The geological record and phylogeny of the Myriapoda

Arthropod Structure & Development - Tập 39 Số 2-3 - Trang 174-190 - 2010
William A. Shear1, Gregory D. Edgecombe2
1Department of Biology, Hampden-Sydney College, 200 Via Sacra, Hampden-Sydney, VA 23943, USA
2Department of Palaeontology, Natural History Museum, Cromwell Road, London SW7 5BD, UK

Tóm tắt

Từ khóa


Tài liệu tham khảo

Almond, 1985, The Silurian-Devonian fossil record of the Myriapoda, Philosophical Transactions of the Royal Society of London B, 309, 227, 10.1098/rstb.1985.0082

Anderson, 1973

Anderson, 2003, An Early Devonian arthropod fauna from the Windyfield Cherts, Aberdeenshire, Scotland, Palaeontology, 46, 457, 10.1111/1475-4983.00308

Ax, 1999

Bachofen von Echt, 1942, Über die Myriapoden des Bernsteins, Palaeobiologica, 7, 394

Bäcker, 2008, A forgotten homology supporting the monophyly of Tracheata: the subcoxa of insects and myriapods re-visited, Zoologischer Anzeiger, 247, 185, 10.1016/j.jcz.2007.11.002

Bitsch, 2002, The endoskeletal structures in arthropods: cytology, morphology and evolution, Arthropod Structure & Development, 30, 159, 10.1016/S1467-8039(01)00032-9

Bitsch, 2004, Phylogenetic relationships of basal hexapods among the mandibulate arthropods: a cladistic analysis based on comparative morphological characters, Zoologica Scripta, 33, 511, 10.1111/j.0300-3256.2004.00162.x

Bonato, 2002, Parental care in Dicellophilus carniolensis (C.L. Koch, 1847): new behavioural evidence with implications for the higher phylogeny of centipedes (Chilopoda), Zoologischer Anzeiger, 241, 193, 10.1078/0044-5231-00069

Borucki, 1996, Evolution und Phylogenetisches System der Chilopoda (Mandibulata, Tracheata), Verhandlungen des naturwissenschaftlichen Vereins in Hamburg, 35, 95

Brölemann, 1930

Briggs, 1979, A giant myriapod trail from the Namurian of Arran, Scotland, Palaeontology, 22, 273

Briggs, 1984, Arthropleura trails from the Westphalian of eastern Canada, Palaeontology, 27, 843

Burke, 1973, Notes on the morphology of Acantherpestes (Myriapoda, Archipolypoda) with the description of a new species from the Pennsylvania of West Virginia, Kirtlandia, 17, 1

Burke, 1979, A new millipede genus, Myriacantherpestes, (Diplopoda, Archipolypoda) and a new species, Myriacantherpestes bradebirksi, from the English coal measures, Kirtlandia, 30, 1

Cockerell, 1917, Arthropods in Burmese amber, Psyche, 24, 40, 10.1155/1917/83242

Dohle, 1980, Sind die Myriapoden eine monophyletische Gruppe? Eine Diskussion der Verwandtschaftsbeziehungen der Antennaten, Abhandlungen des Naturwissenschaftlichen Vereins in Hamburg, 23, 45

Dohle, 1985, Phylogenetic pathways in the Chilopoda, Bijdragen tot de Dierkunde, 55, 55

Dohle, W., 1990. Some observations on morphology and affinities of Craterostigmus tasmanianus (Chilopoda), in: Minelli, A. (Ed.), Proceedings of the 7th International Congress of Myriapodology. E.J. Brill, Leiden, pp. 69–79.

Dohle, 1997, Myriapod-insect relationships as opposed to an insect-crustacean sister group relationship, 306

Dohle, W., 2001. Are the insects terrestrial crustaceans? A discussion of some new facts and arguments and the proposal of the proper name Tetraconata for the monophyletic unit Crustacea+Hexapoda, in: Deuve, T. (Ed.), Origin of the Hexapoda. Annales de la Société Entomologique de France (N.S.) 37, pp. 85–103.

