Professor Sabine Dittmann is a leading expert in coastal ecosystem ecology and marine sciences at Flinders University, Australia. As a Professor of Marine Biology in the College of Science and Engineering, her work bridges research and environmental management, focusing on hypersaline estuaries, blue carbon restoration, and invasive species control. She holds a Habilitation in Ecology from the University of Bremen (2001), PhD from the University of Göttingen (1987), and MSc from the same institution (1984). Her research interests include coastal ecosystem health, mangrove and saltmarsh restoration, and decision support frameworks for marine conservation. She has advised government agencies on marine parks, Commonwealth Marine Reserves, and the Coorong ecosystem. Key roles include national president of the Australian Marine Sciences Association (2012–2014), current president of the Royal Society of South Australia, and member of the Australian Antarctic Science Council since 2019. Her recent work emphasizes the global challenges of hypersaline wetland restoration, invasive species impact, and blue carbon methodologies. Over 112 publications span estuarine dynamics, benthic macrofauna, and policy-relevant ecosystem assessments. Projects like the Coorong benthic surveys highlight her commitment to translating science into conservation action.
Eric Roberts is a Professor of Geology and Geological Engineering and Director of the Potential Gas Agency at the Colorado School of Mines. His research focuses on basin analysis, energy exploration, and sedimentary geology with specializations in Mesozoic-Cenozoic basins of Gondwana and North America. He leads projects in U-Pb geochronology, critical minerals exploration, and paleoenvironmental reconstruction through vertebrate paleontology and stratigraphy studies. Roberts' work integrates advanced geochronological techniques with field-based analyses to address questions in paleobiology, resource exploration, and earth system dynamics. Key research themes include: Geochronology of sedimentary and volcanic deposits Paleoclimate reconstruction using paleosols Stratigraphic frameworks for dinosaur fossil records Resource potential of helium/hydrogen reserves Antarctic and African vertebrate paleontology His exploration of hominin burial practices in the Rising Star Cave System has provided critical insights into early human behavior. Roberts' interdisciplinary approach bridges geological, biological, and environmental sciences to advance understanding of Earth's history and resource management strategies.
Ana Maria Velez is an Associate Professor at the Department of Entomology, University of Nebraska-Lincoln. Her research focuses on insect responses to chemical stressors, particularly RNA interference (RNAi) and Bt toxins for pest management. With a 80% research and 20% teaching appointment, she leads the Insect Toxicology Lab and teaches courses like 'Toxins in the Environment' and 'Insecticide Toxicology.' Education: Ph.D. in Entomology, University of Nebraska-Lincoln, 2013 M.S. in Entomology, Universidad Nacional de Colombia, 2009 B.S. in Biology, Pontificia Universidad Javeriana, Colombia, 2006 Her research spans molecular, organismal, and population levels to evaluate transgenic crops and RNAi technologies. Key areas include resistance mechanisms, non-target effects, and risk assessment frameworks. She has extensive publications on western corn rootworm and fall armyworm, emphasizing sustainable pest control. Her work also addresses sublethal impacts on non-target species like monarch butterflies and honeybees. Recent articles highlight RNAi delivery optimization, Bt resistance dynamics, and ecological impacts of insecticides. Her lab collaborates on patents for RNAi-based pest suppression methods targeting chromatin remodeling and developmental genes. Scientific Awards Distinguished Multicultural Alumni (2019) DuPont Young Professor Award (2016) International Congress of Entomology Travel Awards (2016) Widaman Trust Distinguished Graduate Assistant (2011) Milton E. Mohr Teaching Fellowship (2012) The Vélez Arango Lab investigates durability and safety of insect control technologies, with emphasis on RNAi and Bt crops. Their work informs integrated pest management (IPM) systems and regulatory frameworks.
