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337 results for “Filistatidae”
Fig. 1 in A revision of the spider genus Zaitunia (Araneae, Filistatidae)
Fig. 1. Morphology of Zaitunia. A–C. Z. martynovae (Andreeva & Tyshchenko, 1969), subadult ♀ from Gandzhina. D–I. Same, adult ♀. J–L. Z. logunovi sp. nov., paratype, ♂. — A, C. Anterior part of prosoma, dorsal and lateral. B. Prosoma, dorsal. D. Leg IV, prolateral. E. Palp, prolateral. F. Cuticle and setae covering venter of abdomen. G. Leg surface showing large and fine (possibly chemosensory) setae. H–I. Tarsal claws of leg IV, prolateral. J–L. Terminal part of palp, prolateral, dorsal and ventroretrolateral. Abbreviations: see Material and methods.
Fig. 3 in A revision of the spider genus Zaitunia (Araneae, Filistatidae)
Fig. 3. Morphology of Zaitunia spp. A–B. Z. logunovi sp. nov., paratype, ♂. C. Z. schmitzi (Kulczyński, 1911), ♀ from Jerusalem area. D, H. Z. martynovae (Andreeva & Tyshchenko, 1969), ♀ from Gandzhina. E, G. Z. wunderlichi sp. nov., paratype, ♂. F. Z. beshkentica (Andreeva & Tyshchenko, 1969), ♂ from Khurshedi. — A–D. Abdomen, ventral. E–F. Terminal part of palp, retrolateral. G. Same, dorsal. H. Genital area of subadult female. Abbreviations: see Material and methods. Scale bars: A–B, D, G = 0.2 mm; C, H = 0.1 mm.
Fig. 2 in A revision of the spider genus Zaitunia (Araneae, Filistatidae)
Fig. 2. Morphology of Zaitunia leg. A–K. Z. martynovae (Andreeva & Tyshchenko, 1969), ♀ from Gandzhina. L. Z. logunovi sp. nov., paratype, ♂. — A. Calamistrum, dorsal. B–C. Same, lateral. D. Calamistral area with removed setae, dorsal. E. Setae of calamistrum, lateral. F–G. Tarsal organ. H–I. Base of trichobothria. J. Part of dorsal leg surface showing two slit organs. K. Long slit organ. L. Part of male tarsus IV, prolateral, showing pseudosegmentation. Abbreviations: see Material and methods.
Fig. 50 in A revision of the spider genus Zaitunia (Araneae, Filistatidae)
Fig. 50. Live specimens of Zaitunia and habitats of Z. martynovae (Andreeva & Tyshchenko, 1969) in Southern Tajikistan. A. ♀ of Z. schmitzi (Kulczyński, 1911) on the turned stone bottom (Israel, Shoham, image courtesy of Amir Weinstein). B. Surroundings of Gandzhina: the spiders occur under the stones. C. Pyandzh-Karatau Mts, one of the co-authors (YM) near the clay escarps inhabited by filistatids. D. Foothills of the salt dome Khodzha-Mumin: the spiders inhabit crevices and cavities in the rock outcrops. E. One of the figured escarps, a close-up photo showing the twin entrance leading to the inhabited cavity. F. Captured ♀ of Z. martynovae (Andreeva & Tyshchenko, 1969) weaving a web in the cover of a collecting tube.
