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2026

Baalsrud, H. T., Tørresen, O. K., Danneels, B., Ferrari, G., Tooming-Klunderud, A., Skage, M., Kollias, S., Arnyasi, M., Svensen, E., Kuklinski, P., Jakobsen, K. S., & Liow, L. H. (2026). Chromosomal Fusions Shaped the Genome of the Greater Hornwrack Bryozoan (Flustra Foliacea) (Linnaeus, 1758). Journal of Heredity, esag013. https://doi.org/10.1093/jhered/esag013

Bibermair, J., Saadi, A. J., & Schwaha, T. (2026). Morphological character evolution and ancestral state reconstruction in phylactolaemate bryozoans. Scientific Reports, 16(1), 15106. https://doi.org/10.1038/s41598-026-40223-0

Ernst, A., Hoşgör, İ., & Vinn, O. (2026). First report of Hirnantian (Late Ordovician) palaeostomate bryozoans and associated biota of the northern Arabian Plate in southeastern Türkiye. Palaeoworld, 35(1), 201026. https://doi.org/10.1016/j.palwor.2025.201026

Ernst, A., Racki, G., & Jackson, P., N. (2026). Middle Devonian and Frasnian bryozoan fauna from the Holy Cross Mountains, Poland. Acta Palaeontologica Polonica, 71(1), 1-17. https://doi.org/10.4202/app.01282.2025

Ernst, A., Königshof, P., & Jackson, P. N. W. (2026). Bryozoan fauna from the Samnuuruul Formation (Upper Devonian, Famennian) of the Hushoot Shiveetiin gol section, southwestern Mongolia. Palaeobiodiversity and Palaeoenvironments, 106(1), 131–152. https://doi.org/10.1007/s12549-025-00688-9

Håkansson, E., Jakobsen, S.L., Rosso, A., & Thomsen, E. (2026). On the free-living bryozoan fauna from the Miocene Gram Formation (Denmark), with description of two new species, a new genus and a new suborder of Cheilostomata. Bulletin of the Geological Society of Denmark, 75, 11-32. https://doi.org/10.37570/bgsd-2026-75-02

Iturra, D., López-Gappa, J., Pérez, L. M., Romero, F. E. O., & Martha, S. O. (2026). Revision of the Late Oligocene to Middle Miocene Patagonian species of Cellaria (Bryozoa, Cheilostomatida) described by Ferdinand Canu. Zootaxa, 5792(3), 519–545. https://doi.org/10.11646/zootaxa.5792.3.4

Jacob, D. E., Benedix, G., Wirth, R., Morales, L. F. G., Schreiber, A., Lovi, J., Scholz, J., & Martha, S. O. (2026). Transient calcite precursor phases in Bryozoa: Smittina cervicornis and Myriapora truncata from the Mediterranean. Journal of Structural Biology, 218(3), 108347. https://doi.org/10.1016/j.jsb.2026.108347

Koromyslova, A. V., & Martha, S. (2026). Upper Paleocene (Thanetian) bryozoans from the Turgay Trough in northern Kazakhstan. Paleontologia Electronica, 19(1), 1-43. https://doi.org/10.26879/1643

Martinez, A. S., Rocha, R. M., Christofoletti, R. A., Vieira, L. M., Pinheiro, U. S., Haddad, M. A., Pinheiro, I. E. G., Pellizzari, F. M., Haraguchi, L., & Pardal, A. (2026). Ecological role of artificial structures on marine and estuarine biota in Brazil: Current knowledge and implications for management. Regional Studies in Marine Science, 95, 104803. https://doi.org/10.1016/j.rsma.2026.104803

Schwaha, T., & Decker, S. H. (2026). Why Some Bryozoans Poop Themselves: A Novel Defecation Method in Ctenostome Bryozoans. Journal of Morphology, 287(8), e70163. https://doi.org/10.1002/jmor.70163

Song, B., Zhang, Z., Strotz, L. C., Topper, T. P., Ernst, A., Ma, J., Zhang, Z., Luo, M., Holmer, L. E., Liang, Y., Hu, Y., Zhang, C., Chen, Y., & Brock, G. A. (2026). High-fidelity modular skeletons authenticate a Cambrian origin for Bryozoa. Nature, 656(8126), 123–128. https://doi.org/10.1038/s41586-026-10590-9

Smith, A. M., Jenkins, H. L., Taylor, P. D., & Waeschenbach, A. (2026). Unexpected high taxonomic diversity in the bryozoan family Horneridae (order Cyclostomatida), with morphomolecular recognition of new species and a new genus in the southern Zealandian region. Zoological Journal of the Linnean Society, 207(3), zlag093. https://doi.org/10.1093/zoolinnean/zlag093

Wayal, D. V., & Sonar, M. A. (2026). Membraniporina and Thalamoporellina (Bryozoa: Cheilostomatida) from the Konkan Coast, Maharashtra, India. Zootaxa, 5741(3), 539–556. https://doi.org/10.11646/zootaxa.5741.3.6

Wilson, N. K., Fulton, S. E., Flynn, A. J., & Dutka, T. L. (2026). Invertebrate Biodiversity Associated With a Unique Bryozoan Biogenic Reef Complex (Western Port, Victoria, Australia). Austral Ecology, 51(2), e70183. https://doi.org/10.1111/aec.70183

2025

Ahmed, Q., Ali, Q. M., Baloch, A., & Taylor, P. D. (2025). First Record of Margaretta cereoides (Ellis & Solander, 1786) (Cheilostomata, Margarettidae) from Ras Juddi (Pasni), Makran Coast, Northern Arabian Sea. Thalassas: An International Journal of Marine Sciences, 41(3), 179. https://doi.org/10.1007/s41208-025-00942-z

