Mark Lee is an Adjunct Professor in the People Analytics department at NYU’s Tandon School of Engineering, specializing in Technology Management and Innovation. He holds a Ph.D. in Engineering Psychology from Georgia Institute of Technology (1996). Currently, he serves as Head of Research, Analytics, and Business Development at UL ComplianceWire, focusing on pharmaceutical and medical device manufacturing training. His research leverages large datasets to improve healthcare safety through regulatory compliance and best practices. Courses taught include Human Factors Engineering, Workplace Design, and Predictive Analytics. Education: Ph.D. in Engineering Psychology, Georgia Tech (1996) Key Roles: Adjunct Professor, Head of Research at UL ComplianceWire Research Focus: Human Factors, Training Systems Design, Healthcare Compliance His work spans auditory display systems for aviation (e.g., 3D audio cockpit interfaces) and ergonomic design for industrial products. Recent projects emphasize data-driven solutions for regulatory challenges in life sciences. Publications highlight studies on visual search strategies, age-related cognitive performance, and application of signal detection theory in decision-making. He actively collaborates with industry and government entities, exemplified by the FDA-UL Cooperative Research Agreement.
Prof. Dr. Stefanie Hellweg serves as a Full Professor for Ecological Systems Design at the ETH Zürich , Department of Civil, Environmental and Geomatic Engineering. She is Deputy Head of the Institute of Environmental Engineering and leads groundbreaking research at the intersection of industrial ecology, life cycle assessment, and circular economy systems. PhD in Environmental Engineering (ETH Zürich, 2000) Industrial Engineering Degree (Karlsruhe University, 1996) Her research develops advanced methodologies for environmental impact assessment of products and technologies, focusing on: Life Cycle Assessment (LCA) with correlated uncertainty modeling Circular economy implementation in chemical and energy sectors Industrial symbiosis optimization for heat and nutrient flows Urban wastewater systems redesign for resource recovery Chemical pollution analysis in plastic materials Key publication trends reveal expertise in: Hybrid wastewater treatment systems Energy-efficient greenhouse cultivation Exergy analysis for sustainability metrics Machine learning applications in environmental modeling Policy-relevant industrial ecology studies She actively participates in global sustainability initiatives as: President of the International Society of Industrial Ecology (ISIE) Member of UN Environment's International Resource Panel Editorial board member for leading environmental journals
Mari Moora is a distinguished Professor in Community Ecology at the University of Tartu's Faculty of Science and Technology, Institute of Ecology and Earth Sciences. Since August 2023, she has served as the Vice Rector for Research at the University of Tartu, a position she will hold until July 2028. With a career spanning over three decades at the University of Tartu, Professor Moora has established herself as a leading expert in plant ecology, particularly in the field of mycorrhizal symbiosis and its role in shaping plant communities. Education: Secondary education at Nõo Secondary School (1984) Bachelor's degree in Biology (Genetics) from University of Tartu (1989) PhD in Plant Ecology from University of Tartu (1998) with thesis supervised by Martin Zobel Professor Moora's research focuses on the processes behind the structure and diversity of plant communities, particularly examining the role of biotic interactions such as mycorrhizal symbiosis and pollination in shaping plant populations. Her work extends to studying global diversity patterns of arbuscular mycorrhizal fungi and soil metagenomics - investigating how soil molecular diversity influences visible ecological patterns across ecosystems. Her interdisciplinary approach combines field ecology, molecular techniques, and theoretical frameworks to address fundamental questions in community ecology and biodiversity science. Her recent publications demonstrate a clear trend toward understanding ecological processes at multiple scales, from molecular interactions to global biodiversity patterns. Professor Moora's work increasingly integrates cutting-edge molecular techniques like metabarcoding with traditional ecological approaches, creating a more comprehensive understanding of plant-microbial interactions. Her research has significant implications for biodiversity conservation, ecosystem restoration, and understanding how ecological communities respond to environmental change. Scientific Awards: Order of the White Star, 4th class (2025) Estonian Academy of Sciences Alma Tomingas Medal (2023) Science Award of the Estonian Republic (2016) Honorary member of the University of Rio Cuarto (Argentina) (1998) Professor Moora has served as a principal investigator for significant research projects including "Plant-microbial mutualisms in dynamic ecosystems" (2021-2025) and the University of Tartu component of "Agroecology and new crops in future climates" (2024-2030). She has been actively involved in research administration and evaluation, serving on panels for the European Research Council, German Research Foundation, and European Commission. Her editorial work includes being an Academic Editor for PLoS ONE (2011-2016) and serving as a referee for numerous high-impact ecology journals. As Head of the Chair of Plant Ecology (2021-2023) and currently as Vice Rector for Research, Professor Moora plays a significant role in shaping research strategy and academic leadership at the University of Tartu. Her work bridges fundamental ecological research with practical applications for biodiversity conservation and sustainable land management.
