ABCDEFGHIJKLMNOPQRSTUVWXYZAAABACAD
1
ContributorDOITitleAuthorsYearJournalURL
2
Mecho A., Sellanes J., Aguzzi J.10.1016/j.marpolbul.2021.112641Seafloor litter at oceanic islands and seamounts of the southeastern Pacific(optional)(optional)(optional)(optional but please list if no DOI)
3
Web search10.2108/zs200172
A New Species of Sea Whip Gorgonian-Associated Zoantharian (Cnidaria: Anthozoa: Hexacorallia: Parazoanthidae) from the Ryukyu Islands, Japan, with Subgeneric Subdivision of Genus
Fujii T, Alves Dos Santos ME, Reimer JD2021Zoolog Scihttps://www.ncbi.nlm.nih.gov/pubmed/34664922
4
Web search10.1016/j.cub.2023.02.040Assembly rules of coral reef fish communities along the depth gradientPinheiro HT, MacDonald C, Quimbayo JP, Shepherd B, Phelps TA, Loss AC, Teixeira JB, Rocha LA2023Curr Biolhttps://www.ncbi.nlm.nih.gov/pubmed/36917975
5
Web search10.1016/B978-0-12-385140-6.00051-7Banks, troughs, and canyons on the continental margin off Lofoten, Vesterålen, and Troms, NorwayBuhl-Mortensen L, Bøe R, Dolan M, F, Buhl-Mortensen P, Thorsnes T, Elvenes S, & Hodnesdal H,2012
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780123851406000517
6
Web search10.3390/d15040531
Benthic Characterization of Mesophotic Communities Based on Optical Depths in the Southern Mexican Pacific Coast (Oaxaca)
Pérez-Castro MÁ, Eyal G, Leyte-Morales GE, Hinojosa-Arango G, Enríquez S2023Diversityhttps://www.mdpi.com/1424-2818/15/4/531
7
Web search10.1080/014311698214172
Broad-scale benthic community analysis in the Greater Minch Area (Scottish west coast) using remote and nondestructive techniques
Pinn E, H, Robertson M, R, Shand C, W, & Armstrong F,1998
International Journal of Remote Sensing
https://www.tandfonline.com/doi/pdf/10.1080/014311698214172?needAccess=true
8
Web search10.1016/S0141-1136(02)00324-0
Characterizing benthic substrates of Santa Monica Bay with seafloor photography and multibeam sonar imagery
Edwards B, D, Dartnell P, & Chezar H,2003
Marine Environmental Research
https://reader.elsevier.com/reader/sd/pii/S0141113602003240?token=1305FDE34D142C66B51199D82107B2C25584615F6C3D954A08862CC9DE509432E386D37A9EACE58D81A770CF1164B56C&originRegion=us-east-1&originCreation=20210625025810
9
Web search10.1016/j.csr.2010.02.013Cold seeps and benthic habitat on the Pacific margin of CanadaBarrie J, V, Cook S, & Conway K, W,2011
Continental Shelf Research
https://www.sciencedirect.com/science/article/pii/S0278434310000749
10
Web search10.12681/mms.900
Comparison between the sponge fauna living outside and inside the coralligenous bioconstruction A quantitative approach
Calcinai B, Bertolino M, Bavestrello G, Montori S, Mori M, Pica D, ,,, & Cerrano C,2015
Mediterranean Marine Science
https://ejournals.epublishing.ekt.gr/index.php/hcmr-med-mar-sc/article/view/12776
11
Web search10.1046/j.1529-8817.2003.02010.x
COMPOSITION, DISTRIBUTION, AND ABUNDANCE OF DEEP‐WATER (> 30 m) MACROALGAE IN CENTRAL CALIFORNIA 1
Spalding H, Foster M, S, & Heine J, N,2003
Journal of Phycology
https://onlinelibrary.wiley.com/doi/full/10.1046/j.1529-8817.2003.02010.x
12
Web search10.1080/00288330.1983.9515993Coral‐like bryozoan growths in Tasman Bay, and their protection to conserve commercial fish stocksBradstock M, & Gordon D, P,1983
New Zealand journal of marine and freshwater research
https://www.tandfonline.com/doi/abs/10.1080/00288330.1983.9515993
13
Web search10.3390/md19040186
Cytotoxic Polyketide Metabolites from a Marine Mesophotic Zone Chalinidae Sponge-Associated Fungus
