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Figures 24–47 in Phylogeny and taxonomy of the shore-fly tribe Scatellini (Diptera: Ephydridae: Ephydrinae)
Figures 24–47. Abdominal sternites and terminalia: (24) Philotelma sp., female; (25) Philotelma sp., male; (26)Ephydra (Ephydra) riparia, female; (27) Scatella (Scatella) stagnalis, female; (28) Scatella (Scatella) tenuicosta, female; 29, Scatella (Scatella) tenuicosta, male; (30) Scatella (Scatella) paludum, male; (31) Lamproscatella sibilans, epandrium and cerci, posterior; (32) Haloscatella arichaeta, epandrium and cerci, posterior; (33)Haloscatella karekare, epandrium and cerci, posterior; (34)Hyadina sp., aedeagus lateral; (35) Parydra aquila, aedeagus lateral; (36) Thinoscatella lattini, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (37) Diedrops steineri, aedeagus, lateral; (38) Lamproscatella sibilans, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), ventral; (39)Lamproscatella sibilans, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (40) Haloscatella arichaeta epandrium and cerci, lateral; (41) Haloscatella arichaeta, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (42) Haloscatella karekare, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), ventral; (43) Haloscatella karekare, internal structures of male terminalia (aedeagus [shaded], phallapodeme, gonite+hypandrium), lateral; (44) Paracoenia bisetulosa, ventral receptacle lateral; (45) Notiocoenia paniculate, ventral receptacle lateral; (46) Scatella (Scatella) stagnalis, ventral receptacle lateral; (47) Philotelma defectum, ventral receptacle lateral.
Figure 2 in Phylogeny and taxonomy of the shore-fly tribe Scatellini (Diptera: Ephydridae: Ephydrinae)
Figure 2. One of the five most parsimonious trees obtained from implied weighting parsimony searches, showing ingroup relationships (outgroup is shown in Fig. 1). Black circles indicate non-homoplasious transformations and blank circles indicate homoplasious transformations. Characters and its states are superimposed on the branches (character number is shown above the circle and the corresponding character state is shown below it). Relative Bremmer support values [red] are included below each branch.
Figure 1 in Phylogeny and taxonomy of the shore-fly tribe Scatellini (Diptera: Ephydridae: Ephydrinae)
Figure 1. One of the five most parsimonious trees obtained from implied weighting parsimony searches, showing outgroup relationships (Scatellini branch is shown in Fig. 2). Black circles indicate non-homoplasious transformations and blank circles indicate homoplasious transformations. Characters and its states are superimposed on the branches (character number is shown above the circle and the corresponding character state is shown below it). Relative Bremmer support values [red] are included below each branch.
Figure 22 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 22. (A) Salacia tetracythara: general view of a stem showing few hydrocladia and hydrothecae; (B) Tridentata loculosa: detail of the stem with two hydrocladia and few hydrothecae; (C-E) Tridentata marginata: (C) general view of a stem with two gonothecae (red arrows); (D) detail of a stem with few hydrocladia and hydrothecae; (E) detail of one gonotheca; (F, I) Tridentata rugosissima: (F) detail of one pair of hydrothecae; (I) general view of a stem with several hydrothecae; (G-H) Tridentata turbinata: (G) detail of one pair of hydrothecae; (H) detail of a stem with hydrothecae.
Figure 23 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 23. (A-D) Tridentata tumida: general view of the basal portion of the stem with hydrothecae (A) and the detail portions of the hydrothecae of the distal (B) medial (C), and basal (D) parts of the stem. (E) Sertularelloides cylindritheca: detail of one hydrotheca with margin renovations; (F) Thyroscyphus ramosus: detail of one hydrotheca with margin renovations and the four opercular valves; (G) Thyroscyphus marginatus: detail of a hydrotheca without operculum.
Figure 18 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 18. (A-B, D) Halopteris carinata: (A) detail of a stem showing few hydrocladia and hydrothecae; (B) detail of stem with two female gonotheca; (D) detail of few hydrocladia with three male gonothecae (red arrows); (C, G) Monostaechas quadridens: (C) general view of a colony; (G) detail of a hydrocladium ramification with two gonothecae (red arrows); (E-F) Halopteris alternata: (E) detail of a stem showing hydrocladia and hydrothecae; (F) detail of a stem ramification with three gonothecae (red arrows); (H-I) Halopteris tenella: (H) detail of a stem with hydrocladia, hydrothecae and gonothecae; (I) detail of a stem with gonothecae (red arrows).
Figure 17 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 17. (A-C) Antennella incerta: (A) general view of a colony on algae; (B) detail of a hydrocladium showing few hydrothecae, nematothecae and a gonotheca (Go - red arrow); (C) detail of an internode with one hydrotheca and nematothecae; (D-E) Antennella curvitheca: (D) detail of a colony on algae; (E) detail of a hydrocladium showing one hydrotheca and nematothecae; (F-G) Antennella secundaria: (F) general view of a colony on algae: (G) detail of a hydrocladium showing one hydrotheca and nematothecae. Details on the images: a – lateral nematotheca, b – medial nematotheca, c – upper axillar nematotheca, d – intersegmental nematotheca, e – upper non-axillar nematotheca, f – intrathecal cusp.
