OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Longer and more frequent marine heatwaves over the past century
Eric C. J. Oliver, Markus G. Donat, Michael T. Burrows, et al.
Nature Communications (2018) Vol. 9, Iss. 1
Open Access | Times Cited: 1600

Showing 1-25 of 1600 citing articles:

Marine heatwaves threaten global biodiversity and the provision of ecosystem services
Dan A. Smale, Thomas Wernberg, Eric C. J. Oliver, et al.
Nature Climate Change (2019) Vol. 9, Iss. 4, pp. 306-312
Closed Access | Times Cited: 1278

Marine heatwaves under global warming
Thomas L. Frölicher, Erich Fischer, Nicolas Gruber
Nature (2018) Vol. 560, Iss. 7718, pp. 360-364
Closed Access | Times Cited: 1264

Categorizing and Naming Marine Heatwaves
Alistair J. Hobday, Eric C. J. Oliver, Alex Sen Gupta, et al.
Oceanography (2018) Vol. 31, Iss. 2
Open Access | Times Cited: 568

A global assessment of marine heatwaves and their drivers
Neil J. Holbrook, Hillary A. Scannell, Alex Sen Gupta, et al.
Nature Communications (2019) Vol. 10, Iss. 1
Open Access | Times Cited: 561

Projected Marine Heatwaves in the 21st Century and the Potential for Ecological Impact
Eric C. J. Oliver, Michael T. Burrows, Markus G. Donat, et al.
Frontiers in Marine Science (2019) Vol. 6
Open Access | Times Cited: 480

Marine Heatwaves
Eric C. J. Oliver, Jessica A. Benthuysen, Sofia Darmaraki, et al.
Annual Review of Marine Science (2020) Vol. 13, Iss. 1, pp. 313-342
Closed Access | Times Cited: 460

Large increase in global storm runoff extremes driven by climate and anthropogenic changes
Jiabo Yin, Pierre Gentine, Sha Zhou, et al.
Nature Communications (2018) Vol. 9, Iss. 1
Open Access | Times Cited: 384

High-impact marine heatwaves attributable to human-induced global warming
Charlotte Laufkötter, Jakob Zscheischler, Thomas L. Frölicher
Science (2020) Vol. 369, Iss. 6511, pp. 1621-1625
Closed Access | Times Cited: 355

Biological Impacts of Marine Heatwaves
Kathryn E. Smith, Michael T. Burrows, Alistair J. Hobday, et al.
Annual Review of Marine Science (2022) Vol. 15, Iss. 1, pp. 119-145
Open Access | Times Cited: 348

Impacts of ocean warming on kelp forest ecosystems
Dan A. Smale
New Phytologist (2019) Vol. 225, Iss. 4, pp. 1447-1454
Open Access | Times Cited: 338

Keeping pace with marine heatwaves
Neil J. Holbrook, Alex Sen Gupta, Eric C. J. Oliver, et al.
Nature Reviews Earth & Environment (2020) Vol. 1, Iss. 9, pp. 482-493
Closed Access | Times Cited: 332

The 2014–2017 global-scale coral bleaching event: insights and impacts
C. Mark Eakin, Hugh Sweatman, R. E. Brainard
Coral Reefs (2019) Vol. 38, Iss. 4, pp. 539-545
Open Access | Times Cited: 328

Drivers and impacts of the most extreme marine heatwave events
Alex Sen Gupta, Mads S. Thomsen, Jessica A. Benthuysen, et al.
Scientific Reports (2020) Vol. 10, Iss. 1
Open Access | Times Cited: 326

Extreme mortality and reproductive failure of common murres resulting from the northeast Pacific marine heatwave of 2014-2016
John F. Piatt, Julia K. Parrish, Heather M. Renner, et al.
PLoS ONE (2020) Vol. 15, Iss. 1, pp. e0226087-e0226087
Open Access | Times Cited: 325

Marine heat wave and multiple stressors tip bull kelp forest to sea urchin barrens
Laura Rogers‐Bennett, Cynthia A. Catton
Scientific Reports (2019) Vol. 9, Iss. 1
Open Access | Times Cited: 310

Marine heatwaves drive recurrent mass mortalities in the Mediterranean Sea
Joaquim Garrabou, Daniel Gómez‐Gras, Alba Medrano, et al.
Global Change Biology (2022) Vol. 28, Iss. 19, pp. 5708-5725
Open Access | Times Cited: 299

Lake heatwaves under climate change
R. Iestyn Woolway, Eleanor Jennings, Tom Shatwell, et al.
Nature (2021) Vol. 589, Iss. 7842, pp. 402-407
Open Access | Times Cited: 294

Global hotspots for the occurrence of compound events
Nina Ridder, A. J. Pitman, Seth Westra, et al.
Nature Communications (2020) Vol. 11, Iss. 1
Open Access | Times Cited: 273

Insights From CMIP6 for Australia's Future Climate
Michael Grose, Sugata Narsey, François Delage, et al.
Earth s Future (2020) Vol. 8, Iss. 5
Open Access | Times Cited: 271

Future evolution of Marine Heatwaves in the Mediterranean Sea
Sofia Darmaraki, Samuel Somot, Florence Sevault, et al.
Climate Dynamics (2019) Vol. 53, Iss. 3-4, pp. 1371-1392
Open Access | Times Cited: 259

Socioeconomic impacts of marine heatwaves: Global issues and opportunities
Kathryn E. Smith, Michael T. Burrows, Alistair J. Hobday, et al.
Science (2021) Vol. 374, Iss. 6566
Closed Access | Times Cited: 256

Climate Change, Coral Loss, and the Curious Case of the Parrotfish Paradigm: Why Don't Marine Protected Areas Improve Reef Resilience?
John F. Bruno, Isabelle M. Côté, Lauren T. Toth
Annual Review of Marine Science (2019) Vol. 11, Iss. 1, pp. 307-334
Open Access | Times Cited: 255

Biogeochemical extremes and compound events in the ocean
Nicolas Gruber, Philip W. Boyd, Thomas L. Frölicher, et al.
Nature (2021) Vol. 600, Iss. 7889, pp. 395-407
Closed Access | Times Cited: 242

Local Extinction of Bull Kelp (Durvillaea spp.) Due to a Marine Heatwave
Mads S. Thomsen, Luca Mondardini, Tommaso Alestra, et al.
Frontiers in Marine Science (2019) Vol. 6
Open Access | Times Cited: 232

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