Zhou J, Zhang H, Ye J, Wu X, Wang W, Lin H, Yan X, Lazaro JEH, Wang T, Naman CB, He S2021Mar Drugshttps://www.ncbi.nlm.nih.gov/pubmed/33810590
14
Web search10.1002/ece3.7336Deep reefs are not refugium for shallow-water fish communities in the southwestern AtlanticMedeiros APM, Ferreira BP, Alvarado F, Betancur-R R, Soares MO, Santos BA2021Ecol Evolhttps://www.ncbi.nlm.nih.gov/pubmed/33976819
15
Web search10.1007/s00227-015-2718-5
Deepwater corals biodiversity along roche du large ecosystems with different habitat complexity along the south Sardinia continental margin (CW Mediterranean Sea)
Cau A, Follesa M, C, Moccia D, Alvito A, Bo M, Angiolillo M, ,,, & Cannas R,2015Marine biologyhttps://link.springer.com/article/10.1007/s00227-015-2718-5
16
Web search10.3354/dao03633
Detrimental conditions affecting Xestospongia muta across shallow and mesophotic coral reefs off the southwest coast of Puerto Rico
García-Hernández JE, Tuohy E, Toledo-Rodríguez DA, Sherman C, Schizas NV, Weil E2021Dis Aquat Organhttps://www.ncbi.nlm.nih.gov/pubmed/34789587
17
Web search10.1080/17451000.2013.810759Diverse and vulnerable deep-water biotopes in the HardangerfjordBuhl-Mortensen P, & Buhl-Mortensen L,2014
Marine Biology Research
https://www.tandfonline.com/doi/pdf/10.1080/17451000.2013.810759
18
Web search10.1128/MRA.00311-20
Draft Genome Sequence of a Cladosporium Species Isolated from the Mesophotic Ascidian Didemnum maculosum
Gioti A, Siaperas R, Nikolaivits E, Le Goff G, Ouazzani J, Kotoulas G, Topakas E2020
Microbiol Resour Announc
https://www.ncbi.nlm.nih.gov/pubmed/32354980
19
Web search10.3389/fmars.2020.568802
Epifaunal Habitat Associations on Mixed and Hard Bottom Substrates in Coastal Waters of Northern Norway
Dunlop K, Harendza A, Plassen L, & Keeley N,2020
Frontiers in Marine Science
https://www.frontiersin.org/articles/10.3389/fmars.2020.568802/full
20
Web search10.1016/B978-0-12-385140-6.00048-7
Evaluating geomorphic features as surrogates for benthic biodiversity on Australia’s western continental margin
Althaus F, Williams A, Kloser R, J, Seiler J, & Bax N, J,2012
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780123851406000487
21
Web search10.1016/j.ecss.2008.11.017
Evaluation of image-based multibeam sonar backscatter classification for benthic habitat discrimination and mapping at Stanton Banks, UK
McGonigle C, Brown C, Quinn R, & Grabowski J,2009
Estuarine, Coastal and Shelf Science
https://reader.elsevier.com/reader/sd/pii/S027277140800454X?token=4C56671AE8E3BF069FD3A9A55932262998CDB987E79742D8804922162E56AEAB07988041EC55710A89AF121C6A27F54C&originRegion=us-east-1&originCreation=20210625045338
22
Web search10.1371/journal.pone.0167809
Fish distribution and habitat complexity on banks of the Strait of Sicily (Central Mediterranean Sea) from remotely-operated vehicle (ROV) explorations
Consoli P, Esposito V, Battaglia P, Altobelli C, Perzia P, Romeo T, ,,, & Andaloro F,2016PLoS Onehttps://journals.plos.org/plosone/article?id=10.1371/journal.pone.0167809
23
Web search10.1016/j.csr.2016.06.015
Geology and biology of the “Sticky Grounds”, shelf-margin carbonate mounds, and mesophotic ecosystem in the eastern Gulf of Mexico
Locker S, D, Reed J, K, Farrington S, Harter S, Hine A, C, & Dunn S,2016
Continental Shelf Research
https://www.sciencedirect.com/science/article/pii/S0278434316303454
24
Web search10.1016/B978-0-12-814960-7.00051-8
Geomorphic features, main habitats and associated biota on and around the newly formed Tagoro submarine volcano, Canary Islands
