Frank Corsetti is a Professor of Earth Sciences at the University of Southern California (USC), leading the Corsetti Lab. His research focuses on the co-evolution of Earth and its biosphere, particularly during extreme events like the 'Snowball Earth' glaciation and mass extinctions. He holds a Ph.D. in Geological Sciences from UC Santa Barbara (1998) and a B.S. in Geology from UC Davis (1989). Research Interests: Corsetti studies geobiological processes such as stromatolite formation, microbial carbonate systems, and the environmental impacts of mass extinctions. His lab investigates biosignatures, diagenetic processes, and astrobiological applications. Current projects include the end-Triassic mass extinction and microbial interactions in extreme environments. Advising & Grants: He mentors a team of PhD students (including Reena Joubert, Alison Cribb, and others) and has secured funding from NASA for projects like stromatolite carbonate formation studies. His work bridges paleontology, geochemistry, and microbiology, contributing to understanding Earth’s long-term climate and life history. Labs/Teams: The Corsetti Lab at USC explores stromatolites, microbial mats, and ancient Earth systems. Collaborations involve institutions like JPL and international universities.
Peter Wilf is a Professor in the Department of Geosciences at Pennsylvania State University's College of Earth & Mineral Sciences. His research focuses on fossil plants as indicators of past climates, biodiversity, and environmental disturbances from the latest Cretaceous through middle Eocene (~67-45 million years ago). Wilf leads significant research projects including the Origins of Southeast Asian Rainforests from Paleobotany and Machine Learning and the Patagonia Paleofloras Project. His research interests span paleobotany, paleoclimatology, plant-insect interactions, and biogeography, with emphasis on how deep-time data illuminate modern ecosystems and their responses to anthropogenic change. Wilf's work primarily focuses on the latest Cretaceous through middle Eocene, examining global disturbances including warming and cooling events, the end-Cretaceous mass extinction, and recovery periods. His research has significant implications for understanding climate change, biodiversity conservation, and ecosystem dynamics. Wilf's extensive publication record demonstrates consistent high-impact research across paleobotany, with recent work focusing on Southeast Asian rainforests, Patagonian paleofloras, and the connections between Gondwanan landmasses. His research integrates fieldwork in Patagonia and Southeast Asia with advanced analytical techniques, including machine learning applications for fossil leaf identification. Fellow, American Association for the Advancement of Science (AAAS) 2022 Wilson Award for Excellence in Research, Penn State College of Earth & Mineral Sciences 2022 Fellow, Paleontological Society 2017 Fellow, Geological Society of America 2016 Paul F. Robertson Research Breakthrough of the Year Award, Penn State College of Earth & Mineral Sciences 2016 George W. Atherton Award for Excellence in Teaching, Pennsylvania State University 2013 Wilf maintains an active research program with numerous NSF-funded projects and international collaborations. He leads a productive lab group conducting extensive fieldwork in Patagonia, Argentina, and Southeast Asia. His research has transformed understanding of Southern Hemisphere floras, the role of Patagonia in plant evolution, and connections between ancient and modern ecosystems across continents. Wilf's laboratory serves as a hub for paleobotanical research, bringing together students, postdocs, and international collaborators to study fossil plant collections from around the world. The lab integrates traditional paleobotanical methods with cutting-edge technologies including machine learning for fossil identification and advanced imaging techniques for detailed morphological analysis.
Seth Finnegan is a Professor in the Department of Integrative Biology at the University of California, Berkeley, and affiliated with the University of California Museum of Paleontology. His research focuses on understanding the processes shaping marine ecosystems and biota from the late Neoproterozoic to the present, with a particular emphasis on the Ordovician Period and mass extinctions. He integrates field observations, laboratory data, and literature databases to study extinction selectivity, environmental proxies (e.g., stable isotopes, biomarkers), and ecosystem reconstructions. His lab, the Finnegan Lab, explores themes such as organism-environment interactions and the drivers of biodiversity changes. Finnegan’s work has been widely published in journals like Proceedings of the National Academy of Sciences and Geology , and he collaborates with institutions globally. Despite no listed awards here, his contributions to paleontology are significant.
