Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
275
datasets available to search
ShareScore release 0.9.0
Dataset results
275 results for “Morpho”
FIGURE 16 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 16. Principal component analysis (PCA) plot for examined Onobrychis taxa based on pollen quantative characters (according to Table 3).
FIGURE 4 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 4. Comparative illustrations of stipules in Onobrychis species: (A) O. cornuta, (B) O. dealbata, (C) O. laxiflora, (D) O. micrantha, (E) O. stewartii, (F) O. tavernierifolia (scale bar according to Table 2).
FIGURE 8 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 8. Comparative illustrations of legume in Onobrychis species: (A) O. dealbata, (B–C) O. laxiflora, (D) O. micrantha, (E) O. stewartii, (F) O. tavernierifolia (scale bar according to Table 2).
FIGURE 17 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 17. UPGMA cladistic tree of Onobrychis taxa based on pollen quantative characters (according to Table 3).
FIGURE 10 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 10. Comparative transverse sections of stem in Onobrychis species: (A) O. cornuta, (B) O. dealbata, (C) O. laxiflora, (D) O. micrantha, (E) O. stewartii, (F) O. tavernierifolia. Acronyms: ep—epidermis, tr—trichomes, cl—collenchyma, co—cortex parenchyma, sc—sclerenchymatous tissue, ca—cambium, ph—phloem, phs—phleom sclerenchyma, xy—xylem cells, xyp—xylem parenchyma, xys—xylem sclerenchyma, pc—pith cavity, pi—pith.
FIGURE 9 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 9. Comparative illustrations of seeds in Onobrychis species: (A) O. dealbata, (B–C) O. laxiflora, (D) O. micrantha, (E) O. stewartii, (F) O. tavernierifolia (scale bar according to Table 2).
FIGURE 6 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 6. Comparative illustrations of floral segments in Onobrychis species: Calyx: (A1) O. cornuta, (A2) O. dealbata, (A3) O. laxiflora, (A4) O. micrantha, (A5) O. stewartii, (A6) O. tavernierifolia; Vexillum: (B1) O. cornuta, (B2) O. dealbata, (B3) O. laxiflora, (B4) O. micrantha, (B5) O. stewartii, (B6) O. tavernierifolia; Wings: (C1) O. cornuta, (C2) O. dealbata, (C3) O. laxiflora, (C4) O. micrantha, (C5) O. stewartii, (C6) O. tavernierifolia (scale bar according to Table 2).
FIGURE 7 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 7. Comparative illustrations of floral segments in Onobrychis species: Keel: (A1–B1) O. cornuta, (A2–B2) O. dealbata, (A3– B3) O. laxiflora, (A4–B4) O. micrantha, (A5–B5) O. stewartii, (A6–B6) O. tavernierifolia; Stamen: (C1) O. cornuta, (C2) O. dealbata, (C3) O. laxiflora, (C4) O. micrantha, (C5) O. stewartii, (C6) O. tavernierifolia; Carpel: (D1) O. cornuta, (D2) O. dealbata, (D3) O. laxiflora, (D4) O. micrantha, (D5) O. stewartii, (D6) O. tavernierifolia (scale bar according to Table 2).
FIGURE 5 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 5. Comparative illustrations of bracts in Onobrychis species: (A) O. cornuta, (B) O. dealbata, (C) O. laxiflora, (D) O. micrantha, (E) O. stewartii, (F) O. tavernierifolia (scale bar according to Table 2).
FIGURE 15 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 15. Comparative pollen morphology in Onobrychis species at scanning electron microscopy; O. cornuta in equatorial view (A), in exine sculpturing view (B), in polar view (C); O. dealbata in equatorial view (D), in exine sculpturing view (E), in polar view (F); O. laxiflora in equatorial view (G), in exine sculpturing view (H), in polar view (I); O. micrantha in equatorial view (J), in exine sculpturing view (K), in polar view (L); O. stewartii in equatorial view (M), in exine sculpturing view (N), in polar view (O); O. tavernierifolia in equatorial view (P), in exine sculpturing view (Q), in polar view (R).
FIGURE 3 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 3. Field photos of Onobrychis species in natural habitat: A–C) O. stewartii © Subhani Jan, D–F) O. tavernierifolia © Amjad Khan & Nazar Khan.
