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713 results for “Pygmis”
FIGURE 8 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 8. Collection localities of Criotettix longispinus sp. nov. and Criotettix undatifemurus sp. nov.
FIGURE 7 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 7. ML tree resulting from the analysis of the combined sequences of COI, 16S rRNA and 18S rRNA genes from 9 genera of Scelimeninae (from Chen et al. 2018)
FIGURE 6 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 6. Criotettix undatifemurus Deng, sp. nov., male, paratype: A—body in dorsal view; B—body in lateral view; Csubgenital plate of in lateral view. (scale bar = 1 mm).
FIGURE 1 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 1. Criotettix longispinus Deng, sp. nov., female, holotype: A—body in dorsal view; B—body in lateral view; C—head in dorsal view; D—head and pronotum in dorsal view. (scale bar = 1 mm).
FIGURE 3 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 3. Criotettix longispinus Deng, sp. nov., male, paratype: A—body in dorsal view; B—body in lateral view; C—subgenital plate of in lateral view. (scale bar = 1 mm).
FIGURE 2 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 2. Criotettix longispinus Deng, sp. nov., female, holotype: A—head in lateral view; B—head in frontal view; C—left fore femur in lateral view; D—left mid femur in lateral view; E—left hind femur in lateral view; F—left hind tibia in dorsal view; G—left posterior tarsi in lateral view; H—Ovipositor in lateral view; I—subgenital plate of female in ventral view. (scale bar = 1 mm).
FIGURE 5 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 5. Criotettix undatifemurus Deng, sp. nov., female, holotype: A—head in lateral view; B—head in frontal view; C—left fore femur in lateral view; D—left mid femur in lateral view; E—left hind femur in lateral view; F—left hind tibia in dorsal view; G—left posterior tarsi in lateral view; H—Ovipositor in lateral view; I—subgenital plate of female in ventral view. (scale bar = 1 mm).
FIGURE 4 in An annotated catalogue of the pygmy grasshoppers of the genus Criotettix Bolívar 1887 (Orthoptera: Tetrigidae) with two new Criotettix species from China
FIGURE 4. Criotettix undatifemurus Deng, sp. nov., female, holotype: A—body in dorsal view; B—body in lateral view; C—head in dorsal view; D—head and pronotum in dorsal view. (scale bar = 1 mm).
FIGURES 9–10. Fig 9 in The last batrachideine of Europe: A new genus and species of pygmy grasshopper (Orthoptera: Tetrigidae) from Eocene Baltic amber
FIGURES 9–10. Fig 9. Left lateral image of paratype 1084-5 Danatettix hoffeinsorum early instar nymph (scale bar = 1 mm). Fig 10. Left lateral drawing of paratype 1084-5 Danatettix hoffeinsorum early instar nymph (scale bar = 1 mm)
FIGURES 7–8. Fig 7 in The last batrachideine of Europe: A new genus and species of pygmy grasshopper (Orthoptera: Tetrigidae) from Eocene Baltic amber
FIGURES 7–8. Fig 7. Anterior view of paratype 1084-3 Danatettix hoffeinsorum early instar nymph (scale bar = 0.5 mm). Fig 8. Drawing of anterior view of paratype 1084-3 Danatettix hoffeinsorum early instar nymph (scale bar = 0.5 mm)
FIGURES 5–6. Fig 5 in The last batrachideine of Europe: A new genus and species of pygmy grasshopper (Orthoptera: Tetrigidae) from Eocene Baltic amber
FIGURES 5–6. Fig 5. Left lateral view of paratype 1084-3 Danatettix hoffeinsorum early instar nymph (scale bar = 1 mm). Fig 6. Left lateral drawing of paratype 1084-3 Danatettix hoffeinsorum early instar nymph (scale bar = 1 mm)
FIGURES 1–2. FIG 1 in The last batrachideine of Europe: A new genus and species of pygmy grasshopper (Orthoptera: Tetrigidae) from Eocene Baltic amber
FIGURES 1–2. FIG 1. Dorsal oblique view of holotype 1084-4 Danatettix hoffeinsorum (scale bar = 1 mm). FIG 2. Line drawing of holotype 1084-4 Danatettix hoffeinsorum (scale bar = 1 mm)
FIGURE 3. A in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 3. A map of the central Western Wheatbelt with the ranges of Drosera albonotata, D. coomallo and D. miniata indicated. Observed locations are those visited by the authors or their colleagues where identity of the plants present was directly confirmed. Inferred locations are those where plants thought to be of the same taxon (indicated by herbarium collections or photographs taken by cooperative members of the public) may occur but which could not be confirmed by the authors, mainly as a result of aborted or extremely early flowering during the poor flowering season that coincided with the study period (drawing by A. S. Robinson).