Ali, Q. M., Baloch, A., Ahmed, Q., Taylor, P. D., & Bat, L. (2025). First record of Calyptotheca alexandriensis (Cheilostomatida, Lanceoporidae) from Ras Juddi (Pasni) Makran coast, Northern Arabian Sea. Marine Science and Technology Bulletin, 14(2), 115-121. https://doi.org/10.33714/masteb.1673110

Antillón-Obando, B., Cortés, J., & Sibaja-Cordero, J. A. (2025). Marine Bryozoans from the Northern Pacific Coast of Costa Rica. Diversity, 17(7), 451. https://doi.org/10.3390/d17070451

Bogdanov, E. A., Yakovis, E. L., Artemieva, A. V., Kotenko, O. N., & Ostrovsky, A. N. (2025). Vestibular Glands in Cheilostome Bryozoans: Structure, Distribution and Probable Function. Paleontological Journal, 59(9), 1114–1129. https://doi.org/10.1134/S0031030125600799

De Blauwe, H. (2025). Marine and brackish Bryozoans from the Southern Bight of the North Sea: identification guide for Belgium, the Netherlands and the North Sea coast of Germany. Springer Cham, 422. https://doi.org/10.1007/978-3-031-92513-9

Demidova, M. A., Vishnyakov, A. E., Karagodina, N. P., Kotenko, O. N., Nekliudova, U. A., Bogdanov, E. A., & Ostrovsky, A. N. (2025). Vertical transfer of bacterial symbionts via a placental analogue in the cyclostome bryozoan Patinella verrucaria (Stenolaemata): Ultrastructural and molecular evidence. Zoology, 171, 126281. https://doi.org/10.1016/j.zool.2025.126281

Di Martino, E., Rosso, A., Taylor, P. D., Chiu, R. W. T., Fujita, K., Kitamura, A. & Yasuhara, M. (2025). Unveiling the cheilostome bryozoan fauna of Daidokutsu submarine cave (Okinawa, Japan) over the last 7,000 years. Paleontologia Electronica, 28(1,a7), 1-125. https://doi.org/10.26879/1433

Ernst, A. (2025). New Species of Trepostomata (Bryozoa) From the Lower Permian Callytharra Formation, Western Australia. Journal of The Royal Society of Western Australia, 108. https://doi.org/10.70880/001c.147514

Ernst, A., & May, A. (2025). A symbiosis between bryozoans and the tabulate coral Cladochonus in the Devonian. Spanish Journal of Palaeontology, 40(2), 195-210. https://doi.org/10.70880/001c.147514

Ernst, A., & Buttler, C. (2025). Bryozoan fauna from the Ferques Formation (Upper Devonian, Frasnian) of France. Palaeobiodiversity and Palaeoenvironments, 105(1), 265–281. https://doi.org/10.1007/s12549-024-00614-5

Ernst, A., Andrés, J. L. S., & Jackson, P. N. W. (2025). Hemitrypa (Fenestrata, Bryozoa) from the Middle Devonian of the Eifel (western Rhenish Massif) and taxonomic re-evaluation of some allied hemitrypid genera. Zeitschrift Der Deutschen Gesellschaft Für Geowissenschaften, 176(3), 493–508. https://doi.org/10.1127/zdgg/2024/0449

Figuerola, B., Linares, C., Aparicio-Estalella, C., López-Sendino, P., Garrabou, J., & del Campo, J. (2025). Microbiome Composition in a Common Mediterranean Bryozoan Following an Unprecedented Marine Heatwave. Environmental Microbiology Reports, 17(5), e70185. https://doi.org/10.1111/1758-2229.70185

Gontar V. (2025). First Record Bryozoa (Electridae) in the Northern Part of the Caspian Sea. Inland Water Biology. 18(5), 994-999. https://doi.org/10.1134/S1995082925601042

Gordon, D. P. (2025). Morphological and taxonomic diversity of the bryozoan genus Chaperia (Cheilostomata: Chaperiidae) in the Aotearoa New Zealand EEZ and on the southern Norfolk Ridge. Zootaxa, 5737(2), 151–202. https://doi.org/10.11646/zootaxa.5737.2.1

Iturra, D., López-Gappa, J., & Pérez, L. M. (2025). The family Dysnoetoporidae (Bryozoa: Cheilostomatida) did not become extinct in the Late Cretaceous: a new genus from the Miocene of Patagonia (Argentina).
Journal of Paleontologyhttps://doi.org/10.1017/jpa.2024.63

Key Jr., M. M., Smith, A. M., McDowell, M. S., & Dixon-Anderson, I. S. (2025). Quantifying Growth Rates Using Growth Checks in Colonial Organisms: A Case Study on Erect Bryozoans From the Southern Ocean. Marine Ecology, 46(5), e70038. https://doi.org/10.1111/maec.70038

Kvach, A. Yu., Kutyumov, V. A., Starunov, V. V., & Ostrovsky, A. N. (2025). Transcriptomic Landscape of Polypide Development in the Freshwater Bryozoan Cristatella mucedo: From Budding to Degeneration. Journal of Experimental Zoology Part B: Molecular and Developmental Evolution, 344(3), 119–135. https://doi.org/10.1002/jez.b.23285

