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Figure 5 in Integrative taxonomy reveals a new genus from Central Chile and suggests a systematic rearrangement in Stenochiinae (Coleoptera: Tenebrionidae)
Figure 5. Morphological features of mature larva of Nestorinus roitmani. A, lateral view of mature larva. Abbreviations: as, abdominal spiracle; ms, mesothoracic spiracle. B, details of the head. C, details of mouthparts and prothoracic legs. D, last abdominal segments in dorsal and lateral views. Abbreviations: p, processes; u, urogomphi. E, posterior view, showing details of urogomphi.
Figure 4 in Integrative taxonomy reveals a new genus from Central Chile and suggests a systematic rearrangement in Stenochiinae (Coleoptera: Tenebrionidae)
Figure 4. Morphological features of the female of Nestorinus roitmani. A, dorsal view. B, ventral view of the metatibiae. C, ventral view of female genitalia. Abbreviations: c1b, baculus of coxite 1; c2–c4, coxites; pb, baculus of paraproct. D, spermatheca.
Figure 3 in Integrative taxonomy reveals a new genus from Central Chile and suggests a systematic rearrangement in Stenochiinae (Coleoptera: Tenebrionidae)
Figure 3. Morphological characters of the male of Nestorinus roitmani. A, dorsal view. B, pronotum details. C, interstice of the elytra. D, central view. E, defensive glands. F, ventral view of the metatibiae. G, aedeagus in dorsal, ventral and lateral view, respectively. Abbreviations: a, parameral alae; b, basal lamina; ls, lateral style.
Figure 2 in Integrative taxonomy reveals a new genus from Central Chile and suggests a systematic rearrangement in Stenochiinae (Coleoptera: Tenebrionidae)
Figure 2. Bayesian phylogenetic tree based on concatenated genes (28S + 18S + 16S + COI). Numbers on the nodes correspond to the posterior probabilities. Red branches highlight Chilean genera, and beside the tree are illustrations of the Chilean species included in this study.
Figure 1. Map with biogeographical data for Nestorinus. A in Integrative taxonomy reveals a new genus from Central Chile and suggests a systematic rearrangement in Stenochiinae (Coleoptera: Tenebrionidae)
Figure 1. Map with biogeographical data for Nestorinus. A, collection localities of species of Nestorinus included in this study and delimitation of the biogeographical provinces. B, sclerophyllous forest in the locality of Estero Los Angeles and an in situ specimen of Nestorinus roitmani. C, a shrubland habitat at the top of a mountain in the Cuesta El Espino and an in situ specimen of Nestorinus yanettae.
Figure 28 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 28. Ute insulagemmae (UFRJPOR 8928). A, diactines. B, cortical triactines. C, tubar triactines. D, subatrial triactine. E, subatrial tetractine. F, atrial tetractine.
Figure 27 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 27. Ute insulagemmae (UFRJPOR 8928). A, oscular margin. B, cross-section. C, tangential section of the cortex. D, detail of the cortex. E, detail of the tubar, subatrial and atrial skeletons. F, tangential section of the atrial surface. cx = cortex.
Figure 26. Ute insulagemmae. A in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 26. Ute insulagemmae. A, pink chromotype (UFRJPOR 8925). B, yellow chromotype (UFRJPOR 8938). C, white chromotype (UFRJPOR 8948). D, fixed specimen.
Figure 24 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 24. Leucandra ornata (holotype; UFRJPOR 8928). SEM: A, entire specimen. B, tangential section of the cortex. C, detail of the cortex showing a microdiactine (arrow) and a cortical triactine with elevated centre (asterisk). D, tangential section of the atrium. E, detail of an exhalant canal with microdiactines. F, detail of the microdiactines with spines. osc = osculum.
Figure 23 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 23. Leucandra ornata (holotype; UFRJPOR 8928). A, oscular margin. B, cross-section. C, tangential section of the cortex. D, detail of the cortex showing diactines II organised in bouquet. E, detail of the choanosome showing a tetractine of the canals. F, cross-section of the atrium (microdiactines in the inset). cx = cortex, at = atrium.
Figure 21 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 21. Aphroceras seychellensis (UFRJPOR 8926). A, cortical diactine. B, oscular triactine. C, cortical triactine. D, choanosomal triactine. E, choanosomal triactine. F, tetractine of the canals. G, atrial triactine.
Figure 25 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 25. Leucandra ornata (holotype; UFRJPOR 8928). A, diactines. B, microdiactines. C, cortical triactines. D, choanosomal large triactine. E, canal triactine. F, tetractine of the canals. G, atrial tetractines. H, tetractine of the osculum.
Figure 19. Aphroceras seychellensis. A in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 19. Aphroceras seychellensis. A, specimen in vivo (UFRJPOR 8926). B, specimen in vivo (UFRJPOR 8934). C, fixed specimen (UFRJPOR 8926). D, fixed specimen (UFRJPOR 8934).
Figure 18 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 18. Lelapiella tertia (holotype; UFRJPOR 8937). A, tripod. B, triactine. C, tetractine. D, apical actine of a tetractine.
Figure 20 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 20. Aphroceras seychellensis (UFRJPOR 8926). A, oscular margin. B, cross-section. C, cross-section evidencing subcortical lacunae. D, tangential section of the cortex. E, choanosomal canal surrounded by a triactine and a tetractine (arrow points to the apical actine of the tetractine). F, tangential section of the atrial surface. cx = cortex, at = atrium.
Figure 17 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 17. Lelapiella tertia (holotype; UFRJPOR 8937). A, specimen in vivo (arrow points to the sponge). B, fixed specimen. SEM: C, fragment of the specimen. D, tangential section of the surface. E, choanosome. F, tetractines in the choanosome.
Figure 14 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 14. Leucaltis nodusgordii. (UFRJPOR 8930). A, cortical triactine. B, cortical tetractine. C, regular choanosomal triactine. D, sagittal choanosomal or atrial triactine. E, regular choanosomal tetractine. F, sagittal choanosomal or atrial tetractine.
Figure 15 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 15. Leucascus tenuispinae (holotype; UFRJPOR 8927). A, specimen in vivo. B, fixed specimen. C, tangential section of the surface. D, diactine. E, triactine. F, tetractine. G, apical actine of a tetractine with short spines.
Figure 16 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 16. Leucetta chagosensis. (UFRJPOR 8939). A, specimen in vivo. B, fixed specimen. C, cross-section. D, tangential section of the cortex. E, triactine I. F, triactines II. G, tetractines. cx = cortex, at = atrium.
Figure 13 in Integrative taxonomy of calcareous sponges (Porifera: Calcarea) from Réunion Island, Indian Ocean
Figure 13. Leucaltis nodusgordii. (UFRJPOR 8930). A, specimen in vivo. B, fixed specimen. C, choanosome full of yellow reproductive elements. D, cross-section (arrow points to a reproductive element). E, tangential section of the cortex. F, tangential section of the atrial wall. cx = cortex, at = atrium.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.