Area of research
Ecology · Physiology
Research interest
Research interests include Spaceflight effects on biology, Microbial Community Ecology and Physiology, Planetary Science and Exploration, and Genomics and Phylogenetic Studies.
The International Space Station has a unique and extreme microbial and chemical environment driven by use patterns
Longitudinal multi-omics analysis of host microbiome architecture and immune responses during short-term spaceflight
A second space age spanning omics, platforms and medicine across orbits
Genomic and morphological characterization of Knufia obscura isolated from the Mars 2020 spacecraft assembly facility
Biomonitoring and precision health in deep space supported by artificial intelligence
Biological research and self-driving labs in deep space supported by artificial intelligence
Phylogenomics, phenotypic, and functional traits of five novel (Earth-derived) bacterial species isolated from the International Space Station and their prevalence in metagenomes
Machine learning algorithm to characterize antimicrobial resistance associated with the International Space Station surface microbiome
Microbial Tracking-2, a metagenomics analysis of bacteria and fungi onboard the International Space Station
Investigation of Spaceflight Induced Changes to Astronaut Microbiomes
Methylobacterium ajmalii sp. nov., Isolated From the International Space Station
Comparative Genomics of Novel Agrobacterium G3 Strains Isolated From the International Space Station and Description of Agrobacterium tomkonis sp. nov.
Fundamental Biological Features of Spaceflight: Advancing the Field to Enable Deep-Space Exploration
Crewmember microbiome may influence microbial composition of ISS habitable surfaces
Characterization of the total and viable bacterial and fungal communities associated with the International Space Station surfaces
MetaMiner: A Scalable Peptidogenomics Approach for Discovery of Ribosomal Peptide Natural Products with Blind Modifications from Microbial Communities
Genomic Characterization and Virulence Potential of Two<i>Fusarium oxysporum</i>Isolates Cultured from the International Space Station
Succession and persistence of microbial communities and antimicrobial resistance genes associated with International Space Station environmental surfaces
KatharoSeq Enables High-Throughput Microbiome Analysis from Low-Biomass Samples
Multi-drug resistant Enterobacter bugandensis species isolated from the International Space Station and comparative genomic analyses with human pathogenic strains
International Space Station conditions alter genomics, proteomics, and metabolomics in Aspergillus nidulans
Cleanroom Maintenance Significantly Reduces Abundance but Not Diversity of Indoor Microbiomes
Quo vadis? Microbial profiling revealed strong effects of cleanroom maintenance and routes of contamination in indoor environments
Microbial Community Structures of Novel Icelandic Hot Spring Systems Revealed by PhyloChip G3 Analysis
New perspectives on viable microbial communities in low-biomass cleanroom environments
Tackling the minority: sulfate-reducing bacteria in an archaea-dominated subsurface biofilm
Description of Tersicoccus phoenicis gen. nov., sp. nov. isolated from spacecraft assembly clean room environments
Hardy Bacterium Isolated From Two Geographically Distinct Spacecraft Assembly Cleanroom Facilities
NASA Technical Reports Server (NASA) 2012cited by 0position: middle
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