2016~2019年:International Bryozoology Association ウェブマスター補佐・SNS担当
2016~2018年:NPO法人 UniBio Press 理事
2016~2017年:東北マリンサイエンス拠点形成事業 データマネジメント委員
2015~2018年:日本動物分類学会 渉外幹事(電子化担当)
2015~2016年:日本動物分類学会 会計監査員
2010~2016年:International Bryozoology Association 評議員
論文・レポート・報告書
Johnson, M.J., Lemer, S., Hirose, M., Decker, S.H., Schwaha T. Ecology of endolithic bryozoans: colony development, growth rates and interactions of species in the genus Immergentia. Zoological Lett 10, 23 (2024). https://doi.org/10.1186/s40851-024-00246-9
Ohashi A., Fukuoka M., Kanzaki T., Hirose M., Takada K. and Ise Y. (2024) Unveiling the predator–prey interaction between a newly discovered nudibranch and sponge with molecular evidence. Fisheries Science, 91: 275 290.
Decker, S.H., Lemer, S., Decker, S., Hirose M., Johnson, M.J., Schwaha T. Boring life: early colony formation and growth in the endolithic bryozoan genus Penetrantia Silén, 1946. Zoological Lett 10, 10 (2024). https://doi.org/10.1186/s40851-024-00234-z
Hirose M, Uyeno D (2024) First record of Phoronopsis (Phoronida) from Japan, with a description of Phoronopsis californica Hilton, 1930 from Okinawa. Biodiversity Data Journal 12: e131280. DOI: 10.3897/BDJ.12.e131280
Decker SH, Saadi AJ, Baranyi C, Hirose M, Lemer S, Sombke A, Aguilera F, Vieira LM, Smith AM, 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, 2024;14:e11276. DOI: 10.1002/ece3.11276
Schwaha T, Hirose M, Wood TS (2024) Morphology of ctenostome bryozoans: 7. Hislopia, Echinella and Timwoodiellina. Journal of Morphology 285(2) DOI: 10.1002/jmor.21678
Masato Hirose and Sota Kaneko (2023) Bryozoan dispersal using pumice rafting generated by the submarine eruption in the Ogasawara, Japan. In: M.M. Key, Jr., J.S. Porter and P.N. Wyse Jackson (eds). Bryozoan Studies 2022. CRC Press/Balkema, Boca Raton/Abingdon, pp. 41–46.
Chihiro Kubo and Masato Hirose (2023) Revision of Japanese Watersipora based on microscopic morphology and molecular data. In: M.M. Key, Jr., J.S. Porter and P.N. Wyse Jackson (eds). Bryozoan Studies 2022. CRC Press/Balkema, Boca Raton/Abingdon, pp. 65–73.
Sebastian H. Decker, Masato Hirose, Sarah Lemer, Piotr Kuklinski, Hamish G. Spencer, Abigail M. Smith & Thomas Schwaha (2023) Boring bryozoans: an investigation into the endolithic bryozoan family Penetrantiidae. Organisms Diversity & Evolution. DOI: 10.1007/s13127-023-00612-z
Ahmed J. Saadi, Julian Bibermair, Kevin M. Kocot, Nickellaus G. Roberts, Masato Hirose, Andrew Calcino, Christian Baranyi, Ratcha Chaichana, Timothy S. Wood, Thomas Schwaha. (2022) Phylogenomics reveals deep relationships and diversification within phylactolaemate bryozoans. Proceedings of the Royal Society B: Biological Sciences, 289 (1986). DOI: 10.1098/rspb.2022.1504
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. DOI: 10.2108/zs210106
Nagasawa K and Hirose M (2021) Marine fish parasite Argulus caecus (Crustacea: Branchiura: Argulidae) accidentally collected from a fixed net caught squid in northern Japan. Species Diversity 26: 289-296.
Yamaguchi, H., Hirose, M., Nakamura, M., Udagawa, S., Oguchi, K., Shinji, J., Kohtsuka, H., and Miura, T. (2021) Developmental Process of a Heterozooid: Avicularium Formation in a Bryozoan, Bugulina californica. Zoological Science, 38 (3): 203-212. DOI: 10.2108/zs200143
Schwaha T.F. and Hirose M. (2020) Morphology of Stephanella hina (Bryozoa, Phylactolaemata): common phylactolaemate and unexpected, unique characters. Zoological Letters, 6, 11. DOI: 10.1186/s40851-020-00165-5
Hirose M., Gordon D.P. and d’Hondt J-L. (2020) New seriated Amathia species in Japan, with a redescription of A. acervata Lamouroux, 1824 (Bryozoa: Ctenostomata). Zootaxa, 4742(2): 311–331.
Hirose M., Ide A. and Shirai K. (2020) The growth of Celleporina attenuata estimated based on the oxygen isotopic compositions and microfocus X-ray CT imaging analysis. In: K. Zagorsek and P.W. Jackson (eds) Bryozoan studies 2019. Czech Geological Society, Prague 2019, 69–82.
