Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Lewis, Jane
2019.
The importance of marine larvae.
Journal of the Marine Biological Association of the United Kingdom,
Vol. 99,
Issue. 5,
p.
1025.
Fonseca, J.G.
Laranjeiro, F.
Freitas, D.B.
Oliveira, I.B.
Rocha, R.J.M.
Machado, J.
Hinzmann, M.
Barroso, C.M.
and
Galante-Oliveira, S.
2020.
Impairment of swimming performance in Tritia reticulata (L.) veligers under projected ocean acidification and warming scenarios.
Science of The Total Environment,
Vol. 731,
Issue. ,
p.
139187.
Lanna, Emilio
and
Riesgo, Ana
2020.
Sponge larvae do not swim that fast: a reply to Montgomery et al. (2019).
Journal of the Marine Biological Association of the United Kingdom,
Vol. 100,
Issue. 1,
p.
181.
Montgomery, E. M.
Hamel, J.-F.
and
Mercier, A.
2020.
Larval nutritional mode and swimming behaviour in ciliated marine larvae – CORRIGENDUM.
Journal of the Marine Biological Association of the United Kingdom,
Vol. 100,
Issue. 1,
p.
189.
Hodin, Jason
Ferner, Matthew C
and
Gaylord, Brian
2020.
Choosing the right home: settlement responses by larvae of six sea urchin species align with hydrodynamic traits of their contrasting adult habitats.
Zoological Journal of the Linnean Society,
Vol. 190,
Issue. 2,
p.
737.
Montgomery, E. M.
Hamel, J.-F.
and
Mercier, A.
2020.
Sponge larvae are not that fast, but still the fastest.
Journal of the Marine Biological Association of the United Kingdom,
Vol. 100,
Issue. 1,
p.
185.
Simpson, Carl
2021.
Adaptation to a Viscous Snowball Earth Ocean as a Path to Complex Multicellularity.
The American Naturalist,
Vol. 198,
Issue. 5,
p.
590.
Wang, Shuangqiang
Kenchington, Ellen
Wang, Zeliang
and
Davies, Andrew J.
2021.
Life in the Fast Lane: Modeling the Fate of Glass Sponge Larvae in the Gulf Stream.
Frontiers in Marine Science,
Vol. 8,
Issue. ,
Shaffer, Megan R.
Davy, Simon K.
and
Bell, James J.
2021.
Reproductive isolation between two cryptic sponge species in New Zealand: high levels of connectivity and clonality shape Tethya species boundaries.
Marine Biology,
Vol. 168,
Issue. 5,
Galitz, Adrian
Ekins, Merrick
Folcher, Eric
Büttner, Gabriele
Hall, Kathryn
Hooper, John N. A.
Reddy, Maggie M.
Schätzle, Simone
Thomas, Olivier P.
Wörheide, Gert
Petek, Sylvain
Debitus, Cécile
and
Erpenbeck, Dirk
2023.
Poriferans rift apart: molecular demosponge biodiversity in Central and French Polynesia and comparison with adjacent marine provinces of the Central Indo-Pacific.
Biodiversity and Conservation,
Vol. 32,
Issue. 7,
p.
2469.
Michie, Charles
Lundquist, Carolyn J.
Lavery, Shane D.
and
Della Penna, Alice
2024.
Spatial and temporal variation in the predicted dispersal of marine larvae around coastal Aotearoa New Zealand.
Frontiers in Marine Science,
Vol. 10,
Issue. ,
Manríquez, Patricio H.
González, Claudio P.
Abarca, Alejandro
Jeno, Katherine
Jofré, Viviana
Astudillo, Orlando
and
Aguilera, Victor M.
2024.
Effects of brine discharges on newly hatched larvae of the rocky-shore keystone gastropod Concholepas concholepas.
Desalination,
Vol. 581,
Issue. ,
p.
117579.
Neuhaus, Jenny
de Wilt, Mark E.
Rossel, Sven
Brix, Saskia
Etter, Ron J.
Jennings, Robert M.
Linse, Katrin
Martínez Arbizu, Pedro
Schwentner, Martin
and
Peters, Janna
2025.
High Connectivity at Abyssal Depths: Genomic and Proteomic Insights Into Population Structure of the Pan‐Atlantic Deep‐Sea Bivalve Ledella ultima (E. A. Smith, 1885).
Ecology and Evolution,
Vol. 15,
Issue. 8,