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FIGURES 16–22. Petroplacus pantocsekii, SEM. 16 in Notes on the genus Petroplacus (Bacillariophyceae) with new nomenclature transfer
FIGURES 16–22. Petroplacus pantocsekii, SEM. 16. External valve view showing raphe branches with expanded central pores and straight terminal fissures unilaterally deflected (arrows). 17. Internal valve view showing thickened raphe sternum and central area. 18. Detail of external view of the valve center showing transversely elongated central area, proximal raphe endings with expanded central pores, and radial pattern of uniseriate striae; intercalary stria is visible (arrow). 19. Internal valve view showing thickened central nodule, straight proximal raphe endings (black arrows) connected by longitudinal depression (white arrow). 20–22. External proximal raphe endings lying in spatulate grooves and accompanied by lips-like structure.
FIGURE 7–11. Tuberolamia andicola Breuning, 1940 in Revision and transfer of Neotropical genera of the tribe Morimopsini Lacordaire, 1869 (Coleoptera: Cerambycidae): new species, redescription, taxonomic notes, and species key
FIGURE 7–11. Tuberolamia andicola Breuning, 1940, female: 7, dorsal habitus; 8, ventral habitus; 9, lateral habitus; 10, head, frontal view; 11, detail elytral tubercles, lateral view.
FIGURE 22–26 in Revision and transfer of Neotropical genera of the tribe Morimopsini Lacordaire, 1869 (Coleoptera: Cerambycidae): new species, redescription, taxonomic notes, and species key
FIGURE 22–26. Polytuberotum boteroi sp. nov., holotype male: 22, dorsal habitus; 23, ventral habitus; 24, lateral habitus; 25, head, frontal view; 26, detail pronotum and elytral tubercles, dorsal view.
FIGURE 2–6 in Revision and transfer of Neotropical genera of the tribe Morimopsini Lacordaire, 1869 (Coleoptera: Cerambycidae): new species, redescription, taxonomic notes, and species key
FIGURE 2–6. Holotype male, Tuberolamia andicola Breuning, 1940; 2, dorsal habitus; 3, lateral habitus; 4, labels; 5, ventral habitus; 6, head, frontal view.
FIGURE 17–21 in Revision and transfer of Neotropical genera of the tribe Morimopsini Lacordaire, 1869 (Coleoptera: Cerambycidae): new species, redescription, taxonomic notes, and species key
FIGURE 17–21. Tuberolamia santossilvai sp. nov., holotype male: 17, dorsal habitus; 18, ventral habitus; 19, lateral habitus; 20, head, frontal view; 21, detail elytral tubercles, lateral view.
FIGURE 1 in Revision and transfer of Neotropical genera of the tribe Morimopsini Lacordaire, 1869 (Coleoptera: Cerambycidae): new species, redescription, taxonomic notes, and species key
FIGURE 1. Distribution map of Morimopsini species in the Neotropics. A: Peru; B: Known distribution of Tuberolamia andicola (red star), T. grilloides (green star), T. santossilvai (black star), Polytuberotum metachroma (orange asterisk), and P. boteroi (blue asterisk).
FIGURE 12–16 in Revision and transfer of Neotropical genera of the tribe Morimopsini Lacordaire, 1869 (Coleoptera: Cerambycidae): new species, redescription, taxonomic notes, and species key
FIGURE 12–16. Holotype male, Tuberolamia andicola Breuning, 1940: 12, dorsal habitus; 13, ventral habitus; 14, lateral habitus; 15, head, frontal view; 16, labels.
FIGURES 20–37 in New species of Stenopterobia (Bacillariophyta) from Colombia and Peru, and new nomenclatural transfers in Iconella
FIGURES 20–37. Stenopterobia colombiana sp. nov. LM (Figs 20–32) and SEM (Figs 33–37) images from type material LPC 5610-2. 20–32. Specimens in valve view showing size variation. 33. Valve in external view. 34. Detail of a valve in external view showing axial area with median rib (arrow), transapical costae, biseriate striae and fenestrae. 35. Detail of valve in internal view showing portulae, striae and the wide axial area in. 36. Detail of the internal valve view near the apex showing the portulae. 37. Detail of valve apex in internal view showing terminal raphe fissures. Scale bars: 1 µm (Figs 34–37), 10 µm (Figs 20–32), 20 µm (Fig. 33).
