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24 results for “Henicopidae”
Fig. 7 in Relationships of Henicopidae (Chilopoda: Lithobiomorpha): New molecular data, classification and biogeography
Fig. 7. Area cladogram for Paralamyctes based on relationships under most congruent parameters for combined morphological and molecular data (Fig. 3, left cladogram). Stable clades are indicated (present in at least six parameter sets for the combined data).
Fig. 5 in Relationships of Henicopidae (Chilopoda: Lithobiomorpha): New molecular data, classification and biogeography
Fig. 5. Details of the pretarsus of Henicopidae, showing characters 57 and 58 in Appendix 1. A. Paralamyctes (Thingathinga) grayi, dorsal view. B. Paralamyctes (Thingathinga) validus, anterior view. C. Paralamyctes (Haasiella) trailli, anterior view. D. Cermatobius japonicus, posterior view. E. Lamyctes emarginatus, anterior view. F. Anopsobius neozelanicus, dorsal view. All scales 10 m.
Fig. 3 in Relationships of Henicopidae (Chilopoda: Lithobiomorpha): New molecular data, classification and biogeography
Fig. 3. Cladograms based on the combined analysis of all data (morphological + molecular). Cladogram at left is the single shortest tree of 7343 steps obtained for the most congruent parameter set (111); cladogram at right is strict consensus for all 12 parameters. Numbers on branches indicate jackknife frequencies.
Fig. 4 in Relationships of Henicopidae (Chilopoda: Lithobiomorpha): New molecular data, classification and biogeography
Fig. 4. Graphic plots of sensitivity analyses. Black square = monophyly of indicated clade under gap cost and transversion:transition ratio shown along the axes; grey square = monophyly in some minimal length cladograms; white square = non-monophyly.
Fig. 2 in Relationships of Henicopidae (Chilopoda: Lithobiomorpha): New molecular data, classification and biogeography
Fig. 2. Cladograms based on the combined analysis of all molecular data. Cladogram at left is the single tree at 7174 steps obtained for the most congruent parameter set (111); cladogram at right is strict consensus for all 12 parameter sets. Numbers on branches indicate jackknife frequencies.
Fig. 1 in Relationships of Henicopidae (Chilopoda: Lithobiomorpha): New molecular data, classification and biogeography
Fig. 1. Strict consensus of 10 000 shortest cladograms based on morphological data (134 steps; CI = 0.56; RI = 0.86). Branches for the ingroup (Henicopidae) appear darker than those for the outgroup (Lithobiidae). Numbers above branches indicate jackknife frequencies; numbers below branches indicate absolute Bremer support and relative fit difference, RFD, shown as a percentage (see text for a description of these support measures). Labels on branches indicate groups recovered in all morphological analyses (Anopsobiinae, Lamyctes-Henicops Group within Henicopini, Zygethobiini) and traditional membership of Henicopinae. Paralamyctes (unresolved) is traditionally assigned to Henicopini.
Fig. 6 in Relationships of Henicopidae (Chilopoda: Lithobiomorpha): New molecular data, classification and biogeography
Fig. 6. Distributions of Anopsobiinae and Zygethobiini.
FIGURES 13. Paralamyctes wellingtonensis n in A new species of Paralamyctes (Chilopoda: Lithobiomorpha: Henicopidae) from southern Chile
FIGURES 13. Paralamyctes wellingtonensis n. sp. Puerto Edén, Isla Wellington, Chile. 1, holotype MCZ 52636, male, scale 1 mm; 2, MCZ 47468, female, terminal segments and gonopods, scale 100 µm; 3, MCZ 27836, male, terminal segments and gonopods, scale 100 µm.
FIGURES 47. Paralamyctes wellingtonensis n in A new species of Paralamyctes (Chilopoda: Lithobiomorpha: Henicopidae) from southern Chile
FIGURES 47. Paralamyctes wellingtonensis n. sp. MCZ 27836, male. 4, leg 12; 5, leg 13; 6, leg 14 (tibial projection atypically nonspinose); 7, leg 15. Scale 500 µm.
FIGURES 7–14. Cermatobius longicornis, 7 in Review of Cermatobius Haase, 1885 (Chilopoda: Henicopidae) of China and Neotype Designation for Cermatobius longicornis (Takakuwa, 1939)
FIGURES 7–14. Cermatobius longicornis, 7, Neotype, male, dorsal view, scale 1 mm; 8, ocellus and Tömösváry's organ (8–T), left lateral view, scale 250 µm; 9, maxillipede, ventral view, scale 500 µm; 10, dental margin of maxillipede coxosternum, ventral view, scale 250 µm; 11, tarsal claws and its accessory claws, ventral view, scale 250 µm; 12, female, posterior segments and gonopods, ventral view, scale 500 µm; 13, female, claw of gonopods, internal view, scale 250 µm; 14 male, posterior segments and gonopods, ventral view, scale 500 µm.
