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121 results for “Ninetis”
Figs. 329 332. Ninetis spp. from Africa. 329 330. N in New World Pholcid Spiders (Araneae: Pholcidae): A Revision At Generic Level
Figs. 329 332. Ninetis spp. from Africa. 329 330. N. minuta (Berland). 329. Epigynum ventral view. 330. Epigynum dorsal view (arrow points to internal sclerotized arch; cf. fig. 314). 331 332. N. namibiae, n. sp. 331. Epigynum ventral view. 332. Epigynum dorsal view. Scale lines: 0.2 mm.
Figs. 310 314. Ninetis subtilissima Simon, female syntype. 310 312 in New World Pholcid Spiders (Araneae: Pholcidae): A Revision At Generic Level
Figs. 310 314. Ninetis subtilissima Simon, female syntype. 310 312. Prosoma, frontal, lateral, and dorsal views. 313. Epigynum, ventral view. 314. Epigynum, dorsal view (arrow points to internal sclerotized arch; cf. fig. 330). Scale lines: 0.2 mm.
Figs. 24–28. Ninetis subtilissima Simon. 24 in Ninetis subtilissima Simon, 1890 (Araneae: Pholcidae): Redescription and SEM Ultrastructure
Figs. 24–28. Ninetis subtilissima Simon. 24. Hairs on tibiae (female tibia 2). 25. Hairs on tarsi (female tarsus 2). 26. Female tarsus 2 (note the apparent absence of pseudosegments). 27. Trichobothrium base (female palpal tibia). 28. Tarsal claws (female tarsus 1).
Fig. 29 in Ninetis subtilissima Simon, 1890 (Araneae: Pholcidae): Redescription and SEM Ultrastructure
Fig. 29. Ninetis spp., diagnostic characters. Upper row: Left procursi and bulbs, retrolateral views. Middle row: Epigyna, dorsal views. Lower row: Chelicerae, lateral views. Illustrations in each row drawn to same scale. Drawings of N. minuta and N. namibiae copied from Huber (2000).
Figs. 9–15. Ninetis subtilissima Simon. 9. Female prosoma, frontal view. 10. Female cheliceral laminae, frontal view. 11 in Ninetis subtilissima Simon, 1890 (Araneae: Pholcidae): Redescription and SEM Ultrastructure
Figs. 9–15. Ninetis subtilissima Simon. 9. Female prosoma, frontal view. 10. Female cheliceral laminae, frontal view. 11. Stridulatory files on male chelicera. 12. Location of cheliceral gland openings (arrow) near tip of fang. 13. Detail of fig. 12, showing two pores. 14. Female palpal tarsal organ (TO). 15. Male palpal tarsal organ (TO).
Figs. 3–8. Ninetis subtilissima Simon. 3. Left male palp, prolateral view. 4. Left male palp, retrolateral view. 5. Male chelicerae, frontal view. 6. Male chelicerae, lateral view. 7. Epigynum, ventral view. 8 in Ninetis subtilissima Simon, 1890 (Araneae: Pholcidae): Redescription and SEM Ultrastructure
Figs. 3–8. Ninetis subtilissima Simon. 3. Left male palp, prolateral view. 4. Left male palp, retrolateral view. 5. Male chelicerae, frontal view. 6. Male chelicerae, lateral view. 7. Epigynum, ventral view. 8. Epigynum, dorsal view.
Figs. 1, 2. Ninetis subtilissima Simon. 1. Male 2 in Ninetis subtilissima Simon, 1890 (Araneae: Pholcidae): Redescription and SEM Ultrastructure
Figs. 1, 2. Ninetis subtilissima Simon. 1. Male 2. Female. Photos courtesy of B. ThalerKnoflach.
FIGURES 21–28. Ninetis toliara n in On Old World ninetine spiders (Araneae: Pholcidae), with a new genus and species and the first record for Madagascar
FIGURES 21–28. Ninetis toliara n. sp. 21. Male, frontal view, showing eyes, clypeus, and chelicerae. 22. Genital bulb appendages. 23. Stridulatory ridges on male chelicera. 24. Male gonopore with epiandrous spigots. 25. Pocket on epigynum, posterior view. 26. Male palpal tarsal organ. 27. Epigynum, ventral view. 28. Female anterior lateral and posterior median spinnerets. ALS: anterior lateral spinnerets, ep: epigynal pocket, PMS: posterior median spinnerets, pto: palpal tarsal organ. Scale lines: 7 µm (26), 20 µm (23, 24, 25, 28), 40 µm (22), 100 µm (21, 27).
FIGURES 17–20. Ninetis toliara n in On Old World ninetine spiders (Araneae: Pholcidae), with a new genus and species and the first record for Madagascar
FIGURES 17–20. Ninetis toliara n. sp. 17. Male chelicerae, frontal view. 18. Left cymbium with procursus and bulb, prolateral view. 19. Left male palp, retrolateral view. 20. Cleared epigynum, ventral view. b: bulb, p: procursus. Scale lines: 0.1 mm.