FIGURES 2–19 in New species of Stenopterobia (Bacillariophyta) from Colombia and Peru, and new nomenclatural transfers in Iconella
FIGURES 2–19. Stenopterobia caquetaensis sp. nov. LM (Figs 2–13) and SEM (Figs 14–19) images from type material LPC 5610-1. 2–13. Specimens in valve view showing size variation. 14. External view of a valve. 15. External view of a broken frustule, partially showing valve internal view. 16. Detail of the external valve view showing striae, transapical costae and raphe canal. Arrowheads point 2- seriate striae with a third row of marginal areolae. Arrow points a tetraseriate stria. 17. Tilted external view of the same specimen showing valve mantle and fenestrae. Arrow points a tetraseriate stria. 18. Internal valve view with detail of the striae and the ovoid, irregularly spaced portulae. Arrows point the hyaline area separating valve face striae from mantle striae. 19. Internal view of the valve apex. Scale bars: 1 µm (Figs 16–19), 10 µm (Figs 2–13), 20 µm (Figs 14–15).
FIGURE 8 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 8. Cryptantha echinosepala [Johnstonella e.] A. Holotype (Orcutt 15, March 1917, GH00096294), close-up of one plant. Note occasional bracts at base of inflorescence cymules and scattered flower bracts. B-D. Exemplar specimen, Carter 3894, 20 March 1960 (SD106211). B. Stem close-up, showing in this specimen appressed-strigose trichomes. C. Basal leaf close-up, showing marginal pustulate, hispid trichomes. D. Fruit close-ups, showing characteristic hispid trichomes of calyx concentrated on the axial (upper/toward inflorescence axis) side.
FIGURE 7. A,B in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 7. A,B. Cryptantha pondii, distribution map of three known collections. Georeference point for the type, Pond 22, approximate; that of Gentry 8684 placed as a centroid of three different georeferenced estimates. Maps from ©Google 2020, INEGI Data.
FIGURE 3. Cryptantha maritima var. vizcainensis. Images from Moran 19878 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 3. Cryptantha maritima var. vizcainensis. Images from Moran 19878 (SD92358). A. Close-up of base of primary shoot, showing strigose stem vestiture and pustulate trichomes of leaves. B. Corolla face, showing relatively large limb diameter and fornices. C. Mature fruit, calyx opened, showing two nutlets and style, extending just beyond larger, smooth nutlet. D. Close-up of cymule, showing appressedstrigose stem vestiture, flower bract, calyces with hirsute marginal regions of ascending trichomes, and hispid midribs with stout, inclined or spreading trichomes, the latter more prominent on the side away from the inflorescence axis.
FIGURE 6. Cryptantha pondii. A in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 6. Cryptantha pondii. A. Close-up of single plant of presumed lectotype specimen (US41006), confirmed by Johnston (1928) as being correctly identified. Note linear, pustulate leaves and bracts at base of cymules. B,C. Images from Gentry 8684, 13 March 1949 (HCIB21969). B. Four nutlets removed from fruit, showing smooth surface and slight size heteromorphism. C. Close-up of cymules, showing linear bracts and relatively large corollas. D–F. Images from Philbrick B74-84, 25 March 1974 (SBBG49613). D. Fruit with four, smooth nutlets removed. Note finely hirsute calyx marginal region with ascending trichomes, as well as hispid calyx midrib of stouter trichomes. E. Close-up of four nutlets attached to gynobase. Note slight heteromorphism in size and slight extension of style tip/stigma from nutlet apices. F. Cymules, showing appressed-strigose vestiture of axes, scattered linear flower bracts, and relatively large corolla.
FIGURE 5 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 5. Comparisons of fruiting calyces of Cryptantha maritima varieties. A. Cryptantha maritima varieties, left-to-right: var. cedrosensis, var. maritima, var. pilosa, and var. vizcainensis. B. Two samples of var. maritima; note hirsute calyx margin region with few to many appressed trichomes and hispid calyx midrib with stout, mostly spreading trichomes. C. Two samples of var. pilosa; note densely hirsute calyx margin region with ascending to erect trichomes and hispid midribs with few, relatively thin, erect to ascending trichomes.
