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1,492 results for “species delimitation”
Fig. 10 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 10. Male genitalic complex of Ilomantis ginsburgae sp.n. (A) Right phallomere, ventral sclerotization of the left phallomeric complex, and dorsal (i.e., "left") sclerotization of the left phallomeric complex (from left to right, respectively); (B, C, D) examples of shape and sclerotization variability present within the anterior process (ap) of L4B. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 5 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 5. Female genitalic complex of Ilomantis shown in the ventral perspective with natural and spread positioning. (A) Ilomantis thalassina, natural; (B) Ilomantis thalassina, spread; (C) Ilomantis ginsburgae sp.n., natural; (D) Ilomantis ginsburgae sp.n., spread. Abbreviations: AC, apical cleft; AL, apical lobe; MO, medial outgrowth; MT, medial tine; VF, gonocoxa VIII; GA, gonapophysis VIII; GP, gonapophysis IX II; GL, gonoplac. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 1 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 1. Ilomantis thalassina. (A) Female, dorsal habitus; (B) female, ventral habitus; (C) male, dorsal habitus; (D) male, ventral habitus. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 6 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 6. Female genitalic complex of Nilomantis shown in the ventral perspective with natural and spread positioning. (A) Nilomantis floweri, natural; (B) Nilomantis floweri, spread; (C) Nilomantis edmundsi, natural; (D) Nilomantis edmundsi, spread. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 4 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 4. Female genitalic complex of Nilomantis shown in the lateral perspective. (A) Nilomantis floweri; (B) Nilomantis edmundsi. Abbreviations: KLP, knob-like projection; RD, round dilation. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksand journals.brillonline.com/content/journals/1876312x.
Fig. 9 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 9. Male genitalic complex of Ilomantis thalassina. Abbreviations: an, anterior apodeme; ap, anterior process; bm, right arm; L1, L2, L4B, a sub-sclerite of the dorsal sclerotization of the left phallomeric complex; L4A, the ventral sclerotization of the left phallomeric complex; loa, lobo membranoso; paa, apical process; pda, processo distale; pia, piastra ventrale; pva, processo ventrale sclerificato; R1, a sub-sclerite of the right phallomere; R3, a sub-sclerite of the right phallomere. Red lettering indicates structures; black lettering indicates characters. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 7 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 7. Species distribution map for Nilomantis and Ilomantis species. Examined Nilomantis and Ilomantis specimens, as well as additional Nilomantis taxa listed in Roy & Leston (1975), have been incorporated. Collecting localities without coordinates were georeferenced using Google Earth. Ilomantis species are distributed within Madagascar; Nilomantis species are distributed across the Sahara-Sahel region of Africa, including Ghana, the Central African Republic, and Saudi Arabia. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/ journals/1876312x.
Fig. 13 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 13. Illustrations of ventral perspective of the Ilomantis cervix (scale bar = 1 mm). (A) Ilomantis thalassina, female; (B) Ilomantis thalassina, male; (C) Ilomantis ginsburgae sp.n., female; (D) Ilomantis ginsburgae sp.n., male. The postcervical plate and exposed thoracic membrane are contained within the boundaries of the intercervical sclerites and the episternum, with either a broad (Ilomantis thalassina, A and B) or narrow (Ilomantis ginsburgae sp.n., C and D) hexagonal shape. Abbreviations: eps, episternum; etm, exposed thoracic membrane; ics, intercervical sclerite; lcs, lateral cervical sclerite; pcpl, postcervical plate; tss, T-shaped sclerite.
Fig. 3 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 3. Female genitalic complex of Ilomantis shown in the lateral perspective. (A) Ilomantis thalassina; (B) Ilomantis ginsburgae sp.n. Abbreviations: AC, apical cleft; AL, apical lobe; GA, gonapophysis VIII; GL, gonoplac; MO, medial outgrowth; RTD, rectangular dilation. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/ content/journals/1876312x.
Fig. 14 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 14. Oblique ventral view of the furcasternal tubercle (FT) located medially at the base of the T-shaped sclerite, posterior to the prothoracic coxae. Arrow indicates FT. Species shown: Nilomantis floweri, male. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 12 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 12. Example of yellow stripe that originates in the posterior half of the ocellar tubercle and traverses the thorax of both Nilomantis and Ilomantis species. Species shown: Ilomantis ginsburgae sp.n., male. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/content/journals/1876312x.
Fig. 2 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 2. Ilomantis ginsburgae sp.n. (A) Holotype female, dorsal habitus; (B) holotype female, ventral habitus; (C) allotype male, dorsal habitus; (D) allotype male, ventral habitus. This figure is published in colour in the online edition of this journal, which can be accessed via http://booksandjournals.brillonline.com/ content/journals/1876312x.