Sotomayor-Garcia A, Rueda J, L, Sánchez-Guillamón O, Vázquez J, T, Palomino D, Fernández-Salas L, M, ,,, & González-Dávila M,2020
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780128149607000518
25
Web search10.1038/srep23322
Habitat constraints and self-thinning shape Mediterranean red coral deep population structure: implications for conservation practice
Cau A, Bramanti L, Cannas R, Follesa M, C, Angiolillo M, Canese S, ,,, & Guizien K,2016
Scientific reports
https://www.nature.com/articles/srep23322
26
Web search10.1016/B978-0-12-814960-7.00018-XHabitat mapping in the fjords of the Chilean Patagonia using an autonomous underwater vehicleBoswarva K, L, Howe J, A, Obando R, Fox C, Narayanaswamy B, E, Häussermann V, & Abernethy C,2020
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B978012814960700018X
27
Web search10.1016/j.marenvres.2022.105661
Habitat-specific fish fauna responses to different management regimes in the largest coral reef complex in the South Atlantic
Schmid K, Reis-Filho JA, Loiola M, Harvey ES, Kikuchi RKPD, Giarrizzo T2022
Marine Environmental Research
https://www.sciencedirect.com/science/article/pii/S0141113622001064
28
Web search10.3390/md17120678
Impact of the Cultivation Technique on the Production of Secondary Metabolites by Chrysosporium lobatum TM-237-S5, Isolated from the Sponge Acanthella cavernosa
Le Goff G, Lopes P, Arcile G, Vlachou P, Van Elslande E, Retailleau P, Gallard JF, Weis M, Benayahu Y, Fokialakis N, Ouazzani J2019Mar Drugshttps://www.ncbi.nlm.nih.gov/pubmed/31801271
29
Web search10.2989/1814232X.2019.1571439Megabenthos and benthopelagic fishes on Southeast Atlantic seamountsBergstad O, A, Gil M, Høines Å, S, Sarralde R, Maletzky E, Mostarda E, ,,, & Campanis G,2019
African Journal of Marine Science
https://www.tandfonline.com/doi/pdf/10.2989/1814232X.2019.1571439
30
Web search10.2216/18-9.1Mesophotic Ecklonia radiata (Laminariales) at Rangitāhua, Kermadec Islands, New ZealandNelson W, Duffy C, Trnski T, & Stewart R,2018Phycologiahttps://www.tandfonline.com/doi/full/10.2216/18-9.1
31
Web search10.1016/B978-0-12-385140-6.00009-8
Methane-related carbonate cementation of marine sediments and related macroalgal coralligenous assemblages in the Northern Adriatic Sea
Gordini E, Falace A, Kaleb S, Donda F, Marocco R, & Tunis G,2012
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780123851406000098
32
Web search10.1021/acs.jafc.2c02626
Novel Antimycin Analogues with Agricultural Antifungal Activities from the Sponge-Associated Actinomycete
Li W, Ding L, Li J, Wen H, Liu Y, Tan S, Yan X, Shi Y, Lin W, Lin HW, He S2022
J Agric Food Chem
https://www.ncbi.nlm.nih.gov/pubmed/35773185
33
Web search10.1111/maec.12353
Patterns in megabenthic assemblages on a seamount summit (Ormonde Peak, Gorringe Bank, Northeast Atlantic)
Ramos M, Bertocci I, Tempera F, Calado G, Albuquerque M, & Duarte P,2016Marine Ecologyhttps://onlinelibrary.wiley.com/doi/full/10.1111/maec.12353
34
Web search10.1071/MF9960001Patterns in subtidal marine assemblages associated with a deep-water sewage outfallRoberts D, E,1996
Marine and Freshwater Research
https://www.publish.csiro.au/MF/MF9960001
35
Web search10.1007/s10152-014-0391-6
Preliminary observations on the benthic marine algae of the Gorringe seabank (northeast Atlantic Ocean)
Tittley I, Alvaro N, M, D, S, V, & Neto A, I, D, M, A,2014
Helgoland Marine Research
https://link.springer.com/article/10.1007/s10152-014-0391-6
36