Figs 23–26. Pritha vestita, male. 23 in New Faunistic And Taxonomic Notes On The Haplogyne And Cribellate Spiders (Araneae: Dictynidae, Dysderidae, Eresidae, Filistatidae, Sicariidae) From Three Balkan Countries
Figs 23–26. Pritha vestita, male. 23 = habitus, dorsal view, 24 = ditto, ventral view. 25 = left male palp, prolateral view, 26 = ditto, retrolateral view. Scale bar: 0.1 mm
Figs 19–22 in New Faunistic And Taxonomic Notes On The Haplogyne And Cribellate Spiders (Araneae: Dictynidae, Dysderidae, Eresidae, Filistatidae, Sicariidae) From Three Balkan Countries
Figs 19–22. Pritha parva (two specimens with slight variations in the shape of the tibia and the bulbus), left male palp with normal (19, 20) and with broken tip of embolous (21, 22): 19, 21 = prolateral view, 20, 22 = retrolateral view. Scale bar: 0.1 mm
Figs 15–18 in New Faunistic And Taxonomic Notes On The Haplogyne And Cribellate Spiders (Araneae: Dictynidae, Dysderidae, Eresidae, Filistatidae, Sicariidae) From Three Balkan Countries
Figs 15–18. Loxosceles rufescens, left male palp (15, 16) and female vulva (17, 18), different views: 15 = prolateral, 16 = retrolateral, 17 = ventral, 18 = dorsal. Scale bar: 0.3 mm
Figs 8–11 in New Faunistic And Taxonomic Notes On The Haplogyne And Cribellate Spiders (Araneae: Dictynidae, Dysderidae, Eresidae, Filistatidae, Sicariidae) From Three Balkan Countries
Figs 8–11. Filistata insidiatrix left male palp (8, 9) and female vulva (10, 11) different views: 8 = prolateral, 9 = retrolateral, 10 = ventral, 11 = dorsal. Scale bar: 0.3 mm
Figs 12–14 in New Faunistic And Taxonomic Notes On The Haplogyne And Cribellate Spiders (Araneae: Dictynidae, Dysderidae, Eresidae, Filistatidae, Sicariidae) From Three Balkan Countries
Figs 12–14. Harpactea samuili, left male palp, different views: 12 = prolateral, 13 = retrolateral, 14 = apical view. Scale bar: 0.2 mm (Figs 12, 13), 0.1 mm (Fig. 14)
Figs 3–7 in New Faunistic And Taxonomic Notes On The Haplogyne And Cribellate Spiders (Araneae: Dictynidae, Dysderidae, Eresidae, Filistatidae, Sicariidae) From Three Balkan Countries
Figs 3–7. Eresus moravicus left male palp (3–5) and female genitalia (6, 7): 3 = prolateral, 4 = ventral and 5 = retrolateral views, 6 = epigyne, ventral view, 7 = vulva, dorsal view. Scale line: 0.5 mm
Supplementary material for: Phylogeny and biogeography of the ancient spider family Filistatidae (Araneae) is consistent both with long-distance dispersal and vicariance following continental drift
<p>Raw data and input files for phylogenetic and biogeographic analysis of the article "<strong>Phylogeny and biogeography of the ancient spider family Filistatidae (Araneae) is consistent both with long-distance dispersal and vicariance following continental drift</strong>".</p> <p><strong>Supplementary material S1. </strong>Matrix of phenotypic characters in .ss format.</p> <p><strong>Supplementary material S2. </strong>Alignment of COI sequences in fasta format..</p> <p><strong>Supplementary material S3. </strong>Alignment of H3 sequences in fasta format.</p> <p><strong>Supplementary material S4. </strong>Alignment of 16S sequences in fasta format before trimming with gblocks.</p> <p><strong>Supplementary material S5. </strong>Alignment of 28S sequences in fasta format before trimming with gblocks.</p> <p><strong>Supplementary material S6. </strong>Input for running parsimony analysis using TNT (phenotypic data only).</p> <p><strong>Supplementary material S7. </strong>Input for running Bayesian inference using MrBayes (phenotypic data only).</p> <p><strong>Supplementary material S8. </strong>Input for running parsimony analysis using TNT (sequence data only).</p> <p><strong>Supplementary material S9. </strong>Input for running Bayesian inference using MrBayes (sequence data only).</p> <p><strong>Supplementary material S10. </strong>Input for running parsimony analysis using TNT (total evidence).</p> <p><strong>Supplementary material S11. </strong>Input for running Bayesian inference using MrBayes (total evidence).</p> <p><strong>Supplementary material S12. </strong>Input for running parsimony analysis using TNT (total evidence, dataset with reduced number of terminals).</p> <p><strong>Supplementary material S13. </strong>Input for running Bayesian inference using MrBayes (total evidence, dataset with reduced number of terminals).</p> <p><strong>Supplementary material S14. </strong>Input for running Bayesian inference using MrBayes (total evidence) and estimating node ages using tip-dating.</p> <p><strong>Supplementary material S15. </strong>Input for running Bayesian inference using Beast (sequence data only) and estimating node ages using node-dating.</p> <p><strong>Supplementary material S16. </strong>Raw geographic distances among areas in each time slice and dispersal probability matrices for each biogeographic model.</p> <p><strong>Supplementary material S17. </strong>Inputs for estimating ancestral ranges and performing biogeographic stochastic maps for our dataset.</p> <p><strong>Supplementary material S18. </strong>Consensus tree found with parsimony analysis using TNT (phenotypic data only).</p> <p><strong>Supplementary material S19. </strong>Consensus tree found with Bayesian inference using MrBayes (phenotypic data only).</p> <p><strong>Supplementary material S20. </strong>Consensus tree found with parsimony analysis using TNT (sequence data only).</p> <p><strong>Supplementary material S21. </strong>Consensus tree found with Bayesian inference using MrBayes (sequence data only).</p> <p><strong>Supplementary material S22. </strong>Consensus tree found with parsimony analysis using TNT (total evidence).</p> <p><strong>Supplementary material S23. </strong>Consensus tree found with Bayesian inference using MrBayes (total evidence).</p> <p><strong>Supplementary material S24. </strong>Consensus tree found with parsimony analysis using TNT (total evidence, dataset with reduced number of terminals).</p> <p><strong>Supplementary material S25. </strong>Consensus tree found with Bayesian inference using MrBayes (total evidence, dataset with reduced number of terminals).</p> <p><strong>Supplementary material S26. </strong>Consensus tree found with Bayesian inference using MrBayes (total evidence) and with node ages estimated using tip-dating.</p> <p><strong>Supplementary material S27. </strong>Maximum clade credibility tree found with Bayesian inference using Beast (sequence data only) and with node ages estimated using node-dating.</p>
Fig. 30 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 30. Wandella loloata sp. nov. from Papua New Guinea, Loloata Island. A–C. Male holotype (AM KS32718). A. Left palp, prolateral. B. Retrolateral. C. Habitus, dorsal. D–F. Female paratype (AM KS32717), endogyne, dorsal.
