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Figure 1 in Description of Torymus lasallei, sp. nov. (Hymenoptera: Torymidae), a species with an unusual ovipositor
Figure 1. (a–f) Torymus lasallei, holotype female. (a), habitus, lateral (inset - detail of ovipositor setation); (b), head, dorsal; (c), head, lateral; (d), antennal clava, arrows indicate micropilosity areas; (e), head, detail of lower face; (f), antenna, lateral.
Fig. 2 in Hemipogon trilobatus sp. nov. (Apocynaceae: Asclepiadoideae), a new microendemic from Chapada dos Veadeiros, Central Brazil
Fig. 2. Habitat and distribution of Hemipogon trilobatus Bitencourt & Rapini sp. nov. A. Open savannah in Chapada dos Veadeiros, state of Goiás, Brazil. Photo by CB. B. Map showing the geographic distribution of H. trilobatus sp. nov. in the Cerrado domain (shaded area at reference map in A) and its occurrence (black star) nearby the Chapada dos Veadeiros National Park. Images and distribution maps were built and exported using ArcGIS online (https://www.arcgis.com). © Esri and its licensors, all rights reserved.
Fig. 1 in Hemipogon trilobatus sp. nov. (Apocynaceae: Asclepiadoideae), a new microendemic from Chapada dos Veadeiros, Central Brazil
Fig. 1. Hemipogon trilobatus Bitencourt & Rapini sp. nov. A. Habitus. B. Cyme with two flowers and a bud. C. Flower. D. Flower with calyx and two corolla lobes removed to show the gynostegium. E. Corolla lobe, adaxial view. F. Anther with a staminal corona lobe basally attached. G. Corona lobe showing the 3-lobed apex, adaxial view. H. Gynostegium, viewed from above. I. Pollinarium. Drawn by Pétala Gomes Ribeiro from the holotype (IBGE[33546]).
Fig. 4 in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 4. Ophioderma hendleri sp. nov., paratype (ICML-UNAM 18319, DD = 2.2 mm). A. Dorsal view. B. Basal dorsal arm. C. Dorsal arm. D. Ventral arm. E. Dorsal disc. F. Ventral disc. G. Interradii. H. Mouth.
Fig. 1 in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 1. Ophioderma hendleri sp. nov., holotype (ICML-UNAM 18315, DD = 14.8 mm). A. Dorsal disc. B. Ventral disc. C. Mouth. D. Structures of a jaw (according to Hendler 2018). E. Basal dorsal arm. F. Dorsal arm. G. Ventral arm. H. Lateral arm plates and arm spines. I. Dorsal view. See Material and methods for abbreviations.
Fig. 3 in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 3. Ophioderma hendleri sp. nov., paratype (ICML-UNAM 10582, DD = 4.8 mm). A. Dorsal view. B. Basal dorsal arm. C. Dorsal arm. D. Ventral arm. E. Dorsal disc. F. Ventral disc. G. Interradii. H. Mouth.
Fig. 2 in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 2. SEM images of skeletal elements of Ophioderma hendleri sp. nov., paratype (ICML-UNAM 18323, DD = 15 mm). A–B. Radial shield (external view), deepest pores marked with arrows. C. Center of the distal portion of the radial shield, open meshed pores. D. Dorsal arm plate, with one spur. E. Ventral arm plate, with one spur. F. Lateral arm plate, external face, with two spurs and one condyle. G. Lateral arm plate, lateral face, with spine articulations. H. Lateral arm plate, internal face. I. Outer surface of the LAP (F) with finely meshed and polygonal knobs. J. Spine articulations with a weak sigmoidal fold and tilted lobes. K. Arm vertebra, distal face. L. Arm vertebra, proximal face. M. Tentacle scale. N. Arm spine. O. Dental plate fragments. P. Oral plate, abradial face. Q. Oral plate, adradial face.
Fig. 6 in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 6. SEM images of skeletal elements of Ophioderma panamense (ICML-UNAM 3.18.60, DD = 11.1 mm). A. Radial shield (external view), the pores marked with arrows. B. Dorsal arm plate, with seven spurs. C. Ventral arm plate with one spur. D. Lateral arm plate, external face, with two spurs. E. Lateral arm plate, lateral face, with spine articulations. F. Lateral arm plate, internal face. G. Outer surface of the LAP (D) with fine mesh and rounded knobs. H. Spine articulations with a weak sigmoidal fold and tilted lobes. I. Arm vertebra, proximal face. J. Arm vertebra, distal face. K. Tentacle scale. L. Arm spine. M. Dental plate fragments.
