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.
411
datasets available to search
ShareScore release 0.7.1
Dataset results
411 results for “Democratic Republic of the Congo”
FIGURE 5 in Description of a new long-tailed skink (Scincidae: Trachylepis) from Angola and the Democratic Republic of the Congo
FIGURE 5. Preserved holotype of Trachylepis raymondlaurenti sp. nov. (CAS 258401). Photo by Luis M. P. Ceríaco.
FIGURE 3 in A new species of Nanochromis (Teleostei: Cichlidae) from Lake Mai Ndombe, central Congo Basin, Democratic Republic of Congo
FIGURE 3. Nanochromis wickleri, paratype, AMNH 236666, 44.7 mm SL, (a) isolated 1st gill arch, (b) oral jaws, suspensorium and operculum, (c) LPJ, and (d) infraorbital series.
FIGURE 1 in A new species of Nanochromis (Teleostei: Cichlidae) from Lake Mai Ndombe, central Congo Basin, Democratic Republic of Congo
FIGURE 1. Nanochromis wickleri, holotype, ZSM 29695, male, 70.01 mm SL (91.3 mm TL);, Lake Mai Ndombe at Inongo, Democratic Republic of Congo (a) preserved (b) in life.
FIGURE 11. Trichanthecium striatissimum. A. Habit. B. Ligular region. C in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 11. Trichanthecium striatissimum. A. Habit. B. Ligular region. C. Detail of a branch of the inflorescence. D. Spikelet, ventral view. E. Spikelet, dorsal view. F. Lower glume. G. Lower palea. H. Upper anthecium, dorsal view. I. Upper anthecium, ventral view. J. Upper palea with stamens. (Humbert 8574 BR).
FIGURE 10. Trichanthecium pusillum. A. Habit. B. Ligular region. C in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 10. Trichanthecium pusillum. A. Habit. B. Ligular region. C. Detail of a branch of the inflorescence. D. Spikelet, lateral view. E. Spikelet, ventral view. F. Spikelet, dorsal view. G. Lower lemma. H. Lower lemma with upper anthecium. I. Upper anthecium, dorsal view. J. Upper anthecium, ventral view. K. Upper palea with lodicules. L. Stamens of the upper anthecium. (Bogdan 3283 US).
FIGURE 9. Trichanthecium marunguensis. A. Habit. B. Ligular region. C in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 9. Trichanthecium marunguensis. A. Habit. B. Ligular region. C. Detail of a branch of the inflorescence. D. Spikelet, lateral view. E. Lower glume. F. Upper glume. G. Lower lemma. H. Lower palea, ventral view. I. Lower palea, dorsal view with stamens and lodicules. J. Upper anthecium, dorsal view. K. Upper anthecium, lateral view. L. Upper palea with lodicules and stamens. (Lisowski et al. 9669 BR).
FIGURE 8. Trichanthecium inaequilatum. A. Habit. B. Ligular region. C in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 8. Trichanthecium inaequilatum. A. Habit. B. Ligular region. C. Detail of a branch of the inflorescence. D. Spikelet, ventral view. E. Spikelet, dorsal view. F. Lower glume. G. Lower palea. H. Upper anthecium, dorsal view. I. Stamen. J. Upper palea and gynoecium. (Cook 346 US).
FIGURE 5. Trichanthecium chionachne. A. Habit. B. Ligular region. C in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 5. Trichanthecium chionachne. A. Habit. B. Ligular region. C. Detail of a branch of the inflorescence. D. Spikelet, lateral view. E. Lower glume. F. Lower palea with anthers. G. Upper anthecium, dorsal view. H. Upper anthecium, ventral view. I. Upper palea, lodicules and caryopsis. J. Caryopsis, hilum view. (Wiehe N/363 US).
FIGURE 7. Trichanthecium eickii. A. Habit. B. Ligular region. C in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 7. Trichanthecium eickii. A. Habit. B. Ligular region. C. Detail of a branch of the inflorescence. D. Spikelet, lateral view. E. Spikelet, ventral view. F. Upper glume. G. Lower lemma. H. Upper anthecium, dorsal view. I. Upper anthecium, ventral view. (Faden et al. 46/927 US).
FIGURE 4. Trichanthecium calvum. A. Habit. B. Ligular region. C in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 4. Trichanthecium calvum. A. Habit. B. Ligular region. C. Detail of a branch of the inflorescence. D. Spikelet, ventral view. E. Spikelet, dorsal view. F. Upper anthecium, dorsal view. G. Upper palea. H. Caryopsis, hilum view. I. Caryopsis, embryo view. (Louis 5248 BR).
FIGURE 3 in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 3. Scanning electron micrographs of Trichanthecium marunguensis. A. Dorsal view ofthe apex of the lower glume with two prominent macrohairs. B. Detail of the base of a macrohair, showing the hemispherical cell surrounding its base. C. Upper anthecium in dorsal view. D. Lower glume in dorsal view showing the two macrohairs that are longer than the glume. E. Apex of the lemma with simple papillae and elongated bicellular microhairs (wall of the proximal cell thicker than the distal cell collapsed or deciduous). F. Apex of the upper palea showing simple papillae, bicellular microhairs and prickles in the distal portion. G. Upper anthecium, ventral view. Scale bars: A, C, E–G, 200 µm, B, 100 µm, D, 500 µm.