Lewin, T. D., Liao, I. J.-Y., Chen, M.-E., Bishop, J. D. D., Holland, P. W. H., & Luo, Y.-J. (n.d.). Fusion, fission, and scrambling of the bilaterian genome in Bryozoa. Genome Research36( 8) https://doi.org/10.1101/gr.279636.124

Ma, J., Liow, L. H., & Taylor, P. D. (2025). Zooid size reduction in cyclostome bryozoans from the Late Triassic to the present-day. Palaeontology, 68(5), e70027. https://doi.org/10.1111/pala.70027

Martha, S. O., Sanner, J., Cheetham, A. H., & Scholz, J. (2025). The cheilostome bryozoan fauna of the Vincentown Limesand from the Thanetian of New Jersey and Delaware, USA: countdown to the Paleocene?Eocene Thermal Maximum (PETM). Palaeontographica Abteilung A, 330(1–6), 23–176. https://doi.org/10.1127/pala/2025/0159

Martha, S. O., & Scholz, J. (2025). Shallow-water bryozoans collected during R.V. Meteor expedition 5/2 “MINDIK” from the Bab-el-Mandeb Strait and Gulf of Aden, along the coasts of Djibouti and Yemen. Zootaxa, 5689(2), 201–243. https://doi.org/10.11646/zootaxa.5689.2.1

Pratt, C. J., Trott, T. J., Bernier, R. Y., Boerder, K., Goodwin, C., Barrell, J., Grégoire, B., Rawlings, T. A., Cronmiller, E., Ma, K. C. K., Sargent, P. S., McBride, M. C., DiBacco, C., Hiltz, C., & Kingsbury, S. (2025). The overlooked introduction of the encrusting bryozoan Juxtacribrilina mutabilis to eastern Canada. Journal of the Marine Biological Association of the United Kingdom, 105, e98. Cambridge Core. https://doi.org/10.1017/S0025315425100362

Rech, S., Vieira, L. M., Varela, A. I., Bastías, M. S. R., Fuentes, J. P., Gordon, D. P., Cacciuttolo-Said, M., Paschke, K., Sellanes, J., & Thiel, M. (2025). Seek and you shall find: Detection of alien bryozoans along the Chilean SE Pacific coast with a simple and cost-efficient methodology. NeoBiota, 102, 269–294. https://doi.org/10.3897/neobiota.102.144725

Reverter-Gil, O., Souto, J., & Berning, B. (2025). Unexpected diversity in North Atlantic deep waters hidden under Scrupocellaria marsupiata (Bryozoa: Cheilostomatida). Zootaxa, 5618(3), 326–350. https://doi.org/10.11646/zootaxa.5618.3.2

Reverter-Gil, O., & Souto, J. (2025). Inventario de los briozoos marinos de Galicia (NW Península Ibérica). Segunda época. Memorias de la Real Sociedad Española de Historia Natural, Tomo XVII, 1-302. https://www.rsehn.es/publicaciones-memorias/art1929l

Reverter-Gil, O., & de Retana, P. R. O. (2025). Etimologías de los taxones supraespecíficos empleados en el filo Bryozoa ] Etymologies of the supraspecific taxa used in the phylum Bryozoa. Boletin de la real Sociedad española de historia natural, 118, 17-33. https://doi.org/10.29077/bol.2024.118.reverter

Rodrigues, G. F. B., Zacari, L., Trevisan, M. R. R., Moraes, I. R. R., & Castilho, A. L. (2025). Distinctness Between Taxonomic and Functional Diversity Indexes of Bryozoan-Associated Decapods in Southeastern Brazil. Thalassas: An International Journal of Marine Sciences, 41(2), 68. https://doi.org/10.1007/s41208-025-00825-3

Rosso, A., Di Martino, E., & Siddiolo, C. (2025). Going west: The spread of non-native Microporella (Bryozoa) species on drift plastic debris. Mediterranean Marine Science, 26(1), 71–89. https://doi.org/10.12681/mms.38996

Rosso, A., Di Martino, E., Donato, G., Figuerola, B., Gerovasileiou, V., Siddiolo, C., Sinagra, A., Sanfilippo, R., & Sciuto, F. (2025). Unlocking Mediterranean bryozoan diversity: Seven new species unveiled after fixing a neotype for Fenestrulina malusii (Audouin & Savigny, 1826) (Cheilostomatida, Fenestrulinidae). ZooKeys, 1254, 1–74. https://doi.org/10.3897/zookeys.1254.157989

Ruiz-Velasco, S., Ros, M., Guerra-García, J. M., & López-Fé, C. M. (2025). Fouling bryozoans in recreational marinas of the Canary Islands (North-Eastern Atlantic) with new records of non-indigenous and cryptogenic species. Zootaxa, 5656(1), 1–63. https://doi.org/10.11646/zootaxa.5656.1.1

Saulsbury, J. G., Piwoni-Piórewicz, A., Kukliński, P., Di Martino, E., & Liow, L. H. (2025). Evolution of skeletal mineralogy in cheilostome bryozoans from calcite to aragonite seas. Geology, 53(11), 914–918. https://doi.org/10.1130/G53795.1

Serova K. M., Zaitseva O. V., & Ostrovsky A. N. (2025). From feeding to sensing: microanatomy and ultrastructure of the rudimentary polypide in the avicularia of Arctonula arctica (Bryozoa: Cheilostomatida). Invertebrate Zoology, 22(1), 146–167. https://doi.org/10.15298/invertzool.22.1.10

Song, B., Liang, Y., Holmer, L. E., Strotz, L. C., Ma, J., & Zhang, Z. (2025). Palaeostomate Bryozoans from Glacial Erratics in the Tvären Region, Sweden. Minerals, 15(2), 136. https://doi.org/10.3390/min15020136