Donovan, 1994, Unusual preservation of late Quaternary millipedes from Jamaica, Lethaia, 27, 355, 10.1111/j.1502-3931.1994.tb01586.x

Dove, 2004, Comparative analysis of neurogenesis in the myriapod Glomeris marginata (Diplopoda) suggests more similarities to chelicerates than to insects, Development, 130, 2161, 10.1242/dev.00442

Duncan, 1998, Three-dimensionally mineralized insects and millipedes from the Tertiary of Riversleigh, Queensland, Australia, Palaeontology, 41, 835

Dzik, 1975, Results of the Polish-Mongolian paleontological expeditions–Part VI. Spiroboloid millipedes from the Late Cretaceous of the Gobi Desert, Mongolia, Paleontologica Polonica, 33, 17

Dzik, 1981, An early Triassic millipede from Siberia and its evolutionary significance, Neues Jahrbuch der Geologie und Paläontologie Monatshefte, 7, 395, 10.1127/njgpm/1981/1981/395

Edgecombe, 2004, Morphological data, extant Myriapoda, and the myriapod stem-group, Contributions to Zoology, 73, 207, 10.1163/18759866-07303002

Edgecombe, 2010, Arthropod phylogeny: an overview from the perspectives of morphology, molecular data and the fossil record, Arthropod Structure & Development, 39, 74, 10.1016/j.asd.2009.10.002

Edgecombe, 2002, Myriapod phylogeny and the relationships of Chilopoda, Vol. III, 143

Edgecombe, 2004, Adding mitochondrial sequence data (16S rRNA and cytochrome c oxidase subunit I) to the phylogeny of centipedes (Myriapoda, Chilopoda): an analysis of morphology and four molecular loci, Journal of Zoological Systematics and Evolutionary Research, 42, 89, 10.1111/j.1439-0469.2004.00245.x

Edgecombe, G.D., Giribet, G., Wheeler, W.C., 1999. Phylogeny of Chilopoda: Combining 18S and 28S rRNA sequences and morphology, in: Melic, A., de Haro, J.J., Mendez, M., Ribera, I. (Eds.), Evolución y Filogenia de Arthropoda. Boletín de la Sociedad Entomológica Aragonesa 26, pp. 293–331.

Edgecombe, 2002, Phylogeny of Henicopidae (Chilopoda: Lithobiomorpha): a combined analysis of morphology and five molecular loci, Systematic Entomology, 27, 31, 10.1046/j.0307-6970.2001.00163.x

Edgecombe, 2009, A geophilomorph centipede (Chilopoda) from La Buzinie amber (Late Cretaceous: Cenomanian), SW France, Geodiversitas, 31, 29, 10.5252/g2009n1a3

Enghoff, 1984, Phylogeny of millipedes: a cladistic analysis. Zeitcschrift für Zoologie, Systematik und Evolutionsforschung, 22, 8, 10.1111/j.1439-0469.1984.tb00559.x

Enghoff, 1993, Anamorphosis in millipedes (Diplopoda) - the present state of knowledge, with some developmental and phylogenetic considerations, Zoological Journal of the Linnean Society, 109, 103, 10.1111/j.1096-3642.1993.tb00305.x

Fayers, 2003, A review of the palaeoenvironments and biota of the Windyfield chert. Transactions of the Royal Society of Edinburgh, Earth Sciences, 94, 325

Fayers, 2005, A hexapod from the early Devonian Windyfield Chert, Rhynie, Scotland, Palaeontology, 48, 1117, 10.1111/j.1475-4983.2005.00501.x

Gai, 2006, Myriapod monophyly and relationships among myriapod classes based on nearly complete 28S and 18S rDNA sequences, Zoological Science, 23, 1101, 10.2108/zsj.23.1101

Gai, 2008, The complete mitochondrial genome of Symphylella sp. (Myriapoda: Symphyla): extensive gene order rearrangement and evidence in favour of Progoneata, Molecular Phylogenetics and Evolution, 48, 103

Giribet, 2006, Conflict between data sets and phylogeny of centipedes: an analysis based on seven genes and morphology, Proceedings of the Royal Society B, 273, 531, 10.1098/rspb.2005.3365

Giribet, 1999, Internal phylogeny of the Chilopoda (Myriapoda, Arthropoda) using complete 18S rDNA and partial 28S rDNA sequences, Philosophical Transactions of the Royal Society of London, 354, 215, 10.1098/rstb.1999.0373

Giribet, G., Richter, S., Edgecombe, G.D., Wheeler, W.C., 2005. The position of crustaceans within Arthropoda – evidence from nine molecular loci and morphology, in: Koenemann, S., Jenner, R. (Eds.), Crustacea and Arthropod Relationships. Crustacean Issues 16, pp. 307–352.