Dr. Jonathan Lenoir is a CNRS Researcher at the Ecology and Dynamics of Anthropized Systems (EDYSAN) laboratory, University of Picardie Jules Verne , France. His work bridges Ecology and Biostatistics , focusing on ecological dynamics under spatial and temporal global changes, particularly biotic responses to climate change. His research spans broad-scale biodiversity patterns, species distribution modeling, and microclimate ecology, with special attention to forest systems. Dr. Lenoir leads and contributes to multiple research projects including MaCCMic (Impact of forest Management and Climate Change on understory Microclimate) and IMPRINT (Impacts of Microclimatic Processes on forest Biodiversity redistribution under macroclimaTe warming). These projects utilize advanced technologies like LiDAR and microclimate sensors to model understory temperature dynamics and predict biodiversity responses to climate change. His recent publications analyze microclimate buffering in forests ( 2024 ), species thermophilization ( 2024 ), and the application of deep learning to habitat identification ( 2024 ). His work also explores interdisciplinary connections like eco-oncology , comparing invasion dynamics in ecology and medicine. Dr. Lenoir actively mentors researchers and supervises fieldwork campaigns, emphasizing rigorous data collection ( 180 monitoring plots across French forests ) and advanced statistical analyses in R . He collaborates with European institutions and participates in large-scale initiatives like ReSurveyEurope , a database of resurveyed vegetation plots.
Professor Oula Ghannoum is a renowned plant scientist and academic leader at the Hawkesbury Institute for the Environment (HIE), Western Sydney University. She serves as Director of the ARC Training Centre for Smart and Sustainable Horticulture and holds leadership roles, including Biological Sciences Discipline Lead and Associate Editor at Functional Plant Biology . Her research focuses on photosynthesis, global change biology, and protected cropping, aiming to enhance food security and climate resilience through crop improvement and sustainable agricultural practices. Education: BSc (Honours) in Plant Biochemistry, University of NSW (1993) PhD in Plant Physiology, Western Sydney University (1998) Research Interests: Professor Ghannoum’s work addresses global challenges like food security and climate change by exploring plant responses to environmental stress. Her lab uses advanced technologies like smart glasshouses and hyperspectral imaging to optimize crop yield and quality. Key areas include sugar signaling pathways in C3/C4 plants, water use efficiency, and heat tolerance in cereal crops. Grants & Funding: She has secured over $25M in research funding, leading projects on C4 photosynthesis, automated crop monitoring, and protected cropping systems. Notable collaborations include the ARC Centre of Excellence for Translational Photosynthesis and Future Food Systems CRC. Awards: 2024 Vice-Chancellor’s Excellence in Research Award 2023 Education and Outreach Award (Australian Society of Plant Scientists) 2001 ARC Postdoctoral Fellowship Labs & Teams: Her team develops innovative frameworks for sustainable horticulture, combining biology with AI and smart technologies. Ongoing work includes imaging-based crop monitoring and phenotyping for climate-resilient crops.