Taylor, P. D., Di Martino, E., Rosso, A., Chiu, R. W. T., Fujita, K., Kitamura, A., & Yasuhara, M. (2025). Subfossil cyclostome bryozoans from Daidokutsu submarine cave, Okinawa, Japan. Palaeontologia Electronica, 28(2)29, 1-29. https://doi.org/10.26879/1546

Tolokonnikova, Z. A., Song, J., & Zong, R. (2025). New latest Famennian (Late Devonian) cystoporate bryozoans from the Bulongguoer section, northwest Xinjiang, China. Zootaxa, 5594(2), 367–376. https://doi.org/10.11646/zootaxa.5594.2.8

Vakhrushev A. E., & Temereva E. N. (2025). New data on early astogeny and microstructure of cystid in Patinella verrucaria (Bryozoa: Cyclostomata). Invertebrate Zoology, 22(4), 595–613. https://doi.org/10.15298/invertzool.22.4.06

Vinn, O., Ernst, A., Isakar, M., El Hedeny, M., Almansour, M. I., & Al Farraj, S. (2025). Cryptic fauna in abandoned bivalve shells and taphonomy of bivalve steinkerns in the Late Ordovician of Baltica. Historical Biology, 37(7), 1621–1626. https://doi.org/10.1080/08912963.2024.2383702

Vinn O., Ernst A., Wilson M.A. & Toom U. (2025). Symbiosis between bryozoans with erect cribrate colonies and rugose corals from the lower Katian (Upper Ordovician) of Estonia. Carnets Geol., Madrid, 25(6), 147-154. https://doi.org/10.2110/carnets.2025.2506

Waeschenbach, A., Zhou, Z., Schwaha, T., Okamura, B., Gordon, D. P., Wood, T. S., Ostrovsky, A. N., Todd, J. A., Decker, S. H., Johnson, M., Mohammed Al-Ghanem, M., De Blauwe, H., Florence, W. K., Graham, R., Hall, A., Hartikainen, H., Jenkins, H. L., Kukliński, P., Porter, J. S., … Spencer Jones, M. E. (2025). A genome-skimming phylogeny of ctenostome bryozoans. Zoological Journal of the Linnean Society, 204(3), zlaf060. https://doi.org/10.1093/zoolinnean/zlaf060

Wayal, D. V. & Sonar, M. A. (2025). New record of Celleporidae (Bryozoa) from the Konkan Coast of Maharashtra, India. Journal of Palaeosciences, 74, 9-18. https://doi.org/10.54991/jop.2025.1898

2024

Achilleos, K., Smith, A. M., Kenny, N. J., & Brown, C. M. (2024). A new transcriptome resource for Cellaria immersa (Phylum: Bryozoa) reveals candidate genes and proteins related to biomineralization. Frontiers in Marine Science, 11(2024). https://doi.org/10.3389/fmars.2024.1389708

Achilleos, K., Smith, A. M., Kenny, N. J., & Brown, C. M. (2024). A new transcriptome resource for Cellaria immersa (Phylum: Bryozoa) reveals candidate genes and proteins related to biomineralization. Frontiers in Marine Science, 11(2024). https://doi.org/10.3389/fmars.2024.1389708

Arakawa, S. (2024). Descriptions of Three Cheilostomatid Bryozoan Species from the Continental Shelf off Boso Peninsula, Japan. Species Diversity, 29(1), 99–110. https://doi.org/10.12782/specdiv.29.99

Baptista, L., Curto, M., Waeschenbach, A., Berning, B., Santos, A. M., Ávila, S. P., & Meimberg, H. (2024). Population genetic structure and ecological differentiation in the bryozoan genus Reteporella across the Azores Archipelago (central North Atlantic). Heliyon, 10(19), e38765. https://doi.org/10.1016/j.heliyon.2024.e38765

Berning, B., & Wisshak, M. (2024). Cheilostomatida (Bryozoa) from settlement panels deployed in the Azores (central North Atlantic). Marine Biodiversity, 54(5), 72. https://doi.org/10.1007/s12526-024-01459-z

Chae, H. S., Yang, H. J., Min, B. S., & Seo, J. E. (2024). Gregarinidra (Bryozoa: Gymnolaemata: Flustridae) of Korea. Animal Systematics, Evolution and Diversity, 40(1), 35–41. https://doi.org/10.5635/ASED.2024.40.1.049

Chae, H. S., Yang, H. J., Min, B. S., & Seo, J. E. (2024). One New Species and One New Record of Electridae (Bryozoa: Cheilostomatida) from Korea. Animal Systematics, Evolution and Diversity, 40(1), 73–78. https://doi.org/10.5635/ASED.2024.40.1.052

Chae, H. S., Yang, H. J., Min, B. S., & Seo, J. E. (2024). A New Species and a New Record of Escharoides (Bryozoa: Gymnolaemata: Flustridae) in Korea. Animal Systematics, Evolution and Diversity, 40(1), 42–46. https://doi.org/10.5635/ASED.2024.40.1.053

Chowdhury, I. A., Di Martino, E., Lee, H., Windecker, C. C., & Craig, S. (2024). Diversity and distribution of intertidal Microporella (Bryozoa: Cheilostomatida) from California. European Journal of Taxonomy, 932(1), 34–68. https://doi.org/10.5852/ejt.2024.932.2509