Fig. 8 in Leveraging female genitalic characters for generic and species delimitation in Nilomantis Werner, 1907 and Ilomantis Giglio-Tos, 1915 (Mantodea, Nilomantinae)
Fig. 8. Illustrations of anterior perspective of the Ilomantis and Nilomantis head (scale bar=1 mm). (A) Ilomantis thalassina, female; (B) Ilomantis thalassina, male; (C) Ilomantis ginsburgae sp.n., female; (D) Ilomantis ginsburgae sp.n., male; (E) Nilomantis floweri, female; (F) Nilomantis floweri, male. (B, D, E, F) Ilomantis species feature a cosinusoidal vertical margin, whereas Nilomantis species feature a relatively straight vertical margin. Gray markings on the ocellar tubercle and within the corridors of the frontal sulci represent the presence of reddish-brown markings. LF, lower frons.
Figure 10 in Delimitation of the spider genus Sesieutes Simon, 1897, with descriptions of five new species from South East Asia (Araneae: Corinnidae)
Figure 10. Sesieutes spp., epigyne, ventral view. Sesieutes minor Deeleman-Reinhold, paratype (A); Sesieutes scrobiculatus Deeleman-Reinhold, paratype (B); Sesieutes nitens Deeleman- Reinhold, paratype (C); Sesieutes bulbosus Deeleman-Reinhold, paratype (D); Sesieutes emancipatus Deeleman-Reinhold, paratype (E); Sesieutes apiculatus sp. nov., paratype (F); Sesieutes bifidus sp. nov., paratype (G); Sesieutes borneensis Deeleman-Reinhold, paratype (H); Sesieutes lucens Simon, female from Malaysia (I).
Figure 9 in Delimitation of the spider genus Sesieutes Simon, 1897, with descriptions of five new species from South East Asia (Araneae: Corinnidae)
Figure 9. Sesieutes aberrans sp. nov. Holotype, male palp (A–C), prolateral view (A) ventral view (B), retrolateral view (C). Scale bar 0.1 mm.
Figure 8 in Delimitation of the spider genus Sesieutes Simon, 1897, with descriptions of five new species from South East Asia (Araneae: Corinnidae)
Figure 8. Sesieutes apiculatus sp. nov. Holotype, male palp (A–C), ventral view (A), prolateral view (B), retrolateral view (C). Paratype, female (D, E), epigyne, ventral view (D); internal genitalia, dorsal view (E). Scale bars 0.1 mm (A–C); 0.25 mm (D, E).
Figure 7 in Delimitation of the spider genus Sesieutes Simon, 1897, with descriptions of five new species from South East Asia (Araneae: Corinnidae)
Figure 7. Sesieutes bifidus sp. nov. Holotype, male palp (A–C), ventral view (A), prolateral view (B), retrolateral view (C). Paratype, female (D, E), epigyne, ventral view (D); internal genitalia, dorsal view (E). Scale bars 0.1 mm (A–C); 0.25 mm (D, E).
Figure 5 in Delimitation of the spider genus Sesieutes Simon, 1897, with descriptions of five new species from South East Asia (Araneae: Corinnidae)
Figure 5. Sesieutes minuatus sp. nov. Holotype, male palp (A–C), ventral view (A), prolateral view (B), retrolateral view (C). Paratype, female (D–F), epigyne, ventral view (D); internal genitalia, dorsal view (E); right spermatheca and proximal duct, ventral view (F). Scale bars 0.1 mm (A–C); 0.25 mm (D–F).
Figure 6 in Delimitation of the spider genus Sesieutes Simon, 1897, with descriptions of five new species from South East Asia (Araneae: Corinnidae)
Figure 6. Sesieutes abruptus sp. nov. Holotype, male palp (A–C), ventral view (A), prolateral view (B), retrolateral view (C). Paratype, female (D–F), epigyne, ventral view (D), internal genitalia, dorsal view (E, F). Scale bars 0.1 mm (A–C); 0.25 mm (D–F).
Figure 4 in Delimitation of the spider genus Sesieutes Simon, 1897, with descriptions of five new species from South East Asia (Araneae: Corinnidae)
Figure 4. Sesieutes lucens Simon. Holotype, male palp (A–C), ventral view (A), prolateral view (B), retrolateral view (C). Female (D, E), epigyne, ventral view (D); internal genitalia, dorsal view (E). Scale bars 0.1 mm (A–C); 0.25 mm (D, E).
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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)
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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.