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.
248
datasets available to search
ShareScore release 0.9.0
Dataset results
248 results for “319”
FIGURES 288–319. Encyonopsis minuta Krammer & Reichardt Figs 288–319 in Taxonomy, ecology and analysis of type material of some small Encyonopsis with description of new species in Ireland
FIGURES 288–319. Encyonopsis minuta Krammer & Reichardt Figs 288–319. LM. Figs 288–311. Valves showing morphological range and size variation in populations with clearly capitate apices. Figs 312–319. SEM. Figs 312–315. External view. Figs 316–318. Internal view. Fig. 319. Internal view of raphe fissure with clear intermissio visible. Scale bar in Fig. 311 = 10 μm for all LM figures. Scale bar in all SEM micrographs = 1 μm.
FIGURES 319–326. Pinodytes angulatus. 319. Male right antenna, dorsal. 320. Male right protibia and protarsus. 321. Male right mesotibia. 322. Male right metafemur and metatibia. 323. Aedeagus, lateral. 324. Aedeagus, dorsal. 325. Spermatheca. 326 in Systematics, distributions and bionomics of the Catopocerini (eyeless soil fungivore beetles) of North America (Coleoptera: Leiodidae: Catopocerinae) 3077
FIGURES 319–326. Pinodytes angulatus. 319. Male right antenna, dorsal. 320. Male right protibia and protarsus. 321. Male right mesotibia. 322. Male right metafemur and metatibia. 323. Aedeagus, lateral. 324. Aedeagus, dorsal. 325. Spermatheca. 326. Mesoventrite, lateral. Scale bar = 0.1 mm (Fig. 325), 0.3 mm (Fig. 326), 0.4 mm (Figs. 319–324).
FIGURES 305–319 in Types of Neotropical Mycetophilidae (Diptera) at the Natural History Museum collection, London
FIGURES 305–319. Mycetophilidae habitus and labels of one type lost. 305. Mycetophila bifila Freeman, holotype ♂. 306. Mycetophila chlorochroa Freeman, holotype ♂. 307. Mycetophila cornuta Freeman, holotype ♂. 308. Mycetophila digitalis Freemanm holotype ♂. 309. Mycetophila flabellifera Freeman, holotype ♂. 310. Mycetophila flavithorax Freeman, holotype ♂. 311. Mycetophila insecta Freeman, holotype ♂. 312. Mycetophila lorigera Freeman, holotype ♂. 313. Mycetophila nigrescens Freeman, holotype ♂. 314. Mycetophila nodulosa Freeman, holotype labels. Type lost. 315. Mycetophila ordiniseta Freeman, holotype ♂. 316. Mycetophila ramosa Freeman, holotype ♂. 317. Mycetophila simplex Freeman, holotype ♂. 318. Mycetophila simplicistila Freeman, holotype ♂. 319. Mycetophila subfusca Freeman, holotype ♂.
FIGURES 316–319. Neopleurophora phallus. 316–317. N in Taxonomic revision of the genus Neopleurophora Brown (Diptera: Phoridae), with the description of thirty seven new species
FIGURES 316–319. Neopleurophora phallus. 316–317. N. odontopyga, dorsal and left lateral view respectively; 318–319. N. browni, dorsal and left lateral view respectively.
FIGURES 319–322 in World reclassification of the Gonatocerus group of genera (Hymenoptera: Mymaridae)
FIGURES 319–322. Zeyanus devikulamus, holotype: 319, head, anterior; 320, head posterior; 321, antenna; 322, wings. Scale bars = 100 Μm.
finals_2022_319
Log and boot files of game 319
Supplementary material 7 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Coefficient estimate for each variable of maple basal area computed for different radius and their 95% credible intervals in brackets for models predicting the number of spores detected per week
Supplementary material 3 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Standard curve and its correlation coefficient to determine the limit of detection for the real-time PCR assay in ten-folded DNA solutions of C. corticale mycelium (a) and total number of spores in the qPCR reaction (b)
Supplementary material 5 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Zero-centred histogram of the residuals between simulated data and predictions of the model with the distance to the closest disease report as a predictor of the number of Cryptostroma corticale spores detected in aerobiological samples
Supplementary material 4 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Zero-centred histogram of the residuals between simulated data and predictions of the model with the water balance (P-ETP) in the vegetative season (April-August) of the year preceding disease report as a predictor of the standardized record rate of the SBD
Supplementary material 6 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Zero-centred histogram of the residuals between simulated data and predictions of the model with the total sycamore maple basal area in a radius of 50 km from the sampler as a predictor of the number of Cryptostroma corticale spores detected in aerobiological samples
Supplementary material 2 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Isolates which DNA was extracted and used to confirm the specificity of the primers ccITS2F and SBD3R and probe SBD5P
Supplementary material 8 from: Muller E, Dvořák M, Marçais B, Caeiro E, Clot B, Desprez-Loustau M-L, Gedda B, Lundén K, Migliorini D, Oliver G, Ramos AP, Rigling D, Rybníček O, Santini A, Schneider S, Stenlid J, Tedeschini E, Aguayo J, Gomez-Gallego M (2023) Conditions of emergence of the Sooty Bark Disease and aerobiology of Cryptostroma corticale in Europe. In: Jactel H, Orazio C, Robinet C, Douma JC, Santini A, Battisti A, Branco M, Seehausen L, Kenis M (Eds) Conceptual and technical innovations to better manage invasions of alien pests and pathogens in forests. NeoBiota 84: 319-347. https://doi.org/10.3897/neobiota.84.90549
Probability of disease report in an area of 40-km to 130-km radius from the sampler as a function of the number of detected spores per day
FIGURES 314–319. Female genitalia. 314 in Integrative taxonomic revision of the African taxa of the Racotis Moore, 1887 generic complex (Lepidoptera, Geometridae, Ennominae, Boarmiini)
FIGURES 314–319. Female genitalia. 314. Afroracotis aristophanousi sp. n., PT, Ghana, slide No.: NHMUK 010316165 (NHMUK); 315. Ibidem, PT, Cameroon, slide No.: LG 5045 (ZSM); 316. Ibidem, PT, Cameroon, slide No.: LG 5849 (RMCA); 317. A. atriclava, ST, Madagascar, slide No.: LG 5040 (ZSM); 318. A. muscivirens sp. n., PT, Liberia, slide No.: LG 5430 (ANHRT); 319. A. turlini sp. n., PT, Rwanda, slide No.: LG 4773 (ZSM).
FIGURES 314–319 in Genera of Tischeriidae (Lepidoptera): a review of the global fauna, with descriptions of new taxa
FIGURES 314–319. Male genitalia of Pafazaria capitata Diškus & Stonis, sp. nov., Laos, holotype, genitalia slide no. AD1040 (MfN). 314, capsule, ventral view; 315–317, details of capsule, lateral view; 318, 319, juxta, lateral view
IO Islamic 319. Tafsîr-i-tadhkirat-alanbiyâ wa alumam, A Dogmatic History of the Prophets from Âdam to Muḥammad
<p>IO Islamic 319. Tafsîr-i-tadhkirat-alanbiyâ wa alumam, A Dogmatic History of the Prophets from Âdam to Muