Match tier Likely match
Presence Current · Arkansas
Last published 2025
Sources OpenAlex · ORCID
Refreshed 2026-08-08

Ariel Rogers

This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.

EMERGE Program Associate

Also affiliated: Colby College (2012); New York University Press (2013); Yale University (2021); Columbia University (2013)

Faculty Researcher

8 h-index 47 pubs 272 cited

  • Escherichia coli
  • Movement
  • Ions
  • Bacteria
  • Silver
  • Electric Conductivity
  • Anti-Infective Agents
  • Chlamydomonas reinhardtii
  • Hormesis
  • Cell Membrane
  • Escherichia coli K12
  • Microspheres
  • Porosity
  • Flagella
  • Chlorophyll

Biography and Research Information

OverviewAI-generated summary

Ariel Rogers' research investigates bacterial mobility and the impact of silver ions on bacterial movement and flagellar motors. Their work includes studying the interactions of E. coli with micro-scale structures and exploring the potential of computational fluid dynamics for filtering and sorting microorganisms. Rogers has also examined bacterial growth curve measurements using microplate readers and the real-time imaging of laser-induced nanowelding of silver nanoparticles.

Their scholarship metrics include an h-index of 8, with 47 total publications and 269 citations. Rogers has collaborated with several researchers at the University of Arkansas at Fayetteville, including Diksha Shrestha and Amani Jereb, with whom they share multiple publications. The researcher's most recent publication is from 2025, indicating recent activity in their field.

Metrics

  • h-index: 8
  • Publications: 47
  • Citations: 272

Selected Publications

  • Concentration-dependent responses of C. reinhardtii to silver ions: hormetic response in growth and reduction of motility (2025)
    The European Physical Journal E DOI OpenAlex
  • The Shape Modulation of Laser-Induced Nanowelded Microstructures Using Two Colors (2023)
    Colloids and Interfaces DOI OpenAlex
  • Exploring the potential of tesla valve for filtering and sorting microscale active swimmers: A computational study (2023)
    Applications in Engineering Science 3 citations DOI OpenAlex
  • Silver Ions Inhibit Bacterial Movement and Stall Flagellar Motor (2023)
    International Journal of Molecular Sciences 8 citations DOI OpenAlex
  • Exploring the Potential of Tesla Valve for Filtering and Sorting Microscale Active Swimmers: A Computational Study (2023)
    SSRN Electronic Journal DOI OpenAlex
  • Bacterial mobility and motility in porous media mimicked by microspheres (2023)
    Colloids and Surfaces B Biointerfaces 18 citations DOI OpenAlex
  • Bacterial Mobility and Motility in Porous Media Mimicked By Microspheres (2022)
    SSRN Electronic Journal DOI OpenAlex
  • Engineering silver nanoparticle surfaces for antimicrobial applications (2022)
    Elsevier eBooks 1 citation DOI OpenAlex
  • Bacterial mobility and motility in porous media mimicked by microspheres (2022)
    bioRxiv (Cold Spring Harbor Laboratory) DOI OpenAlex
  • Bacterial Growth Curve Measurements with a Multimode Microplate Reader (2022)
    BIO-PROTOCOL 22 citations DOI OpenAlex
  • Does Tesla valve work for microscale active swimmers? – a computational study (2022)
    bioRxiv (Cold Spring Harbor Laboratory) DOI OpenAlex
  • Real-time imaging of laser-induced nanowelding of silver nanoparticles in solution (2022)
    Biophysical Journal 1 citation DOI OpenAlex
  • Interactions of E. coli with cylindrical micro-pillars of different geometric modifications (2021)
    Colloids and Surfaces B Biointerfaces 13 citations DOI OpenAlex
  • Real-Time Imaging of Laser-Induced Nanowelding of Silver Nanoparticles in Solution (2021)
    The Journal of Physical Chemistry C 8 citations DOI OpenAlex
  • Microampere Electric Current Causes Bacterial Membrane Damage and Two-Way Leakage in a Short Period of Time (2020)
    Applied and Environmental Microbiology 62 citations DOI OpenAlex

View all publications on OpenAlex →

Collaboration Network

28 Collaborators 3 Institutions 1 Country

Top Collaborators

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