Gheorghe Craciun is a Professor in the Department of Mathematics and the Department of Biomolecular Chemistry at the University of Wisconsin-Madison. His research focuses on mathematical and computational models in biology and medicine, particularly dynamical systems models of biological interaction networks. He has been a visiting researcher at the Max Planck Institute for Mathematics in the Sciences during the 2019-2020 academic year and has organized the Madison Workshops on Mathematics of Reaction Networks. Craciun's primary research interests include Mathematical Biology, Dynamical Systems, Chemical Reaction Networks, Computational Biology, Systems Biology, and Algebraic Geometry. He investigates systems of differential equations with polynomial right-hand sides, which are common in biochemical reaction networks, ecological interactions, and epidemiological models. His work often involves proving global stability, analyzing multistability, and characterizing steady states using tools from algebraic geometry and combinatorics. Recent publications demonstrate his focus on toric differential inclusions, endotactic networks, and the global attractor conjecture, extending to applications in biochemical networks and discrete Boltzmann equations. His extensive publication record reveals a strong trend toward algebraic and geometric methods for analyzing complex biological networks, with significant contributions to reaction network theory, stability analysis, and parameter characterization. Craciun's work bridges abstract mathematical concepts with practical applications in biochemistry, ecology, and medicine, including modeling vitellogenin production in trout and peptide mass distributions. He has collaborated extensively with international researchers including Alicia Dickenstein, Anne Shiu, Bernd Sturmfels, Casian Pantea, and Miruna-Stefana Sorea. In education, Craciun teaches graduate courses such as Math 703 and mentors students through the Madison Math Circle and Putnam Club, while organizing specialized workshops that foster collaboration in reaction network theory.
Professor Balz Kamber is a renowned academic in the Faculty of Science at Queensland University of Technology (QUT), leading research in elemental and isotopic geochemistry paired with petrology. He holds the position of Professor in Petrology within the School of Earth & Atmospheric Sciences . His work focuses on Earth's differentiation into chemical spheres, with applications in climate science, planetary evolution, and resource exploration. Kamber has held prestigious roles, including Chair in Geology and Mineralogy at Trinity College Dublin and a Tier 1 Canada Research Chair at Laurentian University. Education: PhD (University of Bern, Switzerland), MSc (University of Bern) Professional Memberships: Royal Irish Academy (since 2018), European Association of Geochemistry Research interests include thermodynamic modeling of igneous processes, automated mineralogy, and the interplay between climate and geological history. His current projects address mantle dynamics, crustal evolution, and planetary weathering. Teaching focuses on Earth Materials, Petrology, and Climate Science at QUT. Notable achievements include editorship of Chemical Geology (since 2018) and contributions to understanding the Great Oxidation Event and Deccan Traps volcanism. His work bridges fundamental geochemistry with real-world challenges, such as climate change mitigation through enhanced rock weathering. Grants/Funding: Led the 23M Euro Irish Centre for Research in Applied Geosciences (2011–2018) Labs/Teams: Heads a dynamic research group advancing LA-ICP-MS methodologies and geochemical imaging
