References on Laqueus
updated on 4 April 2024 Adachi K., Kuramochi T., Kimura K. & S. Kumura, 2013. First extensive examination of genome size in Phylum Brachiopoda (lamp shells) collected from Japan. Journal of Shellfish Research, 32 (2), 539-541. Alexander R. R., 1990. Mechanical strength of shells of selected extant articulate brachiopods: implications for paleozoic morphologic trends. Historical Biology, 3, 169-188. Alvarez F., Emig C. C. & J. Tréguier, 2017. Brachiopodes actuels: historique et révision de la collection D.-P. Œhlert (Laval) ; brachiopodes des côtes françaises métropolitaines. - Sciences etc, Annales des collections de Sciences et techniques du Musée des Sciences de Laval, -et-Bulletin de la Société des Sciences naturelles de l'Ouest de la France, hors-série 1, 386 p. (2016). Carnets de Géologie, CG2017_B02, 386 p. Baldwin A., 2007. Brachiopods (Phylum Brachiopoda) of British Columbia. - 2 p. Belato F.A. et al., 2019. Newly discovered occurrences and gene tree of the extracellular goblins and linker chains from the giant hexagonal bilayer hemoglobin in Metazoans. Genome Biology and Evolution, 11 (3), 597-612. Bernard F. R., 1972. The living Brachiopoda of British Columbia. Syesis, 5, 73-82. Bitner M. A. & M. Romanin, 2018. Recent brachiopods collected during the ZhongSha 2015 expedition to the South China Sea, West Pacific. Marine Biology Research, 14 (6), 551-564. Brand U., Logan A., Hiller N. & J. Richardson, 2003. Geochemistry of modern brachiopods: applications and implications for oceanography and paleoceanography. Chemical Geology, 198, 305-334. Brand U., Azmy K., Griesshaber E., Bitner M.A., Logan A., Zuschin M., Ruggiero, 2015. E., & Colin P.L. - Carbon isotope composition in modern brachiopod calcite: A case of equilibrium with seawater? Chemical Geology, 411, 81-96. Buening N., 1994. El Niño events and growth rates as indicated by stable isotopes in extant brachiopods. Geol. Soc. Amer., Abstracts (Boulder) 26(7):A227. Buening N. & H. J. Spero, 1996. Oxygen- and carbon-isotope analyses of the articulate brachiopod Laqueus californianus: a recorder of environmental changes in the subeuphotic zone. Mar. Biol., 127, 105-114. Cadien D. B. & L. L. Lovell L. L. & K. L. Barwick, Eds, 2018. A taxonomic listing of benthic macro- and megainvertebrates. www.scamit.org. 12th ed., 167 p. Carpenter S. J. & K. C. Lohmann, 1995. d18O and d13C values of modern brachiopod shells. Geochim. Cosmoschim. Acta, 58 (18), 3749-3764. Chang A., Schomburg D. & Schomburg I., 2009. Class 1 Oxidoreductases. Springer Handbook of Enzymes, 2nd ed, vol. 27, 821 p. Springer Handbook of Enzymes, 2nd ed, vol. 27, 821 p. Chuang S. H., 1983. Brachiopoda. In: Reproductive biology of invertebrates, Eds Adiyodi K. G. & R. G. Adiyodi, Wiley, New-York, vol. 2, 517-530. Clarke F. W. & W. C. Wheeler, 1915. The composition of brachiopod shells. Proc. Nat. Acad. Sci. Washington, 1, 262-266. Cohen B. L., Gawthrop A. B. & T. Cavalier-Smith, 1998. Molecular phylogeny of brachiopods and phoronids based on nuclear-encoded small subunit ribosomal RNA gene sequences. Philosophical Transactions of the Royal Society, B 353, 2039-2061. Collins M. J., 1986. Post mortality strength loss in shells of the Recent articulate brachiopod Terebratulina retusa (L.) from the west coast of Scotland. In: les Brachiopodes fossiles et actuels, Racheboeuf P. R. & C. Emig Eds, Actes du 1er Congrès international sur les Brachiopodes, Brest, 1986. Biostratigr. Paléozoïque, 4, 209-218. Collins M. J., Curry G. B., Quinn R., Muyzer G., Zomerdijk T. & P. Westbroek, 1988. Sero-Taxonomy of skeletal macromolecules in living Terebratulid brachiopods. Historical Biology, 1, 207-224. Cooper G. A., 1957. Tertiary and Pleistocene brachiopods of Okinawa, Ryukyu Islands. Geological Survey Professional Paper, 314-A, 1-20, 5 pl. Cooper G. A., 1969. Generic characters of brachiopods. Proc. N. Amer. Paleont. Convention, part C, 