FIGURES 1–6. Cermatobius longitarsis, 1 in Review of Cermatobius Haase, 1885 (Chilopoda: Henicopidae) of China and Neotype Designation for Cermatobius longicornis (Takakuwa, 1939)
FIGURES 1–6. Cermatobius longitarsis, 1, male, dorsal view, scale 1 mm; 2, ocellus and Tömösváry's organ (2–T), left lateral view, scale 250 µm; 3, maxillipede coxosternum, ventral view, scale 500 µm; 4, dental margin of maxillipede coxosternum, ventral view, scale 250 µm; 5, female, posterior segments and gonopods, ventral view, scale 500 µm; 6, male, posterior segments and gonopods, ventral view, scale 500 µm.
FIGURES 18–25. Speleopsobius weaveri, n in The centipede family Anopsobiidae new to North America, with the description of a new genus and species and notes on the Henicopidae of North America and the Anopsobiidae of the Northern Hemisphere (Chilopoda, Lithobiomorpha)
FIGURES 18–25. Speleopsobius weaveri, n. sp. 18. Leg 12. 19. Claw of leg 12. 20. Leg 13. 21. Claw of leg 13. 22. Leg 14. 23. Claw of leg 13. 24. Leg 15. 25. Claw of leg 15.
FIGURE 26 in The centipede family Anopsobiidae new to North America, with the description of a new genus and species and notes on the Henicopidae of North America and the Anopsobiidae of the Northern Hemisphere (Chilopoda, Lithobiomorpha)
FIGURE 26. An unidentified troglomorphic anopsobiid centipede from Lost Soldier Cave, Sequoia Kings Canyon National Park, California. Photograph courtesy of Jean Krejca.
FIGURES 1, 2. Speleopsobius weaveri, n in The centipede family Anopsobiidae new to North America, with the description of a new genus and species and notes on the Henicopidae of North America and the Anopsobiidae of the Northern Hemisphere (Chilopoda, Lithobiomorpha)
FIGURES 1, 2. Speleopsobius weaveri, n. sp. 1. Female holotype from Spider Cave, dorsal view. 2. Male paratype from Tee Cave, dorsal view. Numerals indicate tergite numbers.
FIGURES 14–17. Speleopsobius weaveri, n in The centipede family Anopsobiidae new to North America, with the description of a new genus and species and notes on the Henicopidae of North America and the Anopsobiidae of the Northern Hemisphere (Chilopoda, Lithobiomorpha)
FIGURES 14–17. Speleopsobius weaveri, n. sp. 14. Posterior end of female, ventral view. 15. Female gonopods, ventral view. 16. Posterior end of male, ventral view. 17. Gonopods of male, ventral view. Cx14, coxa 14; cx15, coxa 15; s14, sternite 14; s15, sternite 15, gs, genital sternite; gp, gonopod; svo, seminal vesicle opening; glo, gland openings.
FIGURES 10–13. Speleopsobius weaveri, n in The centipede family Anopsobiidae new to North America, with the description of a new genus and species and notes on the Henicopidae of North America and the Anopsobiidae of the Northern Hemisphere (Chilopoda, Lithobiomorpha)
FIGURES 10–13. Speleopsobius weaveri, n. sp. 10. Plumose setae of epistome. 11. Telopodite of second maxilla. 12. Tarsus of same. 13. Tip of tarsus.
FIGURES 7–9. Speleopsobius weaveri, n in The centipede family Anopsobiidae new to North America, with the description of a new genus and species and notes on the Henicopidae of North America and the Anopsobiidae of the Northern Hemisphere (Chilopoda, Lithobiomorpha)
FIGURES 7–9. Speleopsobius weaveri, n. sp. 7. Mandible, ectal view. 8. Same, medial view. 9. First maxilla. a, aciculae; t, mandibular teeth; cx, coxosternum; cp, coxal process; t1, first article of telopodite; t2, second article of telopodite.
FIGURES 3–6. Speleopsobius weaveri, n in The centipede family Anopsobiidae new to North America, with the description of a new genus and species and notes on the Henicopidae of North America and the Anopsobiidae of the Northern Hemisphere (Chilopoda, Lithobiomorpha)
FIGURES 3–6. Speleopsobius weaveri, n. sp. 3. Head of female, dorsal view. 4. Same, ventral view. 5. Head of male, dorsal view. 6. Same, ventral view.
Figure 6 in Aliquid novi ex Africa? Lamyctes africanus (Porath, 1871) found in Europe (Chilopoda: Lithobiomorpha: Henicopidae)
Figure 6. Cladograms based on partitioned Bayesian analysis of mitochondrial DNA extracted from the Danish samples and sequences available in GenBank. Top: 16S gene, bottom: COI gene. Values above branches indicate PPs (posterior probability).
Figure 4 in Aliquid novi ex Africa? Lamyctes africanus (Porath, 1871) found in Europe (Chilopoda: Lithobiomorpha: Henicopidae)
Figure 4. Known distribution of Lamyctes africanus in Denmark. 1: Padborg, 2: Fredericia, 3: Kalundborg, 4: Naestved, 5: Vordingborg, 6: Rødbyhavn, 7: Ryparken, 8: Nørrebro.
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