John Martin is an Associate Professor at the University of Illinois Springfield, affiliated with the School of Integrated Sciences, Sustainability, and Public Health. Since 2006, he has taught introductory physics for science majors and astronomy courses while directing the Henry R. Barber Research Observatory and hosting public UIS Star Parties. His research focuses on stellar astrophysics, particularly the life cycles of massive stars and phenomena like Eta Carinae. Stellar Astrophysics Massive Star Evolution Luminous Blue Variables (LBVs) Supernova Impostors Be Stars and Disks Photometry and Spectroscopy His publications, including over 100 peer-reviewed works, emphasize Eta Carinae's 5.5-year spectroscopic events, LBVs in M31/M33, Be star dynamics, and supernova impostors like SN 2009ip. Awards include the 2011 University of Illinois University Scholar title, JJ Nassau Fellowship (1997), and Dean's List recognitions. He earned his PhD in Astronomy from Case Western Reserve University (2003) and BS in Astro-Physics from the University of Virginia (1995). Scientific awards include 2011 University of Illinois University Scholar 1997 JJ Nassau Graduate Research Fellowship 1995 Mastin Graduate Fellowship 1995 Dean's List, University of Virginia 1994 Dean's List, University of Virginia
David Finkelstein is an Associate Professor in the Department of Geosciences at Hobart and William Smith Colleges, where he has been a faculty member since 2013. He earned his Ph.D. from the University of Illinois at Urbana-Champaign and holds advanced degrees from the University of Massachusetts, Amherst. His academic affiliations include prior roles as a Research Assistant Professor and Lab Manager at the University of Massachusetts and as an Assistant Professor at the University of Tennessee. Ph.D., University of Illinois at Urbana-Champaign M.S., University of Massachusetts, Amherst B.S., University of Massachusetts, Amherst Dr. Finkelstein's research centers on limnogeology and biogeochemistry , with a focus on the chemical evolution of lake systems, stable isotope geochemistry, and microbial life in extreme environments. His work integrates aqueous geochemistry, organic molecular analysis, and microbiological methods to reconstruct paleoenvironments and climate change across geological timescales, including the Holocene, Pleistocene, Cretaceous, and Triassic periods. He has extensively studied lake sediments, wildfires, and the environmental impacts of the 2010 Gulf of Mexico oil spill. His recent publications show a strong trend in using biogeochemical proxies and isotopic signatures to understand past climate variability, human-environment interactions, and extreme environmental conditions. His research often involves multidisciplinary collaborations and field-based studies in diverse regions such as Russia, Iran, and Central America. Dr. Finkelstein is actively involved in scientific communities, with affiliations including: International Association of Limnogeology American Geophysical Union Geological Society of America Geochemical Society SEPM (Society for Sedimentary Geology) He has advised numerous research projects and mentored students in geoscience, though specific names are not listed. His teaching includes courses such as Stable Isotope Geochemistry, Limnology, and Environmental Geochemistry, reflecting his expertise in both theoretical and applied aspects of earth sciences. Dr. Finkelstein has not received any explicitly listed scientific awards in the provided text, but his publication record in high-impact journals demonstrates significant scholarly contributions. He does not appear to lead a named laboratory or research center, but his work is deeply embedded in field and laboratory-based geochemical analysis.
Gideon Rosenbaum is Professor in Structural Geology and Tectonics at the University of Queensland's School of the Environment. His research focuses on geodynamic processes at convergent plate margins. BSc Hebrew University (1997) PhD Monash University (2004) Research examines tectonic evolution of orogenic belts using field geology, geochronology, and geophysical data. Current projects investigate arc curvature development, subduction zone segmentation, and continental assembly mechanisms. Recent publications demonstrate advanced applications in geochronology and structural analysis, particularly in Australian and Mediterranean terrains. Work increasingly incorporates geochemical proxies for tectonic reconstruction.