Cipriani, M., Apollaro, C., Basso, D., Bazzicalupo, P., Bertolino, M., Bracchi, V. A., Bruno, F., Costa, G., Dominici, R., Gallo, A., Muzzupappa, M., Rosso, A., Sanfilippo, R., Sciuto, F., Vespasiano, G., & Guido, A. (2024). Origin and role of non-skeletal carbonate in coralligenous build-ups: New geobiological perspectives in biomineralization processes. Biogeosciences, 21(1), 49–72. https://doi.org/10.5194/bg-21-49-2024

De Blauwe, H., Gittenberger, A., & Kerckhof, F. (2024). Zijn Pacificincola perforata (Okada & Mawatari, 1937) en Escharella hozawai (Okada, 1929) (Bryozoa, Cheilostomatidae) dezelfde soort? De Strandvlo: Driemaandelijks Tijdschrift van De Strandwerkgroep België44(2), 44-51. https://www.vliz.be/en/imis?refid=394066

Decker, S. H., Saadi, A. J., Baranyi, C., Hirose, M., Lemer, S., Sombke, A., Aguilera, F., Vieira, L. M., Smith, A. M., Waeschenbach, A., & Schwaha, T. (2024). Boring systematics: A genome skimmed phylogeny of ctenostome bryozoans and their endolithic family Penetrantiidae with the description of one new species. Ecology and Evolution, 14(4). https://doi.org/10.1002/ece3.11276

Decker, S. H., Lemer, S., Decker, S., Hirose, M., Johnson, M. J., & Schwaha, T. (2024). Boring life: Early colony formation and growth in the endolithic bryozoan genus Penetrantia Silén, 1946. Zoological Letters, 10(1), 10. https://doi.org/10.1186/s40851-024-00234-z

Decker, S. H., Aguilera, F., Saadi, A. J., & Schwaha, T. (2024). First soft body morphological data on the tracemaker of the endolithic bryozoan trace fossil Terebripora ramosa d’Orbigny, 1842. Journal of Morphology, 285(9), e21770. https://doi.org/10.1002/jmor.21770

Denisenko, N. V. (2024). Parasmittina macroavicularia, status promotus (Bryozoa: Smittinidae): redescription and promotion to species rank. Journal of Morphology, Zoosystematica Rossica, 33(2): 308–313. https://doi.org/10.31610/zsr/2024.33.2.308

Donato, G., Sanfilippo, R., Basso, D., Bazzicalupo, P., Bertolino, M., Bracchi, V. A., Cipriani, M., D’Alpa, F., Guido, A., Negri, M. P., Sciuto, F., Serio, D., & Rosso, A. (2024). Biodiversity associated with a coralligenous build-up off Sicily (Ionian Sea). Regional Studies in Marine Science, 80, 103868. https://doi.org/10.1016/j.rsma.2024.103868

Ernst, A., Serobyan, V., & Danelian, T. (2024). Biostratigraphic, palaeoenvironmental and palaeobiogeographic implications of bryozoan fauna from the Upper Devonian sequences of Armenia. Geobios, 85, 10–18. https://doi.org/10.1016/j.geobios.2024.02.001

Farias J., Vieira L.M., & Almeida A.C.S. (2024) Revealing the diversity of Parasmittina Osburn, 1952 (Bryozoa, Cheilostomatida) from the Southwest Atlantic: Species complexes, non-native and new species. PLoS ONE 19(8): e0304347. https://doi.org/10.1371/journal.pone.0304347

Geiger, D. L., Delnavaz, V., Gour, A. N., & Henderson, V. (2024). How to Curate and Digitize Bryozoa: Experiences at the Santa Barbara Museum of Natural History. Collections, 20(4), 547–568. https://doi.org/10.1177/15501906241232890

Grenier, C., Griesshaber, E., Schmahl, W., Berning, B., & Checa, A. G. (2024). Skeletal microstructures of cheilostome bryozoans (phylum Bryozoa, class Gymnolaemata): Crystallography and secretion patterns. Marine Life Science & Technology, 6(3), 405–424. https://doi.org/10.1007/s42995-024-00233-1

Harmelin, J.G. (2024). Biodiversity of bathyal coral gardens – portrait of a uniserial bryozoan endemic to the South Azorean Seamount Chain: an unexpected evolutionary testbed? Zoosystema, 46(30), 749-774.. https://doi.org/10.5252/zoosystema2024v46a30. http://zoosystema.com/46/30

Grischenko, A. V., Gordon, D. P., & Melnik, V. P. (2024). Bryozoa (Cheilostomata) from polymetallic nodules in the Russian exploration area, Clarion–Clipperton Fracture Zone, eastern Pacific Ocean—Taxon novelty and characteristics as macro- and megafaunal elements. Zootaxa, 5440(1), 1–147. https://doi.org/10.11646/zootaxa.5440.1.1

Håkansson, E., Gordon, D. P., & Taylor, P. D. (2024). Bryozoa from the Maastrichtian Korojon Formation, Western Australia. In Bryozoa from the Maastrichtian Korojon Formation, Western Australia. Scandinavian University Press. 1–155. https://doi.org/10.18261/9788215072081-2024-01

Herdman, A. 2024. Bryozoans on the Move: Trials and Challenges of Packing Collections.
NatSCA, (online), 1-22.
https://natsca.blog/2024/09/05/bryozoans-on-the-move-trials-and-challenges-of-packing-collections/

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2023

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Schwaha, T., Cometti, V., Saadi, A. J., Cecchetto, M., & Schiaparelli, S. (2024). Alcyonidium kuklinskii sp. Nov., a new species of Antarctic ctenostome bryozoan with a key to all Antarctic species of the genus. Organisms Diversity & Evolution, 24(1), 85–94. https://doi.org/10.1007/s13127-023-00629-4