Orr RJS, Haugen MN, Berning B, Bock P, Cumming RL, Florence WK, Hirose M, Di Martino E, Ramsfjell MH, Sannum MM, Smith AM, Vieira LM, Waeschenbach A, Liow LH. (2019) A genome-skimmed phylogeny of a widespread bryozoan family, Adeonidae. BMC Evolutionary Biology 19: 235. https://doi.org/10.1186/s12862-019-1563-4
Hirose M. and Sakai S. (2019) Carbon and oxygen isotopic compositions in lepralioid and umbonuloid frontal shields of two adeonid bryozoans from southwestern Japan. In: R. Schmidt, C.M. Reid, D.P. Gordon, G. Walker-Smith, S. Martin and I. Percival (eds) Bryozoan Studies 2016. Memoirs of the Australasian Association of Palaeontologists, vol. 52, 77-84.
小木曽正造・広瀬雅人・東出幸真・又多政博(2019)能登半島沿岸に生息するスズメガイダマシ属(腕足動物門,スズメガイダマシ科)の2種について Notes on the two species of the genus Discradisca (Brachiopoda, Discinidae) inhabiting the coast of Noto Peninsula, Sea of Japan.のと海洋ふれあいセンター研究報告,25: 1-8.
Grischenko A.V., Hirose M., Schwaha T. and Chernyshev A.V. (2019) First record of an abyssal and hadal bryozoan fauna from the Kuril-Kamchatka Trench. Progress in Oceanography 176 (2019), 102130.
Ko E-J., Gim J-S., Hong S., Jo H., Kim J.Y., Hirose M., Won D.H., Kim H-W. and Joo G-J. (2019) Distribution and growth of non-native bryozoan Pectinatella magnifica (Leidy, 1851) in four large rivers in South Korea. Aquatic Invasions (2019), 14(2): 384–396.
Hirose M. and Kawamura T. (2017) Distribution and seasonality of sessile organisms on settlement panels submerged in Otsuchi Bay. Coastal Marine Science, 40 (2): 66–81.
Hirose M. (2017) Diversity of Freshwater and Marine Bryozoans in Japan. In: Motokawa M. and Kajihara H. (Eds), Species Diversity of Animals in Japan. 629–649. Springer Japan. http://link.springer.com/book/10.1007%2F978-4-431-56432-4
Schwaha T., Hirose M. and Wanninger A. (2016) The life of the freshwater bryozoan Stephanella hina (Bryozoa, Phylactolaemata) – a crucial key to elucidating bryozoan evolution. Zoological Letters, (2016) 2:25. DOI: 10.1186/s40851-016-0060-5
Hirose M (2016) Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters. European Journal of Taxonomy, 203: 1–41.
Zagorsek K, Takashima R, and Hirose M (2015) Palaeoenvironment of a monospecific association of a new bryozoan species, Schizoretepora tamagawensis sp.n. (Phidoloporidae, Bryozoa), from the Miocene Tanosawa Formation, Northern Japan. Neues Jahrbuch für Geologie und Paläontologie Abhandlungen, 275/1: 115–123.
Hirose M, Fukiage R, Katoh T, and Kajihara H (2014) Description and molecular phylogeny of a new species of Phoronis(Phoronida) from Japan, with a redescription of topotypes of P. ijimai Oka, 1897. ZooKeys, 398: 1–31.
小木曽正造,又多政博,幸塚久典,広瀬雅人(2014)『石川県における腕足動物スゲガサチョウチンの初記録 A first record of Discradisca sparselineata (Brachiopoda: Discinidae) from Ishikawa Prefecture, Sea of Japan』 のと海洋ふれあいセンター研究報告 第20号, 11–16.
Hirose M (2012) Revision of the genus Buchneria (Bryozoa, Cheilostomata) from Japan. ZooKeys, 241: 1–19.
Dick MH, Hirose M, and Mawatari SF (2012) Molecular Distance and Morphological Divergence in Cauloramphus (Cheilostomata: Calloporidae). In: Bryozoan Studies 2010, Ernst A, Schaefer P, and Scholz J (Eds), Lecture Notes in Earth System Sciences 143: 29–44.
Hirose M, Mawatari SF, and Scholz J (2012) Distribution and Diversity of Erect Bryozoans Along the Pacific Coast of Japan. In: Bryozoan Studies 2010, Ernst A, Schaefer P, and Scholz J (Eds), Lecture Notes in Earth System Sciences 143: 121–136.
Hirose M, Fukiage R and Kajihara H (2011) First Record of Phoronis psammophila Cori, 1889 (Phoronida) from Japan. Biogeography, 13: 105–110.
Hirose M (2011) Orientation and righting behavior of the sand-dwelling bryozoan Conescharellina catella Canu & Bassler, 1929. Invertebrate Biology, 130: 282–290.
Hirose M and Mawatari SF (2011) Freshwater Bryozoa of Lake Biwa, Japan. Species Diversity, 16: 1–37.