Peter C. Lippert is an Associate Professor in the Department of Geology & Geophysics at the University of Utah , with research spanning paleomagnetism, tectonics, and environmental magnetism. His work connects geological time scales to climate dynamics, orogenic processes, and urban pollution monitoring. BS (2003) and PhD (2010) in Earth sciences Postdoctoral training at University of Arizona and UC Santa Cruz Research focuses include: Antarctic ice age cyclicity and Earth's orbital influences Hydrothermal alteration effects on paleomagnetic records in Tibet Magmatism during Mongol-Okhotsk Ocean closure Magnetofossils as climate proxies for rapid warming events Evergreen needle magnetization for urban pollution mapping Recent publications highlight collaborations across 50+ international institutions , with methodological innovations in site-level paleomagnetic analysis and FORC-PCA magnetofossil discrimination. His 15 most recent articles (2020–2024) address tectonic reconstructions, geomagnetic field evolution, and climate-ocean interactions. He serves on the Magnetics Information Consortium (MagIC) Steering Committee and has received the Taft-Nicholson Summer Faculty Fellow award. Teaching emphasizes Earth science as a philosophy, with courses on structural geology, dynamic Earth systems, and field research.
Sara Pruss is the Esther Cloudman Dunn Professor of Geosciences at Smith College, where she has established herself as a leading researcher in geobiology and paleontology. Her work focuses on critical transitions in Earth's history, particularly mass extinctions and the evolution of early life forms. She maintains an active research program that combines field work, laboratory analysis, and theoretical approaches to understand the complex interactions between life and Earth's environments through geological time. Education: Ph.D., University of Southern California M.S., University of Southern California B.S., University of Rochester Professor Pruss's research spans several interconnected areas within geobiology and paleontology. Her primary focus is on understanding mass extinction events, particularly the end-Permian extinction and Cambrian-Ordovician transitions. She investigates how these events affected marine ecosystems and the subsequent recovery patterns. Her work on Neoproterozoic carbonates and early animal evolution has provided important insights into the environmental conditions that facilitated the emergence of complex life. Professor Pruss also examines microbial sedimentary structures and their implications for interpreting ancient environments. Her research often combines detailed field observations with geochemical analyses to reconstruct paleoenvironments and understand the taphonomic processes that affect fossil preservation. Analysis of Professor Pruss's recent publications reveals a consistent focus on critical transitions in Earth's history. Her work spans the Ediacaran-Cambrian boundary, the Cambrian-Ordovician transition, and the Permian-Triassic extinction. A recurring theme is the relationship between environmental changes (particularly oxygenation and redox conditions) and biological evolution. Her research increasingly incorporates geochemical proxies like mercury chemostratigraphy to identify potential volcanic triggers for extinction events. The geographical scope of her work is global, with field sites in North America, Scotland, Namibia, and the Arctic. Scientific Awards: Outstanding Contributions to Geobiosciences by the Society for Geobiology and Geomicrobiology (2014) Sherrerd Prize for Distinguished Teaching by Smith College (2015) Professor Pruss has mentored numerous undergraduate students through her research lab at Smith College. Several of her former students, including Katie Castagno, Jana Burke, Kelsey Moore, Sophie Westacott, and Kiara Gomez, have gone on to earn PhDs from prestigious institutions like MIT, Yale, and Woods Hole. Her research has been consistently supported by major funding agencies including the National Science Foundation and the National Geographic Society. Beyond her research mentorship, Professor Pruss has been actively involved in programs aimed at supporting underrepresented women in STEM fields, demonstrating her commitment to inclusive excellence in science education. Professor Pruss leads an active research laboratory at Smith College that combines field, laboratory, and analytical approaches to geobiological research. Her lab has produced numerous publications with undergraduate co-authors, reflecting Smith's strong emphasis on undergraduate research. The lab's work often involves international collaborations with researchers from institutions around the world. Current research directions include investigating the relationship between oxygenation and early animal evolution, studying microbial influences on sedimentary structures, and examining the environmental triggers for major extinction events throughout Earth's history.