FIGURE 13 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 13. Comparative transverse sections of leaflet in Onobrychis species: (A) O. cornuta, (B) O. dealbata, (C) O. laxiflora, (D) O. micrantha, (E) O. stewartii, (F) O. tavernierifolia. Acronyms: ue—upper epidermis, le—lower epidermis, tr—trichomes, pp—palisade parenchyma, sp—spongy parenchyma, vs—vascular bundle, cl—collenchyma.
FIGURE 2 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 2. Field photos of Onobrychis species in natural habitat: A–C) O. cornuta © Amjad Khan, D–F) O. dealbata © Amjad Khan & Sadia, G–I) O. laxiflora © Amjad Khan & Amir Sultan, J–L) O. micrantha © Amjad Khan.
FIGURE 14 in Morpho-anatomical and palynotaxonomic study of the genus Onobrychis Miller (Hedysareae-Fabaceae) in Pakistan, and its systematic significance
FIGURE 14. Comparative pollen morphology in Onobrychis species: (A–R) General view at light microscopy; (A–C) O. cornuta, (D–F) O. dealbata, (G–I) O. laxiflora, (J–L) O. micrantha, (M–O) O. stewartii, (P–R) O. tavernierifolia (scale bar 10 µm).
FIGURE 4 in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 4. The projection of the multiple correspondence analysis (axes 1 and 2) of the specimens of Ambrosina bassii according to the four varieties (large circles) and to the sampling country: Corsica, Algeria, Italy and Tunisia (colored symbols).
FIGURE 3 in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 3. Ambrosina bassii -Tunisia: Morphological leaf variability of the form (A, B–C); the margin (D, E–F); the color of the blade and the veins (G, H, I, J, K–L); the base (M, N–O) and the apex (P, Q, R–S). The blades are green, light green or sage green, ranging from broadly elliptical shape (width / length> 0.75), elliptical (width / length ranges from 0.5–0.74) to narrowly elliptical (width /length <0.49) (Figs. A–C). The blade can also be stained with purple-black, with arched top, obtuse, very obtuse or lobed (Figs. P–S) and cordate base, rounded or clasping (Figs. M–O). The veins are more or less parallel arising from the petiole insertion green, light green or dark green. The margins of the leaf blade are wavy, tense or not corrugated (Figs. D–F). Photographed by Safa Ben Khalifa.
FIGURE 2. Ambrosina bassii L in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 2. Ambrosina bassii L.: var. maculata (A); var. reticulata (B) and var. bassii (C) from Tunisia. Photographed by Safa Ben Khalifa.
FIGURE 1. A in Distribution and infraspecific morpho-ecological variability of Ambrosina bassii (Araceae) an endemic of western-central Mediterranean
FIGURE 1. A. Distribution of Ambrosina bassii, an endemic species of western central Mediterranean. Black Triangles represent voucher locations listed in the literature and from herbarium specimens. B. Sites prospected in Tunisia (black triangles: prospected sites where A. bassii is present, open triangles: prospected sites where A. bassii is absent). Region codes are: M: Mogods, K: Kroumirie, VM: Medjerda Valley, DT: Tunisian dorsal, NE: North-East.
FIGURE 6 in Morpho-molecular characterization of Peroneutypa (Diatrypaceae, Xylariales) with two novel species from Thailand
FIGURE 6. Asexual of Peroneutypa scoparia (MFLUCC 17-2143) a. Culture surface on PDA. b. Conidiomata on PDA. c. Section of conidioma. d. conidiophores stained with congo red. e. Peridium. f, i. Conidia. g, h. Conidia attached to conidiogenous cells. Scale bars: c = 100 μm, d, f–i, = 10 μm, e = 50 μm.
FIGURE 2 in Morpho-molecular characterization of Peroneutypa (Diatrypaceae, Xylariales) with two novel species from Thailand
FIGURE 2. Peroneutypa diminutiasca (MFLU 17-1187, holotype!). a. Host substrate. b, c. Appearance of stromata on substrate. d. Cross section through stroma. e. Vertical section through stroma. f. Ascoma. g. Ostiolar canal. h. Peridium. i–l. Asci. m. Paraphyses. n. Ascospores. o. Germinating ascospore. p, q. Culture characteristic on PDA after 10 days (p = colony from above, q = colony from below). Scale bars: e = 250 μm, f–h, m = 20 μm, i–l, n, o = 5 μm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.