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477 results for “Myriapoda”
Map 11 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 11. Distribution of Pectiniunguis kraussi Shear & Peck, 1992 in the Galápagos archipelago.
Map 2 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 2. Distribution of Lamyctes coeculus Brölemann, 1889 in the Galápagos archipelago.
Map 1 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 1. Distribution of Hanseniella caldaria (Hansen, 1903) in the Galápagos archipelago.
Map 5 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 5. Distribution of Cryptops beebei Chamberlin, 1924 in the Galápagos archipelago.
Map 16 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 16. Distribution of Agenodesmus nullus Shear & Peck, 1987 in the Galápagos archipelago.
Map 4 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 4. Distribution of Scolopendra galapagoensis Brölemann, 1889 in the Galápagos archipelago.
Map 9 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 9. Distribution of Nannopodellus purpurescens Chamberlin, 1924 in the Galápagos archipelago.
Map 10 in The Myriapoda of the Galápagos Archipelago, Ecuador (Chilopoda, Diplopoda, Symphyla)
Map 10. Distribution of Pectiniunguis albemarlensis Chamberlin, 1914 in the Galápagos archipelago.
Linked collectors and determiners for: Re-curation of the Myriapoda collection in the Lyman Entomological Museum.
Natural history specimen data linked to collectors and determiners held within, "Re-curation of the Myriapoda collection in the Lyman Entomological Museum". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/282f4a0d-94cd-48e4-b560-4913885d5c8e">https://bionomia.net/dataset/282f4a0d-94cd-48e4-b560-4913885d5c8e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/282f4a0d-94cd-48e4-b560-4913885d5c8e">https://gbif.org/dataset/282f4a0d-94cd-48e4-b560-4913885d5c8e</a>. Formatted as a Frictionless Data package.
FIGURE 98 in A new schendylid centipede (Myriapoda: Chilopoda: Geophilomorpha) from the Bolivian Amazon Forest
FIGURE 98. Type locality of Schendylops grismadoi sp. nov., in the Amazon forest of Bolivia.
Figure 9 from: Spelda J, Reip H, Oliveira Biener U, Melzer R (2011) Barcoding Fauna Bavarica: Myriapoda – a contribution to DNA sequence-based identifications of centipedes and millipedes (Chilopoda, Diplopoda). ZooKeys 156: 123-139. https://doi.org/10.3897/zookeys.156.2176
Figure 9 - Neighbour-joining tree of COI sequence divergences (K2P model) of studied Julida. Note well-supported COI groups for each species allowing for sequence-based species identification. Numbers above and below branches show bootstrap values of NJ analysis, branch length indicates sequence divergence in %.
Figure 8 from: Spelda J, Reip H, Oliveira Biener U, Melzer R (2011) Barcoding Fauna Bavarica: Myriapoda – a contribution to DNA sequence-based identifications of centipedes and millipedes (Chilopoda, Diplopoda). ZooKeys 156: 123-139. https://doi.org/10.3897/zookeys.156.2176
Figure 8 - Neighbour-joining tree of COI sequence divergences (K2P model) of studied Polyxenida, Polydesmida and Glomerida. Solid circles: examples of excellent resolution of very close species of the genus Polydesmus. Numbers above and below branches show bootstrap values of NJ analysis, branch length indicates sequence divergence in %.
Figure 11 from: Spelda J, Reip H, Oliveira Biener U, Melzer R (2011) Barcoding Fauna Bavarica: Myriapoda – a contribution to DNA sequence-based identifications of centipedes and millipedes (Chilopoda, Diplopoda). ZooKeys 156: 123-139. https://doi.org/10.3897/zookeys.156.2176
Figure 11 - Neighbour-joining tree of COI sequence divergences (K2P model) of studied Chilopoda. Asterisks: Deep divergences within Lithobius tricuspis and Lithobius mutabilis suggesting cryptic speciation. Numbers above and below branches show bootstrap values of neighbour-joining analysis, branch length indicates sequence divergence in %.
Figure 7 from: Spelda J, Reip H, Oliveira Biener U, Melzer R (2011) Barcoding Fauna Bavarica: Myriapoda – a contribution to DNA sequence-based identifications of centipedes and millipedes (Chilopoda, Diplopoda). ZooKeys 156: 123-139. https://doi.org/10.3897/zookeys.156.2176
Figure 7 - Complete neighbour-joining tree of COI sequence divergences (K2P model) of studied myriapod orders; barcoded terminal taxa and clades above their basal nodes omitted. This tree serves for orientation in the detailed trees given in Figs 8–11.