Figure 20 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 20. (A) Dentitheca bidentata: detail of a stem with few hydrocladia and one male gonotheca; (B) Plumularia floridana: detail of a stem showing several hydrothecae and mature gonangia (red arrows); (C) Monotheca margaretta: detail of a stem with few hydrothecae and one gonotheca; (D-E) Monotheca obliqua: (D) general view of a stem; (E) detail of a hydrotheca; (F) Plumularia sp.: (F) detail of a stem showing several hydrocladia and hydrothecae.
Figure 15 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 15. (A-B) Haleciidae sp. 1: (A) detail of a polyp with a gonotheca; (B) detail of a polyp with an expanded hydranth; (C-E) Haleciidae sp. 2: (C) detail of a stem showing a hydranth; (D) detail of a stem ramification; (E) detail of the distal region of a stem; (F-H) Halecium pusillum: (F) general view of a stem; (G) detail of a stem with two male gonothecae; (H) detail of a stem with a female gonotheca.
Figure 9 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 9. (A) Clytia brevithecata: general view of a polyp; (B) Clytia linearis: general view of a colony; (C, H) Clytia macrotheca: general view of a polyp; (H) detail of the hydrotheca margin; (F-G) Clytia noliformis: (F) detail of two gonothecae; (G) general view of a polyp; (D, E, I) Clytia paulensis: (D) general view of a polyp; (E) detail of two gonothecae; (I) – detail of the hydrotheca margin.
Figure 10 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 10. (A) Obelia oxydentata: detail of a stem; (B) Obelia dichotoma: detail of a stem showing some gonothecae (red arrows); (C) Orthopyxis crenata: general view of a polyp; (D) Orthopyxis sargassicola: general view of a polyp and a gonotheca (red arrow).
Figure 7 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 7. (A-B) Corydendrium parasiticum: (A) general view of a colony; (B) detail of a stem showing gonophores (red arrows); (C-D) Turritopsis nutricula: (C) general view of a colony; (D) detail of a polyp showing gonophores (red arrows).
Figure 6 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 6. (A) Hydractiniidae sp. 1: general view of a polyp; (B-D) Hydractiniidae sp. 2: (B) general view of three polyps and a tentaculozooid (red arrow); (C) detail of the tentaculozooid with nematocysts; (D) general view of a colony.
Figure 5 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 5. (A-C) Eudendrium merulum: (A) detail of one male colony showing hydranths and gonophores (red arrows); (B) detail of female colony showing hydranths and gonophores (red arrows); (C) detail of a hydranth showing the two groups of nematocysts characteristic of the species (red arrows); (D-G) Eudendrium carneum: (D) part of a female colony without hydranths highlighting the gonophores (red arrows); (E) an undischarged nematocyst; (F) a discharged nematocyst; (G) detail of two female gonophores.
Figure 3 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 3. (A) Cladocoryne floccosa, detail of a polyp showing a hydranth with gonophore (red arrow); (B) Coryne sp. 1 general view of a polyp; (C) Coryne sp. 2 general view of a polyp; (D-F) Zanclea migottoi: (D) general view of two polyps, one of them with gonophores (red arrow); (E) detail of the medial portion of the hydranth showing a group of nematocysts at the tentacle base (circle) and a discharged nematocyst (red arrow); (F) detail of the hydranth with two undischarged nematocysts (red arrows).
Figure 4 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 4. (A-B) Bimeria vestita: (A) general view of a stem with hydranths and gonophores; (B) detail of the distal region of the stem showing the hydranths and gonophores (red arrows); (C-D) Calyptospadix cerulea: (C) detail of the stem showing hydranths and gonophores (red arrows); (D) general view of a colony; (E) Bougainvillia muscus: detail of a stem showing hydranths and gonophores (red arrows); (F-G) Dicoryne sp.: (F) detail of a polyp with hydranths and gonophores (red arrows); (G) general view of a colony.
Figure 1 in Taxonomy and diversity of hydroids (Cnidaria: Hydrozoa) of Sergipe, Northeast Brazil
Figure 1. Map of the continental shelf of Sergipe, located between the estuary of the São Francisco River and the Piauí-Real-Fundo estuarine complex, indicating the sampling sites.
Figure 6 in Taxonomy as the first step towards conservation: an appraisal on the taxonomy of medium- and large-sized Neotropical mammals in the 21 century
Figure 6. Log body mass as a function of log range area for Neotropical non-volant terrestrial mammals. Taxonomic studies help define species limits, which in turn affect species' geographic range and population size, key criteria defined by the IUCN for assigning species into a threatened category. Note that a reduced range increases the risk of a species being threatened. Polygons are color-coded by IUCN threatened status. Vertical blue line represents a body mass of 1.5 kg. Horizontal red line represents the area of the Neotropical region. Gray horizontal lines represent one of the IUCN thresholds (extent of occurrence) for classifying species as Vulnerable, Endangered and Critically Endangered. Note that extent of occurrence as defined by the IUCN is not the same as geographic range but they are correlated.
Figure 5 in Taxonomy as the first step towards conservation: an appraisal on the taxonomy of medium- and large-sized Neotropical mammals in the 21 century
Figure 5. Proportion of Neotropical medium and large mammalian genera lacking (orange bars) taxonomic studies organized per order. It is noteworthy however that even for those genera that underwent recent taxonomic studies (gray bar), uncertainties in some species limits still remain and they should not be considered fully understood.
Figure 16 in Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil
Figure 16 Map of South Brazil showing the localities for the flavens group species records in grassland areas.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.