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.
772
datasets available to search
ShareScore release 0.9.0
Dataset results
772 results for “fronts”
FIGURE 4. Pleione jinhuana. A. Plant with flower. B. Flower, front view. C. Flower, side view. D. Flower, back view. E. Anther cap. F in Pleione jinhuana (Arethuseae; Epidendroideae; Orchidaceae), a new species from China based on morphological and DNA evidence
FIGURE 4. Pleione jinhuana. A. Plant with flower. B. Flower, front view. C. Flower, side view. D. Flower, back view. E. Anther cap. F. Pollinia.
FIGURE 3. Pleione jinhuana. A. Plant with flower. B. Flower, front view. C. Sepal and petal. D. Lip. E in Pleione jinhuana (Arethuseae; Epidendroideae; Orchidaceae), a new species from China based on morphological and DNA evidence
FIGURE 3. Pleione jinhuana. A. Plant with flower. B. Flower, front view. C. Sepal and petal. D. Lip. E. Pollinia. Drawn by P. W. Zhang from Liu 7084 (the holotype).
FIGURE 5. Cymbidium densiflorum. A. Flowering plant. B. Flower, front view. C. Flower, side view. D. Column E. Lip. F. Lateral sepal, back view. G–H. Pollinarium. I–J in Cymbidium densiflorum (Orchidaceae; Epidendroideae; Cymbidieae): a new orchid species from China based on morphological and molecular evidence
FIGURE 5. Cymbidium densiflorum. A. Flowering plant. B. Flower, front view. C. Flower, side view. D. Column E. Lip. F. Lateral sepal, back view. G–H. Pollinarium. I–J. Flowering plant of C. aloifolium. K–L. Flowering plant of C. paucifolium.
FIGURE 4. Cymbidium densiflorum. A. Flowering plant. B. Flower, front view. C. Flower, side view. D in Cymbidium densiflorum (Orchidaceae; Epidendroideae; Cymbidieae): a new orchid species from China based on morphological and molecular evidence
FIGURE 4. Cymbidium densiflorum. A. Flowering plant. B. Flower, front view. C. Flower, side view. D. Dorsal sepal, petal and lateral sepal. E. Lip. F. pollinarium.
FIGURE 6. A−I. Encyclia argentinensis. A. Dorsal sepal. B. Lateral sepal. C. Petal. D. Lip. E. Detail lip callus. F. Column front view. G in A taxonomic revision of the Brazilian species of Encyclia (Orchidaceae: Epidendroideae: Epidendreae)
FIGURE 6. A−I. Encyclia argentinensis. A. Dorsal sepal. B. Lateral sepal. C. Petal. D. Lip. E. Detail lip callus. F. Column front view. G. Column side view (Bastos 300). H. Variation in the lip (Batista s.n. CEN 26611). I. Variation in the lip (Godinho 221). J−M. Encyclia auyantepuiensis. J. Dorsal sepal. K. Lateral sepals. L. Petal. M. Lip (Pessoa 1010). N−S. Encyclia bicalhoi. N. Dorsal sepal. O. Lateral sepal. P. Petal. Q. Lip. R. Detail of lip callus. S. Column side view (Bohnke s.n. SP 476498). T−A'. Encyclia bohnkiana. T. Habit (Popovkin 621). U. Dorsal sepal. V. Lateral sepal. X. Petal. W. lip. Y. Detail of lip callus. Z. Column front view. A'. Column side view (van den Berg 1577). B'. Variation in the lip (Meneguzzo 523). Illustration by Carla de Lima.
FIGURE 17. A−G. Encyclia oliveirana. A. Flower pedicel. B. Dorsal sepal. C. Lateral sepal. D. Petal. E. Lip. F. Column front view. G in A taxonomic revision of the Brazilian species of Encyclia (Orchidaceae: Epidendroideae: Epidendreae)
FIGURE 17. A−G. Encyclia oliveirana. A. Flower pedicel. B. Dorsal sepal. C. Lateral sepal. D. Petal. E. Lip. F. Column front view. G. Column side view (Meneguzzo 565). H−R. Encyclia oncidioides. H. Dorsal sepal. I. Lateral sepal. J. Petal. K. Lip. L. Detail of lip callus. M. Column front view. N. Column side view (van den Berg 1059). O. Variation in the dorsal sepal. P. Variation in the lateral sepal. Q. Variation of the petal. R. Variation in the lip (Hatschbach et al. 68552). S−Z. Encyclia osmantha. S. Dorsal sepal. T. Lateral sepal. U. Petal. V. Lip. W. Detail of lip callus. X. Column front view. Y. Column side view (França 3221). Illustration by Carla de Lima.