Web search10.3897/zookeys.835.32562Prognathodesgeminus, a new species of butterflyfish (Teleostei, Chaetodontidae) from PalauM Copus J, L Pyle R, D Greene B, E Randall J2019Zookeyshttps://www.ncbi.nlm.nih.gov/pubmed/31043851
37
Web search10.1016/B978-0-12-814960-7.00013-0Seabed habitats of the Bay of Fundy, Atlantic CanadaTodd B, J, Brown C, J, Curtis B, Kirchhoff S, Lacharité M, Sameoto J, A, & Church I,2020
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780128149607000130
38
Web search10.1016/B978-0-12-814960-7.00040-3Seafloor geomorphology and benthic habitat of the German Bank glaciated shelf, Atlantic CanadaBrown C, J, Todd B, J, Smith S, J, & Sameoto J, A,2020
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780128149607000403
39
Web search10.1016/B978-0-12-385140-6.00056-6Seafloor habitats and benthos of a continental ridge: Chatham Rise, New ZealandNodder S, D, Bowden D, A, Pallentin A, & Mackay K,2012
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780123851406000566
40
Web search10.1016/j.marpetgeo.2020.104816
Seismic-based paleoenvironmental reconstructions of carbonate systems: Pitfalls, limitations and perspectives - Reply to the comments on “Development patterns of an isolated oligo-mesophotic carbonate buildup, early Miocene, Yadana field, offshore Myanmar” by Teillet et al. (2020), authored by Paumard et al. (2020)
Teillet T, Fournier F, Borgomano J, Montaggioni L2021
Marine and Petroleum Geology
https://www.sciencedirect.com/science/article/pii/S0264817220305997
41
Web search10.1111/ivb.12266
Settlement of juvenile glass sponges and other invertebrate cryptofauna on the Hecate Strait glass sponge reefs
Guillas K, C, Kahn A, S, Grant N, Archer S, K, Dunham A, & Leys S, P,2019
Invertebrate Biology
https://onlinelibrary.wiley.com/doi/full/10.1111/ivb.12266
42
Web search10.12681/mms.13853
Shedding light on an East-Mediterranean mesophotic sponge ground community and the regional sponge fauna
Idan T, Shefer S, Feldstein T, Yahel R, Huchon D, & Ilan M,2018
Mediterranean Marine Science
https://ejournals.epublishing.ekt.gr/index.php/hcmr-med-mar-sc/article/view/13853
43
Web search10.1016/j.ecolind.2017.01.019
Spatial and temporal changes in epibenthic communities at deep, hard bottom aquaculture sites in Newfoundland
Salvo F, Mersereau J, Hamoutene D, Belley R, & Dufour S, C,2017
Ecological indicators
https://reader.elsevier.com/reader/sd/pii/S1470160X17300250?token=705D78D68D30CFA96ADB90653CF14C6D9994ADBF543242FE3373CC361C412737DC911C2E640F888B98144344C90D3D16
44
Web search10.1016/j.ecss.2007.07.012
Spatial variability of epifaunal communities from artificial habitat: Shipwrecks in the Southern Bight of the North Sea
Zintzen V, Norro A, Massin C, & Mallefet J,2008
Estuarine, Coastal and Shelf Science
https://reader.elsevier.com/reader/sd/pii/S0272771407002740?token=B0980D0269D5414A769D405A77CDD47BBC8431B70AC178E7A9549E68D9A4B84B407B96CAFDACCDF0B80628C26EA99866
45
Web search10.1371/journal.pone.0281932
Spatio-temporal patterns of the crustacean demersal fishery discard from the south Humboldt Current System, based on scientific observer program (2014-2019)
Landaeta MF, Hernández-Santoro C, Search FV, Castillo MI, Bernal C, Navarrete SA, Wieters EA, Beldade R, Navarro Campoi A, Pérez-Matus A2023PLoS Onehttps://www.ncbi.nlm.nih.gov/pubmed/36848348
46
Web search10.1007%2F3-540-27673-4Sponge reefs in the Queen Charlotte Basin, Canada: controls on distribution, growth and developmentConway K, W, Krautter M, Barrie J, V, Whitney F, Thomson R, E, Reiswig H, ,,, & Bertram M,2005
Cold-water Corals and Ecosystems
https://link.springer.com/content/pdf/10.1007%2F3-540-27673-4.pdf