Smith, A. M., Achilleos, K., & Gordon, D. P. (2023). Distribution patterns of shelf bryozoans around southern Aotearoa New Zealand. In: Bryozoan Studies 2022 Editors, Key, M. M. Jr., Porter, J. S., & Wyse Jackson, P. N. CRC Press, London, 1, 113-128. https://doi.org/10.1201/9781003454915-13

Sonar, M. A., Kadu, G. K., & Wayal, D. V. (2023). Onychocellidae (Bryozoa) from the Maastrichtian Kallankurichchi Formation, Ariyalur Group, southern India. Cretaceous Research, 144, 105432. https://doi.org/10.1016/j.cretres.2022.105432

Souto, J., Ramalhosa, P., Ferrario, J., Png-Gonzalez, L., Álvarez, S., Gestoso, I., Nogueira, N., & Canning-Clode, J. (2023). New species and new records of bryozoan species from fouling communities in the Madeira Archipelago (NE Atlantic). Marine Biodiversity, 53(4), 49. https://doi.org/10.1007/s12526-023-01355-y

Stephens-Norton, S. E., & Craig, S. F. (2023). A review of contact dependent interactions among bryozoans. In: Bryozoan Studies 2022 Editors, Key, M. M. Jr., Porter, J. S., & Wyse Jackson, P. N. CRC Press, London, 1, 129-136. https://doi.org/10.1201/9781003454915-14

Suárez, A., Juan, L., Jackson, P. M. Wyse, & Sendino, C. (2023). Enigmatic structures in Palaeozoic fenestrate bryozoans: the case of Fenestella sculptilis. In: Bryozoan Studies 2022 Editors, Key, M. M. Jr., Porter, J. S., & Wyse Jackson, P. N. CRC Press, London, 1, 137-142. https://doi.org/10.1201/9781003454915-15

Taylor, P. D., & Cuffey, R. J.. (2023). Bryozoans from the Turonian Carlile Shale of the Western Interior Seaway in Kansas, USA. In: Bryozoan Studies 2022 Editors, Key, M. M. Jr., Porter, J. S., & Wyse Jackson, P. N. CRC Press, London, 1, 143-152.https://doi.org/10.1201/9781003454915-16

Tolokonnikova, Z. A., & Fedorov, P. V. (2023). Morphological features of Late Ordovician (Sandbian) bryozoans from the basin of Khrevitsa River (north-western Russia) and description of a new species of the genus Prophyllodictya Gorjunova, 1987. Zootaxa, 5284(2), 337–350. https://doi.org/10.11646/zootaxa.5284.2.6

Vinn, O., Wilson, M. A., & Ernst, A. (2023). Macroscopic symbiotic endobionts in Phanerozoic bryozoans. Palaeogeography, Palaeoclimatology, Palaeoecology, 615, 111453. https://doi.org/10.1016/j.palaeo.2023.111453

Vinn, O., Wilson, M. A., Ernst, A., & Toom, U. (2023). The Ordovician bioclaustration revolution. Ordovician of the World — Proceedings of the UNESCO/IGCP Project 653 Absolutely Final & Project 735 Opening Online Meeting (13th-16th, September 2021), 81, 145–151. https://doi.org/10.1016/j.geobios.2022.10.007

Vinn, O., Ernst, A., Wilson, M. A., Tinn, O., Isakar, M., & Toom, U. (2023). Symbiosis in brachiopods and brachiopod-attached trepostome bryozoans from the Katian of Estonia. Neues Jahrbuch Für Geologie Und Paläontologie - Abhandlungen, 307(1), 41–50. https://doi.org/10.1127/njgpa/2023/1111

Winston, J. E., & Jackson, J. B. C. (2023). Shallow coral reef bryozoans of Caracol Bay, Haiti. In: Bryozoan Studies 2022 Editors, Key, M. M. Jr., Porter, J. S., & Wyse Jackson, P. N. CRC Press, London, 1, 153-168. https://doi.org/10.1201/9781003454915-17

Wood, T. S., Unger, L. E., & Rasoamihaingo, L. (2023). Bryozoan statoblasts from lake sediments in Madagascar, including two new species. European Journal of Taxonomy, 900(1), 138–147. https://doi.org/10.5852/ejt.2023.900.2307

Wyse Jackson, P. N., Key, M. M. Jr, & Reid, C. M. (2023). Skeletonisation in the stenolaemate bryozoan orders Cryptostomata (Suborder Rhabdomesina) and Trepostomata: the role of the Bryozoan Skeletal Index (BSI) as a taxonomic character. In: Bryozoan Studies 2022 Editors, Key, M. M. Jr., Porter, J. S., & Wyse Jackson, P. N. CRC Press, London, 1, 169-182. https://doi.org/10.1201/9781003454915-18

Wyse Jackson, P. N., Ernst, A., Shaikh-Horajska, M., & Murray, J. (2023). Volgia (Bryozoa, Cystoporata): a rare occurrence from the Mississippian of Ireland. In: Bryozoan Studies 2022 Editors, Key, M. M. Jr., Porter, J. S., & Wyse Jackson, P. N. CRC Press, London, 1, 183-190. https://doi.org/10.1201/9781003454915-19

Xavier, E. A., Almeida, A. C. S., Nogueira, M. M., & Vieira, L. M. (2023). Effects of substratum type and orientation on the recruitment of bryozoans in an artificial area of the Western Atlantic. Biofouling, 39(7), 748–762. https://doi.org/10.1080/08927014.2023.2262928

