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:

Lightning as a major driver of recent large fire years in North American boreal forests
Sander Veraverbeke, Brendan M. Rogers, Mike Goulden, et al.
Nature Climate Change (2017) Vol. 7, Iss. 7, pp. 529-534
Closed Access | Times Cited: 433

Showing 26-50 of 433 citing articles:

Global rise in forest fire emissions linked to climate change in the extratropics
Matthew W. Jones, Sander Veraverbeke, Niels Andela, et al.
Science (2024) Vol. 386, Iss. 6719
Closed Access | Times Cited: 26

Drought triggers and sustains overnight fires in North America
Kaiwei Luo, Xianli Wang, Mark de Jong, et al.
Nature (2024) Vol. 627, Iss. 8003, pp. 321-327
Open Access | Times Cited: 18

Wildfire‐mediated vegetation change in boreal forests of Alberta, Canada
Diana Stralberg, Xianli Wang, Marc‐André Parisien, et al.
Ecosphere (2018) Vol. 9, Iss. 3
Open Access | Times Cited: 154

Hyperspectral remote sensing of fire: State-of-the-art and future perspectives
Sander Veraverbeke, Philip E. Dennison, Ioannis Z. Gitas, et al.
Remote Sensing of Environment (2018) Vol. 216, pp. 105-121
Open Access | Times Cited: 147

Extensive fires in southeastern Siberian permafrost linked to preceding Arctic Oscillation
Jin‐Soo Kim, Jong‐Seong Kug, Sujong Jeong, et al.
Science Advances (2020) Vol. 6, Iss. 2
Open Access | Times Cited: 133

Influence of Fire on the Carbon Cycle and Climate
Gitta Lasslop, Alysha I. Coppola, Apostolos Voulgarakis, et al.
Current Climate Change Reports (2019) Vol. 5, Iss. 2, pp. 112-123
Closed Access | Times Cited: 128

Three Years of the Lightning Imaging Sensor Onboard the International Space Station: Expanded Global Coverage and Enhanced Applications
Richard J. Blakeslee, Timothy J. Lang, William J. Koshak, et al.
Journal of Geophysical Research Atmospheres (2020) Vol. 125, Iss. 16
Open Access | Times Cited: 114

Cross‐scale controls on carbon emissions from boreal forest megafires
Xanthe J. Walker, Brendan M. Rogers, Jennifer L. Baltzer, et al.
Global Change Biology (2018) Vol. 24, Iss. 9, pp. 4251-4265
Closed Access | Times Cited: 110

Representation of fire, land-use change and vegetation dynamics in the Joint UK Land Environment Simulator vn4.9 (JULES)
Chantelle Burton, Richard Betts, Manoel Cardoso, et al.
Geoscientific model development (2019) Vol. 12, Iss. 1, pp. 179-193
Open Access | Times Cited: 103

The Arctic Carbon Cycle and Its Response to Changing Climate
Lori Bruhwiler, Frans‐Jan W. Parmentier, P. M. Crill, et al.
Current Climate Change Reports (2021) Vol. 7, Iss. 1, pp. 14-34
Open Access | Times Cited: 103

Evidence of Ice Age humans in eastern Beringia suggests early migration to North America
Richard S. Vachula, Yongsong Huang, W. M. Longo, et al.
Quaternary Science Reviews (2018) Vol. 205, pp. 35-44
Open Access | Times Cited: 96

Space‐Based Observations for Understanding Changes in the Arctic‐Boreal Zone
B. N. Duncan, Lesley Ott, James B. Abshire, et al.
Reviews of Geophysics (2019) Vol. 58, Iss. 1
Open Access | Times Cited: 88

Wildfire combustion and carbon stocks in the southern Canadian boreal forest: Implications for a warming world
Catherine M. Dieleman, Brendan M. Rogers, Stefano Potter, et al.
Global Change Biology (2020) Vol. 26, Iss. 11, pp. 6062-6079
Open Access | Times Cited: 84

Response of simulated burned area to historical changes in environmental and anthropogenic factors: a comparison of seven fire models
Lina Teckentrup, Sandy P. Harrison, Stijn Hantson, et al.
Biogeosciences (2019) Vol. 16, Iss. 19, pp. 3883-3910
Open Access | Times Cited: 83

Australian forests, megafires and the risk of dwindling carbon stocks
David M. J. S. Bowman, Grant J. Williamson, Owen Price, et al.
Plant Cell & Environment (2020) Vol. 44, Iss. 2, pp. 347-355
Closed Access | Times Cited: 82

An overview of ABoVE airborne campaign data acquisitions and science opportunities
Charles E. Miller, P. C. Griffith, S. J. Goetz, et al.
Environmental Research Letters (2019) Vol. 14, Iss. 8, pp. 080201-080201
Open Access | Times Cited: 81

Human and climate drivers of global biomass burning variability
Emilio Chuvieco, M. Lucrecia Pettinari, Nikos Koutsias, et al.
The Science of The Total Environment (2021) Vol. 779, pp. 146361-146361
Open Access | Times Cited: 81

Historical and future global burned area with changing climate and human demography
Chao Wu, Sergey Venevsky, Stephen Sitch, et al.
One Earth (2021) Vol. 4, Iss. 4, pp. 517-530
Open Access | Times Cited: 78

Early snowmelt and polar jet dynamics co-influence recent extreme Siberian fire seasons
Rebecca C. Scholten, Dim Coumou, Fei Luo, et al.
Science (2022) Vol. 378, Iss. 6623, pp. 1005-1009
Open Access | Times Cited: 63

Lightning patterns in the Pantanal: Untangling natural and anthropogenic-induced wildfires
Lucas S. Menezes, Aline Macedo de Oliveira, Filippe L.M. Santos, et al.
The Science of The Total Environment (2022) Vol. 820, pp. 153021-153021
Open Access | Times Cited: 57

Future increases in lightning ignition efficiency and wildfire occurrence expected from drier fuels in boreal forest ecosystems of western North America
Thomas D. Hessilt, John T. Abatzoglou, Yang Chen, et al.
Environmental Research Letters (2022) Vol. 17, Iss. 5, pp. 054008-054008
Open Access | Times Cited: 49

Disturbances in North American boreal forest and Arctic tundra: impacts, interactions, and responses
Adrianna Foster, Jonathan Wang, Gerald V. Frost, et al.
Environmental Research Letters (2022) Vol. 17, Iss. 11, pp. 113001-113001
Open Access | Times Cited: 47

The North American tree‐ring fire‐scar network
Ellis Q. Margolis, Christopher H. Guiterman, Raphaël D. Chavardès, et al.
Ecosphere (2022) Vol. 13, Iss. 7
Open Access | Times Cited: 43

Wildfires in the Siberian Arctic
Viacheslav I. Kharuk, Maria L. Dvinskaya, Sergei T. Im, et al.
Fire (2022) Vol. 5, Iss. 4, pp. 106-106
Open Access | Times Cited: 43

Climate-induced fire regime amplification in Alberta, Canada
Ellen Whitman, Sean A. Parks, Lisa M. Holsinger, et al.
Environmental Research Letters (2022) Vol. 17, Iss. 5, pp. 055003-055003
Open Access | Times Cited: 40

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