Hahn, 1986, Zur Kenntnis von Arthropleura (Myriapoda; Ober-Karbon), Geologica et Palaeontologica, 20, 125

Hannibal, 1981, Giant millipedes of the Coal Age, The Explorer, 23, 15

Hannibal, 1984, Pill millipedes from the Coal Age, Bulletin of the Field Museum, 55, 12

Hannibal, 1987, Remains of Arthropleura, a gigantic myriapod arthropod, from the Pennsylvanian of Ohio and Pennsylvania, Kirtlandia, 50, 1

Hannibal, 1995, Modified legs (clasping appendages?) of Carboniferous euphoberiid millipedes (Diplopoda:Euphoberiida), Journal of Paleontology, 69, 932, 10.1017/S0022336000035587

Hannibal, 2000, Hexecontasoma, a new helminthomorph millipede (Hexecontasomatidae, n. fam.) from the Mazon Creek, Illinois, fauna (Carboniferous, North America), Fragmenta Faunistica, 43, 19

Hannibal, 2006, Millipedes (Diplopoda) from the Fort Sill fissures (Lower Permian) of southwestern Oklahoma: rare examples of Permian millipedes and of fossil millipedes from a Paleozoic fissure fill, Geological Society of America Abstracts with Programs, 38, 553

Hannibal, 1981, Systematics and functional morphology of oniscomorph millipedes (Arthropoda: Dipolpoda) from the Carboniferous of North America, Journal of Paleontology, 55, 730

Hannibal, 1988, Millipedes from late Paleozoic limestones at Hamilton, Kansas, Kansas Geological Society Guidebooks Series, 6, 1

Hannibal, 2005, A palaeosomatid millipede (Archipolypoda: Palaeosomatida) from the Carboniferous (Namurian A) of Silesia, Poland, Polish Journal of Entomology, 74, 205

Hannibal, 2004, A juliform millipede from the Upper Pennsylvanian (Virgilian) Bursum Formation, Carrizo Arroyo, of central New Mexico, New Mexico Museum of Natural History and Science Bulletin, 25, 211

Harvey, 2008, Sophisticated particle-feeding in a large Early Cambrian crustacean, Nature, 452, 868, 10.1038/nature06724

Harzsch, 2004, Phylogenetic comparison of serotonin-immunoreactive neurons in representatives of the Chilopoda, Diplopoda, and Chelicerata: implications for arthropod relationships, Journal of Morphology, 259, 198, 10.1002/jmor.10178

Harzsch, 2005, From variable to constant cell numbers: cellular characteristics of the arthropod nervous system argue against a sister-group relationship of Chelicerata and “Myriapoda” but favour the Mandibulata concept, Development Genes and Evolution, 215, 53, 10.1007/s00427-004-0451-z

Hembree, 2009, Neoichnology of burrowing millipedes: linking modern burrow morphology, organism behavior, and sediment properties to interpret continental ichnofossils, Palaios, 24, 425, 10.2110/palo.2008.p08-098r

Hilken, 1997, Tracheal systems in Chilopoda: a comparison under phylogenetic aspects, Entomologica Scandinavica Supplement, 51, 49

Hilken, 1994, Struktur und Homologie der Komponenten des Gnathochilarium der Chilognatha (Tracheata, Diplopoda), Verhandlungen des Naturwissenschaftlichen Vereins in Hamburg, 34, 33

Hoffman, 1963, New genera and species of Upper Paleozoic Diplopoda, Journal of Paleontology, 37