Fig. 7. Ophioderma pentacanthum H.L. Clark, 1917 in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 7. Ophioderma pentacanthum H.L. Clark, 1917, paratype (A–G = MCZ OPH-4519, DD = 21.1 mm H–I = MZUCR-ECH 1413, DD = 23.0 mm; J–K = MZUCR-ECH 1414, DD = 26.8 mm). A. Dorsal disc. B. Ventral disc. C. Mouth. D. Dorsal arm. E. Ventral arm. F. Dorsal view. G. Pores between proximal ventral arm plates. H. Pores in proximal ventral arm plates. I. Pores in median ventral arm plates. J. Pores in proximal ventral arm plates. K. Pores in median ventral arm plates.
Fig. 5. A–D in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 5. A–D. Ophioderma hendleri sp. nov. A–B. In vivo coloration in natural habitat. C–D. In vivo coloration of collected specimens. – E–J. Ophioderma panamense Lütken, 1859, holotype (NHMD- 107679, DD = 21.9 mm). E. Dorsal disc. F. Ventral disc. G. Mouth. H. Dorsal arm. I. Ventral arm. J. Dorsal view.
Fig. 9 in Ophioderma hendleri sp. nov. (Echinodermata: Ophiuroidea: Ophiodermatidae) and its congeners from the Eastern Pacific
Fig. 9. SEM images of skeletal elements of Ophioderma variegatum (ICML-UNAM 3.20.4, DD = 13.6 mm). A. Radial shield (external view), deepest pores marked with arrows. B. Dorsal arm plate, with five spurs. C. Ventral arm plate, with one spur. D. Lateral arm plate, external face, with two spurs and one condyle. E. Lateral arm plate, lateral face, with spine articulations. F. Lateral arm plate, internal face. G. Outer surface of the LAP (D) with fine mesh and rounded knobs. H. Spine articulations with a weak sigmoidal fold and tilted lobes. I. Arm vertebra, distal face. J. Arm vertebra, proximal face. K. Arm spine. L. Dental plate fragments. M. Oral plate, adradial face, with arrows pointing to four oral papillae sockets.
Fig. 6 in Discometra luberonensis sp. nov. (Crinoidea, Himerometridae), a new feather star from the Late Burdigalian
Fig. 6. Calices of Discometra rhodanica (Fontannes, 1877) from Picabrier. A. Aboral oblique view of centrodorsal, largest specimen (MHNL 20.062686). B. Adoral oblique view, smallest specimen (MHNL 20.062688). C–D. Specimen of intermediate size (MHNL 20.062687). C. Adoral oblique view. D. Aboral oblique view. Scale bars = 1 mm.
Fig. 5 in Discometra luberonensis sp. nov. (Crinoidea, Himerometridae), a new feather star from the Late Burdigalian
Fig. 5. Late Burdigalian specimens attributed to Discometra rhodanica (Fontannes, 1877) by de Loriol (1897). A–B. Neotype of D. rhodanica from Notre-Dame du Château (MASR 2020.5011). A. Oblique aboral view of centrodorsal. B. Oblique adoral view of calyx (arrow = sub-rectangular low ridge). C–E. Unidentified Comatulidae Fleming, 1928. C. Adoral face of a centrodorsal from Entrechaux – ʻFerme Pieʼ (MHNL 20.062689). D-E. Radial circlet from Notre-Dame du Château (MASR 2020.5021). Scale bars = 1 mm.
Fig. 1 in Discometra luberonensis sp. nov. (Crinoidea, Himerometridae), a new feather star from the Late Burdigalian
Fig. 1. The Miocene Rhône-Provence Gulf (modified from Philippe 1998: fig.1). A = submarine or emerging shoals; B = limit of the Rhône-Provence Gulf; C = estimated limit of the Burdigalian transgression. Sites with Discometra Gislèn, 1924 cited in the text are indicated as follows: black star = Ménerbes-Lacoste Plateau; 1 = Bollène; 2 = Les Angles; 3 = Caumont-sur-Durance (Picabrier); 4 = Notre-Dame du Château; 5 = Entrechaux.
