Michael W. Webb
Researcher
Also affiliated: University of Utah (2023); University of Illinois Chicago (1983); University of Cincinnati (1983)
Faculty Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Michael W. Webb's research investigates the biological mechanisms underlying thrombosis and hemostasis, with a focus on platelet function and thrombus formation. His work has explored the role of Syk kinase and platelet GPVI in thrombus structure and platelet activation in murine models, examining differences between puncture wound and femoral artery occlusion scenarios. Webb has also contributed to studies on the cost-effectiveness of universal suicide risk screening for adolescents in emergency departments.
His publications include investigations into the spatial evolution of platelet activation in jugular thrombi and the comparative effects of genetic deletion versus pharmacological inhibition of key platelet components. Webb collaborates with researchers at the University of Arkansas for Medical Sciences, including Irina D. Pokrovskaya, Brian Storrie, Kelly K. Ball, and Sung W. Rhee, with whom he has co-authored multiple publications.
Metrics
- h-index: 4
- Publications: 13
- Citations: 43
Selected Publications
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Murine thrombus organization limits access to high platelet activation states while supporting platelet recruitment (2026)
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The Syk inhibitor BI 1002494 impairs thrombus infill in a murine femoral artery occlusion without affecting hemostasis (2025)
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Contrasting Effects of Platelet GPVI Deletion Versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure (2025)
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Contrasting Effects of Platelet GPVI Deletion versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure (2025)
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Differential Effects of GPVI Deletion and SYK Inhibition on Thrombus Organization and Platelet Adhesion in a Murine Jugular Puncture Wound Model (2024)
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Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation (2024)
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Screening for Key Structural Differences in Thrombosis Versus Hemostasis through Single Platelet Analysis (2023)
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Theme and Variation: Structuring Thrombus Formation from Jugular/Arterial Puncture Wounds to Occlusive Clots in a Mouse Model (2022)
Collaboration Network
Top Collaborators
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Theme and Variation: Structuring Thrombus Formation from Jugular/Arterial Puncture Wounds to Occlusive Clots in a Mouse Model
- Screening for Key Structural Differences in Thrombosis Versus Hemostasis through Single Platelet Analysis
- Differential Effects of GPVI Deletion and SYK Inhibition on Thrombus Organization and Platelet Adhesion in a Murine Jugular Puncture Wound Model
- Contrasting Effects of Platelet GPVI Deletion versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
Showing 5 of 8 shared publications
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Theme and Variation: Structuring Thrombus Formation from Jugular/Arterial Puncture Wounds to Occlusive Clots in a Mouse Model
- Screening for Key Structural Differences in Thrombosis Versus Hemostasis through Single Platelet Analysis
- Differential Effects of GPVI Deletion and SYK Inhibition on Thrombus Organization and Platelet Adhesion in a Murine Jugular Puncture Wound Model
- Contrasting Effects of Platelet GPVI Deletion versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
Showing 5 of 8 shared publications
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Differential Effects of GPVI Deletion and SYK Inhibition on Thrombus Organization and Platelet Adhesion in a Murine Jugular Puncture Wound Model
- Contrasting Effects of Platelet GPVI Deletion versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
- Contrasting Effects of Platelet GPVI Deletion Versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
- The Syk inhibitor BI 1002494 impairs thrombus infill in a murine femoral artery occlusion without affecting hemostasis
Showing 5 of 6 shared publications
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Contrasting Effects of Platelet GPVI Deletion versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
- Contrasting Effects of Platelet GPVI Deletion Versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
- The Syk inhibitor BI 1002494 impairs thrombus infill in a murine femoral artery occlusion without affecting hemostasis
- Murine Thrombus Organization Limits Access to High Platelet Activation States While Supporting Platelet Recruitment
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Theme and Variation: Structuring Thrombus Formation from Jugular/Arterial Puncture Wounds to Occlusive Clots in a Mouse Model
- Murine Thrombus Organization Limits Access to High Platelet Activation States While Supporting Platelet Recruitment
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Theme and Variation: Structuring Thrombus Formation from Jugular/Arterial Puncture Wounds to Occlusive Clots in a Mouse Model
- Murine Thrombus Organization Limits Access to High Platelet Activation States While Supporting Platelet Recruitment
- Theme and Variation: Structuring Thrombus Formation from Jugular/Arterial Puncture Wounds to Occlusive Clots in a Mouse Model
- Contrasting Effects of Platelet GPVI Deletion Versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Theme and Variation: Structuring Thrombus Formation from Jugular/Arterial Puncture Wounds to Occlusive Clots in a Mouse Model
- Screening for Key Structural Differences in Thrombosis Versus Hemostasis through Single Platelet Analysis
- The Syk inhibitor BI 1002494 impairs thrombus infill in a murine femoral artery occlusion without affecting hemostasis
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Murine Thrombus Organization Limits Access to High Platelet Activation States While Supporting Platelet Recruitment
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Murine Thrombus Organization Limits Access to High Platelet Activation States While Supporting Platelet Recruitment
- Contrasting Effects of Platelet GPVI Deletion versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
- Contrasting Effects of Platelet GPVI Deletion Versus Syk Inhibition on Mouse Jugular Vein Puncture Wound Structure
- Single-Platelet Mapping of Jugular, Puncture-Wound Thrombi Reveals the Spatial Evolution of Platelet Activation
- Murine Thrombus Organization Limits Access to High Platelet Activation States While Supporting Platelet Recruitment
- Murine Thrombus Organization Limits Access to High Platelet Activation States While Supporting Platelet Recruitment
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