Figure 1 from: Spelda J, Reip H, Oliveira Biener U, Melzer R (2011) Barcoding Fauna Bavarica: Myriapoda – a contribution to DNA sequence-based identifications of centipedes and millipedes (Chilopoda, Diplopoda). ZooKeys 156: 123-139. https://doi.org/10.3897/zookeys.156.2176
Figure 1 - Map of sampled areas (dots). For checks of intraspecific variability of COI sequences, localities in Bavaria, but also elsewhere within the species' areas of distribution, have been sampled and analyzed (sampling data from November 2008 to November 2010; a few specimens from northern Spain omitted).
Figure 2 from: Spelda J, Reip H, Oliveira Biener U, Melzer R (2011) Barcoding Fauna Bavarica: Myriapoda – a contribution to DNA sequence-based identifications of centipedes and millipedes (Chilopoda, Diplopoda). ZooKeys 156: 123-139. https://doi.org/10.3897/zookeys.156.2176
Figure 2 - Some Bavarian myriapods for which barcodes are now available. A. Glomeris pustulata Latreille, 1804. B. Polydesmus helveticus Verhoeff, 1894. C. Cylindroiulus boleti (C. L. Koch, 1847). D. Unciger foetidus (C. L. Koch, 1838). E. Haasea flavescens (Latzel, 1884). F. Atractosoma meridionale Fanzago, 1876. G. Cryptops parisi Brölemann, 1920. H. Henia vesuviana (Newport, 1845). Photos: J. Spelda.
Figure 10 from: Spelda J, Reip H, Oliveira Biener U, Melzer R (2011) Barcoding Fauna Bavarica: Myriapoda – a contribution to DNA sequence-based identifications of centipedes and millipedes (Chilopoda, Diplopoda). ZooKeys 156: 123-139. https://doi.org/10.3897/zookeys.156.2176
Figure 10 - Neighbour-joining tree of COI sequence divergences (K2P model) of studied Chordeumatida. Asterisk: deep barcoding divergence in Chordeuma silvestre; solid squares: polyphyly of genus Ochogona; arrows: low sequence divergences in the genera Craspedosoma, Listrocheiritium and Rhymogona. Numbers above and below branches show bootstrap values of NJ analysis, branch length indicates sequence divergence in %.
Figures 1-7 from: Scheller U (2011) Notes on Pauropoda (Myriapoda) from U.S.A. with descriptions of two new species. ZooKeys 115: 19-26. https://doi.org/10.3897/zookeys.115.1190
Figures 1-7 - Kionopauropus alyeskaensis sp. n., holotype ad. 9 (♀) 1 head, median and right part, tergal view 2 right antenna, inner view 3 T3 4 T5 5 seta on trochanter of leg 9 6 tarsus of leg 9 7 pygidium, sternal view. Scale bars: a: 4; b: 1, 3, 6; c: 2; d: 5; e: 7.
Figures 8-17 from: Scheller U (2011) Notes on Pauropoda (Myriapoda) from U.S.A. with descriptions of two new species. ZooKeys 115: 19-26. https://doi.org/10.3897/zookeys.115.1190
Figures 8-17 - Eurypauropus arcuatus sp. n., holotype ad. 9 (♀) 8 right antenna, sternal view 9 collum segment, median and left part, sternal view 10 tergite II, left posterior corner with large setose and small crater-like protuberances, lateral view 11 tergite I, central part, large setose and small crater-like protuberances, tergal view 12 T1 13 T3 14 T5 15 seta on trochanter of leg 9 16 tarsus of leg 9 17 pygidium, sternal view. Scale bars: a: 8-10, 12-15; b: 11; c: 16, 17.
Figure 1 from: Vilisics F, Bogyó D, Sattler T, Moretti M (2012) Occurrence and assemblage composition of millipedes (Myriapoda, Diplopoda) and terrestrial isopods (Crustacea, Isopoda, Oniscidea) in urban areas of Switzerland. ZooKeys 176: 199-214. https://doi.org/10.3897/zookeys.176.2153
Figure 1 - Abundances of isopods and millipedes in Zurich, Lucerne and Lugano in logarithmic scale. Dashed line separates isopods (on the left) from millipedes. Black bars represent abundances, white circles show the species' incidences per all sites per city.
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OpenNeuro
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