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.
398
datasets available to search
ShareScore release 0.9.0
Dataset results
398 results for “morphotype”
FIGURE 7 in New records of Cyanobacterial morphotypes with Leptolyngbya indica sp. nov. from terrestrial biofilms of the Lower Gangetic Plain, India
FIGURE 7. Phylogenetic tree (NJ/ML) of partial 16S rRNA sequences (1258 nt) of the family Leptolyngbyaceae (order Synechococcales) showing the phylogenetic position of the LBK isolate. Bootstrap values (NJ/ML) for nodes>50% are shown in the tree. The 16S rRNA sequences of the cyanobacterial genus Gloeobacter [G. kilaueensis (Acc. no. NR121745) & G. violaceus (Acc. no. FR798924)] are used as out group.
FIGURE 4 in New records of Cyanobacterial morphotypes with Leptolyngbya indica sp. nov. from terrestrial biofilms of the Lower Gangetic Plain, India
FIGURE 4. Morphological features of Geitlerinema cf. calcuttense in FESEM study. A. Trichome with ring like structure at cross walls. B. In actively growing young trichome zig zag ring at the apical trichal length upto 10 cells noted. C. In trichome active growth zone gradually restricted towards upper part (4–5 cell) in older trichomes and gradual bending of apical part. D. Sticky apical part of the mature trichome with fixed apical ring. E. Thickening present in mature trichome may be for fragmentation of whole trichomes into hormogonia insted of necridic cell formation. Scale bars: A–E= 5 μm.
FIGURE 6 in New records of Cyanobacterial morphotypes with Leptolyngbya indica sp. nov. from terrestrial biofilms of the Lower Gangetic Plain, India
FIGURE 6. Coleofasciculus cf. chthonoplastes filaments under LM and FESEM. A. Filaments with dark blue green trichomes. B. Sheath moderately thick, not intensely lamellated, colorless with many (10–15) trichomes. C. Trichomes outside sheath. D. Trichomes cylindrical, less constricted, apical part attenuated, without calyptra. Scale bars: A–D= 10 μm.
FIGURE 5 in New records of Cyanobacterial morphotypes with Leptolyngbya indica sp. nov. from terrestrial biofilms of the Lower Gangetic Plain, India
FIGURE 5. Morphological features of Geitlerinema cf. jasorvense in FESEM study A. Trichome curved or straight. B. Trichome straight with blunt round apical cell. C. Mature trichome gradually attenuated and bent, slightly constricted at the crosswalls. D. Trichome with straight conical apical cell but without calyptra. E. Trichome with bent apical cell. F. Apical trichal part hook like. G. Variation of apical trichal part in the morphologically similar filament. Scale bars: A= 15 μm;B, D–E= 5 μm; C, F, G=10 μm.
FIGURE 3. A–D in New records of Cyanobacterial morphotypes with Leptolyngbya indica sp. nov. from terrestrial biofilms of the Lower Gangetic Plain, India
FIGURE 3. A–D. Morphological features of Geitlerinema cf. calcuttense under LM and E–I. Morphological features of Geitlerinema cf. jasorvense under LM. A. Trichomes diffluent and emerging from membranaceous macroscopic mats. B. Straight or curved filament without sheath. C. Trichomes unconstricted, usually narrowed and slightly bent to the ends. D. Cells without aerotopes and end cells conical round, narrowed or hooked and motile hormogonia, 'S' shaped. E. Intermingled blue green unbranched filaments with straight or bent terminal cells. F. Curved filament growth forms without heterocytes. G. Cells rectangular without aerotopes. H–I. Filaments bearing conical apical cells without calyptras in mature and young trichome respectively. Scale bars: A–D= 10 μm; E= 20 μm; F–I= 8 μm.
FIGURES 136–172. Brachysira microcephala morphotype BMIC-1. Figs 136–165 in A review of the genus Brachysira in Ireland with the description of Brachysira praegeri and Brachysira conamarae, new raphid diatoms (Bacillariophyceae) from high status waterbodies
FIGURES 136–172. Brachysira microcephala morphotype BMIC-1. Figs 136–165. LM. Figs 166–172. SEM. Scale bar = 10 μm for all LM figures. Scale bar in all SEM micrographs = 2 μm.
FIGURES 240–252. Brachysira microcephala morphotype BMIC-4. Figs 240–246 in A review of the genus Brachysira in Ireland with the description of Brachysira praegeri and Brachysira conamarae, new raphid diatoms (Bacillariophyceae) from high status waterbodies
FIGURES 240–252. Brachysira microcephala morphotype BMIC-4. Figs 240–246. LM. Figs 247–252. SEM. Scale bar = 10 μm for all LM figures. Scale bar in all SEM micrographs = 2 μm.