194-263. Costa-Paiva E. M., Schrago C. G. & K. M. Halanych, 2017. Broad phylogenetic occurrence of the oxygen-binding hemerythrins in Bilaterians. Genome Biology and Evolution, 9 (10), 2580-2591. Curry G. B., Quinn R., Collins M. J., Endo K., Ewing S., Muyzer G. & P.Westbroek, 1991. Immunological responses from brachiopod skeletal macromolecules; a new technique for assessing taxonomic relationships using shells. Lethaia, 24, 399-407. Cusack M., Chung P., Zhu W. & Endo K., 2018. Tuning of Calcite Crystallographic Orientation to Support Brachiopod Lophophore. Advanced Engineering Materials, 1800191, 1-6. Dall W. H., 1870. A revision of the Terebratulidæ and Lingulidæ, with remarks and descriptions of some Recent forms. Amer. J. Conchol., 6 (1), 88-168, pl. 6-8 Dall W. H., 1895. Scientific results of explorations by the U. S. Fish Commission steamer Albatross. 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Part II. p. 75-182, Pl. 14-25(1887). Part III. p. 183-248, Pl. 26-30 (1888). Trans. linn. Soc. London, (2)4 (Zool.), 1-248, Pl. 1-30. Davidson T., 1886. On a living spinose Rhynchonella from Japan. Ann. Mag. nat. Hist., (5) 17, 1-3. Dellinger M. et al., 2018. The Li isotope composition of marine biogenic carbonates: Patterns and mechanisms. Geochimica et Cosmochimica Acta, 236, 315-335. Elliott G. F., 1953. Brachial development and evolution in terebratelloid brachiopods. Biol. Rew., Cambridge phil. Soc., 28 (3), 261-279. Emig C. C., 1990. Examples of post-mortality alteration in Recent brachipod shells and (paleo) ecological consequences. Mar. Biol., 104, 233-238. Endo K., 1987. Life habit and relative growth of some laqaueid brachiopods from Japan. Trans. Proc. palaeont. Soc. Japan, 147, 180-194. Endo K., 2001. The phylogenetic position of brachiopods inferred from mitochondrial gene orders. Proc. Millennium Brachiopod congr., in press Endo K. & G. B. Curry, 1991. 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Pinnotheres laquei Sakai (Decapoda: Pinnotheridae), a tiny crab commensal within the brachiopod Laqueus rubellus (Sowerby) (Terebratulida: Laqueidae) Journal of Paleontology, 70 (2), 303-311 Fraser C. M., 1932. A comparison of the marine fauna of the Nanaimo region with that of the San Juan Archipelago. Trans. Roy. Soc. Can., (3) 26 (Sect. 5), 49-70. Gasbarro R., Wan D. & Tunnicliffe V., 2018. Composition and functional diversity of macrofaunal assemblages on vertical walls of a deep northeast Pacific fjord. Marine Ecology Progress Series, 597, 47-64. Gilmour T. H. J., 1978. Ciliation and function of the food-collecting and waste-rejecting organs of lophophorates. Can. J. Zool., 56 (10), 2142-2155. Gilmour T. H. J., 1981. Food-collecting and waste-rejecting mechanisms in Glottidia pyramidata and the persistence of lingulacean brachiopods in the fossil record. Can. J. Zool., 59 (8), 1539-1547. Halanych K. M. & Kocot K. M., 2014. Repurposed transcriptomic data facilitate discovery of innate immunity toll-like receptor (TLR) genes across Lophotrochozoa. Biological Bulletin, 227 (2), 201-209. Hammen C. S. & R. C. Bullock, 1991. Opine oxidoreductases in brachiopds, bryozoans, phoronids and molluscs. Biochem. System. Ecol., 19 (4), 263-269. Harper E.M., 2011. What do we really known about predation on modern rhynchonelliforms? Memoirs of the Association of Australasian Palaeontologists, 41, 45-57. Hatai K., 1936. Remarks on the loop of certain brachiopoda. Saito Mus. Res. Bull., 10, 219-229. Hatai K., 1936. A preliminary note on the Tertiary brachiopod fauna of Japan. Proc. Imp. Acad., 12, 100-102. Hatai K., 1936. A list of the Brachiopoda dredged by the Hukui-Maru from Wakasa Bay, Hukui Prefecture, Japon. Venus, 6 (3), 146-154, Pl. 5. Hatai K., 1937. Miscellaneous notes on some Recent Brachiopoda. Bull. biogeogr. Soc. Japan, 7 (14), 325-327. Hatai K., 1940. The Cenozoic brachiopoda of Japan. Sci. Rep. 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