FIGURE 8. A−G. Encyclia bracteata. A. Dorsal sepal. B. Lateral sepal. C. Petal. D. Lip. E. Detail lip callus. F. Column front view. G in A taxonomic revision of the Brazilian species of Encyclia (Orchidaceae: Epidendroideae: Epidendreae)
FIGURE 8. A−G. Encyclia bracteata. A. Dorsal sepal. B. Lateral sepal. C. Petal. D. Lip. E. Detail lip callus. F. Column front view. G. Column side view (Carvalho 1279). H−N. Encyclia bragancae H. Dorsal sepal. I. Lateral sepal. J. Petal. K. Lip. L. Column front view. M. Column side view (Bastos 325). N−U. Encyclia caximboensis. N. Habit. O. Dorsal sepal. P. Lateral sepal. Q. Petal. R. Lip. S. Detail of lip callus. T. Column front view. U. Column side view (Pereira 2835). Illustration by Carla de Lima.
Recent ice-contact delta formation in front of Pio XI glacier controls sedimentary processes in Eyre Fjord, Patagonia
<p><span>Data for "Recent ice-contact delta formation in front of Pio XI glacier controls sedimentary processes in Eyre Fjord, Patagonia"</span></p>
Data and software for "A numerical study of inhibiting effect and mechanism of thermal front on sediment transport in a stratified continental sea"
<p>Data and software for "A numerical study of inhibiting effect and mechanism of thermal front on sediment transport in a stratified continental sea"</p>
FIGURE 2. Dendrobium jinghuanum B.Q.Zheng & Y.Wang. A. Ramets with vegetative and flowering stems. B. Flower, front view. C. Flower, dorsal view. D in Dendrobium jinghuanum, a new orchid species from Yunnan, China: evidence from both morphology and DNA
FIGURE 2. Dendrobium jinghuanum B.Q.Zheng & Y.Wang. A. Ramets with vegetative and flowering stems. B. Flower, front view. C. Flower, dorsal view. D. Decomposition of a flower. E. Floral buds. F. Column with an anther cap. G. Pollinarium. Illustration based on the holotype, Zheng 001, by Jialin Shan.
FIGURE 2. A. Plant. B. Flower, front view. C. Sepals and petals. D. Lip. E in Stereochilus arunachalensis, a new orchid species of Orchidaceae (Epidendroideae: Vandeae: Aeridinae) from Arunachal Pradesh, India
FIGURE 2. A. Plant. B. Flower, front view. C. Sepals and petals. D. Lip. E. Longitudinal section of lip and spur. F. Column and ovary. G. Anther cap. H. Pollinarium. (Drawn by K. Chowlu.)
FIGURE 2. Dendrobium yongjiaense Z.Zhou & S.R.Lan. A. Plant. B. Flower, front view. C. Flower with lateral sepals removed, side view. D. Lip, front view. E. Petal. F. Dorsal sepal. G. Lateral sepal. H. Column, front view. I in Morphological and molecular evidence for a new species from China: Dendrobium yongjiaense (Orchidaceae: Malaxideae)
FIGURE 2. Dendrobium yongjiaense Z.Zhou & S.R.Lan. A. Plant. B. Flower, front view. C. Flower with lateral sepals removed, side view. D. Lip, front view. E. Petal. F. Dorsal sepal. G. Lateral sepal. H. Column, front view. I. Pollinarium. Drawn by Zhuang Zhou.
