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477 results for “Myriapoda”
Figure 2 from: Karam-Gemael M, Decker P, Stoev P, Marques MI, Chagas Jr A (2020) Conservation of terrestrial invertebrates: a review of IUCN and regional Red Lists for Myriapoda. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 221-229. https://doi.org/10.3897/zookeys.930.48943
Figure 2 Countries included in this study. In orange, countries consulted that have their own local lists and myriapods are listed: Brazil, Bulgaria, Czech Republic, Finland, Germany, Greece, Norway, Slovenia, Russia, Sweden, UK. In green, countries consulted that have their own local lists, but there are not myriapods listed: Albania, Argentina, Australia, Austria, Belgium, Bolivia, Canada, Chile, Colombia, Cuba, Dominican Republic, Ecuador, Estonia, France, French Guiana, Guatemala, Guiana, India, Italy, Ireland, Mexico, Madagascar, Mongolia, Netherlands, Peru, Republic of Korea, South Africa, Spain, Sri Lanka, Suriname, Switzerland, Taiwan, Uganda, Uruguay, USA, Venezuela, Vietnam.
Supplementary material 1 from: Karam-Gemael M, Decker P, Stoev P, Marques MI, Chagas Jr A (2020) Conservation of terrestrial invertebrates: a review of IUCN and regional Red Lists for Myriapoda. In: Korsós Z, Dányi L (Eds) Proceedings of the 18th International Congress of Myriapodology, Budapest, Hungary. ZooKeys 930: 221-229. https://doi.org/10.3897/zookeys.930.48943
Worlwide Myriapoda assessments
FIGURE 14. Tetrarthrosoma malickyi and T in Millipedes of Cyprus (Myriapoda: Diplopoda)
FIGURE 14. Tetrarthrosoma malickyi and T. syriacum, distribution in Cyprus.
FIGURE 13. Melaphe cypria and M in Millipedes of Cyprus (Myriapoda: Diplopoda)
FIGURE 13. Melaphe cypria and M. vestita, distribution in Cyprus.
FIGURE 12 in Millipedes of Cyprus (Myriapoda: Diplopoda)
FIGURE 12. Anamastigona sp. 1 and A. sp. 2, distribution in Cyprus.
FIGURE 7 in Millipedes of Cyprus (Myriapoda: Diplopoda)
FIGURE 7. Pachyiulus flavipes, distribution in Cyprus.
FIGURES 8–9 in Millipedes of Cyprus (Myriapoda: Diplopoda)
FIGURES 8–9. Gonosterna, anterior views of Eurygyrus asiaeminoris (8) and E. rufolineatus (9).
FIGURE 6 in Millipedes of Cyprus (Myriapoda: Diplopoda)
FIGURE 6. Megaphyllum uncinatum, distribution in Cyprus.
FIGURE 1 in Millipedes of Cyprus (Myriapoda: Diplopoda)
FIGURE 1. Polyxenus lagurus, Typhloglomeris martensi and Dolistenus savii, distribution in Cyprus.
FIGURE 1 in A species checklist of the millipedes (Myriapoda, Diplopoda) of India
FIGURE 1. Progress in studies on the Indian millipede fauna per decade since 1870.
FIGURES 11–12 in Scolopendromorpha of New Guinea and adjacent islands (Myriapoda, Chilopoda)
FIGURES 11–12. Otostigmus (O.) astenus (Kohlrausch, 1881).
FIGURES 5–6. Scolopocryptops melanostoma Newport, 1845 in Scolopendromorpha of New Guinea and adjacent islands (Myriapoda, Chilopoda)
FIGURES 5–6. Scolopocryptops melanostoma Newport, 1845.
FIGURES 27–32 in Scolopendromorpha of New Guinea and adjacent islands (Myriapoda, Chilopoda)
FIGURES 27–32. Ethmostigmus rubripes platycephalus (Newport, 1845).
Fig. 1 in Hidden in plain sight: six millipede species (Myriapoda: Diplopoda) new for the fauna of Switzerland
Fig. 1. Cylindroiulus britannicus (Verhoeff, 1891). (A) Dissected adult male from Basel-Stadt (NMB-699g). Scale bar 2 mm. (B) Gonopod of specimen from Liestal (NMB-699a) in lateral view. Scale bar 0.1 mm. Abbreviations: m, mesomerite; p, promerite; pc, lateral rim of paracoxite; s, solenomerite.
figure 11 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 11 Canonical variate analysis (cva) of differences in opisthomere shape between males with different mating status (bars: grey – mated males; white – non-mated males).
Supplementary material 1 from: Karam-Gemael M, Izzo T, Chagas-Jr A (2018) Why be red listed? Threatened Myriapoda species in Brazil with implications for their conservation. In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 255-269. https://doi.org/10.3897/zookeys.741.21971
Myriapoda threatened species geographic coordinates :
Figure 3 from: Karam-Gemael M, Izzo T, Chagas-Jr A (2018) Why be red listed? Threatened Myriapoda species in Brazil with implications for their conservation. In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 255-269. https://doi.org/10.3897/zookeys.741.21971
Figure 3 Distribution of the Brazilian Myriapoda threatened species. The color of the legend represents the IUCN threatened category: red (Critically endangered – CR), orange (Endangered – EN), and yellow (Vulnerable – VU). Species in blue are only known from subterranean habitats. Species with an asterisk (*) occur inside PAs.
