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152 results for “eyeless”
FIGURES 53–61. Pinodytes borealis. 53. Male right antenna, dorsal. 54. Male right protibia and protarsus. 55. Male right mesotibia and mesotarsus. 56. Male right metafemur and metatibia. 57. Aedeagus, lateral. 58. Everted internal sac, lateral. 59. Aedeagus, dorsal. 60. Spermatheca. 61 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 53–61. Pinodytes borealis. 53. Male right antenna, dorsal. 54. Male right protibia and protarsus. 55. Male right mesotibia and mesotarsus. 56. Male right metafemur and metatibia. 57. Aedeagus, lateral. 58. Everted internal sac, lateral. 59. Aedeagus, dorsal. 60. Spermatheca. 61. Mesoventrite, lateral. Scale bar = 0.1 mm (Fig. 60), 0.25 mm (Fig. 61), 0.3 mm (Figs. 57–59), 0.4 mm (Figs. 53–55), 0.5 mm (Fig. 56).
FIGURES 2–10. Pinodytes habitus photos. 2. P. newtoni, total length 1.38 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 2–10. Pinodytes habitus photos. 2. P. newtoni, total length 1.38 mm. 3. P. borealis, total length 2.10 mm. 4. P. punctatus, total length 1.36 mm. 5. P. colorado, total length 1.66 mm. 6. P.pusio, total length 1.54 mm. 7. P. ovatus, total length 1.34 mm. 8. P. chandleri, total length 1.54 mm. 9. P. constrictus, total length 1.48 mm. 10. P. contortus, total length 1.16 mm.
FIGURE 52 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURE 52. Distributions of basal and monobasic species groups of Pinodytes in western United States. P. newtoni, closed circles in Missouri, Arkansas, and Texas. P. borealis, closed circles in inset map of Alaska. P. punctatus, open squares in eastern Washington and northern Idaho. P. colorado, open circles in western Colorado. Note: in this and all following maps, small open circles represent major cities.
FIGURES 28–36. Pinodytes habitus photos. 28. P. cryptophagoides, total length 1.88 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 28–36. Pinodytes habitus photos. 28. P. cryptophagoides, total length 1.88 mm. 29. P. subterraneus, total length 3.48 mm. 30. P. imbricatus, total length 3.20 mm. 31. P. newelli, total length 2.30 mm. 32. P. capizzii, total length 1.64 mm. 33. P. rothi, total length 1.58 mm. 34. P. tibialis, total length 1.60 mm. 35. P. angulatus, total length 1.86 mm. 36. P. delnorte, total length 1.72 mm.
FIGURES 19–27. Pinodytes habitus photos. 19. P.minutus, total length 1.08 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 19–27. Pinodytes habitus photos. 19. P.minutus, total length 1.08 mm. 20. P. monterey, total length 1.52 mm. 21. P. parvus, total length 1.22 mm. 22. P. sanjacinto, total length 1.60 mm. 23. P. sequoia, total length 2.92 mm. 24. P. shasta, total
FIGURES 62–69. Pinodytes punctatus. 62. Male right antenna, dorsal. 63. Male right protibia and protarsus. 64. Male right mesotibia and mesotarsus. 65. Male right metafemur and metatibia. 66. Aedeagus, lateral. 67. Aedeagus, dorsal. 68. Spermatheca. 69 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 62–69. Pinodytes punctatus. 62. Male right antenna, dorsal. 63. Male right protibia and protarsus. 64. Male right mesotibia and mesotarsus. 65. Male right metafemur and metatibia. 66. Aedeagus, lateral. 67. Aedeagus, dorsal. 68. Spermatheca. 69. Mesoventrite, lateral. Scale bar = 0.1 mm (Fig. 68), 0.3 mm (Figs. 62–67, 69).
FIGURES 44–51. Pinodytes newtoni. 44. Male right antenna, dorsal. 45. Male right protibia and protarsus. 46. Male right mesotibia and mesotarsus. 47. Male right metafemur and metatibia. 48. Aedeagus, lateral. 49. Aedeagus, dorsal. 50. Spermatheca. 51 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 44–51. Pinodytes newtoni. 44. Male right antenna, dorsal. 45. Male right protibia and protarsus. 46. Male right mesotibia and mesotarsus. 47. Male right metafemur and metatibia. 48. Aedeagus, lateral. 49. Aedeagus, dorsal. 50. Spermatheca. 51. Mesoventrite, lateral. Scale bar = 0.15 mm (Fig. 50), 0.2 mm (Fig. 49), 0.3 mm (Figs. 45–48, 51), 0.4 mm (Fig. 44).
Data from: Sequence capture phylogenomics of eyeless Cicurina spiders from Texas caves, with emphasis on US federally-endangered species from Bexar County (Araneae, Hahniidae)
Open the record for dataset details and reuse information.
Data from: High stakes species delimitation in eyeless cave spiders (Cicurina, Dictynidae, Araneae) from central Texas
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Figure 7 in Two new species of eyeless amphipods from a coastal area in Japan (Crustacea: Amphipoda: Hadziidae, Melitidae), with reinstatement of the genus Paraniphargus Tattersall, 1925
Figure 7. Paraniphargus shiosai sp. nov. Holotype, male (OMNH-Ar-9986), 1.7 mm. (a) Right antenna 1, medial view; (b) left antenna 2, lateral view; (c) upper lip, anterior view; (d) right mandible, medial view; (d1) palp of right mandible, medial view; (d2) incisor, lacinia mobilis and accessory blades of right mandible, medial view; (e) left mandible, lateral view; (e1) incisor, lacinia mobilis and accessory blades of left mandible, lateral view; (f) lower lip, dorsal view; (g) left maxilla 1, ventral view; (g1), distal part of left maxilla 1, ventral view; (h) left maxilla 2, ventral view; (i) right maxilliped, dorsal view. Scale: a, b, 0.10 mm; c–i, d1, 0.05 mm; d2, e1, g1, 0.025 mm.