Zsofia Szendrei is a Professor in the Department of Entomology at Michigan State University (MSU), affiliated with the College of Agriculture & Natural Resources. Her work spans teaching (10%), research (40%), and extension (50%), focusing on vegetable production entomology. She leads the Szendrei Lab, which explores chemical ecology, biological control, and sustainable pest management. Her research emphasizes reducing reliance on synthetic pesticides through integrated approaches like habitat manipulation and molecular detection of trophic interactions. She collaborates closely with growers and extension educators to implement practical solutions for vegetable pest challenges. Education: M.Sc. in Horticulture (Hungary, 2001), Ph.D. in Entomology (MSU, 2005). Professional roles include Co-Editor-in-Chief of American Entomologist (2021–present) and leadership in MSU's Extension programs. She prioritizes student mentorship, fostering creativity and hands-on research in a collaborative lab environment. Key research themes include agroecology, pest-behavioral interactions, and pollinator conservation. Her extension efforts target reducing insecticide use while maintaining crop profitability. Recent work investigates heatwave impacts on crop-pest dynamics and pollinator protection. She has authored/co-authored over 50 peer-reviewed articles, with a focus on topics like cover crops, pathogen management, and invasive species. Her lab’s findings inform both academic discourse and real-world agricultural practices.
Yunlan (Emma) Zhang is an Assistant Professor in the Department of Civil, Architectural, and Environmental Engineering at the University of Texas at Austin, part of the Cockrell School of Engineering. Her research focuses on architected materials, deployable structures, nature-based solutions, and extraterrestrial materials. She holds a B.S. from The Ohio State University (2012), M.S. and Ph.D. from Purdue University (2014, 2019), and completed a postdoc at the University of Oxford (2022). Her work bridges mechanical metamaterials with biomedical and environmental applications, including deployable medical devices and sustainable infrastructure. Education: B.S., The Ohio State University, 2012 M.S., Purdue University, 2014 Ph.D., Purdue University, 2019 Postdoc, University of Oxford, 2022 Her research interests emphasize biomimetic materials inspired by natural systems (e.g., avian feathers) and their translation into engineered solutions. Current projects include developing lightweight superalloys for aerospace, shape-memory materials for medical devices, and artificial reefs for marine conservation. She leads the UT Metamaterials and Advanced Structures Lab (UTMASLab), accessible at https://sites.utexas.edu/utmaslab/ . Recent publications explore novel applications of architected materials in healthcare, disaster-resistant structures, and environmental sustainability. Her work frequently appears in top journals across mechanical engineering, materials science, and biomedical engineering disciplines.
Gary M. Shaw is the Rosemarie Hess Professor and Professor (Research) at Stanford University , with courtesy appointments in the Department of Epidemiology and Population Health and Department of Obstetrics & Gynecology - Maternal Fetal Medicine . He serves as Co-PI of the March of Dimes Prematurity Research Center at Stanford and PI of the California Center for Finding Causes and Preventives of Birth Defects . His research focuses on the Epidemiology of birth defects Gene-environment interactions in perinatal outcomes Nutritional factors in reproductive health . He has developed machine learning approaches for precision parenteral nutrition and predictive models for preterm birth, while investigating persistent metabolomic signatures following hypertensive pregnancy disorders. Shaw's recent work explores Climate change impacts on reproductive health Maternal-fetal immune interactions Epigenetic mechanisms in perinatal disease with applications of multiomics to neonatal intensive care units. As a member of Bio-X and the Maternal & Child Health Research Institute , he contributes to translational research networks while serving as Associate Editor for Birth Defects Research and American Journal of Medical Genetics . He supervises Med Scholar Project student Richard Liang Doctoral co-advisor for Saskia Comess and Richard Liang Master's advisor for Lenae Joe while leading the Division of Neonatology as Associate Chair for Clinical Research (2012-2025). His laboratory work integrates Metabolomic profiling Proteomic analysis Computational modeling Machine learning for biomedical data to advance neonatal care through precision medicine approaches.