FIGURE 2 in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 2. Living plants photographed in situ, showing left a flowering plant, and right a mature rosette. Photographs A.S. Robinson.
FIGURE 1. Drosera albonotata A.S.Rob., A.T in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 1. Drosera albonotata A.S.Rob., A.T.Cross, Meisterl & A.Fleischm. a—habit of a plant with two inflorescences at anthesis. b—gemma, left adaxial surface, middle lateral view, right abaxial surface. c—leaf with attached stipule as well as unifacial marginal glands, which can be relatively short-lived and not always apparent later in the season, left adaxial surface, right abaxial surface d—petiole cross-section. e—stipule, abaxial surface. f—style arm with stigma. g—gynoecium. h—petal, adaxial surface. i—sepal, abaxial surface. j—stamens, right sub-mature with intact anthers, left mature with extrorse longitudinal thecal dehiscence initiating at anther apex. k— seed. a, c, h, j from living type material prior to pressing, b from cultivated material, d–g, i from herbarium material, k from cultivated material visualised by SEM. Drawn by A. S. Robinson.
FIGURE 6 in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 6. Comparison of the flowers of (left) Drosera albonotata and (right) D. miniata from their respective type localities. Scale bar = 1 cm. Labels A, B and C indicate where comparative width measurements were made to test morphometric variation. The position of B was a fixed distance established in D. albonotata as the narrowest point of constriction of the centre bout (ii) of the pandurate shape, whilst A and C represent the widest points of the proximal (i) and distal (iii) bouts respectively (photographs and illustrations by A.S. Robinson).
FIGURE 8 in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 8. Comparison of the flowers of all twelve orange-flowered Drosera species in D. section Bryastrum. A Drosera albonotata, B D. miniata, C D. coomallo, D D. bindoon, E D. callistos, F D. sewelliae, G D. hyperostigma, H D. platystigma, I D. barbigera, J D. echinoblastus, K D. leucoblasta, L D. pulchella (orange flowered variant). Flowers not all shown at same scale (photographs C, D, E, G, H, J, K by A. Fleischmann; A, B, F, I, L by A.S. Robinson).
FIGURE 7 in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 7. Seeds of A Drosera albonotata, B D. miniata, C D. coomallo and D D. walyunga visualised by SEM (image A by M.E. Meisterl; B, C, D by H. Halbritter).
FIGURE 5 in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 5. Comparison of the (top) adaxial and (bottom) abaxial surfaces of excised petals of Drosera miniata and D. albonotata collected at the respective type localities. Primary (1º), secondary (2º) and tertiary (3º) branching of the veins is indicated. Photographs and illustration A.S. Robinson.
FIGURE 4. A in A new pygmy sundew, Drosera albonotata (Droseraceae), from the western Wheatbelt and an updated diagnostic key to the orange-flowered pygmy Drosera of Western Australia
FIGURE 4. A pollinator of Drosera albonotata, identified as a Melolonthid (Scarabaeidae) possibly in the genus Liparetrus (photograph by A.S. Robinson).
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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.