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Fig. 8 in New euagrid spider species from Thailand and Malaysia, and new localities of Leptothele bencha (Arachnida: Araneae)
Fig. 8. Malayathele ulu sp. nov.; male paratype (A-B, J-K) and male holotype (C-I). (A, C) Distal part of left palp, prolateral view. (B, D) Same of right palp, prolateral view. (E) Distal part of left palp, ventral view. (F) Patella to metatarsus of right leg I, prolateral view. (G) Right tibia I, ventral view. (H) Patella to metatarsus of right leg II, prolateral view. (I) Same, retroventral view. (J) Patella to metatarsus of left leg II, ventral view. (K) Same, prolateral view. Scale line 0.5 mm.
Fig. 16 in New euagrid spider species from Thailand and Malaysia, and new localities of Leptothele bencha (Arachnida: Araneae)
Fig. 16. Malayathele kanching sp. nov.; vulvae of four female paratypes, dorsal (A-B) to increasingly more postero-dorsal view (C- D). (A, C-D) Specimens from the Templer Park. (B) Specimen from Ulu Gombak. Scale lines 0.05 mm.
Fig. 5 in New euagrid spider species from Thailand and Malaysia, and new localities of Leptothele bencha (Arachnida: Araneae)
Fig. 5. Leptothele chang sp. nov.; male holotype (A-B, E-H), female allotype (C-D) and male paratype (I). (A, C) Habitus, dorsal view. (B, D) Habitus, ventral view. (E) Femur to metatarsus of right leg II, prolateral view. (F) Right femur II, proventral view. (G) Right femur I, retrodorsal view. (H) Tarsus I, lateral view. (I) Distal part of median article and entire distal article of PLS, lateral view; arrow indicating pseudosegmentation. Not to scale.
Fig. 5 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 5. Distribution of Plagiognathus spp. Star: P. ozgurkocaki sp. nov.; circle: P. marivanensis Linnavuori, 2010; square: P. bipunctatus albicans (Reuter, 1901). Grey color indicates previous literature records, red color indicates new records presented in this paper.
Fig. 4. Plagiognathus spp. A. P in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 4. Plagiognathus spp. A. P. ozgurkocaki sp. nov., ♂, paratype (LEMT). B. P. marivanensis Linnavuori, 2010, ♂ (BCIT), Karaman. C. P. bipunctatus albicans (Reuter, 1901), ♂ (BCIT), Karaman. D. P. bipunctatus bipunctatus, ♂ (BCIT), İzmir. Scale bar = 1 mm.
Fig. 3 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 3. Plagiognathus ozgurkocaki sp. nov., ♂, paratype (LEMT). A–C. Vesica from different perspectives. D–G. Left paramere from different perspectives. H. Right paramere. Scale bar = 0.1 mm.
Fig. 2 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 2. Plagiognathus ozgurkocaki sp. nov. A. ♂, holotype (LEMT). B. ♀, paratype (LEMT). C. Head from dorsal view, ♂, paratype (LEMT). D. Head from lateral view, ♂, paratype (LEMT). E. Variability of buccal plate, ♂, paratype (LEMT). F. Antenna, ♂, paratype (LEMT). Scale bars: A–B = 1 mm; C–F = 0.25 mm.
Fig. 1 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 1. Plagiognathus ozgurkocaki sp. nov. A. Colony on Phlomis leucophracta P.H.Davis & Hub.- Mor. B. ♂. C. ♀. D. ♀. Photographs: Özgür Koçak.
Fig. 2 in Rovno Amber Caddisflies (Insecta, Trichoptera) From Different Localities, With Information About Three New Sites
Fig. 2. Polycentropodids from the new sites: 1 — Holocentropus incertus (Pictet 1856) from Olevsk; 2 — Plectrocnemia sp. from Kuchotskaya Volia; 3–4 — Holocentropus sp. from Rechitsa: 3 — habitus, 4 — genitalia.
FIG. 8 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 8. — Discocyrtus cerayanus (Roewer, 1929) n. comb., MNRJ 7244†, male genitalia, distal part: A, dorsal view; B, lateral view; C, ventral view. Scale bars: A, 50 μm; B, C, 100 μm. Colored features are the genitalic macrosetae of VP: light blue, MS A; dark blue, MS B; magenta, MS C; yellow, MS D; green, MS E.
FIG. 6 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 6. — Habitus of Discocyrtus cerayanus (Roewer, 1929) n. comb., MNRJ 7244†, in alcohol, male from Caeté, Minas Gerais, Brazil: A, dorsal view; B, ventral view; C, lateral view; D, anterior view. Scale bars: 1 cm. Photos: R. Carvalho.
FIG. 1 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 1. — Previous state of knowledge of the Paradiscocyrtus Mello-Leitão, 1927 species composition between 1929-2020: A, B, Paradiscocyrtus neglectus Mello- Leitão, 1927 (male), in vivo, from Itatiaia, Rio de Janeiro, Brazil; C, Paradiscocyrtus neglectus Mello-Leitão, 1927 (female), in vivo, same locality; D, Discocyrtus cerayanus (Roewer, 1929) n. comb. [previously Paradiscocyrtus cerayanus] (male), MNRJ 7245†, in alcohol, from Caeté, Minas Gerais, Brazil; E, F, Bunopachylus orientalis (Roewer, 1913) [of which Paradiscocyrtus trochanteralis Roewer, 1929 is recognized as junior synomyn] (male), in vivo, from Águas Mornas, Santa Catarina, Brazil. Scale bar: 1 cm. Photos: A-C, A. Kury; D, R. Carvalho; E, F, M. Medrano.