Figure 2 from: Moritz L, Wesener T, Koch M (2018) An apparently non-swinging tentorium in the Diplopoda (Myriapoda): comparative morphology of the tentorial complex in giant pill-millipedes (Sphaerotheriida). In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 77-91. https://doi.org/10.3897/zookeys.741.21909
Figure 2 The tentorial complex of the Sphaerotheriida, 3D visualization. GREY = Head capsule; BROWN = mandible; ORANGE = tentorium; YELLOW = nebententorium; OLIVE = außententorium. A–D Arthrosphaera brandtii (Humbert, 1865), ZFMK MYR6265 E, F, I, J Sphaeromimus kalambatritra, CASENT 9058301 G, H Zoosphaerium bemanevika Sagorny & Wesener, 2017, ZFMK MYR6144. A tentorial complex and its association with the mandibular gnathal lobe and the head capsule of A. brandtii, dorsal view B same as A frontal view C tentorial complex of A. brandtii, frontal view D same as C medial view, with rotated epipharyngeal bar E tentorial complex of S. sp., frontal view F same as E medial view, with rotated epipharyngeal bar G tentorial complex of Z. bemanevika, frontal view H same as G medial view, with rotated epipharyngeal bar I tentorial complex and its association with the mandibular gnathal lobe and the headcapsule of S. sp., dorsal view J same as I, frontal view. Abbreviations: at = antennal socket; aut = mandibular gnathal lobe sclerite (außententorium); co = condylus of mandible; e1 = lateral projection of epipharyngeal bar; e2 = medial projection of epipharyngeal bar; eb = epipharyngeal bar; et = external tooth; h1 = projection of hypopharyngeal bar; hb = hypophayrangeal bar; hc = head capsule; ilp = projection arising from incisura lateralis; it = internal tooth; mp = molar plate; nt = nebententorium; pl = pectinate lamellae; pp = posterior process.
Figure 1 from: Moritz L, Wesener T, Koch M (2018) An apparently non-swinging tentorium in the Diplopoda (Myriapoda): comparative morphology of the tentorial complex in giant pill-millipedes (Sphaerotheriida). In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 77-91. https://doi.org/10.3897/zookeys.741.21909
Figure 1 Zoosphaerium sp., light micrographs of peristomatic structures. A Epipharynx, showing absence of the tentorial transverse bar B Preoral chamber, frontal view on hypopharynx (mandibles removed) C Hypopharynx and endochilarium, dorsal view (hypo- and epipharyngeal bar of right tentorium broken off). Scale bars: 500 µm. Abbreviations: eb = epipharyngeal bar of left tentorium; ed = endochilarium; ep = epipharynx; h1 = projection of hypopharyngeal bar; hb = hypopharyngeal bar of tentorium; hy = hypopharynx; il = incisura lateralis; lb = labrum; ll = lamella lingualis; lm = lamella-mentum; nt = nebententorium; ss = suspensorial sclerite; stg = stipes of gnathochilarium.
Figure 3 from: Moritz L, Wesener T, Koch M (2018) An apparently non-swinging tentorium in the Diplopoda (Myriapoda): comparative morphology of the tentorial complex in giant pill-millipedes (Sphaerotheriida). In: Stoev P, Edgecombe GD (Eds) Proceedings of the 17th International Congress of Myriapodology, Krabi, Thailand. ZooKeys 741: 77-91. https://doi.org/10.3897/zookeys.741.21909
Figure 3 Head musculature of Sphaeromimus kalambatritra. A, B, D–G micro-CT images C 3D segmentation. A Arrangement of mandible, tentorium and head capsule, frontal section B Incisura lateralis in detail, frontal section C 3D segmentation of the isolated tentorium and its muscles, medial view D, E Muscles of the epipharyngeal bar, fronto-medial view F Muscles of the posterior process, frontal section G Muscles of the nebententorium, frontal section. Top is frontal, left is lateral. Scale bars: A, D 1000 µm B, E–G 500 µm C not to scale. Abbreviations: a1 = lateral antennal muscle (m.); a2 = anterior antennal m.; at1 = first antennomere; co = condyle of mandibular gnathal lobe; eb = epipharyngeal bar; et = external tooth of mandible, g1 = lamella lingualis m.; g2 = lamello-mentum m.; aut = mandibular gnathal lobe sclerite (außententorium); hb = hypophayrangeal bar; hc = head capsule; il = incisura lateralis; ilp = projection arising from incisura lateralis; it = internal tooth of mandible; lab = labrum; ll = lamella lingualis of gnathochilarium; lm = lamello-mentum; mdb = mandibular base; mdg = mandibular gnathal lobe; mp = molar plate; nt = nebententorium; p1 = pharyngeal dilator m.; ph = pharynx; pl = pectinate lamellae of mandible; pp = posterior process; st = stipes of gnathochilarium; t1 = anterior tentorial m.; t2 = dorsal tentorial m.; t3 = posterior tentorial m.
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