Figure 5 in Two new species of eyeless amphipods from a coastal area in Japan (Crustacea: Amphipoda: Hadziidae, Melitidae), with reinstatement of the genus Paraniphargus Tattersall, 1925
Figure 5. Dulzura projecta sp. nov. All except for (e–h), paratype, female (OMNH-Ar-9982), 3.1 mm; (e–f) paratype, male (OMNH-Ar-9978), 4.0 mm; (g–h) paratype, male (OMNH-Ar-9981), 2.9 mm. (a, b) Left gnathopods 1–2, lateral views: (a1, b1) propodi and dactyli of left gnathopods 1–2, lateral views, normal setae omitted; (c) right pleonal epimera 1–3, lateral view; (d) left pleopod 3, posterior view; (e, g) carpi–dactyli of left gnathopods 1, lateral views, normal setae omitted; (f, h) propodi and dactyli of left gnathopods 2, lateral views, normal setae omitted. Scale: e, f, 0.20 mm; a, b, d, 0.16 mm; c, g, h, 0.133 mm; a1, b1, 0.08 mm.
Figure 3 in Two new species of eyeless amphipods from a coastal area in Japan (Crustacea: Amphipoda: Hadziidae, Melitidae), with reinstatement of the genus Paraniphargus Tattersall, 1925
Figure 3. Dulzura projecta sp. nov. Holotype, male (OMNH-Ar-9974), 6.6 mm. (a, b) Left gnathopods 1–2, lateral views; (a1) propodus and dactylus of left gnathopod 1, lateral view, normal setae omitted; (b1), proximal part of palm on left gnathopod 2, lateral view, normal setae omitted; (c–g) left pereopods 3–7, lateral views. Scale: a–g, 0.50 mm; a1, b1, 0.25 mm.
Data from: Eyeless Mexican cavefish save energy by eliminating the circadian rhythm in metabolism
The eyed surface form and eyeless cave form of the Mexican tetra Astyanax mexicanus experience stark differences in the daily periodicities of light, food and predation, factors which are likely to have a profound influence on metabolism. We measured the metabolic rate of Pachón cave and surface fish at a fixed swimming speed under light/dark and constant dark photoperiods. In constant darkness surface forms exhibited a circadian rhythm in metabolism with an increase in oxygen demand during the subjective daytime, whereas cave forms did not. The lack of circadian rhythm in metabolism leads to a 27% energy savings for Pachón cave fish compared to surface fish when comparing both forms in their natural photoperiods. When surface forms were tested under constant dark conditions they expended 38% more energy than cave forms under equivalent conditions. Elimination of the circadian rhythm in metabolism may be a general feature of animals that live in perpetually dark food-limited environments such as caves or the deep sea.
FIGURE 1 in Gammarus kesanensis , a new blind amphipod species from Turkey (Amphipoda, Gammaridae), with a key to eyeless Gammarus species of Europe
FIGURE 1. Lateral view of Gammarus kesanensis sp. nov. Holotype male.
FIGURE 81 in Revision of the genus Sinopoda Jäger, 1999 in Laos with discovery of the first eyeless huntsman spider species (Sparassidae: Heteropodinae)
FIGURE 81. Records of Sinopoda spp. in Laos.
FIGURE 1 in The first eyeless species of Tomocerus from China (Collembola, Tomoceridae) with notes on genera Tomocerus and Pogonognathellus
FIGURE 1. Tomocerus caecus sp. nov. Habitus. Scale bar: 1000 Μm.
FIGS 1-2 in A new eyeless species of Howdeniola Osella, 1980 from Ecuador (Coleoptera, Curculionidae)
FIGS 1-2 Howdeniola polleti sp. nov. (holotype). Habitus in lateral view (1) and dorsal view (2).
FIGS 5-6 in A new eyeless species of Howdeniola Osella, 1980 from Ecuador (Coleoptera, Curculionidae)
FIGS 5-6 Howdeniola polleti sp. nov. (holotype). Aedeagus in lateral view (5) and ventral view (6).
Supplementary material 4 from: Hedin M, Derkarabetian S, Blair J, Paquin P (2018) Sequence capture phylogenomics of eyeless Cicurina spiders from Texas caves, with emphasis on US federally-endangered species from Bexar County (Araneae, Hahniidae). ZooKeys 769: 49-76. https://doi.org/10.3897/zookeys.769.25814
Figure S4. Relationships within C. baronia + C. bullis_C. neovespera clade :
Supplementary material 5 from: Hedin M, Derkarabetian S, Blair J, Paquin P (2018) Sequence capture phylogenomics of eyeless Cicurina spiders from Texas caves, with emphasis on US federally-endangered species from Bexar County (Araneae, Hahniidae). ZooKeys 769: 49-76. https://doi.org/10.3897/zookeys.769.25814
Table S1. Voucher and genetic information :
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