FIGURE 5 in Amitermes californicus Banks, 1920 (Isoptera, Termitidae, Termitinae) resurrected after ninety years of synonymy and A. floridensis Scheffrahn, 1989 synonymized into A. wheeleri (Desneux, 1906)
FIGURE 5. Worker enteric valve armature: A,. A. californicus from Madera Canyon, Arizona; B, A. wheeleri from Boerne, Texas.
FIGURE 3 in Amitermes californicus Banks, 1920 (Isoptera, Termitidae, Termitinae) resurrected after ninety years of synonymy and A. floridensis Scheffrahn, 1989 synonymized into A. wheeleri (Desneux, 1906)
FIGURE 3. Amitermes soldier head capsules, dorsal view: A, B. A. californicus from Twenty Nine Palms, California; C, D. A. wheeleri from Corpus Christi, Texas; E, F. A. wheeleri from St. Petersburg, Florida.
FIGURE 2 in Amitermes californicus Banks, 1920 (Isoptera, Termitidae, Termitinae) resurrected after ninety years of synonymy and A. floridensis Scheffrahn, 1989 synonymized into A. wheeleri (Desneux, 1906)
FIGURE 2. Measurements (Table 1) used to compare soldiers of Amitermes californicus (top) and A. wheeleri (bottom).
FIGURE 1 in Amitermes californicus Banks, 1920 (Isoptera, Termitidae, Termitinae) resurrected after ninety years of synonymy and A. floridensis Scheffrahn, 1989 synonymized into A. wheeleri (Desneux, 1906)
FIGURE 1. Distribution of Amitermes californicus and A. wheeleri from the University of Florida Termite Collection and literature records.
Ninety years of coastal monitoring reveals baseline and extreme ocean temperatures are increasing off the Finnish coast
<p>Global marine heatwave assessments often rely on satellite-derived sea surface temperature. However, these data have low accuracy in coastal areas, are unable to measure sub-surface temperatures and have only been available since the 1980s. Here, we analyse 90 years of in situ surface and bottom (30 m) water temperature data from a Finnish coastal monitoring site. Water temperatures were significantly higher between 1991–2020 than 1931–1960 and 1961–1990. We find strong differences between satellite-derived and in situ temperatures, with in situ temperatures being lower in autumn and winter and higher in spring. Measurements at the seafloor indicate marine heatwaves occurred during all seasons between 2016 and 2020, with intensities and durations exceeding previous records. Since the 1990s, we find an upward shift of the baseline temperature and increasingly frequent occurrences of temperatures previously considered as an extreme. Our findings highlight the importance of long-term in situ data and choice of climatological reference periods for assessing change.</p>
Figure 3. Ninety-five per cent maximum parsimony networks obtained for the 12 in Mitochondrial DNA genetic variation and phylogeography of the recently described vole species Proedromys liangshanensis Liu, Sun, Zeng and Zhao, 2007 (Rodentia: Arvicolinae)
Figure 3. Ninety-five per cent maximum parsimony networks obtained for the 12 haplotypes in Proedromys liangshanensis. Circle sizes are proportional to haplotype frequencies.
Figure 3. Ninety per cent majority rule consensus cytochrome oxidase I in Swima (Annelida, Acrocirridae), holopelagic worms from the deep Pacific
Figure 3. Ninety per cent majority rule consensus cytochrome oxidase I (COI) gene tree from Bayesian analyses of cirratuliform annelids, showing Swima as part of Acrocirridae and support for Swima monophyly. Unsupported branches were collapsed. Support indicated as posterior probabilities. Asterisks indicate 1.0 or 100% support.
Data from: Ninety years of change on a Low Wooded Island, Great Barrier Reef
Open the record for dataset details and reuse information.
Ninety years of coastal monitoring reveals baseline and extreme ocean temperatures are increasing off the Finnish coast
Open the record for dataset details and reuse information.
Figs. 321 328. Ninetis spp. from Africa. 321 322. N in New World Pholcid Spiders (Araneae: Pholcidae): A Revision At Generic Level
Figs. 321 328. Ninetis spp. from Africa. 321 322. N. minuta (Berland), male. 321. Right genital bulb, prolateral view (arrow points to opening of sperm duct). 322. Right procursus, retrolateral view. 323 328. N. namibiae, n. sp., male. 323. Right procursus, retrolateral view. 324. Right genital bulb, prolateral view. 325 326. Chelicerae, lateral and frontal views. 327. Right palp, retrolateral view. 328. Right palp, prolateral view. Scale lines: 0.1 mm.
Figs. 16–23. Ninetis subtilissima Simon. 16, 17 in Ninetis subtilissima Simon, 1890 (Araneae: Pholcidae): Redescription and SEM Ultrastructure
Figs. 16–23. Ninetis subtilissima Simon. 16, 17. Male ALS showing widened (W), pointed (P), and cylindrically shaped (C) spigots. 18. Male PMS, showing two spigots (arrows). 19. Putative remnant of colulus (arrow) and sensillum between ALS. 20. Tip of female palp. 21. Female opisthosoma, showing epigynum and spinnerets (arrow points to pocket). 22. Hairs on anal tubercle. 23. Pocket on epigynum, posterior view.
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OpenNeuro
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