FIGURES 206–239. Brachysira microcephala morphotype BMIC-3. Figs 206–229 in A review of the genus Brachysira in Ireland with the description of Brachysira praegeri and Brachysira conamarae, new raphid diatoms (Bacillariophyceae) from high status waterbodies
FIGURES 206–239. Brachysira microcephala morphotype BMIC-3. Figs 206–229. LM. Figs 230–239. SEM. Scale bar = 10 μm for all LM figures. Scale bar in all SEM micrographs = 2 μm.
FIGURE 5 in New Chrysophycean cyst morphotypes and their ecology in Finland
FIGURE 5. Stomatocysts ornamented with spines: a) SK12, b) SK13. Stomatocysts ornamented with ridges: c–d) SK14. Stomatocysts ornamented with a circulus: e–f) SK15. Scale bar = 3 µm.
FIGURE 3 in New Chrysophycean cyst morphotypes and their ecology in Finland
FIGURE 3. Stomatocysts ornamented with spines: a) SK6, b) SK7, c–d) SK8, e–f) SK9. Scale bar = 3 µm.
FIGURE 2 in New Chrysophycean cyst morphotypes and their ecology in Finland
FIGURE 2. Unornamented stomatocysts: a) SK1, b–c) SK2, d) SK3. Stomatocysts ornamented with scabrae: e) SK4, f) SK5. Scale bar = 3 µm.
FIGURE 6 in New Chrysophycean cyst morphotypes and their ecology in Finland
FIGURE 6. Stomatocysts ornamented with reticulum: a–b) SK16. Stomatocysts ornamented with depressions: c–d) SK17. Stomatocysts with compound ornamentation: e–f) SK18. Scale bar = 3 µm.
FIGURE 6. Echinothrix calamaris. Color morphotypes. A. Black and white spine form. B. White spine form. C in New Ecological Observations and Occurrence for Asteroidea and Echinoidea in Hong Kong
FIGURE 6. Echinothrix calamaris. Color morphotypes. A. Black and white spine form. B. White spine form. C. Banded spine form. Photographer: Sam King Fung Yiu.
Figure 18. Morphotype F in Genetic and chaetal variation in Nais worms (Annelida, Clitellata, Naididae)
Figure 18. Morphotype F, CE2899, Nais barbata. A, anterior ventral, segment II; B, anterior and posterior ventral, segments V–VI; C, dorsal. Scale bars: 3 Mm.
Figure 21. Morphotype G in Genetic and chaetal variation in Nais worms (Annelida, Clitellata, Naididae)
Figure 21. Morphotype G, CE1184, Nais christinae. A, anterior ventral, segment III; B, posterior ventral, segment XI; C, dorsal. Scale bar: 3 Mm.
Figure 13. Morphotype C in Genetic and chaetal variation in Nais worms (Annelida, Clitellata, Naididae)
Figure 13. Morphotype C, CE1147, Nais communis/variabilis. A, anterior ventral, segment III; B, posterior ventral, segment VIII; C, dorsal. Scale bar: 3 Mm.
Figure 10. Morphotype B in Genetic and chaetal variation in Nais worms (Annelida, Clitellata, Naididae)
Figure 10. Morphotype B, CE1129, Nais communis/variabilis. A, anterior ventral, segment III; B, posterior ventral, segment XIV; C, dorsal. Scale bar: 3 Mm.
Figure 14. Morphotype D in Genetic and chaetal variation in Nais worms (Annelida, Clitellata, Naididae)
Figure 14. Morphotype D, CE3498 (A, B) and CE1955 (C), Nais elinguis. A, anterior ventral, segment IV; B, posterior ventral, segment IX; C, dorsal. Scale bars: 3 Mm.
Figure 8. Morphotype A4 in Genetic and chaetal variation in Nais worms (Annelida, Clitellata, Naididae)
Figure 8. Morphotype A4, CE2049, Nais communis/variabilis. A, anterior ventral, segment III; B, posterior ventral, segment XVI; C, dorsal. Scale bar: 3 Mm.
Figure 6. Morphotype A3 in Genetic and chaetal variation in Nais worms (Annelida, Clitellata, Naididae)
Figure 6. Morphotype A3, CE3492, Nais communis/variabilis. A, anterior ventral, segment V; B, posterior ventral, segment IX; C, dorsal. Scale bars: 3 Mm.
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.