Joseph Wyatt
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Also affiliated: University of Alabama (2009); St James's University Hospital (1985); University of Alabama at Birmingham (2006–2009); UAB Medicine (2006–2009); Marshall University (1982)
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Joseph Wyatt's research interests are not specified in the provided data. His most recent publication was in 2019, and he is not recently active. Further information regarding his specific research areas, affiliations, or contributions is unavailable.
Metrics
- h-index: 4
- Publications: 8
- Citations: 77
Selected Publications
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Repeated In Vitro Impact Conditioning of Astrocytes Decreases the Expression and Accumulation of Extracellular Matrix (2019)
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An In Vitro Impact Model for the Study of Central Nervous System Cell Mechanobiology (2014)
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Development of a Traumatic Brain Injury Bioreactor (2013)Volume 1B: Extremity; Fluid Mechanics; Gait; Growth, Remodeling, and Repair; Heart Valves; Injury Biomechanics; Mechanotransduction and Sub-Cellular Biophysics; MultiScale Biotransport; Muscle, Tendon and Ligament; Musculoskeletal Devices; Multiscale Mechanics; Thermal Medicine; Ocular Biomechanics; Pediatric Hemodynamics; Pericellular Phenomena; Tissue Mechanics; Biotransport Design and Devices; Spine; Stent Device Hemodynamics; Vascular Solid Mechanics; Student Paper and Design Competitions DOI OpenAlex
Collaboration Network
Top Collaborators
- An In Vitro Impact Model for the Study of Central Nervous System Cell Mechanobiology
- Development of a Traumatic Brain Injury Bioreactor
- Repeated In Vitro Impact Conditioning of Astrocytes Decreases the Expression and Accumulation of Extracellular Matrix
- An In Vitro Impact Model for the Study of Central Nervous System Cell Mechanobiology
- Development of a Traumatic Brain Injury Bioreactor
- An In Vitro Impact Model for the Study of Central Nervous System Cell Mechanobiology
- Repeated In Vitro Impact Conditioning of Astrocytes Decreases the Expression and Accumulation of Extracellular Matrix
- Repeated In Vitro Impact Conditioning of Astrocytes Decreases the Expression and Accumulation of Extracellular Matrix
- Repeated In Vitro Impact Conditioning of Astrocytes Decreases the Expression and Accumulation of Extracellular Matrix
- Repeated In Vitro Impact Conditioning of Astrocytes Decreases the Expression and Accumulation of Extracellular Matrix