Hirose M, Dick MH, and Mawatari SF (2011) Are Plumatellid Statoblasts in Freshwater Bryozoans Phylogenetically Informative? Zoological Science, 28: 318–326.
Hirose M and Mawatari SF (2011) Freshwater Bryozoa of Okinawa, Japan, with descriptions of Rumarcanella gen nov. (Phylactolaemata: Plumatellidae) and two new species. Zootaxa, 2732: 1–19.
Hirose M, Dick MH, and Mawatari SF (2008) Molecular Phylogenetic Analysis of Phylactolaemate Bryozoans Based on Mitochondrial Gene Sequences. In: Bryozoan Studies 2007, Hageman SJ, Key Jr. MM, Winston JE (Eds), Virginia Museum of Naturl History Special Publication Number 15: 65–74.
Hirose M, Mawatari SF (2007) Freshwater Bryozoa of Tonle Sap, Cambodia., Zoological Science, 24: 630–631.
広瀬雅人, 池澤広美, 兼子尚知, 馬渡峻輔(2006)『茨城県の淡水コケムシ―分布と水質― Distribution of Freshwater Bryozoans in Ibaraki Prefecture, Central Japan, with Reference to Water Quality』,茨城県自然博物館研究報告 9, 31–46.
Hirose, M. and Endo, K. (2021) Phylum Brachiopoda. In: Schierwater B. and DeSalle R. (eds) Textbook: Invertebrate Zoology - A Tree of Life Approach. CRC Press, Boca Raton, 329-340.
加戸隆介, 奥村誠一, 広瀬雅人, 三宅裕志(2021)三陸の海の無脊椎動物,恒星社厚生閣,278 pp.
広瀬雅人(2021) 『紐形動物・苔虫動物ほか ヒモムシ、コケムシなどのなかま』 ,「小学館の図鑑NEO 深海生物 DVDつき」 藤原義弘(監)(分担・指導執筆),株式会社小学館, p. 166-167.
広瀬雅人(2020) 『苔虫動物門』 ,「動物の事典」 末光 隆志(総編集)(分担執筆),朝倉書店
広瀬雅人(2020)『コケムシの多様な形と生き方』生物工学,第98巻,第5号,270-273.
広瀬雅人(2018)『腕足・箒虫・苔虫動物』 ,「動物学の百科事典」公益社団法人日本動物学会 (編) (分担執筆),丸善出版株式会社, p. 70–71.
広瀬雅人(2017) 『第6章 コケムシ類』 ,「新・付着生物研究法 ー主要な付着生物の種類査定ー」日本付着生物学会 編 (分担執筆), 株式会社恒星社厚生閣, p. 103–141.
Hirose M., and Kawamura T. (2016) Sessile organisms in Otsuchi Bay and Matsushima Bay after the Great East Japan Earthquake and Tsunami. In: Kogure K., Hirose M., Kitazato H., and Kijima A. (Eds), Marine ecosystems after Great East Japan Earthquake in 2011. Our knowledge acquired by TEAMS. pp. 71–72. Tokai University Press, Kanagawa.
Bunnavit Pangsuk, Waranya Sonkam, Masato Hirose, and Sumaiit Putchakarn (2016) Marine Bryozoans from Saket Island, Suchada Beach and Samet Islands, Rayong, Thailand. In: Proceedings of 54th Kasetsart University Annual Conference: Plants, Animals, Veterinary Medicine, Fisheries, Agricultural Extension and Home Economics. pp. 947–957. Kasetsart University, Bangkok.
広瀬 雅人 (2015)『生き物図鑑 コケムシ』メーユ通信 No. 2, p. 2.
広瀬雅人(2014)『アユミコケムシ』 「レッドデータブック2014 7.その他無脊椎動物(クモ形類・甲殻類等)―日本の絶滅のおそれのある野生生物―」環境省 編 (分担執筆), 株式会社ぎょうせい, p. 78.
Ishimura T, Dick MH, Takashima R, Hirose M, Gautam P, Nishi H and Tsunogai U (2008) Experimental Study of Use of the Stable Isotopic Composition of Calcareous Microfossils in Shallow Marine Sediments to Reconstruct Paleoenvironment, and a Comparison with the MART Index. In: Proceedings of the International Symposium Organized by 21st Century Center of Excellence on Neo-Science of Natural History, Hokkaido University, 109–114.
Scholz J, Mawatari SF and Hirose M (2008)The Bryozoan diversity mystery: Why do we have about 1000 species in Japanese waters? In: Proceedings of the International Symposium Organized by 21st Century Center of Excellence on Neo-Science of Natural History, Hokkaido University, 129–135.
Dick MH, Hirose M, Takashima R, Ishimura T, Nishi H and Mawatari SF (2008) Application of MART Analysis to Infer Paleoseasonality in a Pleistocene Shallow Marine Benthic Environment. In: Proceedings of the International Symposium Organized by 21st Century Center of Excellence on Neo-Science of Natural History, Hokkaido University, 93–99.