Fig. 4 in Discometra luberonensis sp. nov. (Crinoidea, Himerometridae), a new feather star from the Late Burdigalian
Fig. 4. Cross sections near aboral surface of radial circlet showing Y-shaped coelomic canals in the genus Discometra Gislèn, 1924. A. Discometra rhodanica (Fontannes, 1877). B. Discometra eggenburgensis (Schaffer, 1912). Modified from Sieverts-Doreck (1961) in which A was modified from Fontannes (1880).
Fig. 3 in Discometra luberonensis sp. nov. (Crinoidea, Himerometridae), a new feather star from the Late Burdigalian
Fig. 3. Centrodorsal and radials in Himerometridae A.H. Clark, 1908. A–D. Himerometra robustipinna (Carpenter, 1881) (MNHN-IE-2012-862). A. Adoral side of centrodorsal. B. Cirrus sockets on lateral face of centrodorsal. C–D. Radials. C. Adoral view showing vermiculate grooves on inner face. D. Distal articular facet. E. Discometra rhodanica (Fontannes, 1877) from Picabrier (MHNL 20.062687), cirrus sockets on centrodorsal. Scale bars: A–D = 1 mm; E = 0.5 mm.
Fig. 2 in Discometra luberonensis sp. nov. (Crinoidea, Himerometridae), a new feather star from the Late Burdigalian
Fig. 2. Aboral view of the proximal crown and centrodorsal in three genera of Himerometridae A.H. Clark, 1908. A–F. Discometra luberonensis sp. nov., Late Burdigalian of Ménerbes-Lacoste Plateau. A–B. Holotype (MHNL 20.062682). C–D. Paratype (MHNL 20.056148). E–F. Paratype (MHNL 20-056151). G–H. Extant species of Himerometridae from western Pacific. G. Himerometra robustipinna (Carpenter, 1881) (MNHN-IE-2012-862). H. Heterometra savignii (Müller, 1841) (MNHN-IE-2016-1381). Scale bars: A–G = 10 mm; H = 5 mm.
FIG. 5 in Terminalia carinata Sabatier & J.Engel, sp. nov. (Combretaceae), a new large tree species from the Guiana shield revealed by re-examination of material previously identified as T. guyanensis Eichler
FIG. 5. — Terminalia guyanensis Eichler: A, fruiting branch; B, transverse section of fruit; C, inflorescences; D, longitudinal section (left) and lateral view (right) of flower; A, B, Sabatier 6331 (CAY); C, D, Sabatier & al. 6018 (P). Drawn by Laurence Ramon. Scale bars: A, B, 2 cm; C, 1 cm; D, 1 mm.
FIG. 3 in Terminalia carinata Sabatier & J.Engel, sp. nov. (Combretaceae), a new large tree species from the Guiana shield revealed by re-examination of material previously identified as T. guyanensis Eichler
FIG. 3. — Leaf abaxial surface in SEM: A-D, Terminalia carinata Sabatier & J.Engel, sp. nov.; note the hidden stomata; E, F, Terminalia guyanensis Eichler; A, B, Sabatier et al. 4891; D, E, De Granville et al. 10958; E, F, Sabatier et al. 6018. Scale bars: A, C, E, 200 µm; B, D, F, 100 µm.
FIG. 2 in Terminalia carinata Sabatier & J.Engel, sp. nov. (Combretaceae), a new large tree species from the Guiana shield revealed by re-examination of material previously identified as T. guyanensis Eichler
FIG. 2. — Terminalia carinata Sabatier & J.Engel, sp. nov.: A, B, inflorescences; C, fruiting branch (note fruit keeled on one side and flat on the other); D, stem with leaves; note: i) the typical Terminalia arrangement of leaves clustered at twig tips; and ii) the leaf margin revolute at very base; E, trunk; F, trunk slash; A, B, Mori & Gracie 18653; C, Sabatier et al. 4891 (type specimen); D, Sabatier 2309. A, B, Photographs by Carol Gracie; C, D, photographs by Daniel Sabatier; E, F, photographs by Julien Engel.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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OpenNeuro
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