FIG. 3 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 3. — Cladogram depicting proposed external and internal phylogenetic relationships of Paradiscocyrtus Mello-Leitão, 1927, with synapomorphies for each clade mapped using ACCTRAN. This is the most frequent topology (k-values = 5, 6, 10, 15 and 20) obtained by TNT. Blue squares, nonhomoplastic synapomorphies; white circles, homoplastic synapomorphies. Number of characters above and number of states below symbols.
FIG. 5 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 5. — Brazil, showing distribution of Discocyrtus cerayanus (Roewer, 1929) n. comb. and Paradiscocyrtus neglectus Mello-Leitão, 1927. In the main map: 1) shaded areas in the background represent the regionalization ("Provinces") of the Neotropics (Morrone 2014); 2) the red-checkered area shows the Brazilian state of Ceará, misinterpreted by Mello-Leitão (in Roewer 1931) as the real meaning of "Ceraya" (type locality of D. cerayanus n. comb.) recorded by Roewer (1929). Here, "Ceraya" is interpreted as "Serra do Caraça", a mountain range from the Minas Gerais state. The inset shows the areas of endemism of the Brazilian Atlantic Rain Forest used here follow the concept exposed by DaSilva et al. (2017).
FIG. 4 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 4. — Diagnostic character states of Paradiscocyrtus Mello-Leitão, 1927 (A, C, E) in contrast to Discocyrtus s. str. (B, D, F): A, B, stylus of glans (yellow); C, D, ocularium pair of spines (green); E, F, DS shape (gray), area III armature (blue), comparative shape between area IV posterior and DS posterior borders (red), Cx IV retrolateral apophysis (black); Tr IV prolateral medial apophysis (magenta, absent in Discocyrtus s. str.). Scale bars: A, B, 50 μm; C, D, E, F, 1 mm.
FIG. 7 in Review of Paradiscocyrtus Mello-Leitão, 1927 (Gonyleptidae, Opiliones), with the transfer of Paradiscocyrtus cerayanus Roewer, 1929 to Discocyrtus Holmberg, 1878 and a new interpretation of its type locality
FIG. 7. — Discocyrtus cerayanus (Roewer, 1929) n. comb., (SMF RII 996/53), male holotype, from "Ceraya" [Serra do Caraça, Minas Gerais], Brazil: A, habitus, dorsal view; B, same, lateral view; C, ocularium, anterior view; D, Cx IV, ventral view; E, right Tr-Fe IV, dorsal view; F, same, prolateral view; G, same, ventral view; H, same, retrolateral view; I, right Pa-Ti IV, prolateral view; J, same, ventral view. Scale bars: 1 cm.
Fig. 1. Map showing sampling localities during scientific expeditions carried out along the Brazilian continental shelf and slope area from 1999 in New insights gained from museum collections: new deep-sea species of Typhlotanais (Tanaidacea, Typhlotanaidae) from Brazil
Fig. 1. Map showing sampling localities during scientific expeditions carried out along the Brazilian continental shelf and slope area from 1999 to 2016. Abbreviations: ES = Espírito Santo; RJ = Rio de Janeiro.
Fig. 22. Localities for studied specimens. A in New species of sabellariids (Annelida: Sabellariidae) from the Caribbean Sea and the Gulf of Mexico
Fig. 22. Localities for studied specimens. A. Caribbean Sea and the Gulf of Mexico. B. South Florida. C. Southeastern Bahamas. The crosses indicate type localities of species previously recorded in the tropical Western Atlantic.
Figure 2 Neotrombicula oryctiTaufflieb, 1960 in New locality and host records of two chigger mite species (Acariformes: Trombiculidae) from Morocco
Figure 2 Neotrombicula oryctiTaufflieb, 1960, holotype larva: A – dorsal idiosomal setae; B – ventral aspect of idiosoma.Neotrombicula lemni Taufflieb, 1960, holotype larva: C – dorsal idiosomal setae; D – ventral aspect of idiosoma. Abbreviations: cxI – leg coxa I; cxII – leg coxa II; cxIII – leg coxa III; H – humeral seta; sta – anterior sternal setae; stp – posterior sternal setae; V – ventral idiosomal setae; u – uropore (anus).
Figure 1 in New locality and host records of two chigger mite species (Acariformes: Trombiculidae) from Morocco
Figure 1 Ericotrombidium tarentolae(Vercammen-Grandjean et Langston, 1976), larva ZIN 17115 (A – C): A – scutum; B – genu and tibia II, dorsal aspect; C – tarsus II, dorsal aspect. Neotrombicula oryctiTaufflieb, 1960, larva ZIN 17121: D – scutum. Abbreviations: AL – anterolateral scutal seta; AM – anteromedian scutal seta; PL – posterolateral scutal seta; S – sensillum. Scale bars: A, D – 50 μm; B, C – 20 μm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.