Giribet G., Edgecombe G. D. (2019) The phylogeny and evolutionary history of arthropods. Current Biology
, 29, R592–602.Gueriau P. et al.
(2016) A 365-million-year-old freshwater community reveals morphological and ecological stasis in branchiopod crustaceans. Current Biology, 26, 383–90.Harvey T. H. P., Vélez M. I., Butterfield N. J. (2012) Exceptionally preserved crustaceans from western Canada reveal a cryptic Cambrian radiation. Proceedings of the National Academy of Sciences of the USA
, 109, 1589–94.Haug С. et al.
(2014) The implications of a Silurian and other thylacocephalan crustaceans for the functional morphology and systematic affinities of the group. BMC Evolutionary Biology, 14, 159. DOI: 10.1186/s12862-014-0159-2.Haug С., Haug J. T. (2017) The presumed oldest flying insect: more likely a myriapod? PeerJ
, 5, e3402. DOI: 10.7717/peerj.3402.Haug J. T., Waloszek D., Haug C., Maas A. (2010) High-level phylogenetic analysis developmental sequences: The Cambrian †Martinssonia elongata
, †Musacaris gerdgeyeri gen. et sp. nov. and their position in early crustacean evolution. Arthropod Structure & Development, 39, 154–73.Haug J. T. et al.
(2010) Evolution of mantis shrimps (Stomatopoda, Malacostraca) in the light of new Mesozoic fossils. BMC Evolutionary Biology, 10, 290. DOI: 10.1186/1471-2148-10-290.Haug J. T. et al.
(2015) Life habits, hox genes, and affinities of a 311 million-year-old holometabolan larva. BMC Evolutionary Biology, 15, 208. DOI: 10.1186/s12862-015-0428-8.Haug J. T., Haug C., Garwood R. J. (2016) Evolution of insect wing and development – new details from Palaeozoic nymphs. Biological Reviews
, 91, 53–69.Hegna T. A., Martin M. J., Darroch S. A. F. (2017) Pyritized in situ
trilobite eggs from the Ordovician of New York (Lorraine Group): Implications for trilobite reproductive biology. Geology, 45, 199–202.Hethke M. et al. (2019) Ecological stasis in Spinicaudata (Crustacea, Branchiopoda)? Early Cretaceous clam shrimp of the Yixian Formation of north-east China occupied a broader realized ecological niche than extant members of the group. Palaeontology
, 62, 483–513.Horne D. J., Martens K. (1988) An assessment of the importance of resting eggs for the evolutionary success of Mesozoic non-marine cypridoidean Ostracoda (Crustacea). Advances in Limnology,
52, 549–61.Hughes N. C. (2007) The evolution of trilobite body patterning. Annual Review of Earth and Planetary Sciences
, 35, 401–34.Hyžny M., Müller P. (2012) The fossil record of Glypturus
Stimpson, 1866 (Crustacea, Decapoda, Axiidea, Callianassidae) revisited with notes on palaeoecology and palaeobiogegraphy. Palaeontology, 55, 967–93.Hyžny M. et al.
(2017) Comprehensive analysis and reinterpretation of Cenozoic mesofossils reveals ancient origin of the snapping claw of alpheid shrimps. Scientific Reports, 7, 4076. DOI: 10.1038/s41598-017-02603-5.Jagt J. W. M. et al.
(2015) Fossil Brachyura. Treatise on Zoology – Anatomy, Taxonomy, Biology. V. 9. Pt C–II: Decapoda: Brachyura (Pt 2). Eds. P. Castro et al. Leiden; Boston: Brill, 2015. P. 847–920.Jauvion C. et al.
2020. A new polychelidan lobster preserved with its eggs in a 165 Ma nodule. Scientific Reports, 10, 3574. DOI: 10.1038/s41598-020-60282-1.Jenner R. A., Hof C. H. J., Schram F. R. (1998) Palaeo- and archaeostomatopods (Hoplocarida, Crustacea) from the Bear Gulch Limestone, Mississippian (Namurian), of central Montana. Contributions to Zoology
, 67, 155–85.Jensen S. (1997) Trace fossils from the Lower Cambrian Mickwitzia sandstone, south-central Sweden. Fossils and Strata
, 42, 1–110.Jones W. T. et al.
(2016) The proof is in the pouch: Tealliocaris is a peracarid. Palaeodiversity, 9, 75–88.Karasawa H., Schweitzer C. E., Feldmann R. M. (2013) Phylogeny and systematics of extant and extinct lobsters. Journal of Crustacean Biology,
33, 78–123.Karim T., Westrop S. R. (2002) Taphonomy and paleoecology of Ordovician trilobite clusters, Bromide Formation, south-central Oklahoma. Palaios,
17, 394–403.Khramov A. V., Shear W. A., Mercurio R., Kopylov D. (2018) The first Permian centipeds from Russia. Acta Palaeontologica Polonica,
63, 549–55.Klompmaker A. A., Schweitzer C. E., Feldman R. M., Kowalewski M. (2013) The influence of reefs on the rise of Mesozoic marine crustaceans. Geology
, 41, 1179–82.