Yang, J., Lan, T., Zhang, X., & Smith, M. R. (2023). Protomelission is an early dasyclad alga and not a Cambrian bryozoan. Nature, 615(7952), 468–471. https://doi.org/10.1038/s41586-023-05775-5

2022

Arakawa, S. (2022). Iodictyum akaishiensis sp. Nov.: A New Miocene Phidoloporid (Bryozoa, Cheilostomata) from the Moniwa Formation, Sendai, Japan. Paleontological Research, 27(1), 25–33. https://doi.org/10.2517/PR200041

Arakawa, S. (2022). Restudy of a Miocene Bryozoan Species, Microporina articulata notoensis Sakakura, 1936 with Description of Another New Species from the Nanao Calcareous Sandstone. Paleontological Research, 27(2), 231-240. https://doi.org/10.2517/PR210018

Barroso, C. X., Salani, S., Arruda, M. O., da Silva, M. Q. M., da Silva, M. V., & Matthews-Cascon, H. (2022). THE PORIFERA, CNIDARIA, BRYOZOA, AND ECHINODERMATA COLLECTIONS OF THE UNIVERSIDADE FEDERAL DO CEARÁ: CONTRIBUTIONS TO THE MARINE BIODIVERSITY KNOWLEDGE OF NORTHEASTERN BRAZIL. Labomar. Arquivos de Ciências do Mar, 55 (1), 78-90.
http://dx.doi.org/10.32360/acmar.v54i2.44041

Baptista, L., Berning, B., Curto, M., Waeschenbach, A., Meimberg, H., Santos, A. M., & Ávila, S. P. (2022). Morphospecies and molecular diversity of ‘lace corals’: The genus Reteporella (Bryozoa: Cheilostomatida) in the central North Atlantic Azores Archipelago. BMC Ecology and Evolution, 22(1), 128. https://doi.org/10.1186/s12862-022-02080-z

Batson, P. B., Tamberg, Y., & Taylor, P. D. (2022). Composite branch construction by dual autozooidal budding modes in hornerids (Bryozoa: Cyclostomatida). Journal of Morphology283(6), 783–804. https://doi.org/10.1002/jmor.21469

Bibermair, J., Wood, T. S., Chaichana, R., & Schwaha, T. (2022). Reconstructing the neuromuscular ground pattern of phylactolaemate bryozoans: New data from the Lophopodidae. BMC Ecology and Evolution, 22(1), 118. https://doi.org/10.1186/s12862-022-02076-9

Bogdanov, E. A., Vishnyakov, A. E., & Ostrovsky, A. N. (2022). From Prokaryota to Eumetazoa: Symbiotic Associations in Fossil and Recent Bryozoans. Paleontological Journal, 56(7), 836–851. https://doi.org/10.1134/S0031030122070048

Chae, H. S., Min, B. S., Yang, H. J., & Seo, J. E. (2022). Three New Records of Family Tubuliporidae (Bryozoa: Cyclostomata) from Korea. Animal Systematics, Evolution and Diversity, 38(1), 20–25. https://doi.org/10.5635/ASED.2022.38.1.042

Denisenko, N. V. (2022). New species and new records of Reteporella (Bryozoa: Cheilostomatida) from Greenland waters. Zootaxa, 5129(4), 530–542. https://doi.org/10.11646/zootaxa.5129.4.3

Denisenko, N. V., (2022). Species richness and distribution patterns of bryozoans of the Arctic region: list of the bryozoan fauna. In: Annals of bryozoology, 7. Aspects of the history of research on bryozoans Editors, Wyse Jackson, P. N. & Spencer Jones, M. E. (International Bryozoology Association,Dublin). 783-804.

Di Martino, E. (2022). Revision of the type species of some cheilostome bryozoan genera in the collection of the Swedish Museum of Natural History. Zootaxa, 5125(2), 157–181. https://doi.org/10.11646/zootaxa.5125.2.4

Di Martino, E., & Liow, L. H. (2022). Changing allometric relationships among fossil and Recent populations in two colonial species. Evolution, 76(10), 2424–2435. https://doi.org/10.1111/evo.14598

Dutka, T. L., Fejer, A. J., Williams, T., Donnelly, D. M., & Flynn, A. J. (2022). Extent and Characteristics of a Newly Discovered Unique Bryozoan Biogenic Reef Complex. Frontiers in Marine Science, 9(2022). https://doi.org/10.3389/fmars.2022.841131

Ernst, A. (2022). Bryozoan fauna from the Kunda Stage (Darriwilian, Middle Ordovician) of Estonia and NW Russia. Bulletin of Geosciences, 97(1), 33–68. https://doi.org/10.3140/bull.geosci.1843

Ernst, A. (2022). Upper Ordovician bryozoans of Morocco. In A. W. Hunter, J. J. Álvaro, B. Lefebvre, P. Van Roy, & S. Zamora (Eds.), The Great Ordovician Biodiversification Event: Insights from the Tafilalt Biota, Morocco (p. 0). Geological Society of London. https://doi.org/10.1144/SP485-2018-71

Ernst, A., Krainer, K., & Lucas, S. G. (2022). Bryozoan fauna from the Pennsylvanian of the Sandia Mountains, New Mexico, USA. Neues Jahrbuch Für Geologie Und Paläontologie - Abhandlungen, 306(2), 97–160. https://doi.org/10.1127/njgpa/2022/1100

