Brenchley, P. J.; Marshall, J. D.; Underwood, C. J. (2001). "Do all mass extinctions represent an ecological crisis? Evidence from the Late Ordovician". Geological Journal(en inglés)36 (3–4): 329–340. ISSN1099-1034. doi:10.1002/gj.880.
Qiu, Zhen; Zou, Caineng; Mills, Benjamin J. W.; Xiong, Yijun; Tao, Huifei; Lu, Bin; Liu, Hanlin; Xiao, Wenjiao; Poulton, Simon W. (5 de abril de 2022). "A nutrient control on expanded anoxia and global cooling during the Late Ordovician mass extinction". Communications Earth & Environment3 (1): 82. Bibcode:2022ComEE...3...82Q. doi:10.1038/s43247-022-00412-x.
Barash, M. (novembro de 2014). "Mass Extinction of the Marine Biota at the Ordovician–Silurian Transition Due to Environmental Changes". Oceanology54 (6): 780–787. Bibcode:2014Ocgy...54..780B. doi:10.1134/S0001437014050014.
Jones, David S.; Martini, Anna M.; Fike, David A.; Kaiho, Kunio (2017-07-01). "A volcanic trigger for the Late Ordovician mass extinction? Mercury data from south China and Laurentia". Geology(en inglés)45 (7): 631–634. Bibcode:2017Geo....45..631J. ISSN0091-7613. doi:10.1130/G38940.1.
Bond, David P. G.; Grasby, Stephen E. (18 de maio de 2020). "Late Ordovician mass extinction caused by volcanism, warming, and anoxia, not cooling and glaciation". Geology48 (8): 777–781. Bibcode:2020Geo....48..777B. doi:10.1130/G47377.1.
Mitchell, Charles E.; Melchin, Michael J. (11 de xuño de 2020). "Late Ordovician mass extinction caused by volcanism, warming, and anoxia, not cooling and glaciation: COMMENT". Geology48 (8): e509. Bibcode:2020Geo....48E.509M. doi:10.1130/G47946C.1.
Qiu, Zhen; Zou, Caineng; Mills, Benjamin J. W.; Xiong, Yijun; Tao, Huifei; Lu, Bin; Liu, Hanlin; Xiao, Wenjiao; Poulton, Simon W. (5 de abril de 2022). "A nutrient control on expanded anoxia and global cooling during the Late Ordovician mass extinction". Communications Earth & Environment3 (1): 82. Bibcode:2022ComEE...3...82Q. doi:10.1038/s43247-022-00412-x.
Barash, M. (novembro de 2014). "Mass Extinction of the Marine Biota at the Ordovician–Silurian Transition Due to Environmental Changes". Oceanology54 (6): 780–787. Bibcode:2014Ocgy...54..780B. doi:10.1134/S0001437014050014.
Jones, David S.; Martini, Anna M.; Fike, David A.; Kaiho, Kunio (2017-07-01). "A volcanic trigger for the Late Ordovician mass extinction? Mercury data from south China and Laurentia". Geology(en inglés)45 (7): 631–634. Bibcode:2017Geo....45..631J. ISSN0091-7613. doi:10.1130/G38940.1.
Bond, David P. G.; Grasby, Stephen E. (18 de maio de 2020). "Late Ordovician mass extinction caused by volcanism, warming, and anoxia, not cooling and glaciation". Geology48 (8): 777–781. Bibcode:2020Geo....48..777B. doi:10.1130/G47377.1.
Mitchell, Charles E.; Melchin, Michael J. (11 de xuño de 2020). "Late Ordovician mass extinction caused by volcanism, warming, and anoxia, not cooling and glaciation: COMMENT". Geology48 (8): e509. Bibcode:2020Geo....48E.509M. doi:10.1130/G47946C.1.
Brenchley, P. J.; Marshall, J. D.; Underwood, C. J. (2001). "Do all mass extinctions represent an ecological crisis? Evidence from the Late Ordovician". Geological Journal(en inglés)36 (3–4): 329–340. ISSN1099-1034. doi:10.1002/gj.880.
Jones, David S.; Martini, Anna M.; Fike, David A.; Kaiho, Kunio (2017-07-01). "A volcanic trigger for the Late Ordovician mass extinction? Mercury data from south China and Laurentia". Geology(en inglés)45 (7): 631–634. Bibcode:2017Geo....45..631J. ISSN0091-7613. doi:10.1130/G38940.1.