Fig. 26 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 26. Labahitha platnicki sp. nov., female somatic morphology. A. Holotype from New Caledonia, Nord, Foué (AMNH IFM-0890), habitus, dorsal. B, D–F. Paratype from New Caledonia, Nord, Plage de Poè (AMNH IFM-1747). B. Habitus, dorsal. C. Papua New Guinea, Bismarck Islands (ZMB IFM- 0720), habitus, dorsal. D. Habitus, lateral. E. Ventral. F. Genital region, ventral. Scale bars = 0.5 mm, except where noted.
Fig. 22 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 22. Labahitha marginata (Kishida, 1936) comb. nov., female from Costa Rica, Alajuela, Upala (INBIO 108899), endogyne, pancreatin digested. A. Dorsal view. B. Sublateral view.
Fig. 16 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 16. Labahitha marginata (Kishida, 1936) comb. nov., type material of Filistata bakeri Berland, 1938 from Vanuatu, Espiritu Santo. A. Paratype, ♀ (MNHN AR 3437), habitus, lateral. B–F. Holotype, ♂ (MNHN AR 3436). B. Habitus, dorsal. C. Habitus, ventral. D. Left palp, prolateral view. E. Dorsal. F. Retrolateral. Figures not to scale.
Fig. 19 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 19. Labahitha marginata (Kishida, 1936) comb. nov., female endogyne, dorsal, lactic acid cleared. A. From Parque Nacional La Cangreja, San Jose, Costa Rica (INBIO 79582). B. Bagaces, Guanacaste, Costa Rica (INBIO 104619). C. Vanuatu, Espiritu Santo (MNHN AR 3436). D. Upolu, Samoa (AMNH IFM-0885). E. Kanton, Phoenix Islands, Kiribati (AMNH). F. Chao-Chow, Ping-Tung, Taiwan (AMNH IFM-0872). G. Makeke Highlands, Papua New Guinea (AM KS.59201). H. Hawai'i, USA (AM). Scale bars = 0.05 mm.
Fig. 13 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 13. Labahitha gibsonhilli (Savory, 1943), ♂ (AM). A. Habitus, dorsal. B. Left palp, retrolateral. Figures not to scale.
Fig. 11 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 11. Labahitha garciai (Simon, 1892) comb. nov., endogyne, dorsal, lactic acid cleared. A. From Singapore, Pulau Ubin (JK 150310.0002). B. From Singapore, Dairy Farm Nature Park (JK 130823.0003). C. From Singapore, Upper Selatar Reservoir Park (ZFMK 12710). D. Paratype of Pritha sechellana Benoit, 1978 (MRAC 143106). Scale bars: 0.1 mm.
Fig. 9 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 9. Labahitha garciai (Simon, 1892) comb. nov., syntypes of Filistata garciai (MNHN AR 5414). A. Male, dorsal. B. Male, lateral. C. Male palps. D. Loose palp within the vial. E. Female, ventral. F. Label associated to specimens. Figures not to scale.
Fig. 8 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 8. Labahitha garciai (Simon, 1892) comb. nov., females. A. Allotype of Pritha sechellana Benoit, 1978 (MRAC 143165), dorsal. B. Paratype of Pritha sechellana Benoit, 1978 (MRAC 143106). C–H. Female from Singapore, Dairy Farm Nature Park (JK 130823.0003). C. Lateral. D. Dorsal. E. Ventral. F. Carapace, dorsal. G. Left calamistrum, retrolateral. H. Sternum, ventral. Scale bars: 1 mm, except where noted.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.