FIGURE 2 in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 2. Bright-field microscope micrographs of the leaf anatomy of Trichanthecium marunguensis. A–C. Transverse sections. A. Double headed arrows indicate nearby vascularbundles separated by 4–5 mesophyll cells. B. Adaxial groups of bulliform cells fan-shaped are indicated (bg). C. Colorless parenchymatous adaxial and abaxial extensions linking bundles with epidermis (ex) and raised epidermal cells surrounding the base of macrohairs (bm) are indicated. D–E. Adaxial epidermis in superficial view. D. Stomata with dome-shaped subsidiary cells (sc), basal cell of a bicellular microhair (*), and silica body in dumb-bell (sb) are indicated. E. Rows of stomata (st) and the base of a macrohair (mh) areindicated. Scale bars: A, 255 µm, B–C, 95 µm, D, 40 µm, E, 25 µm.
FIGURE 1 in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE 1. Maximum Clade Credibility Tree (MCCT) from the Bayesian inference analysis of the total combined dataset (ndhF+rbcL). Bayesian posterior probabilities (right) and ML bootstrap support (left) are presented along branches; no support is shown for branches with posterior probability <0.5 and/or bootstrap support <50%.
FIGURE 25 in Eunotia rudis sp. nov., a new diatom (Bacillariophyta) from the Man and Biosphere Reserve at Yangambi, Democratic Republic of the Congo
FIGURE 25. Variation in the valve length (diamond) and width (triangle) for 45 valves of Eunotia rudis measured in LM.
FIGURES 13–18. Eunotia rudis from type material CCA 3282, SEM external views. 13–14 in Eunotia rudis sp. nov., a new diatom (Bacillariophyta) from the Man and Biosphere Reserve at Yangambi, Democratic Republic of the Congo
FIGURES 13–18. Eunotia rudis from type material CCA 3282, SEM external views. 13–14. Overview of an entire valve. 15–16. Detail of both poles of the same valve showing the enlarged terminal raphe endings. 17. Overview of an entire frustule in girdle view. 18. Detail of the girdle bands near the undulation on the dorsal side. Scale bar: 10 μm (Figs 13–14, 17), 5 μm (Figs 15–16, 18).
FIGURES 2–12 in Eunotia rudis sp. nov., a new diatom (Bacillariophyta) from the Man and Biosphere Reserve at Yangambi, Democratic Republic of the Congo
FIGURES 2–12. Eunotia rudis, LM. 2–9.Valve views showing size diminution series. 10–12. Girdle views. 3–4. Same valve taken at different foci. 6–7. Same valve taken at different foci. 10–11. Same frustule taken at different foci. Valves and frustules from the holotype slide BR 4447, Libongo River, Tshopo Province, Democratic Republic of the Congo. 6–7. Valve representing the holotype. Scale bar: 10 μm.
FIGURE 1 in Eunotia rudis sp. nov., a new diatom (Bacillariophyta) from the Man and Biosphere Reserve at Yangambi, Democratic Republic of the Congo
FIGURE 1. Map showing the location of the Libongo Stream on the right bank of the Congo River, D.R. Congo. Modified from Virgilio et al. (2011).
FIGURES 19–24. Eunotia rudis from type material CCA 3282. 19–22. SEM external views. 23–24. SEM internal views. 1–20 in Eunotia rudis sp. nov., a new diatom (Bacillariophyta) from the Man and Biosphere Reserve at Yangambi, Democratic Republic of the Congo
FIGURES 19–24. Eunotia rudis from type material CCA 3282. 19–22. SEM external views. 23–24. SEM internal views. 1–20. Detail of the girdle bands near both poles of the same frustule. 21–22. Details of the areolae, obliquely perforating the thick silica wall; hymen (arrow) laying deep in the cell wall. 23. Overview of an entire valve. 24. Detail of a terminal raphe ending with a small helictoglossa and rimoportula (arrow). Scale bar: 10 μm (Fig. 23), 5 μm (Figs 19–20), 2 μm (21, 24), 1 μm (22).
FIGURE S2 in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE S2. Maximum Clade Credibility Tree (MCCT) from the Bayesian inference analysis based on the chloroplast rbcL gene. Bayesian posterior probabilities (right) and ML bootstrap support (left) are presented along branches; no support is shown for branches with posterior probability <0.5 and/or bootstrap support <50%.
FIGURE S1 in Old World species of Trichanthecium (Poaceae: Panicoideae: Paniceae) including a new species from the Democratic Republic of Congo
FIGURE S1. Maximum Clade Credibility Tree (MCCT) from the Bayesian inference analysis based on the chloroplast ndhF gene. Bayesian posterior probabilities (right) and ML bootstrap support (left) are presented along branches; no support is shown for branches with posterior probability <0.5 and/or bootstrap support <50%.
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.