Edel Hyland is a Senior Lecturer in Biochemistry at Queen's University Belfast's School of Biological Sciences, affiliated with the Institute for Global Food Security since 2015. Her research examines how genome architecture influences environmental adaptation through chromatin dynamics, utilizing yeast pathogens from the Saccharomycotina subphylum with active PhD recruitment in antifungal resistance. Her academic training includes a BSc in Biochemistry from Trinity College Dublin (1996-2000), PhD under Prof. Jef Boeke at Johns Hopkins School of Medicine (2002-2008), and postdoctoral work at Harvard Medical School (2001-2002), Harvard University (2009-2014), and Dublin City University (2014-2015). Research centers on chromatin-based gene regulation mechanisms across evolutionary timescales, specifically investigating: experimental evolution of Saccharomyces cerevisiae histone variants, CRISPR-Cas9 reverse genetics in Candida glabrata virulence, and comparative epigenomics of histone marks in fungal pathogens. This work directly addresses antifungal resistance and phenotypic plasticity in human-infecting yeasts. Recent publications (2019-2023) reveal strong interdisciplinary trends combining medical mycology with evolutionary genomics, particularly in Candida drug resistance mechanisms. Parallel work extends to malaria pathogenesis (Plasmodium transporters) and innate immune evolution, consistently applying chromatin analysis to pathogen adaptation challenges. She holds the Charles A. King Postdoctoral Fellowship award and serves as Co-Investigator on two major research projects: IMMACULATE: Improving Mass Spectrometry Sustainability in Food, Environmental, and Health Research (2023-present) Phosphorus from wastewater: Novel technologies for advanced treatment and re-use (2014-present) Hyland coordinates undergraduate Experimental Biochemistry (BIO2102) and MSc Protein Structure & Function (BBC8039) modules while actively supervising PhD students. Her laboratory focuses on yeast epigenetics within the Institute for Global Food Security, maintaining international collaborations evidenced by co-author networks spanning the USA, Ireland, and UK, and participates in science outreach including the Northern Ireland Science Festival.
Craig O'Neill is an Associate Professor in Geophysics/Remote Sensing at the School of Earth & Atmospheric Sciences, Faculty of Science, Queensland University of Technology (QUT). His research spans geodynamics, planetary science, geophysics, and engineering geology, with a strong focus on understanding Earth and planetary evolution through computational modeling and geophysical data analysis. His research interests include Geophysics, Geodynamics, Remote Sensing, Planetary Science, Engineering Geology, Geochemistry, and Geology . He applies advanced numerical methods to model planetary interiors, tectonic processes, and geohazards, with recent work exploring early Earth crust formation, Venusian core dynamics, exoplanet thermal evolution, and applied geophysical techniques for engineering and environmental monitoring. The trend in his recent publications shows a strong interdisciplinary focus, combining computational geophysics with planetary science and Earth systems analysis. His work appears in leading journals such as Nature , Science Advances , and Geophysical Research Letters , covering topics from asteroid impacts and craton formation to ambient noise tomography and groundwater response to climate change. Professional Memberships: Australian Society of Exploration Geophysicists American Geophysical Union Australian Geomechanics Society Craig O'Neill supervises research students in areas such as lunar seismology and planetary geodynamics. While no specific grants are listed in the provided text, his extensive publication record and active research programs suggest ongoing funding support. He has developed open-source tools like Planet_LB for lattice-Boltzmann modeling of planetary systems. He is actively involved in the geophysics community, with scholarly profiles on ORCID, Google Scholar, and Scopus, and shares his research via X (formerly Twitter). His work bridges fundamental planetary science with practical geophysical applications.
