World's Best Scientists 2026 revealed!

D-Index & Metrics

Ecology and Evolution

D-Index
55
Citations
19001
World Ranking
2908
National Ranking
2

Overview

Luzmila Arroyo is affiliated with the Gabriel René Moreno Autonomous University in Bolivia. Their research primarily focuses on Environmental Science and Agricultural and Biological Sciences, with extensive contributions across several subfields, including Nature and Landscape Conservation, Global and Planetary Change, Ecology, Evolution, Behavior and Systematics, Ecological Modeling, and Environmental Engineering.

The scientist's work covers a range of topics, highlighting their engagement with various ecological and environmental dynamics. Main topics include Ecology and Vegetation Dynamics Studies, Species Distribution and Climate Change, Plant and Animal Studies, Forest Ecology and Management, Plant Water Relations and Carbon Dynamics, Conservation, Biodiversity, and Resource Management, and Plant Diversity and Evolution.

Luzmila Arroyo has published research in a number of frequent publication venues, which indicate the areas of academic focus and dissemination of their work. These venues include:

  • Global Ecology and Biogeography
  • Nature
  • Nature Communications
  • Nature Ecology & Evolution
  • Scientific Reports

Selected recent papers authored or co-authored by Luzmila Arroyo include:

  • Long-term thermal sensitivity of Earth's tropical forests (2020, Science)
  • Integrated global assessment of the natural forest carbon potential (2023, Nature)
  • Tree mode of death and mortality risk factors across Amazon forests (2020, Nature Communications)
  • sPlotOpen - An environmentally balanced, open-access, global dataset of vegetation plots (2021, Global Ecology and Biogeography)
  • The global abundance of tree palms (2020, Global Ecology and Biogeography)

Collaboration is a significant part of Luzmila Arroyo's research. Frequent co-authors include:

  • Timothy R. Baker
  • Ted R. Feldpausch
  • Eurídice N. Honorio Coronado
  • Beatriz Schwantes Marimon
  • Roel Brienen

Best Publications

  • Drought sensitivity of the Amazon rainforest.

    Oliver L. Phillips;Luiz E. O. C. Aragão;Simon L. Lewis;Joshua B. Fisher

  • Hyperdominance in the Amazonian Tree Flora

    Hans Ter Steege;Hans Ter Steege;Nigel C.A. Pitman;Daniel Sabatier;Christopher Baraloto

  • Averting biodiversity collapse in tropical forest protected areas

    William F. Laurance;William F. Laurance;D. Carolina Useche;Julio Rendeiro;Margareta Kalka

  • Long-term decline of the Amazon carbon sink

    R J W Brienen;O L Phillips;T R Feldpausch;T R Feldpausch;E Gloor

  • Variation in wood density determines spatial patterns in Amazonian forest biomass

    Timothy R. Baker;Timothy R. Baker;Oliver L. Phillips;Yadvinder Malhi;Samuel Almeida

  • Basin-wide variations in Amazon forest structure and function are mediated by both soils and climate

    C. A. Quesada;C. A. Quesada;O. L. Phillips;M. Schwarz;C. I. Czimczik

  • Increasing dominance of large lianas in Amazonian forests

    O. L. Phillips;R. V. Martínez;L. Arroyo;T. R. Baker

  • Persistent effects of pre-Columbian plant domestication on Amazonian forest composition

    C. Levis;F. R. C. Costa;F. Bongers;M. Peña-Claros

  • Drought–mortality relationships for tropical forests

    Oliver L. Phillips;Geertje van der Heijden;Simon L. Lewis;Gabriela López-González

  • Tree height integrated into pantropical forest biomass estimates

    T. R. Feldpausch;J. Lloyd;J. Lloyd;S. L. Lewis;S. L. Lewis;R. J. W. Brienen

  • Pattern and process in Amazon tree turnover, 1976-2001.

    O. L. Phillips;T. R. Baker;T. R. Baker;L. Arroyo;N. Higuchi

  • Compositional response of Amazon forests to climate change

    Adriane Esquivel‐Muelbert;Timothy R. Baker;Kyle G. Dexter;Simon L. Lewis;Simon L. Lewis

  • Basin-wide variations in foliar properties of Amazonian forest: phylogeny, soils and climate.

    N. M. Fyllas;S. Patiño;S. Patiño;T. R. Baker;G. Bielefeld Nardoto

  • An international network to monitor the structure, composition and dynamics of Amazonian forests (RAINFOR)

    Y. Malhi;O.L. Phillips;J. Lloyd;T. Baker

  • Integrated global assessment of the natural forest carbon potential

    Unknown

  • Markedly divergent estimates of Amazon forest carbon density from ground plots and satellites

    Edward T.A. Mitchard;Ted R. Feldpausch;Ted R. Feldpausch;Roel J.W. Brienen;Gabriela Lopez-Gonzalez

  • Hyperdominance in Amazonian forest carbon cycling

    Sophie Fauset;Michelle O Johnson;Manuel Gloor;Timothy R Baker

  • Long-term thermal sensitivity of Earth’s tropical forests

    Martin J.P. Sullivan;Martin J.P. Sullivan;Simon L. Lewis;Simon L. Lewis;Kofi Affum-Baffoe;Carolina Castilho

  • Amazon forest response to repeated droughts

    T. R. Feldpausch;O. L. Phillips;R. J. W. Brienen;E. Gloor

  • Seasonal drought limits tree species across the Neotropics

    Adriane Esquivel-Muelbert;Timothy R. Baker;Kyle G. Dexter;Simon L. Lewis;Simon L. Lewis

  • Plot Data from: "Long-term decline of the Amazon carbon sink."

    Roel J. W. Brienen;Oliver L. Phillips;Ted R. Feldpausch;Emanuel Gloor

Frequent Co-Authors

Timothy R. Baker
Timothy R. Baker University of Leeds
Oliver L. Phillips
Oliver L. Phillips University of Leeds
Simon L. Lewis
Simon L. Lewis University College London
Ted R. Feldpausch
Ted R. Feldpausch University of Exeter
Timothy J. Killeen
Timothy J. Killeen Noel Kempff Mercado Natural History Museum
Yadvinder Malhi
Yadvinder Malhi University of Oxford
David A. Neill
David A. Neill Missouri Botanical Garden
John Terborgh
John Terborgh Duke University
Rafael P. Salomão
Rafael P. Salomão Museu Paraense Emílio Goeldi
William F. Laurance
William F. Laurance James Cook University

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

If you’re interested in the interdisciplinary study of Ecology and Evolution, there are a growing number of online degree options that blend life sciences with accessible career progression. Many students considering environmental science, biology, or health-related fields can benefit from flexible pathways that connect their studies to higher-earning roles in healthcare and research.

For those with a nursing background aiming to advance, specialized adn to np programs offer a bridge from an Associate Degree in Nursing directly to nurse practitioner credentials. Students from non-nursing backgrounds can look into fast-track options such as direct entry msn programs online, opening doors to advanced practice careers, even without an initial nursing degree.

When choosing a program, it’s important to compare formats, costs, and outcomes. For example, capella rn to bsn vs chamberlain rn to bsn provides insights into accredited online programs that can help boost your qualifications while maintaining flexibility for work or research. Affordable, accelerated rn to bsn to msn online programs also exist to streamline your educational journey from bachelor’s to master’s level at a lower cost.

Exploring these options can be a smart way to advance your career while deepening your understanding of ecological and evolutionary sciences in today’s job market.

Best Scientists Citing Luzmila Arroyo

Trending Scientists

Recently Published Articles