Hoffman, 1969, Myriapoda, exclusive of Insecta. R572–R606, Vol. 2

Jell, 1983, An Early Jurassic millipede from the Evergreen Formation in Queensland, Alcheringa, 7, 195, 10.1080/03115518308619618

Johnson, 1994, Nonmarine arthropod traces from the subaerial Ordovician Borrowdale Volcanic Group, English Lake District, Geological Magazine, 131, 395, 10.1017/S0016756800011146

Kadner, 2004, Neurogenesis in the chilopod Lithobius forficatus suggests more similarities to chelicerates than to insects. Development, Genes & Evolution, 214, 367

Klass, 2001, The ground plan and affinities of hexapods: recent progress and open problems, Annales de la Société entomologique de France NS, 37, 265

Kluge, N.J., 1999. Mitos en Sistemática y principios de Nomenclatura Zoológica, in: Melic, A., de Haro, J.J., Mendez, M., Ribera, I. (Eds.), Evolución y Filogenide Arthropoda. Boletín de la Sociedad Entomológica Aragonesa 26, pp. 347–331.

Koch, M., 2003. Monophyly of the Myriapoda? Reliability of current arguments, in: Hamer, M. (Ed.), Proceedings of the 12th International Congress of Myriapodology. African Invertebrates 44, pp. 137–153.

Kraus, 1974, On the morphology of Paleozoic diplopods, Symposia of the Zoological Society of London, 32, 13

Kraus, 1997, Phylogenetic relationships between higher taxa of tracheate arthropods, 295

Kraus, O., 2001. ‘Myriapoda’ and the ancestry of the Hexapoda, in: Deuve, T. (Ed.), Origin of the Hexapoda. Annales de la Société Entomologique de France, Nouvelle Série 37, pp. 105–127.

Kraus, 2005, On the structure and biology of Arthropleura species (Atelocerata, Diplopoda; Upper Carboniferous/Lower Permian), Verhandlungen des Naturwissenschaftlichen Vereins in Hamburg, 41, 5

Kraus, 2003, Fossil giants and surviving dwarfs. Arthropleurida and Pselaphognatha (Ateolocerata, Diplopoda): characters, phylogenetic relationships and construction, Verhandlungen des Naturwissenschaftlichen Vereins in Hamburg, 40, 5

Kusche, 2003, Complete subunit sequences, structure and evolution of the 6 x 6-mer hemocyanin from the common house centipede, Scutigera coleoptrata, European Journal of Biochemistry, 270, 2860, 10.1046/j.1432-1033.2003.03664.x

Loesel, 2002, Common design in a unique midline neuropil in the brains of arthropods, Arthropod Structure & Development, 31, 77, 10.1016/S1467-8039(02)00017-8

Lucas, S.G., Lerner, A.J., Hannibal, J.T., Hunt, A.P., Schneider, J.W., 2005. Trackway of a giant Arthropleura from the Upper Pennsylvanian of El Cobre Canyon, New Mexico, Geology of the Chama Basin. New Mexico Geological Society, 56th Field Conference Guidebook, pp. 279–282.

MacNaughton, 2002, First steps on land: arthropod trackways in Cambrian-Ordovician eolian sandstone, southeastern Ontario, Canada, Geology, 30, 391, 10.1130/0091-7613(2002)030<0391:FSOLAT>2.0.CO;2

Mallatt, 2006, Further use of nearly complete 28S and 18S rRNA genes to classify Ecdysozoa: 37 more arthropods and a kinorhynch, Molecular Phylogenetics and Evolution, 40, 772, 10.1016/j.ympev.2006.04.021

Mallatt, 2004, Ecdysozoan phylogeny and Bayesian inference: first use of nearly complete 28S and 18S rRNA gene sequences to classify the arthropods and their kin, Molecular Phylogenetics and Evolution, 31, 178, 10.1016/j.ympev.2003.07.013

Manton, 1964, Mandibular mechanisms and the evolution of arthropods, Philosophical Transactions of the Royal Society of London B, 247, 1, 10.1098/rstb.1964.0001