Ernst, A. & Carrera, M. G. (2022). A cool-water bryozoan association from the La Pola Formation (Sandbian, Ordovician) of Argentine Precordillera. Geodiversitas, 44(20), 563–601. https://doi.org/10.5252/geodiversitas2022v44a20

Ernst, A. (2022). Semicosciniid bryozoans from the Middle Devonian of Rommersheim (Eifel, Germany). PalZ, 97(4), 741–749. https://doi.org/10.1007/s12542-021-00602-6

Ernst, A. (2022). Fenestrate bryozoan fauna from the Middle Devonian of the Eifel (western Rhenish Massif, Germany). Palaeobiodiversity and Palaeoenvironments, 102(3), 521–539. https://doi.org/10.1007/s12549-022-00544-0

Ernst, A., Claussen, A. L., Seuss, B., & Wyse Jackson, P. N. (2022). Stenolaemate bryozoans from the Graham Formation, Pennsylvanian (Virgilian) at Lost Creek Lake, Texas, USA. Palaeontologia Electronica, 25(2):a15. https://doi.org/10.26879/1174

Figuerola, B., Griffiths, H. J., Krzeminska, M., Piwoni-Piorewicz, A., Iglikowska, A., & Kuklinski, P. (2023). Temperature as a likely driver shaping global patterns in mineralogical composition in bryozoans: Implications for marine calcifiers under global change. Ecography, 2023(1), e06381. https://doi.org/10.1111/ecog.06381

Flórez, P., Di Martino, E., & Ramalho, L. V. (2022). Early Miocene coral reef-associated bryozoans from Colombia. Part II: “Ascophora” Cheilostomatida. Journal of Paleontology, 96(2), 274–303. Cambridge Core. https://doi.org/10.1017/jpa.2021.94

Gilbert, P. U. P. A., Bergmann, K. D., Boekelheide, N., Tambutté, S., Mass, T., Marin, F., Adkins, J. F., Erez, J., Gilbert, B., Knutson, V., Cantine, M., Hernández, J. O., & Knoll, A. H. (n.d.). Biomineralization: Integrating mechanism and evolutionary history. Science Advances, 8(10), eabl9653. https://doi.org/10.1126/sciadv.abl9653

Gontar, V. I. (2022). Bryozoans as Biological Indicators and Their Role in Arctic Research. Paleontological Journal, 56(7), 797–807. https://doi.org/10.1134/S0031030122070061

Grischenko, A. V., Gordon, D. P., Taylor, P. D., Kuklinski, P., Denisenko, N. V., Spencer-Jones, M. E., & Ostrovsky, A. N. (2022). Taxonomy, ecology and zoogeography of the Recent species of Rhamphostomella Lorenz, 1886 and Mixtoscutella n. Gen. (Bryozoa, Cheilostomata). Zootaxa, 5131(1), 1–115. https://doi.org/10.11646/zootaxa.5131.1.1

Grischenko, A. V. (2022). New deep-water Bryozoa from the Magellan Seamounts, tropical western Pacific, with a global review of bryozoans associated with ferromanganese crusts. Progress in Oceanography, 205, 102827. https://doi.org/10.1016/j.pocean.2022.102827

Halamski, A. T., & Taylor, P. D. (2022). Angiosperm tree leaf as a bryozoan substrate: A case study from the Cretaceous and its taphonomic consequences. Lethaia, 55(1), 1–7. https://doi.org/10.18261/let.55.1.9

Harrison, G. W. M., Claussen, A. L., Schulbert, C., & Munnecke, A. (2022). Modern brackish bryostromatolites (“bryoliths”) from Zeeland (Netherlands). Palaeobiodiversity and Palaeoenvironments, 102(1), 89–101. https://doi.org/10.1007/s12549-021-00490-3

Hirose, M. (2022). New Species of Lower-Shelf to Upper-Slope Ctenostome Bryozoans from Pacific Japan, with a Family Range Extension. Zoological Science, 39(1), 87–98. https://doi.org/10.2108/zs210106

d'Hondt, J.-L. (2022). Ile de la Réunion (374) : Liste complémentaire des Bryozoaires (New data concerning the Bryozoa from the Reunion island (Indian Ocean)). Bulletin de la Societe Linnéenne de Bordeaux, 157(2/4): 272-274.

Jain, S. S., Gordon, D, P., Huang, D., Kukliński, P., & Liow, H. L. (2022). Targeted collections reveal new species and records of Bryozoa and the discovery of Pterobranchia in Singapore. Raffles Bulletin of  Zoology, 70, 257-274. https://doi.org/10.26107/RBZ-2022-0011

Jenkins, H. L., Graham, R., Porter, J. S., Vieira, L. M., de Almeida, A. C. S., Hall, A., O’Dea, A., Coppard, S. E., & Waeschenbach, A. (2022). Unprecedented frequency of mitochondrial introns in colonial bilaterians. Scientific Reports, 12(1), 10889. https://doi.org/10.1038/s41598-022-14477-3

Key, M. M. Jr., & Hendrickx, M. E. (2022). Biflustra irregulata (Cheilostomata: Membraniporidae): A tsunami debris rafted Indo-Pacific bryozoan found in the eastern Pacific Ocean. Zootaxa, 5128(3), 340–354. https://doi.org/10.11646/zootaxa.5128.3.2

Key, M. M. Jr, & Wyse Jackson, P. N. (2022). History of micro-computed tomographic three- dimensional imaging in bryozoology. In: Annals of bryozoology, 7. Aspects of the history of research on bryozoans. Ed: Wyse Jackson, P.N., & Spencer Jones, M. (International Bryozoolofy Association, Dublin): 57-72.

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