Eric Slessarev is an Assistant Professor at Yale University , affiliated with the Department of Ecology and Evolutionary Biology and the Yale Center for Natural Carbon Capture. His research focuses on soil biogeochemistry, particularly how soil properties influence carbon and nutrient cycling in terrestrial ecosystems, with applications to climate change mitigation strategies like enhanced rock weathering and perennial grass cultivation. Teaches Ecology of Landforms and General Ecology Labs located at KGL 318 (research) and KGL 417 (office) His recent publications highlight interdisciplinary approaches to understanding mineral-organic matter interactions, microbial controls on carbon cycling, and policy implications for soil-based carbon removal strategies. Key methodologies include global data synthesis, isotope tracing, and experimental manipulation of soil-plant systems across depth profiles. Notably, his 2025 work demonstrates drought impacts on carbon persistence, microbial harnessing for CO2 removal, and economic modeling of reversible carbon storage. 2024 studies explore deep-rooted plant effects on carbon fractions, calcium's role in mollisol formation, and policy optimization for carbon sequestration.
Ross Meentemeyer is a Professor and Director of the Center for Geospatial Analytics at North Carolina State University, affiliated with the Department of Forestry and Environmental Resources in the College of Natural Resources. He holds a Ph.D. in Geography from the University of North Carolina, Chapel Hill (2000) and a B.S. in Geography from the University of Georgia (1993). His research focuses on geospatial analytics, ecological forecasting, biological invasions, and forest health, with a strong emphasis on integrating geospatial data and modeling to address environmental challenges. Dr. Meentemeyer's work includes developing decision-support tools for pest management, climate adaptation, and land-use planning. Notable projects involve forecasting invasive species spread via international trade, creating open-source geospatial platforms, and modeling floodplain development risks. He collaborates extensively with federal agencies like USDA, DOI, and NPS to translate research into practical solutions. His grants include multi-million dollar NSF and USDA-funded initiatives addressing plant disease pandemics, agricultural pest threats, and geospatial infrastructure development. Key outcomes include the PAdb system for pandemic prediction and the FUTURES model for urbanization forecasting. He also leads efforts to enhance stakeholder engagement through participatory modeling tools like Tangible Landscape. Research contributions span 20+ years, with over 100 peer-reviewed articles on topics like viewscape modeling, river water dynamics, and wildfire-epidemic interactions. His work bridges ecological and social sciences, emphasizing actionable solutions for sustainable land management and climate resilience.
Katrine Eldegard is a Professor at the Norwegian University of Life Sciences (NMBU), Faculty of Environmental Sciences and Natural Resource Management (MINA), Department of Ecology and Natural Resource Management (INA). She leads BatLab Norway and contributes extensively to national and international conservation science policy. Institution: Norwegian University of Life Sciences School: Faculty of Environmental Sciences and Natural Resource Management Department: Department of Ecology and Natural Resource Management Position: Professor Her research centers on understanding how human activities and land use affect natural ecosystems and species across taxa and spatial scales. She specializes in the behavioral, population, and community-level responses of mammals, birds, and insects to anthropogenic pressures such as energy infrastructure, transport networks, and forestry. A major focus is on bat ecology and conservation, pollination dynamics, and biodiversity monitoring in boreal and agricultural landscapes. Her recent publications reveal strong trends in climate change impacts on bat morphology and distribution, pollinator-plant interactions under environmental change, and the ecological consequences of infrastructure development. These works integrate field ecology with advanced modeling and policy-relevant assessments. She has played leading roles in key scientific committees: Chair, Mammal Committee, Norwegian Red List for Species (2021) Chair, Mammal Committee, Norwegian Alien Species List (2023) Member, Norwegian Scientific Committee for Food and Environment (VKM), CITES Expert Panel Norway’s representative, UNEP/Eurobats Advisory Committee Eldegard has supervised numerous research projects and collaborated with government agencies and private partners on applied ecology. She teaches courses including NATF200 Vern og forvaltning av norsk natur and the upcoming NATF300 Conservation Science. Her work is supported by extensive fieldwork, interdisciplinary collaboration, and integration of ecological theory with practical conservation. She leads BatLab Norway, a research group dedicated to advancing knowledge on bat ecology, behavior, and conservation through innovative methods including telemetry, acoustic monitoring, and landscape analysis.
