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Environmental Sciences

D-Index
35
Citations
7670
World Ranking
9237
National Ranking
3313

Overview

Jesús Pineda is affiliated with the Woods Hole Oceanographic Institution in the United States. Their research focuses predominantly on Environmental Science with significant contributions in Biophysics, Ecology, Oceanography, Global and Planetary Change, and Radiology, Nuclear Medicine and Imaging.

The scientist's work centers around several interconnected topics including Crustacean biology and ecology, Cell Image Analysis Techniques, Marine and fisheries research, Marine and coastal plant biology, Marine Biology and Ecology Research, Advanced Fluorescence Microscopy Techniques, and Image Processing Techniques and Applications.

Jesús Pineda has published multiple papers across reputable scientific outlets. Their recent papers include:

  • "Quantitative evaluation of methods to analyze motion changes in single-particle experiments" (2023, arXiv [Cornell University])
  • "Roadmap on Deep Learning for Microscopy" (2023, arXiv [Cornell University])
  • "Concentration and condition of American lobster postlarvae in small-scale convergences" (2023, Fisheries Oceanography)
  • "High Larval Concentrations and Onshore Transport of Barnacle Cyprids Associated With Thermal Stratification" (2021, Frontiers in Marine Science)
  • "Single-shot self-supervised particle tracking" (2022, arXiv [Cornell University])

The frequent publication venues include:

  • arXiv (Cornell University)
  • Marine Ecology Progress Series
  • Fisheries Oceanography
  • Frontiers in Marine Science
  • Journal of Physics Photonics

Jesús Pineda has collaborated extensively with several researchers. Frequent co-authors include Giovanni Volpe, Harshith Bachimanchi, Benjamin Midtvedt, Carlo Manzo, and Daniel Midtvedt.

Best Publications

  • ENVIRONMENTAL INFLUENCES ON REGIONAL DEEP-SEA SPECIES DIVERSITY

    Lisa A. Levin;Ron J. Etter;Michael A. Rex;Andrew J. Gooday

  • Larval transport and dispersal in the coastal ocean and consequences for population connectivity

    Jesus Pineda;Jonathan A. Hare;Su Sponaugle

  • Sensory environments, larval abilities and local self-recruitment

    Michael J. Kingsford;Jeffrey M. Leis;Alan Shanks;Kenyon C. Lindeman

  • Population connectivity in marine systems : an overview

    Robert K. Cowen;Glen G. Gawarkiewicz;Jesus Pineda;Simon R. Thorrold

  • Predicting self-recruitment in marine populations: Biophysical correlates and mechanisms

    Su Sponaugle;Robert K. Cowen;Alan Shanks;Steven G. Morgan

  • Predictable upwelling and the shoreward transport of planktonic larvae by internal tidal bores.

    Jesús Pineda

  • Circulation and larval distribution in internal tidal bore warm fronts

    Jesús Pineda

  • Causes of decoupling between larval supply and settlement and consequences for understanding recruitment and population connectivity

    Jesus Pineda;Francesca Porri;Victoria R. Starczak;Jonathan N. Blythe

  • Internal tidal bores in the nearshore: Warm-water fronts, seaward gravity currents and the onshore transport of neustonic larvae.

    Jesus Pineda

  • Complexity and simplification in understanding recruitment in benthic populations

    Jesús Pineda;Nathalie B. Reyns;Victoria R. Starczak

  • LINKING LARVAL SETTLEMENT TO LARVAL TRANSPORT: ASSUMPTIONS, POTENTIALS, AND PITFALLS

    Jesús Pineda

  • Spatial and temporal patterns in barnacle settlement rate along a southern California rocky shore

    J. Pineda

  • Observation of very large and steep internal waves of elevation near the Massachusetts coast

    Alberto D Scotti;Jesús Pineda

  • Observations of the thermal environment on Red Sea platform reefs: a heat budget analysis

    K. A. Davis;S. J. Lentz;J. Pineda;J. T. Farrar

  • Bathymetric species-diversity patterns and boundary constraints on vertical range distributions

    Jesús Pineda;Hal Caswell

  • Semibalanus balanoides in winter and spring: larval concentration, settlement, and substrate occupancy

    J. Pineda;D. Riebensahm;D. Medeiros-Bergen

  • Dependence of settlement rate on suitable substrate area

    J. Pineda;H. Caswell

  • Stage-specific distribution of barnacle larvae in nearshore waters: potential for limited dispersal and high mortality rates

    Fabián J. Tapia;Jesús Pineda

  • An internal tidal bore regime at nearshore stations along western U.S.A.: Predictable upwelling within the lunar cycle

    Jesús Pineda

  • Two spatial scales in a bleaching event: Corals from the mildest and the most extreme thermal environments escape mortality

    Jesus Pineda;Victoria R. Starczak;Ann M. Tarrant;Jonathan N. Blythe

  • Predicting self-recruitment in marine populations: biophysical correlates

    S Sponaugle;R.K Cowen;Shanks A;S.G Morgan

Frequent Co-Authors

Robert K. Cowen
Robert K. Cowen Oregon State University
Hanumant Singh
Hanumant Singh Northeastern University
Steven J. Lentz
Steven J. Lentz Woods Hole Oceanographic Institution
Steven G. Morgan
Steven G. Morgan University of California, Davis
Michael J. Kingsford
Michael J. Kingsford James Cook University
Su Sponaugle
Su Sponaugle Oregon State University
Alan L. Shanks
Alan L. Shanks University of Oregon
Jeffrey M. Leis
Jeffrey M. Leis University of Tasmania
Hal Caswell
Hal Caswell University of Amsterdam
Simon R. Thorrold
Simon R. Thorrold Woods Hole Oceanographic Institution

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