Martill, 1998, A new centipede (Arthropoda, Chilopoda) from the Crato Formation (Lower Cretaceous, Aptian) of N.E. Brazil, Neues Jahrbuch für Geologie und Paläontologie Abhlandlungen, 207, 395, 10.1127/njgpa/207/1998/395

Martino, 2009, Terrestrial arthropod Arthropleura from the Upper Carboniferous of Kentucky, Journal of Paleontology, 83, 140, 10.1666/08-093R.1

Mayer, 2009, Velvet worm development links myriapods with chelicerates, Proceedings of the Royal Society B, 276, 3571, 10.1098/rspb.2009.0950

Müller, 2006, Fine structural description of the lateral ocellus of Craterostigmus tasmanianus Pocock, 1902 (Chilopoda: Craterostigmomorpha) and phylogenetic considerations, Journal of Morphology, 267, 850, 10.1002/jmor.10444

Müller, 2006, Fine structural organization of the lateral ocelli in two species of Scolopendra (Chilopoda: Pleurostigmophora): an evolutionary evaluation, Zoomorphology, 125, 13, 10.1007/s00435-005-0009-2

Müller, 2006, Homology of lateral ocelli in the Pleurostigmophora? New evidence from the retinal fine structure in some lithobiomorph species (Chilopoda: Lithobiidae), Norwegian Journal of Entomology, 53, 165

Müller, 2007, The fine structure of the eyes of some bristly millipedes (Penicillata, Diplopoda): additional support for the homology of mandibulate ommatidia, Arthropod Structure and Development, 36, 463, 10.1016/j.asd.2007.09.002

Mundel, 1979, The centipedes (Chilopoda) of the Mazon Creek, 361

Negrisolo, 2004, The mitochondrial genome of the house centipede Scutigera and the monophyly versus paraphyly of Myriapoda, Molecular Biology and Evolution, 21, 770, 10.1093/molbev/msh078

Nguyen Duy-Jacquemin, 2004, The oldest records of Polyxenida (Myriapoda, Diplopoda): new discoveries from the Cretaceous ambers of Lebanon and France, Geodiversitas, 26, 631

Peñalver, 1998, Rubielos de Mora y Ribesalbes: dos yacimientos españoles del Neógeno con insectos fósiles, Cidaris, 13–14, 17

Pierce, 1946, Fossil arthropods of California. 5a. A crystallized millipede from volcanic rock from a well (cont.), Southern California Academy of Sciences Bulletin, 44, 1

Pierce, 1951, Fossil arthropods of California. 13. A progress report on the Rancho la Brea asphaltum studies, Southern California Academy of Sciences Bulletin, 46, 136

Pierce, W.D., 1957. Insects, in: Ladd, H.S. (Ed.), Treatise on Marine Ecology and Paleoecology, Vol. 2, Paleoecology. Geological Society of America Memoir 67, pp. 943–952.

Podsiadlowski, 2007, The complete mitochondrial genome of Scutigerella causeyae (Myriapoda: Symphyla) and the phylogenetic position of the Symphyla, Molecular Phylogenetics and Evolution, 45, 251, 10.1016/j.ympev.2007.07.017

Poinar, 1995, First description of a fossil symphylan, Scutigerella dominica sp. n. (Scutigerellidae, Symphyla) in Dominican amber, Experientia, 51, 391, 10.1007/BF01928902

Prunescu, 1965, Contribution à l'étude de l'évolution des Chilopodes. Revue Roumaine de Biologie, Zoologie, 10, 89

Racheboeuf, 2004, A new species of the diplopod Amnynilyspes (Oniscomorpha) from the Stephania lagestätte of Montceau-le-Mines, France, Journal of Paleontology, 78, 221, 10.1666/0022-3360(2004)078<0221:ANSOTD>2.0.CO;2

Regier, 2001, A phylogenetic analysis of Myriapoda (Arthropoda) using two nuclear protein-encoding genes, Zoological Journal of the Linnean Society, 132, 469, 10.1111/j.1096-3642.2001.tb02471.x

Regier, 2005, Phylogenetic analysis of Myriapoda using three nuclear protein-coding genes, Molecular Phylogenetics and Evolution, 34, 147, 10.1016/j.ympev.2004.09.005