Eric W. Schmidt is a Distinguished Professor of Medicinal Chemistry at the University of Utah, with adjunct appointments in Biological Sciences and Chemistry. His research focuses on natural products chemistry, biosynthesis, synthetic biology, and pharmaceutical applications of marine animal microbiomes. University of California, San Diego (BS, PhD) Research areas include: Biosynthesis in animals and their microbiomes Synthetic biology approaches to chemical engineering Drug design from marine natural products Metagenomic analysis of symbiotic relationships Neuroactive compound discovery Antibiotic development against resistant pathogens His lab has pioneered methods for: Biosynthetic gene cluster identification Heterologous expression in E. coli Enzymatic modification of peptides Chemical analysis of marine invertebrates Recent publications highlight discoveries in: Marine animal chemical defense mechanisms Evolution of biosynthetic pathways Antibiotic resistance profiling Ionic channel-targeting compounds Peptide macrocyclization techniques Lipid-polyketide biosynthesis continuum Email: ews1@utah.edu Honors include: Distinguished Professor recognition
Professor Jason Hall-Spencer is a globally recognized marine biologist at the University of Plymouth and a full professor at the University of Tsukuba (Japan), with an adjunct role at Xiamen University. His research focuses on ocean acidification, invasive species (e.g., lionfish), and climate change impacts on marine ecosystems. He pioneered the use of underwater CO2 seeps as natural analogues for climate change studies, a methodology now adopted globally. His work has influenced policies to protect deep-water corals and Arctic reefs, and he leads projects like RELIONMED to combat lionfish invasions in the Mediterranean. Education: Studied Applied Marine Biology at Heriot-Watt University, completed a PhD on coralline algae at Millport Marine Station, and conducted fieldwork across Europe, Asia, and the Pacific. His career includes discovering UK deep-water coral reefs and Arctic reefs, leading to their legal protection. Research Interests: Ocean acidification effects on marine organisms, invasive species management, CO2 seep dynamics, coral reef ecology, and marine conservation. His work combines field experiments, policy advocacy, and community engagement to address global marine challenges. Grants and Collaborations: Secured €1.7M from the EU Life Programme for lionfish control and a $400K grant on plankton dynamics. Collaborates with organizations like the Marine Biological Association and international researchers on projects such as the Ocean Organ to visualize CO2 impacts. Labs/Teams: Leads the Marine Conservation Research Group at Plymouth, coordinating initiatives like RELIONMED and influencing global marine policies through partnerships with governments and NGOs.
Markus Friedrich is a Professor in the Department of Biological Sciences at Wayne State University, affiliated with the College of Liberal Arts and Sciences. His research focuses on insect development, gene family evolution, and arthropod visual systems, with a particular interest in cave-adapted species. He has held roles including Editor-in-Chief of the Molecular Biology and Genomics Section for the journal Insects and advised on the Australian Research Council project DP230100731 (2023-2024). Education: PhD in Zoology from Ludwig-Maximilians-Universität München (1995), postdoctoral training at Caltech (1996–1999). His research interests span comparative genomics, evolutionary developmental biology, and the genetic basis of sensory adaptations. Notable work includes studies on opsin gene evolution, cave animal adaptations, and the genomic basis of arthropod diversification. Recent publications highlight discoveries in harvestmen relict eyes, horseshoe crab Pax6 homologs, and cave beetle sleep behavior. Teaching includes courses like BIO4220 Biological Dimensions of Evolutionary Psychology and BIO1500 Basic Life Diversity . He has supervised numerous students and volunteers, fostering a dynamic research lab environment. His work integrates genomic, developmental, and evolutionary approaches to unravel mechanisms of trait evolution in insects. Grants/Awards: Australian Research Council funding, editorial leadership in entomology journals. Labs/Teams: The Friedrich Lab focuses on evolutionary genetics, with projects involving Tribolium beetles, cave organisms, and comparative genomics.