FIGURE 2. Tigridia nanchititlensis. A–B. Habitat. C–D. Flower lateral and front view. E. Habit. F in The species of Tigrideae (Iridaceae) in the Sierra of Nanchititla, State of México, Mexico, and description of the new species Tigridia nanchititlensis
FIGURE 2. Tigridia nanchititlensis. A–B. Habitat. C–D. Flower lateral and front view. E. Habit. F. Fruits. Photographs: Aarón Rodríguez.
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H in The species of Tigrideae (Iridaceae) in the Sierra of Nanchititla, State of México, Mexico, and description of the new species Tigridia nanchititlensis
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H. Fruits. Illustrated by Ericka Belén Cortez Castro based on type material (A. Rodríguez et al. 6049).
The Dataset of the paper "Observations of the near-field Yellow River plume, multiple fronts and their biogeochemical effects"
<p>The data for "Observations of the near-field Yellow River plume, multiple fronts and their biogeochemical effects". The file names correspond to the figures in the paper.</p>
Supershear shock front contributions to the tsunami from the 2018 Mw 7.5 Palu earthquake
<p>Simulation data for the manuscript under review</p>
Data from: Individual and temporal variation in habitat association of an alien carnivore at its invasion front
Gathering information on how invasive species utilize the habitat is important, in order to better aim actions to reduce their negative impact. We studied habitat use and selection of 55 GPS-marked raccoon dogs (30 males, 25 females) at their invasion front in Northern Sweden, with particular focus on differences between males and females, between movement states, and between seasons and times of the day. Daily movement pattern was used to classify GPS-locations into dispersing and settled. We focused on both anthropogenic and natural landscape characteristics. Since we did not have any a priori knowledge about the spatial scale of raccoon dog habitat selection, we first assessed how landscape characteristics of random points changed with distance from the GPS-location they were paired to. Because changes in habitat use became less pronounced at approximately 5 km for all variables, we focused on habitat use at two spatial scales: fine (500 m) and coarse (5 km). Habitat selection was strongest at the coarse scale, and reflected the results found for habitat use. Raccoon dogs selected agricultural areas and wetlands, lower altitudes, and shallow slopes, and avoided forests, open natural areas, and areas close to water and roads. There were no differences in habitat selection between males and females, or between movement states. This lack of sexual segregation increases the probability of encountering potential mates during dispersal, and therefore the likelihood for reproduction in new areas. The seasonal and diurnal pattern of habitat use may provide guidance for where and when to aim management efforts.
FIGURES 4–8. C. horni Bruch, male. 4. front tarsal claws, apical aspect. 5. front tarsus, ventral aspect. 6. middle tibia, dorsal aspect. 7. antennal comb, dorsal aspect. 8 in Cicindis horni Bruch (Coleoptera: Carabidae, Cicindini): The Fairy Shrimp Hunting Beetle, its way of life on the Salinas Grandes of Argentina
FIGURES 4–8. C. horni Bruch, male. 4. front tarsal claws, apical aspect. 5. front tarsus, ventral aspect. 6. middle tibia, dorsal aspect. 7. antennal comb, dorsal aspect. 8. ventral vestiture, ventral aspect.
FIGURE 2. Cryptocentrum beckendorfii. A. Habit with inflorescences. B. Flower, front view. C in Cryptocentrum beckendorfii (Orchidaceae: Maxillariinae), an extraordinary new species from Andean Peru
FIGURE 2. Cryptocentrum beckendorfii. A. Habit with inflorescences. B. Flower, front view. C. Flower, lateral view. Photos by S. Beckendorf.
FIGURE 1. Cryptocentrum beckendorfii. A. Habit with inflorescences. B. Flower, front view. C in Cryptocentrum beckendorfii (Orchidaceae: Maxillariinae), an extraordinary new species from Andean Peru
FIGURE 1. Cryptocentrum beckendorfii. A. Habit with inflorescences. B. Flower, front view. C. Sepals, petals, and labellum. D. Flower, lateral view. E. Flower, lateral view, with floral bract removed to show spur and pedicellate ovary. F. Column and labellum, lateral view. G. Column, lateral view. H. Apex of column with anther removed, lateral view. I. Pollinia. Based on Beckendorf s.n. (USM, CICY, FLAS). Drawn by Sarah Adler.
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.