authors

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