FIGURE 4. Cryptantha maritima var. vizcainensis. Images from Moran 19878 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 4. Cryptantha maritima var. vizcainensis. Images from Moran 19878 (SD92358). A. Gynobase, nutlets, and style/stigma detached from a single fruit. B. Larger, smooth nutlet, in dorsal (left) and ventral (right) views. C. Smaller, tuberculate nutlet, in dorsal (left) and ventral (right) views. Note ventral groove, short bifid at base.
FIGURE 10 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 10. Cryptantha echinosepala [Johnstonella e.] distribution maps, coordinates from Baja Flora (2021). A. Topography map. Map from ©Google 2020, INEGI Data. B. Map from Baja Flora (2021) showing vegetation zones (after Rebman et al. 2016) where the species occurs.
FIGURE 2 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 2. Distribution maps of varieties of Cryptantha maritima. Data from Baja Flora (2021), CCH2 (2021), GBIF (2020), and SEINet (2021), all specimens annotated by the authors (Appendix 1). A, B. Distribution in North America. A. Full distribution map. B. Close-up of Vizcaíno Peninsula and adjacent islands. Note location of type populations and restriction of C. maritima var. cedrosensis to Cedros Island and of C. maritima var. vizcainensis to the western Vizcaíno region. Black dots=C. maritima var. maritima; red dots=C. maritima var. pilosa; green triangles= C. maritima var. cedrosensis; yellow squares= C. maritima var. vizcainensis. C. Distribution of C. maritima var. pilosa in Argentina, South America, data from GBIF (2020). All maps from ©Google 2021, INEGI Data.
FIGURE 9 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 9. Cryptantha echinosepala [Johnstonella e.] fruit of exemplar, León 3465, 15 March 2003 (SD153719). A. Fruit with four heteromorphic nutlets removed. Note relatively small, persistent corolla. B. Close-up of large "odd" nutlet, in dorsal (left), ventral (middle), and side (right) views. Note tuberculate-spinulose sculpturing. C. Close-up of one of the small "consimilar" nutlets, in dorsal (left), ventral (middle), and side (right) views. Note tuberculate sculpturing, lacking spinules.
FIGURE 1 in Research in Boraginaceae: A new variety of Cryptantha maritima, Cryptantha pondii resurrected, and Johnstonella echinosepala transferred back to Cryptantha
FIGURE 1. Exemplars of three varieties of Cryptantha maritima. A–C. Cryptantha m. var. maritima. A. Image of original material: Greene s.n., 26 Apr 1885, Mexico, Baja California, Guadalupe Island (UC193934). Note bracts and hispid vestiture. B. Field image, showing bracts and small corollas; photograph by Jon Rebman, 2 April 2008, Mexico, Baja California Sur, Laguna San Ignacio. C. Nutlets of fruit, one larger smooth (left) and one smaller tuberculate (right), from Simpson 2933 (SDSU19298). D, E. Cryptantha m. var. cedrosensis. D. Field image, showing larger corolla of this variety; photograph by Jon Rebman, 31 March 2015, Mexico, Baja California, Cedros Island. E. Fruiting calyx with four nutlets dissected out, these heteromorphic with one larger smooth and three smaller tuberculate; from Rebman 2446, 17 March 1994 (HCIB6234). F–H. Cryptantha m. var. pilosa. F. Field image, showing bracts, dense tufts of hirsute trichomes, and small corollas; photograph courtesy of Pablo Ruiz, United States, Pima County, Arizona, Saguaro National Park, iNaturalist observation 39812503. G, H. Images from C.V. Morton 2061, 19 March 1949 (SD113111). G. Close-up of flowers and fruits, showing calyces with dense tufts of whitish, ascending hirsute trichomes, characteristic of this variety. H. Solitary nutlet of fruit, this smooth.
Fig. 2 in Transfer of three species of Namakwanus Scholtz & Howden to Versicorpus Deschodt, Davis & Scholtz or to Namaphilus gen. nov., with descriptions of two new species (Coleoptera: Scarabaeidae: Scarabaeinae)
Fig. 2 Map showing the collecting localities of all the known species of the Byrrhidium group. The black outline indicates the distribution of rock hyraxes (shapefile supplied by IUCN). See online version for map in colour.
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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)
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.