Regier, 2008, Resolving arthropod phylogeny: exploring phylogenetic signal within 41 kb of protein-coding nuclear gene sequences, Systematic Biology, 57, 920, 10.1080/10635150802570791

Retallack, 2001, Scoyenia burrows from Ordovician paleosols of the Juniata Formation in Pennsylvania, Palaeontology, 44, 209, 10.1111/1475-4983.00177

Rota-Stabelli, 2008, A multi criterion approach for the selection of optimal outgroups in phylogeny: recovering some support for Mandibulata over Myriochelata using mitogenomics, Molecular Phylogenetics and Evolution, 48, 103, 10.1016/j.ympev.2008.03.033

Santiago-Blay, 1992, Millipedes from the Dominican amber, with the description of two new species (Diplopoda, Siphonophoridae) of Siphonophora, Annals of the Entomological Society of America, 85, 363, 10.1093/aesa/85.4.363

Scheller, 2001, First description of a fossil Pauropod Eopauropus balticus n. gen. n. sp. (Pauropoda, Pauropodidae), in Baltic amber. Mitteilungen des Geologisch-paläontologischen Instituts und Museum, Universität Hamburg, 85, 221

Scheller, 2004, Two fossil symphylan species, Scutigerella baltica n. sp., Hanseniella baltica n. sp. (Tracheata, Scutigerellidae), in Baltic amber, Stuttgarter Beiträge zur Naturkunde Serie B (Geologie und Palëontologie), 351, 1

Scholtz, 2006, The evolution of arthropod heads: reconciling morphological, developmental and palaeontological evidence, Development, Genes and Evolution, 216, 395, 10.1007/s00427-006-0085-4

Schweigert, 1997, Ein fossiler Hundertfüssler (Chilopoda, Geophilida) aus dem Nusplinger Plattenkalk (Oberjura, Südwestdeutschland), Stuttgarter Beiträge für Naturkunde B (Geologie und Paläontologie), 254, 1

Shear, 1981, Two fossil millipedes from the Dominican amber (Diplopoda: Chytodesmidae, Siphonophoridae), Myriapodologica, 8, 51

Shear, 1994, Myriapodous arthropods from the Viséan of East Kirkton, West Lothian, Scotland. Transactions of the Royal Society of Edinburgh, Earth Sciences, 84, 309

Shear, 1997, The fossil record and evolution of the Myriapoda, 211

Shear, 2008, Spinnerets in the millipede order Polydesmida, and the phylogenetic significance of spinnerets in millipedes (Diplopoda), International Journal of Myriapodology, 2, 123, 10.1163/187525408X395904

Shear, 1988, Devonobiomorpha, a new order of centipeds (Chilopoda) from the Middle Devonian of Gilboa, New York State, USA, and the phylogeny of centiped orders, American Museum Novitates, 2927, 1

Shear, 1998, Centiped legs (Arthropoda, Chilopoda, Scutigeromorpha) from the Silurian and Devonian of Britain and the Devonian of North America, American Museum Novitates, 3231, 1

Shear, 2009, Millipedes from the Grès à Voltzia, Triassic of France, with comments on Mesozoic millipedes (Diplopoda:Helminthomorpha:Eugnatha), International Journal of Myriapodology, 3, 7

Shelley, 2003, A revised, annotated, family-level classification of the Diplopoda, Arthropoda Selecta, 11, 187

Shinohara, 1970, On the phylogeny of Chilopoda, Proceedings of the Japanese Society of Systematic Zoology, 65, 35

Sierwald, 2007, Current status of the myriapod Class Diplopoda (millipedes): taxonomic diversity and phylogeny, Annual Review of Entomology, 52, 401, 10.1146/annurev.ento.52.111805.090210

Sierwald, 2003, Millipede phylogeny revisited in the light of the enigmatic order Siphoniulida, Journal of Zoological Systematics and Evolutionary Research, 41, 87, 10.1046/j.1439-0469.2003.00202.x

Stollewerk, 2006, Neurogenesis in myriapods and chelicerates and its importance for understanding arthropod relationships, Integrative and Comparative Biology, 46, 195, 10.1093/icb/icj020