47
Web search10.1016/B978-0-12-814960-7.00017-8Sponge reefs on the Northeast Pacific margin: geomorphic and biological variabilityConway K, W, Dunham A, Burke L, A, Archer S, K, Shaw J, & Kung R,2020
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780128149607000178
48
Web search10.1016/j.marenvres.2008.09.002Status of the glass sponge reefs in the Georgia BasinCook S, E, Conway K, W, & Burd B,2008
Marine Environmental Research
https://www.sciencedirect.com/science/article/pii/S0141113608002043
49
Web search10.1016/j.ecolind.2017.02.030Temporal and spatial variability in the cover of deep reef species: Implications for monitoringPerkins N, R, Foster S, D, Hill N, A, Marzloff M, P, & Barrett N, S,2017
Ecological Indicators
https://www.sciencedirect.com/science/article/pii/S1470160X17300936
50
Web search10.1016/j.marenvres.2015.10.006Temporal variability in epifaunal assemblages associated with temperate gorgonian gardensDias I, M, Curdia J, Cunha M, R, Santos M, N, & Carvalho S,2015
Marine environmental research
https://www.sciencedirect.com/science/article/pii/S014111361530057X
51
Web search10.1016/B978-0-12-814960-7.00019-1The inland deep sea—benthic biotopes in the SognefjordBuhl-Mortensen L, Buhl-Mortensen P, Glenner H, Båmstedt U, & Bakkeplass K,2020
Seafloor geomorphology as benthic habitat
https://www.sciencedirect.com/science/article/pii/B9780128149607000191
52
Tom Bridge10.11646/zootaxa.5213.1.1
Five new species of black coral (Anthozoa; Antipatharia) from the Great Barrier Reef and Coral Sea, Australia
https://pubmed.ncbi.nlm.nih.gov/37044955/
53
Tom Bridge10.1002/ecy.2761Resolving the depth zonation paradox in reef-building coralshttps://esajournals.onlinelibrary.wiley.com/doi/10.1002/ecy.2761#:~:text=We%20resolve%20this%20paradox%20by,capturing%20a%20species'%20depth%20use.
54
Vianney Denis10.1002/ecs2.2803
Acknowledging differences: number, characteristics, and distribution of marine benthic communities along Taiwan coast
Lin YV, Denis V2019Ecospherehttps://esajournals.onlinelibrary.wiley.com/doi/full/10.1002/ecs2.2803?af=R
55
Vianney Denis10.1111/1365-2435.13924Trophic plasticity of mixotrophic corals under contrasting environmentsSturaro N, Hsieh YE, Chen Q, Wang PL, Denis V2021
Functional Ecology
https://besjournals.onlinelibrary.wiley.com/doi/full/10.1111/1365-2435.13924
56
Vianney Denis10.1007/s12526-017-0766-4A new association between goblet worms (Entoprocta) and xeniid corals (Cnidaria)Denis V, Lin YTV, Ho MJ2019
Marine Biodiversity
https://link.springer.com/article/10.1007/s12526-017-0766-4
57
Peter Auster10.1590/1982-0224-20180165
Coordinated hunting behaviors of mixed-species groups of piscivores and associated species at Isla del Coco National Park (Eastern Tropical Pacific)
Auster, P. J., Cortés, J., Alvarado, J. J., & Beita-Jiménez, A. 2019
Neotropical Ichthyology
https://www.scielo.br/j/ni/a/yjLgY3cvbRdqLcxyD5x6pvL/?lang=en&format=html
58
Peter Auster10.15517/rbt.v64i1.23425
Facilitative behavioral interactions between deepwater piscivores at Isla del Coco National Park and Las Gemelas Seamount, Costa Rica
Auster, P. J., Sánchez-Jiménez, A., Rodríguez-Arrieta, J. A., Quesada, A. J., Pérez, C., Naranjo-Elizondo, B., ... & Cortés, J.2016
Revista de Biología Tropical
https://revistas.ucr.ac.cr/index.php/rbt/article/view/23425
59
Astrid Sánchez-Jiménez10.15517/rbt.v66i5.34943
Updated catalogue of bony fishes observed in deep waters at Isla del Coco National Park and Las Gemelas seamount, Costa Rica (Eastern Tropical Pacific).
