Ariel Rogers Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
EMERGE Program Associate
faculty
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Ariel Rogers' research investigates the mobility and motility of bacteria, particularly in environments that mimic porous media. This work includes studying the interactions of Escherichia coli with micro-pillar structures and the effects of silver ions on bacterial movement and flagellar motors. Rogers also explores computational approaches to microscale active swimmer sorting using tesla valves. The researcher's work has been supported by the EMERGE Program at the University of Arkansas at Fayetteville. Rogers has published 43 papers, with 254 citations and an h-index of 8. Key collaborators at the University of Arkansas at Fayetteville include Diksha Shrestha and Amani Jereb, with whom Rogers has multiple shared publications.
Metrics
- h-index: 8
- Publications: 47
- Citations: 264
Selected Publications
-
Concentration-dependent responses of C. reinhardtii to silver ions: hormetic response in growth and reduction of motility (2025)
-
The Shape Modulation of Laser-Induced Nanowelded Microstructures Using Two Colors (2023)
-
Exploring the potential of tesla valve for filtering and sorting microscale active swimmers: A computational study (2023)
-
Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor (2023)
-
Exploring the Potential of Tesla Valve for Filtering and Sorting Microscale Active Swimmers: A Computational Study (2023)
-
Bacterial mobility and motility in porous media mimicked by microspheres (2023)
-
Bacterial Mobility and Motility in Porous Media Mimicked By Microspheres (2022)
-
Engineering silver nanoparticle surfaces for antimicrobial applications (2022)
-
Bacterial mobility and motility in porous media mimicked by microspheres (2022)
-
Bacterial Growth Curve Measurements with a Multimode Microplate Reader (2022)
-
Does Tesla valve work for microscale active swimmers? – a computational study (2022)
-
Real-time imaging of laser-induced nanowelding of silver nanoparticles in solution (2022)
-
Interactions of E. coli with cylindrical micro-pillars of different geometric modifications (2021)
-
Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution (2021)
Collaboration Network
Top Collaborators
- Bacterial mobility and motility in porous media mimicked by microspheres
- Bacterial Growth Curve Measurements with a Multimode Microplate Reader
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
- Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
Showing 5 of 14 shared publications
- Bacterial mobility and motility in porous media mimicked by microspheres
- Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
- Real-time imaging of laser-induced nanowelding of silver nanoparticles in solution
- Engineering silver nanoparticle surfaces for antimicrobial applications
Showing 5 of 8 shared publications
- Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution
- Real-time imaging of laser-induced nanowelding of silver nanoparticles in solution
- Engineering silver nanoparticle surfaces for antimicrobial applications
- Wavelength dependence of laser-induced nanowelded microstructures assembled from metal nanoparticles
- The Shape Modulation of Laser-Induced Nanowelded Microstructures Using Two Colors
- Bacterial mobility and motility in porous media mimicked by microspheres
- Bacterial mobility and motility in porous media mimicked by microspheres
- Bacterial Mobility and Motility in Porous Media Mimicked By Microspheres
- Concentration-dependent responses of C. reinhardtii to silver ions: hormetic response in growth and reduction of motility
- Bacterial mobility and motility in porous media mimicked by microspheres
- Bacterial mobility and motility in porous media mimicked by microspheres
- Bacterial Mobility and Motility in Porous Media Mimicked By Microspheres
- The Shape Modulation of Laser-Induced Nanowelded Microstructures Using Two Colors
- Bacterial mobility and motility in porous media mimicked by microspheres
- Bacterial mobility and motility in porous media mimicked by microspheres
- Bacterial Mobility and Motility in Porous Media Mimicked By Microspheres
- Concentration-dependent responses of C. reinhardtii to silver ions: hormetic response in growth and reduction of motility
- Bacterial mobility and motility in porous media mimicked by microspheres
- Engineering silver nanoparticle surfaces for antimicrobial applications
- The Shape Modulation of Laser-Induced Nanowelded Microstructures Using Two Colors
- Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution
- Real-time imaging of laser-induced nanowelding of silver nanoparticles in solution
- Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution
- Real-time imaging of laser-induced nanowelding of silver nanoparticles in solution
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
- Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor
- Wavelength dependence of laser-induced nanowelded microstructures assembled from metal nanoparticles
- The Shape Modulation of Laser-Induced Nanowelded Microstructures Using Two Colors
- Exploring the potential of tesla valve for filtering and sorting microscale active swimmers: A computational study
- Exploring the Potential of Tesla Valve for Filtering and Sorting Microscale Active Swimmers: A Computational Study
- Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution
- Real-time imaging of laser-induced nanowelding of silver nanoparticles in solution
- Interactions of E. coli with cylindrical micro-pillars of different geometric modifications
Similar Researchers
Based on overlapping research topics