Strausfeld, 1998, Crustacean - insect relationships: the use of brain characters to derive phylogeny amongst segmented invertebrates. Brain, Behavior and Evolution, 52, 186, 10.1159/000006563

Strausfeld, 2006, Arthropod phylogeny: onychophoran brain organization suggests an archaic relationship with a chelicerate stem lineage, Proceedings of the Royal Society B, 273, 1857, 10.1098/rspb.2006.3536

Ungerer, 2008, Filling the gap between identified neuroblasts and neurons in crustaceans adds new support for Tetraconata, Proceedings of the Royal Society B, 275, 369, 10.1098/rspb.2007.1391

Verhoeff, 1902, Chilopoda, 1

Verhoeff, 1928, Klasse Diplopoda I, 1

von Reumont, 2009, Can comprehensive background knowledge be incorporated into substitution models to improve phylogenetic analyses? A case study on major arthropod relationships, BMC Evolutionary Biology, 2009, 119, 10.1186/1471-2148-9-119

Willmann, 2003, Die phylogenetischen Beziehungen der Insecta: Offene Fragen und Probleme, Verhandlungen des Westdeutschern Entomologentags, 2001, 1

Wilson, 2001, First Mesozoic scutigeromorph centipede, from the Lower Cretaceous of Brazil, Palaeontology, 44, 489, 10.1111/1475-4983.00188

Wilson, 2003, A new scolopendromorph centipede (Myriapoda: Chilopoda) from the Lower Cretaceous (Aptian) of Brazil, Journal of Paleontology, 77, 73, 10.1666/0022-3360(2003)077<0073:ANSCMC>2.0.CO;2

Wilson, 2005, A new genus of archipolypodan millipede from Coseley lagerstätte, Upper Carboniferous, UK, Palaeontology, 48, 1097, 10.1111/j.1475-4983.2005.00496.x

Wilson, 2005, Zosterogrammida, a new order of millipedes from the Middle Silurian of Scotland and the Upper Carboniferous of Euramerica, Palaeontology, 48, 1101, 10.1111/j.1475-4983.2005.00498.x

Wilson, 2006, Juliformian millipedes from the Lower Devonian of Euramerica: implications for the timing of millipede cladogenesis in the Paleozoic, Journal of Paleontology, 80, 638, 10.1666/0022-3360(2006)80[638:JMFTLD]2.0.CO;2

Wilson, 2006, Aggregation behavior in juvenile millipedes from the Upper Carboniferous of Mazon Creek, Illinois, Palaeontology, 49, 733, 10.1111/j.1475-4983.2006.00567.x

Wilson, 2000, Microdecemplicida, a new order of minute Arthropleurideans (Arthropoda, Myriapoda) from the Devonian of New York State, USA. Transactions of the Royal Society of Edinburgh, Earth Sciences, 90, 351

Wilson, 2004, Morphology and taxonomy of Paleozoic millipedes (Diplopoda: Chilognatha: Archipolypoda) from Scotland, Journal of Paleontology, 78, 169, 10.1666/0022-3360(2004)078<0169:MATOPM>2.0.CO;2

Wilson, 2005, Taxonomy and trunk-ring architecture of plerurojulid millipedes (Diplopoda:Chilognatha:Pleurojulida) from the Pennsylvanian of Europe and North America, Journal of Paleontology, 79, 1105, 10.1666/0022-3360(2005)079[1105:TATAOP]2.0.CO;2

Wilson, H.M., Briggs, D.E.G., Mikulic, D.G., Klussendorf, J., 2004. Affinities of the Lower Silurian Waukesha ‘myriapod’. Geological Society of America, Abstracts with Program 36, Annual Meeting, Denver, CO, p. 542.

Wilson, 2005, New flat-backed archipolypodan millipedes from the Upper Devonian of North America, Journal of Paleontology, 79, 718, 10.1666/0022-3360(2005)079[0738:NFAMFT]2.0.CO;2

Wirkner, 2002, The circulatory system in Chilopoda: functional morphology and phylogenetic aspects, Acta Zoologica, 83, 193, 10.1046/j.1463-6395.2002.00112.x