Rowan C Martindale is an Associate Professor at the University of Texas at Austin's Department of Earth and Planetary Sciences within the Jackson School of Geosciences. His research focuses on marine paleoecology, mass extinctions, and carbon cycle perturbations in deep time, particularly the Triassic-Jurassic and Toarcian Ocean Anoxic Event. He leads the Martindale Lab, which investigates Jurassic reef crises, Lagerstätten preservation, and modern reef decline. His work integrates field studies, geochemical analyses, and educational tools like board games to enhance STEM engagement. Affiliations: UT Austin Non-vertebrate Paleontology Lab GSA Geobiology & Geomicrobiology Division (Executive Committee) Education: Doctoral research centered on Triassic/Jurassic boundary reef collapse linked to ocean acidification. Postdoctoral opportunities at Scripps and Humboldt Foundation were declined. Research Interests: Reconstruction of ancient reef ecosystems, exceptional fossil preservation mechanisms, and applying paleontological insights to modern conservation. Key projects include the Pliensbachian/Toarcian reef crisis and Jamaican coral reef monitoring. Publications: Over 50 peer-reviewed articles since 2015, emphasizing Jurassic paleoecology, fossil preservation, and education innovation. Top-tier journals include Paleontology , Geology , and Papers in Palaeontology . Awards: NSF CAREER Award (2019) UT Austin Teaching Excellence Award (2017) Advising & Grants: Supervised 15+ graduate students and postdocs. Secured NSF grants for reef research and educational initiatives like the GeoPATHS program in Jamaica. Labs/Teams: Collaborates with global institutions on field projects in Morocco, Jamaica, and the Caribbean. Lab focuses on combining fieldwork, microscopy, and geochemical analyses.
Ellen Currano is Professor of Paleobotany in the Department of Geology and Geophysics at the University of Wyoming. Her research integrates fossil plants, insect herbivory, and paleoenvironmental proxies to understand how ancient forest ecosystems responded to climate perturbations, with field projects spanning Wyoming’s Paleogene strata and East Africa’s Miocene basins. She teaches courses in paleobotany, paleoecology, and paleoclimatology and is co-founder of The Bearded Lady Project , a science-outreach documentary initiative. Education Ph.D., Pennsylvania State University, 2008 B.S., University of Chicago, 2003 Research Interests Currano’s work centers on reconstructing ancient forest ecosystems using fossil plants and their insect-mediated damage. She investigates how taxonomic diversity, ecosystem structure, plant–insect interactions, and biogeographic patterns shifted during past global warming events. Her current projects include: Biotic responses to Paleogene hothouse climates across the Western US, especially Wyoming. Evolution of East African terrestrial ecosystems over the last 30 million years. Fossil-plant proxies for paleoclimate and paleoenvironmental reconstruction. Scientific Awards Paleontological Society Medal, 2021 Teaching & Mentoring Currano emphasizes active, process-based learning and critical thinking in her courses on paleobotany, paleoecology, and paleoclimatology. Leveraging Wyoming’s world-class fossil exposures, she mentors both undergraduate and graduate students in independent research. Outreach & Leadership She co-founded The Bearded Lady Project: Challenging the Face of Science , a documentary film and photography campaign that confronts stereotypes surrounding women in field sciences.
Dr. Cesare Andrea Papazzoni serves as Associate Professor at the Department of Chemical and Geological Sciences, University of Modena and Reggio Emilia. His expertise spans vertebrate paleontology , biostratigraphy , and paleoenvironmental reconstructions with a focus on foraminifera and carbonate systems . Teaching responsibilities include courses on Paleontology and Evolution of Vertebrates (Master's in Science Teaching and Communication) and Applied Biostratigraphy (Geosciences program), where students engage in fossil identification, gamma-ray stratigraphy, and paleoclimatic analysis. Research interests center on climate change impacts on marine calcifiers during Paleogene thermal events (EECO, MECO). His work examines resilient coral reef ecosystems , nummulitid foraminifera , and shallow-water carbonate factories through integrated biostratigraphic, isotopic, and sedimentological methods. Recent studies include iron ooid genesis in Eocene basins and taxonomic revisions of historical fossil collections. Publications (2021–2025) reveal expertise in benthic community dynamics during MECO , taphonomic analysis of vertebrate fossils , and biostratigraphic correlation between SBZ and CN zones . Collaborative work spans ichthyosaur morphology , coral diversification patterns , and microfacies analysis of Paleogene successions. Current projects integrate multidisciplinary approaches to sedimentary systems affected by tectonic-climatic coupling.