Professor Brendan Choat is a leading plant physiologist and Professor at the Hawkesbury Institute for the Environment, Western Sydney University. With a distinguished career in plant hydraulics and water relations research, he has established himself as a global expert in understanding how plants respond to drought stress. His work spans both natural ecosystems and agricultural systems, with particular emphasis on Australian native forests and crop species. Choat's research focuses on the intricate relationship between plant water transport systems and environmental stressors, particularly drought. His work examines how the xylem tissue functions as a hydraulic system that must balance water delivery to leaves while avoiding cavitation (embolism) that can lead to plant mortality. His groundbreaking research has demonstrated that many woody plant species operate close to their physiological safety margins with respect to drought, making them vulnerable to future climate changes. His laboratory employs cutting-edge non-invasive imaging techniques, including X-ray Micro Computed Tomography (microCT) and Magnetic Resonance Imaging (MRI), to directly visualize xylem function in living plants. This approach has allowed his team to address fundamental questions about how cavitation forms and spreads through plant vascular systems during drought stress. Analysis of Professor Choat's extensive publication record reveals a consistent focus on plant drought responses, with particular emphasis on Eucalyptus species and mangrove ecosystems. His research has increasingly incorporated large-scale monitoring approaches, remote sensing data, and trait databases to understand vegetation responses to climate extremes across broader spatial scales. Clarivate Highly Cited Researcher (2018-2024) ARC Future Fellowship (2013) Humboldt Fellowship for Experienced Researchers (2010) Thomson Reuters Citation and Innovation Award (2015) Professor Choat leads multiple significant research projects examining tree dieback in Australian forests, particularly focusing on Eucalyptus species. His work with citizen scientists through the 'Dead Tree Detective' project has provided valuable data on drought impacts across diverse forest biomes. He maintains active collaborations with researchers across Australia and internationally, contributing to large-scale initiatives like the AusTraits plant trait database. His research has direct implications for forest management, conservation strategies, and predicting ecosystem responses to climate change.
Nathan G. Swenson is a Professor in the Department of Biological Sciences at the University of Notre Dame and serves as the Gillen Director of the Environmental Research Center (UNDERC). He has held prior academic positions at the University of Maryland and Michigan State University, advancing from Assistant to full Professor. His research integrates genomics, ecology, and evolutionary biology to understand forest biodiversity and dynamics. Research Interests: Ecology and Environmental Biology Evolutionary Biology Genetics and Genomics Global Change Biology Forest Ecology Functional and Phylogenetic Ecology Tree Physiology and Demography His research focuses on leveraging intra- and interspecific variation in tree performance to predict forest biodiversity patterns. He employs integrative approaches from genomes to forest canopies and utilizes large-scale global datasets. Recent publications emphasize intraspecific trait variation, transcriptomic responses to drought, ecological forecasting, and functional group dynamics in tropical and temperate forests. Scientific Awards: Winner of 2017 British Ecological Society John Harper Prize (awarded to J. Zambrano; Swenson was senior author) Advising and Grants: Dr. Swenson has mentored numerous researchers, including M.N. Umana, S.J. Worthy, and J. Yang, who frequently co-author high-impact papers. His lab receives substantial research funding, evident from large collaborative projects and participation in global networks like ForestGEO and the TRY plant trait database. He has secured support for long-term ecological research, genomic studies, and international fieldwork. Labs and Teams: He leads the Swenson Lab, which conducts research on woody plant ecology in dynamic environments. The lab emphasizes community transcriptomics, functional trait analysis, and large-scale ecological modeling. It collaborates widely across institutions and is involved in major initiatives such as ForestGEO and NEON.