Professor Awadhesh N. Jha is a Professor in Genetic Toxicology and Ecotoxicology at the School of Biological and Marine Sciences , University of Plymouth, UK. He has been a leading figure in environmental toxicology since joining the university in 1996, rising to full professorship in 2010. He leads the Environmental and Applied Biology Research Group and the Genetic Toxicology and Ecotoxicology Research Group, and served as REF UoA6 Coordinator (2014–2022). His educational background includes a PhD in Radiation Cytogenetics from Banaras Hindu University, India (1989), followed by post-doctoral work at Leiden University, Netherlands, and a role at ICI/Zeneca’s marine toxicology lab before transitioning to academia. Professor Jha’s research focuses on the genotoxic and ecotoxic impacts of environmental stressors such as radionuclides, engineered nanoparticles, PAHs, and emerging contaminants on aquatic organisms. He employs multidisciplinary and innovative methodologies, including in vitro models like fish cell spheroids (‘Virtual Fish’ project), to assess DNA damage, develop biomarkers, and reduce reliance on live animal testing. His work integrates molecular biology, chemistry, and environmental science to evaluate risks to marine ecosystems and human health. The recent research articles reflect a strong trend in marine pollution, radiation biology, and environmental risk assessment , with increasing emphasis on emerging issues like tritium release from nuclear facilities, AI-assisted landfill risk modeling, and sunscreen toxicity. His studies often involve international collaborations and real-world policy implications. Scientific Awards and Recognitions: Jim Parry Award, UKEMS (2021) Fellow of the Royal Society of Biology (FRSB, 2015) VC’s World Class Researcher Award Finalist (2010, 2012) Plymouth Pioneers Recognition UK Nominated Expert, UN WOA III (2023) Supervision and Grants: Professor Jha has supervised 26 PhD students to completion and mentored over 10 post-doctoral researchers. He has led major funded projects including TRANSAT (€5M, Horizon 2020), SPHERTOX , and TITANS , funded by EU, NERC, BBSRC, IAEA, and industry partners like AstraZeneca and Unilever. His work directly informs environmental policy and nuclear safety regulations. Laboratories and Teams: He leads the Genetic Toxicology and Ecotoxicology Research Group and is central to the Environmental and Applied Biology Research Group at Plymouth. His team collaborates internationally with institutions in France, Italy, Spain, Brazil, and India, and contributes to the South West Nuclear Hub. The lab specializes in advanced analytical methods, comet assays, and 3D cell culture models.
Dr. Larry Moore is a Professor of Civil Engineering at the University of Memphis, specializing in environmental engineering with a focus on wastewater treatment optimization, water quality modeling, and energy conservation in water treatment plants. He holds a B.S. from the University of South Alabama (1973) and M.S./Ph.D. in Environmental Engineering from Mississippi State University (1974/1983). His career spans over 33 years of teaching and applied research, addressing wastewater challenges for over 200 industries in Tennessee through the UT Center for Industrial Services. Research interests include water quality modeling of streams (e.g., Loosahatchie River studies), optimization of municipal/industrial wastewater treatment plants, and energy efficiency improvements in water treatment facilities. Collaborative projects with the Tennessee Department of Environment and Conservation and the U.S. Department of Energy have driven energy savings in over 24 treatment plants. Dr. Moore has served as President of the Kentucky-Tennessee Water Environment Association (KTWEA) and received the prestigious Leary Jones Award (2009) for his contributions to the wastewater profession, inducting him into the KTWEA Hall of Fame. Teaching responsibilities include advanced graduate courses such as Biological Wastewater Treatment, Water Quality Modeling, and Solid Waste Management. Awards include multiple 'Superior Performance in University Research' recognitions (1985-1989) and the 1990 Civil Engineering Outstanding Research award. He actively mentors graduate students in applied wastewater research and has advised numerous M.S. and Ph.D. candidates focusing on treatment plant optimization and emerging technologies. Professional Affiliations: Life Member of Water Environment Federation, KTWEA Pretreatment Certification Committee (since 2000), Tennessee Water and Wastewater Operator Certification Board (since 2007) Key Projects: Operational guidance for Memphis' Maxson WWTP, energy conservation studies across 24 plants, and aeration system design improvements Community Impact: Operator training programs, NPDES permit compliance support, and industrial wastewater problem resolution
Michael J. Ragusa is an Associate Professor of Chemistry at the Department of Chemistry, College of Arts and Sciences, Dartmouth College , specializing in molecular mechanisms of selective autophagy . His research integrates structural biology , biochemical reconstitution , and cell biology to understand how cells degrade toxic components like damaged organelles. Education: B.S. in Chemistry from Siena College, Ph.D. in Biochemistry from Brown University His work focuses on autophagy , particularly the role of Atg proteins in membrane tethering and cargo selection. His lab has published extensively on mitophagy , ALFY , and Atg11 , linking defects in these pathways to cancer , neurodegeneration , and infectious diseases . Recent studies highlight mechanisms of vesicle clustering and dimerization-dependent membrane interactions . Dr. Ragusa teaches courses such as CHEM 5: General Chemistry , CHEM 42: Biological Chemistry II , and CHEM 95.05: Protein Crystallography . His lab employs techniques like X-ray crystallography , NMR spectroscopy , and membrane reconstitution to dissect protein-lipid interactions.
