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762 results for “Spider phylogeny”
Figure 67 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 67. Trogloneta granulum (Mysmenidae), female. A, epigynum, ventral view; B, same, posterior view; C, digested abdomen, anterior respiratory system and vulva; D, left posterior spinnerets; E, booklung cover; F, abdomen, detail of colulus and posterior spiracle, ventral view; G, ocular area, frontal view; H, same, dorsal view. See Appendix 3 for the list of abbreviations.
Figure 91 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 91. Minanapis palena (Anapidae), prosoma: A–D, G, female; E, F, H, male. A, C, E, lateral view; B, F, lateral– frontal view; D, ventral view; G, detail of lateral prosoma; H, ocular area, frontal view.
Figure 19 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 19. Microdipoena guttata (Mysmenidae). A, B, D–F, male; C, female. A, prosoma, frontal view; B, C, same, lateral view; D, same, ventral view, detail of labium–sternum junction; E, mouthparts, detail of tip of left chelicera; F, posterior median spinnerets. See Appendix 3 for the list of abbreviations.
Figure 20 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 20. Microdipoena guttata (Mysmenidae), abdomen: A, female; B–G, male. A, ventral view; B, detail of booklung cover; C, detail of abdominal cuticular pattern; D, pedicel area and booklung covers; E, detail of area above pedicel; F, posterior–ventral view, detail of epigastric furrow, epiandrous spigots and spiracular openings; G, same, ventral view.
Figure 30. MYSM-007 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 30. MYSM-007-MEX (Mysmena, Mysmenidae) from Chiapas, Mexico; male left palp. A, retroventral view; B, ventral view; C, prolateral view; D, dorsal view; E, retrolateral view; F, detail of tip of palp, ventral–prolateral view. See Appendix 3 for the list of abbreviations.
Figure 17 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 17. Microdipoena elsae (Mysmenidae), male right palp, inverted images: A, prolateral view; B, ventral view; C, retrolateral view; D, retroventral view. See Appendix 3 for the list of abbreviations.
Figure 15 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 15. Maymena rica (Mysmenidae), prosoma: A, C, F, G, female; B, D, E, H, I, male. A, B, lateral view; C, dorsal view; D, carapace, frontal view; E, prosoma, posterior view; F, ocular area, detail from panel C; G–I, mouthparts, detail of cheliceral fang and teeth; G, distal promargin of left chelicera; H, distal promargin of right chelicera; I, distal right chelicera.
Figure 14 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 14. Maymena rica (Mysmenidae): A, B, D, male left palp; C, E, female. A, dorsal view; B, same, prolateral view, detail of tip of embolus and housing cymbial conductors; C, epigynum, ventral view; D, same as B, dorsal view; E, digested abdomen, detail of vulva. See Appendix 3 for the list of abbreviations.
Figure 16 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)
Figure 16. Maymena rica (Mysmenidae), abdomen and legs: A, B, G, H, male; C–F, female. A, epiandrous spigots; B, left anterior lateral spinnerets; C, abdomen, ventral view. D, G, H, left leg I; E, F, left leg IV. D, femur, ventral view; E, tibia, dorsal view; F, claws, retrolateral view; G, tibia–metatarsus junction, prolaterodorsal view; H, tarsus, prolaterodorsal view. See Appendix 3 for the list of abbreviations.
Figure 59 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 59. Chosen best tree of phylogenetic reconstruction of the genus Soesiladeepakius using morphological data. White and black circles on branches represent, respectively, homoplasious and nonhomoplasious transformations. Numbers over branches are Bremer support values. Numbers under circles indicate number of listed characters. For discussion on question marks under these numbers, see List of characters.
Figure 58 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 58. Consensus and bootstrap values (500 pseudoreplicates) found by maximum likelihood of the all-gene matrix. Names in bold letters represent salticids, whereas names on the right of the vertical bars represent major salticid taxa.
Figure 55 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 55. Phylogenetic reconstruction of salticid lineages under parsimony: single most parsimonious tree using the all-gene matrix. Names in bold letters and grey boxes represent salticids, whereas names on the right of the vertical bars represent major salticid taxa.
Figure 54 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 54. Phylogenetic reconstructions of salticid lineages under parsimony: majority consensus (0.5) using one (28S: 13 trees; Actin: two trees; 16S: six trees), two (ND1 + 16S: three trees; 28S + Actin: one tree), and three gene matrices (28S + Actin + 16S: six trees). Numbers on branches show group frequency. Names in bold letters and grey boxes represent salticid taxa.
Figure 47–52 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 47–52. Soesiladeepakius spp., left male palpal femora, ventral view. 47, Soesiladeepakius lyra sp. nov. 48, Soesiladeepakius retroversus sp. nov. 49, Soesiladeepakius arthrostylus sp. nov. 50, Soesiladeepakius biarmatus sp. nov. 51, Soesiladeepakius gasnieri sp. nov. 52, Soesiladeepakius uncinatus sp. nov.
Figure 56 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 56. Phylogenetic reconstructions of salticid lineages under maximum likelihood: best trees using single gene regions. Branch length is proportional to substitution rate per site. Names in bold letters represent salticid taxa.
Figure 41–46 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 41–46. Soesiladeepakius arthrostylus sp. nov. 41, left male palp, prolateral view. 42, ventral view. 43, retrolateral view. 44, ventroretrolateral view. 45, bulb, clarified, ventral view. 46, posterior view. co?, putative true conductor; ma?, putative median apophysis.
Figure 57 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 57. Best tree of phylogenetic reconstruction analyses of salticid lineages using maximum likelihood and the all-gene matrix. Branch length is proportional to substitution rate per site. Names in bold letters represent salticid taxa.
Figure 33–37 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 33–37. Soesiladeepakius biarmatus sp. nov. 33, left male palp, prolateral view. 34, ventral view. 35, retrolateral view. 36, female epigyne, ventral view. 37, dorsal view, clarified.
Figure 29–32 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 29–32. Soesiladeepakius gasnieri sp. nov., female. 29, ventral view. 30, lateral view. 31, epigyne, ventral view. 32, dorsal view, clarified.
Figure 22–28 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)
Figure 22–28. Soesiladeepakius gasnieri sp. nov. 22, left male palp, retrolateral view. 23, ventral view. 24, dorsal view. 25, prolateral view. 26, bulb, retrolateral anterior view. 27, retrolateral view. 28, ventral view, clarified. ma?, putative median apophysis.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.