Steven Hall is an Assistant Professor and Extension Specialist in the Department of Plant and Agroecosystem Sciences at the University of Wisconsin-Madison (UW-Madison), College of Agricultural & Life Sciences. Previously, he held roles as Assistant and Associate Professor in the Department of Ecology, Evolution, and Organismal Biology at Iowa State University. His research focuses on agroecosystem water quality, soil carbon dynamics, and nutrient management in agricultural landscapes, with an emphasis on how redox conditions, geochemical factors, and microbial communities influence carbon sequestration and greenhouse gas emissions. He obtained a PhD in Ecosystem Science from UC Berkeley and MS/BS degrees from UW-Madison in Environment and Resources/Botany, respectively. His educational background includes studies at the University of California-Berkeley (PhD, Ecosystem Science), University of Wisconsin-Madison (MS, Environment & Resources; BS, Botany). Research priorities include evaluating conservation practices, crop diversification, and novel fertilizer technologies for environmental benefits. The Hall Lab employs mesocosm experiments, isotopic tracing, and continental-scale datasets to address challenges in climate-smart agriculture and water quality preservation. Research highlights include groundbreaking work on iron-driven carbon decomposition mechanisms, microbial controls on lignin mineralization, and nitrous oxide emissions from tile-drained soils. Recent studies emphasize the role of poorly drained depressions as nutrient leaching hotspots and the unexpected carbon losses from anaerobic soils, challenging existing biogeochemical models. Advising and grants involve mentoring current graduate students (Moira Keith, Hariom Yadav) and undergraduate researchers. Opportunities to join his lab depend on funded projects. Collaborations include the International Soil Radiocarbon Database (ISRaD) and partnerships with institutions like the Savanna Institute. The lab is situated in Moore Hall, Plant Sciences Building, with outreach activities through UW-Madison's extension programs. Key infrastructure includes automated gas flux measurement systems and soil block mesocosms. Ongoing work integrates machine learning with NEON soil data to model organic carbon dynamics, while field studies explore digestate amendments and biochar impacts. His research bridges laboratory experiments with landscape-level observations to inform sustainable agricultural practices.
Jens Kattge is an Independent Research Group Leader at the Max Planck Institute for Biogeochemistry in Jena, Germany, specializing in Functional Biogeography. His career spans roles from Research Associate (2002–2005) to Senior Scientist (2010–2012) and current group leadership since 2013. He focuses on plant functional traits, their role in terrestrial ecosystems, and their integration into Earth system models. He coordinates the global TRY Initiative , a plant trait database for biodiversity research, and contributes to the German Centre for Integrative Biodiversity Research (iDiv). His research spans functional biogeography, trait-climate relationships, ecosystem modeling, and biodiversity-ecosystem functioning. Key projects include developing the rtry R package for trait data preprocessing and analyzing global datasets like CoRRE Trait Data and sPlotOpen. Recent publications investigate leaf cuticle thickness, drought responses in tree species, trait controls on biomass, global biodiversity patterns, and the integration of citizen science with Earth observation data. His work emphasizes trait data representativeness and future-proofing ecological science.
