LaFreda J. Howard
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Also affiliated: Houston Health and Human Services Department (2021)
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Biography and Research Information
OverviewAI-generated summary
LaFreda J. Howard investigates axon guidance mechanisms in the fruit fly, *Drosophila melanogaster*. Her research focuses on the role of specific protein domains, such as the Ig1 domain of the Robo2 receptor, in mediating multiple axon guidance activities. These activities are essential for the proper wiring of the nervous system. Howard has also explored slit-independent guidance pathways involving the Robo3 receptor, indicating complex regulatory networks govern axon pathfinding. Her work has been supported by collaborations with researchers at the University of Arkansas at Fayetteville, including Timothy A. Evans, Marie C. Reichert, Ayawovi Selom Ametepe, and Abigail Carranza, with whom she has co-authored multiple publications. Howard's scholarship metrics include an h-index of 3, with 6 total publications and 50 citations.
Metrics
- h-index: 3
- Publications: 6
- Citations: 51
Selected Publications
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Slit-independent guidance of longitudinal axons by Drosophila Robo3 (2025)
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Slit-independent guidance of longitudinal axons by Drosophila Robo3 (2023)
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The Slit‐binding Ig1 domain is required for multiple axon guidance activities of Drosophila Robo2 (2021)
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The Slit-binding Ig1 domain is required for multiple axon guidance activities of Drosophila Robo2 (2021)
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Midline axon guidance in the Drosophila embryonic central nervous system (2017)
Collaboration Network
Top Collaborators
- Midline axon guidance in the Drosophila embryonic central nervous system
- The Slit‐binding Ig1 domain is required for multiple axon guidance activities of Drosophila Robo2
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- The Slit-binding Ig1 domain is required for multiple axon guidance activities of Drosophila Robo2
- Midline axon guidance in the Drosophila embryonic central nervous system
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- The Slit‐binding Ig1 domain is required for multiple axon guidance activities of Drosophila Robo2
- The Slit-binding Ig1 domain is required for multiple axon guidance activities of Drosophila Robo2
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- Slit-independent guidance of longitudinal axons by Drosophila Robo3
- Midline axon guidance in the Drosophila embryonic central nervous system
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