Venkata Rao Krishnamurthi Data-verified
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Biography and Research Information
OverviewAI-generated summary
Venkata Rao Krishnamurthi's research investigates the interactions between bacteria and various materials, with a recent focus on silver ions and their effects on bacterial movement and flagellar motor function. His work has explored the analysis of bacterial growth using microplate readers and has examined the interactions of *Escherichia coli* with micro-pillar surfaces of differing geometric designs. Krishnamurthi also has a publication on the remodeling of septin discs in the blast fungus *Magnaporthe oryzae*, indicating an interest in fungal biology. His work in other areas includes a publication on dynamic global acetylation remodeling during yeast heat shock response and a publication on learning the lens equation using smartphones. He has a scholarly record of 19 publications, with an h-index of 10 and 507 total citations. Collaborations include work with Ariel Rogers, Samuel G. Mackintosh, Wayne P. Wahls, and Jeffrey A. Lewis.
Metrics
- h-index: 10
- Publications: 19
- Citations: 519
Selected Publications
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Dynamic global acetylation remodeling during the yeast heat shock response (2025)
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Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor (2023)
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Learning the Lens Equation Using Water and Smartphones/Tablets (2022)
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Interactions of E. coli with cylindrical micro-pillars of different geometric modifications (2021)
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A new analysis method for evaluating bacterial growth with microplate readers (2021)
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Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i> (2021)
Collaboration Network
Top Collaborators
- A new analysis method for evaluating bacterial growth with microplate readers
- Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i>
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
- Learning the Lens Equation Using Water and Smartphones/Tablets
Showing 5 of 6 shared publications
- A new analysis method for evaluating bacterial growth with microplate readers
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
- Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i>
- Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i>
- Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i>
- Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i>
- Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i>
- Turgor-dependent and coronin-mediated F-actin dynamics drive septin disc-to-ring remodeling in the blast fungus <i>Magnaporthe oryzae</i>
- A new analysis method for evaluating bacterial growth with microplate readers
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
- Learning the Lens Equation Using Water and Smartphones/Tablets
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
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