Prof. Douglas Sheil is a Chairholder in Forest Ecology and Forest Management at Wageningen University & Research. He holds a MA in Natural Sciences from Cambridge and an MSc in Forestry from Oxford. His career includes roles at the University of Oxford, CIFOR (Indonesia), the Institute for Tropical Forest Conservation in Uganda, and the Norwegian University of Life Sciences (NMBU). His research focuses on tropical forest ecology, biodiversity conservation, and human-forest interactions, with over 200 publications. He co-authored the influential textbook Tropical Rain Forests: Ecology, Diversity, and Conservation (2010). Awards include the Biotropica Prize (2004) and the Queen’s Award for Forestry (2015). Education: MA (Natural Sciences, Cambridge), MSc (Forestry, Oxford) Key Roles: Director of Institute for Tropical Forest Conservation (2008–2012), Professor at NMBU (2013–2020) Research Interests: Tropical forest dynamics, climate change impacts, conservation strategies, and the socio-ecological dimensions of forest management. His work spans field studies in Africa, Southeast Asia, and Oceania, emphasizing interdisciplinary approaches to address deforestation, biodiversity loss, and sustainable land use. Recent Trends in Articles: Focus on mycorrhizal networks, oil palm impacts, lightning disturbance, and mammal population responses to human activity. He explores mechanisms linking forest structure to ecosystem services, such as carbon sequestration and water regulation, often integrating remote sensing and global datasets. Awards: Biotropica Prize, Queen’s Award for Forestry Grants/Projects: Studies on lightning effects in African forests, camera trap mammal surveys, and policy analyses for vegetable oil sustainability. Labs/Teams: Leads interdisciplinary groups at Wageningen, collaborating with CIFOR and international networks. Active in IUCN committees to translate science into conservation policy.
Dr. Justin Gerlach is a Fellow at Peterhouse College and an Academic Associate at the University Museum of Zoology, University of Cambridge. He specializes in broad-spectrum ecology, integrating conservation biology, evolutionary studies, and biodiversity analysis with a focus on island ecosystems in the Indian and Pacific Oceans. His research has pioneered invertebrate reintroduction programs and revealed groundbreaking insights into giant tortoise behavior. Education: DPhil in Zoology from Oxford University Current projects: Biodiversity assessment across Cambridge colleges, Partula snail reintroduction, tortoise aging studies Research interests center on preventing species extinction through conservation, studying species interactions, and evolutionary dynamics. Key initiatives include saving island invertebrates, investigating tortoise predation, and environmental DNA applications for ecosystem reconstruction. Recent publications highlight island conservation challenges, evolutionary patterns, and ecological innovations. Themes include biodiversity preservation, species reintroduction, and interdisciplinary approaches to conservation biology.
Gregory Michael Peck is an Associate Professor and Director of Undergraduate Studies for the Plant Sciences Major at Cornell University's School of Integrative Plant Science, Horticulture Section. His research focuses on sustainable tree-fruit production, particularly in organic apple systems , cider apple germplasm evaluation , and crop-load management through pollen tube growth modeling . Award-winning educator (2021 Cornell Teaching, Advising & Mentoring Award) 2018 Grower Advocate of the Year (American Cider Association) Active in outreach through field days, extension publications, and social media Peck's work spans tree-fruit physiology , soil health , and mechanization of orchard practices . He co-teaches Cornell's popular cider appreciation course with microbiologist Kathy Arnink, combining apple production science with fermentation expertise. His research explores phenolic development , nitrogen management , and yeast interactions in cider production systems. Recent publications highlight collaborations in rootstock effects , compost applications , and fermentation chemistry . Peck's career has included work in California, Washington, New York, and Virginia, with training spanning horticulture, plant physiology, soil science, and agricultural economics.