Sánchez-Jiménez, A., Naranjo-Elizondo, B., Rodríguez-Arrieta, A., Quesada, A. J., Blum, S., McCosker, J. E., ... & Cortés, J. 2018
Revista de Biología Tropical
https://revistas.ucr.ac.cr/index.php/rbt/article/view/34943
60
Peter Auster
The ecology of fishes on deep boulder reefs in the western Gulf of Maine (NW Atlantic). Proceedings of the American Academy of Underwater Science, 89-107.
Auster, P. J., & Lindholm, J. 2005
Proceedings of the American Academy of Underwater Science
https://repository.library.noaa.gov/view/noaa/40715/noaa_40715_DS1.pdf#page=93
61
Paris Stefanoudis10.1007/s00338-022-02281-4Geomorphological drivers of deeper reef habitats around SeychellesSwanborn, D.J.B., Fassbender, N., Huvenne, V.A.I. et al.2022Coral Reefshttps://link.springer.com/article/10.1007/s00338-022-02281-4
62
Paris Stefanoudis10.1002/rse2.290
Structure-from-motion photogrammetry demonstrates that fine-scale seascape heterogeneity is essential in shaping mesophotic fish assemblages
Denise J. B. Swanborn, Paris V. Stefanoudis, Veerle A. I. Huvenne, Simon J. Pittman, Lucy C. Woodall2022
Remote sensing in Ecology and Evolution
https://zslpublications.onlinelibrary.wiley.com/doi/full/10.1002/rse2.290
63
Paris Stefanoudis10.1111/conl.12924
Stakeholder-derived recommendations and actions to support deep-reef conservation in the Western Indian Ocean
Paris V. Stefanoudis, Sheena Talma, Nico Fassbender, Denise Swanborn, Christine Nyangweso Ochieng, Kevin Mearns, John D. Komakoma, Levy M. Otwoma, Nsajigwa Emmanuel Mbije, Kennedy E. Osuka, Melita Samoilys, Nirmal Shah, Toufiek Samaai, Evan Trotzuk, Arthur Tuda, Francisco Zivane, Daniel Wagner, Lucy C. Woodall2023
Conservation Letters
https://conbio.onlinelibrary.wiley.com/doi/full/10.1111/conl.12924
64
Paris Stefanoudis10.3897/rio.6.e53913 Deep reef ecosystems of the Western Indian Ocean: addressing the great unknown Paris V Stefanoudis, Sheena Talma, Kaveh Samimi-Namin, Lucy C Woodall2023
Research Ideas and Outcomes
https://riojournal.com/article/53913/
65
Luis Chasqui
Fishes found in mesophotic environments of Bajo Frijol, the shallowest portion of the Corales de Profundidad Natural National Park, using CCR technical diving.
