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Avelino Javer
UnverifiedResearcher · GB
Publications
10
Citations
892
max across sources
Profile views
12
bot-filtered
Verification
L0
Overview
AI-generatedAvelino Javer (RTX-00000045) based in GB is a researcher on ResearchTrics. Lists research interests: bat biology and ecology studies, evolution and genetic dynamics, genetic neurodegenerative diseases, genetics, aging, and longevity in model organisms, neuroendocrine regulation and behavior. Has 10 publications recorded, including "Machine learning for determining lateral flow device results for testing of SARS-CoV-2 infection in asymptomatic populations" (2022), "DeepScratch: Single-cell based topological metrics of scratch wound assays" (2020), "Shared behavioral mechanisms underlie C. elegans aggregation and swarming" (2019).
An AI overview generated from this profile’s verified records — an interpretation, not a verified statement.
Research interests
- bat biology and ecology studies
- evolution and genetic dynamics
- genetic neurodegenerative diseases
- genetics, aging, and longevity in model organisms
- neuroendocrine regulation and behavior
Publications (20)
- Machine learning for determining lateral flow device results for testing of SARS-CoV-2 infection in asymptomatic populations22 cites
Cell Reports Medicine · 2022 · DOI
- Machine learning for determining lateral flow device results for testing of SARS-CoV-2 infection in asymptomatic populations22 cites
Cell Reports Medicine · 2022 · DOI
- DeepScratch: Single-cell based topological metrics of scratch wound assays23 cites
Computational and Structural Biotechnology Journal · 2020 · DOI
- DeepScratch: Single-cell based topological metrics of scratch wound assays23 cites
Computational and Structural Biotechnology Journal · 2020 · DOI
- 51 cites
- 51 cites
- An open-source platform for analyzing and sharing worm-behavior data173 cites
Nature Methods · 2018 · DOI
- An open-source platform for analyzing and sharing worm-behavior data173 cites
Nature Methods · 2018 · DOI
- Powerful and interpretable behavioural features for quantitative phenotyping of <i>Caenorhabditis elegans</i>110 cites
Philosophical Transactions of the Royal Society B Biological Sciences · 2018 · DOI
- Powerful and interpretable behavioural features for quantitative phenotyping of <i>Caenorhabditis elegans</i>110 cites
Philosophical Transactions of the Royal Society B Biological Sciences · 2018 · DOI
- Individuality and universality in the growth-division laws of single<i>E. coli</i>cells106 cites
Physical review. E · 2016 · DOI
- Individuality and universality in the growth-division laws of single<i>E. coli</i>cells106 cites
Physical review. E · 2016 · DOI
- A label-free microfluidic assay to quantitatively study antibiotic diffusion through lipid membranes45 cites
Lab on a Chip · 2014 · DOI
- A label-free microfluidic assay to quantitatively study antibiotic diffusion through lipid membranes45 cites
Lab on a Chip · 2014 · DOI
- Persistent super-diffusive motion of Escherichia coli chromosomal loci90 cites
Nature Communications · 2014 · DOI
- Persistent super-diffusive motion of Escherichia coli chromosomal loci90 cites
Nature Communications · 2014 · DOI
- Microfluidic chemostat for measuring single cell dynamics in bacteria135 cites
Lab on a Chip · 2013 · DOI
- Microfluidic chemostat for measuring single cell dynamics in bacteria135 cites
Lab on a Chip · 2013 · DOI
- Short-time movement of E. coli chromosomal loci depends on coordinate and subcellular localization137 cites
Nature Communications · 2013 · DOI
- Short-time movement of E. coli chromosomal loci depends on coordinate and subcellular localization137 cites
Nature Communications · 2013 · DOI