Paul Leadley is a Professor at the University of Paris-Saclay, France, where he directs the Population and Community Ecology group within the Ecology, Society and Evolution Laboratory (IDEES). His research focuses on global change impacts on terrestrial ecosystems, biodiversity, and ecosystem functioning through field experiments and mathematical modeling. His educational background includes a B.S. in Science from Pennsylvania State University (1981), an M.S. in Botany from North Carolina State University (1985), and a Ph.D. in Ecology from San Diego State University and UC Davis (1993). Prior to his professorship, he worked as a research technician at San Diego State University, Smithsonian Environmental Research Center, and New Mexico State University, followed by post-doctoral research at the University of Basel. Leadley investigates climate change and rising CO2 impacts on plant diversity, biodiversity-ecosystem functioning relationships, and nutrient competition between plants and soil microorganisms. His experimental work centers on California and temperate grasslands, examining fire, temperature, CO2, nitrogen deposition, and precipitation interactions. He develops multi-scale models from rhizosphere nutrient fluxes to regional climate change projections, collaborating with institutions like INRA, Stanford University, and Northern Arizona University. His research integrates field experiments with mathematical modeling to quantify uncertainties in global change projections. His recent publications (2008-2012) reveal consistent themes: climate change impacts on biodiversity via species distribution modeling, interactive effects of multiple global change drivers on soil nitrogen cycling, and development of biodiversity scenarios for policy. Key methodological approaches include multi-model comparisons, experimental manipulations of grassland ecosystems, and trait-based biodiversity assessments. Scientific Awards: No specific awards listed in the provided text. Leadley has directed five Ph.D. students: Alexandra Gastine, Romain Barnard, Xavier Raynaud, Audrey Niboyet, and Sandrine Fontaine. He has secured major research grants including QDiv (770 k€, 2005-2009), SCION (470 k€, 2010-2012), and HumboldtCES (450 k€, 2010-2012). Current projects focus on biodiversity modeling (MOBILIS), biome boundary shifts, and climate change impacts on forests. He participates in international assessment processes including IPBES and IPCC. He leads the Population and Community Ecology team at IDEES Laboratory, comprising approximately 30 researchers, engineers, technicians, and graduate students. The team operates experimental sites in California grasslands and collaborates with national networks including FRB, AllEnvi, and GIS Climat, Environnement, Société. Current initiatives include eco-evolutionary approaches to climate change impacts and development of adaptive forest management strategies.
Dr. Marion Schrumpf is a Group Leader in the Soil Biogeochemistry research group at the Max Planck Institute for Biogeochemistry, affiliated with the Department of Biogeochemical Processes. Her work focuses on soil carbon dynamics, mineral-organic matter interactions, and climate change impacts on soil systems. Research areas: Soil biogeochemistry, carbon cycling, mineral-soil interactions, nutrient stoichiometry, microbial ecology, and climate modeling. Email: mschrumpf@... Phone: +49 3641 57-6182 Office: B2.015 Her recent publications address themes like mineral control over soil carbon stabilization, drought effects on soil processes, microbial stoichiometric adaptation, and the Jena Soil Model's role in simulating carbon-nutrient interactions. She leads efforts to disentangle the complex relationships between land use, mineralogy, and soil organic matter turnover across diverse ecosystems.
Professor Jos Barlow is a Distinguished Professor of Conservation Science at the Lancaster Environment Centre, University of Lancaster. His research focuses on understanding how human activities impact tropical forest biodiversity and ecosystem services, with a primary focus on the Brazilian Amazon. He co-founded the Sustainable Amazon Network (Rede Amazônia Sustentável) and serves as a Trustee of WWF-UK, Lead Author for the UN’s Science Panel for the Amazon, and Editor-in-Chief of the Journal of Applied Ecology. His work integrates field studies, collaborative networks, and policy engagement to address environmental and socio-economic challenges in tropical regions. Research Interests: Human impacts on tropical forest biodiversity Ecosystem services and climate resilience Amazonian forest dynamics and restoration Socio-ecological trade-offs in land-use change Publications: His recent work explores insect acoustic activity in Amazonian forests, holistic conservation strategies, and biodiversity database development. Key themes include climate impacts, deforestation drivers, and secondary forest regeneration. Advising: Supervises 4 postgraduate students, including Matthew Clark, Pablo Gallego Anex, and Oana Resiga. Collaborates with institutions like the Federal University of Pará, Brazil. Labs/Teams: Active in the Lancaster Environment Centre and co-leads the Sustainable Amazon Network, fostering interdisciplinary research on conservation and sustainable development.