Chasqui V., L.H. & J.D. Gonzalez C.2019
Bulletin of Marine and Coastal Research
http://boletin.invemar.org.co/ojs/index.php/boletin/article/view/896
66
Luis Chasqui10.3390/d14080679
Mapping Ecological Units in Mesophotic Coral Ecosystems of San Andrés Island (Southwestern Caribbean)
Mejía-Quintero, K.; Cedeño-Posso, C.; Millán, S.; Chasqui, L.2022Diversityhttps://www.mdpi.com/1424-2818/14/8/679
67
Luis Chasqui10.3389/fmars.2020.00311
Octocorals and Antipatharians in the Mesophotic Rocky Reefs of Colombian Pacific (Eastern Tropical Pacific)
Mejía-Quintero K and Chasqui L2020
Frontiers in Marine Science
https://www.frontiersin.org/articles/10.3389/fmars.2020.00311/full
68
Luis Chasqui10.3389/fmars.2020.559273
Biodiversity and Ecological Units of the Mesophotic Coral Ecosystems in San Andrés Island, SeaFlower Biosphere Reserve
Chasqui L, Mejía-Quintero K and González JD2020
Frontiers in Marine Science
https://www.frontiersin.org/articles/10.3389/fmars.2020.559273/full
69
Steven Auscavitch10.7717/peerj.9523
Distribution of deep-water scleractinian and stylasterid corals across abiotic environmental gradients on three seamounts in the Anegada Passage
Auscavitch SR, Lunden JJ, Barkman A, Quattrini AM, Demopoulos AWJ, Cordes EE.2020PeerJhttps://peerj.com/articles/9523/
70
Luisa F Dueñas10.3390/d13120650Mesophotic Gorgonian Corals Evolved Multiple Times and Faster Than Deep and Shallow LineagesJuan A. Sánchez, Fanny L. Gonzá lez-Zapata, Carlos Prada, Luisa F. Dueñas2021Diversityhttps://www.mdpi.com/1424-2818/13/12/650
71
Luisa F Dueñas10.3389/fmars.2019.00536
Corals in the Mesophotic Zone (40–115m) at the Barrier Reef Complex From San Andrés Island (Southwestern Caribbean)
Juan Armando Sánchez, Fanny L. González-Zapata, Luisa F. Dueñas, Julio Andrade, Ana Lucía Pico-Vargas, Diana Carolina Vergara, Adriana Sarmiento, Nacor Bolaños2019
Frontiers in Marine Science
https://www.frontiersin.org/articles/10.3389/fmars.2019.00536/full
72
Mykle L Hoban10.3390/d14080691
Phylogeography of Mesophotic Coral Ecosystems: Squirrelfish and Soldierfish (Holocentriformes: Holocentridae)
https://www.mdpi.com/1424-2818/14/8/691
73
Randall Kosaki10.1080/09670262.2019.1668062
Characterization of Martensia (Delesseriaceae; Rhodophyta) from shallow and mesophotic habitats in the Hawaiian Islands: description of four new species
https://www.tandfonline.com/doi/full/10.1080/09670262.2019.1668062
74
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https://bioone.org/journals/pacific-science/volume-75/issue-2/75.2.6/Ethelia-hawaiiensis-Etheliaceae-Rhodophyta-a-New-Mesophotic-Marine-Alga-from/10.2984/75.2.6.full
75
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76
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https://www.biotaxa.org/Phytotaxa/article/view/phytotaxa.524.1.2
77
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78
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https://www.tandfonline.com/doi/abs/10.1080/00318884.2022.2093540?journalCode=uphy20
79
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80
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81
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82
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83
Netanel Kramer10.3354/meps13956Growth and survival dynamics of mesophotic coral juveniles in shallow reefsNetanel Kramer, Gal Eyal, Raz Tamir, Yossi Loya2022
Marine Ecology Progress Series
https://www.int-res.com/abstracts/meps/v682/p237-242/
84
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Functional Ecology
https://onlinelibrary.wiley.com/doi/10.1111/1365-2435.13948
85
Tzu-Hao Lin10.5670/oceanog.2023.s1.7Using Soundscapes to Assess Changes in Coral Reef Social-Ecological SystemsTzu-Hao Lin, Frederic Sinniger, Saki Harii, Tomonari Akamatsu 2023Oceanographyhttps://tos.org/oceanography/article/using-soundscapes-to-assess-changes-in-coral-reef-social-ecological-systems
86
Cerrano Carlo 10.1080/24750263.2019.1677790
Temperate mesophotic ecosystems: gaps and perspectives of an emerging conservation challenge for the Mediterranean Sea
https://www.tandfonline.com/doi/full/10.1080/24750263.2019.1677790
87
Cerrano Carlo 10.1080/02757540.2014.966699
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https://www.tandfonline.com/doi/abs/10.1080/02757540.2014.966699
88
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https://blackmeditjournal.org/wp-content/uploads/4-2021_1_49-66.pdf
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89
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https://blackmeditjournal.org/wp-content/uploads/3-2021_2_154-166.pdf
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90
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91
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92
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93
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94
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95
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96
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97
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https://link.springer.com/article/10.1007/s10637-020-00911-8
98
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99
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100
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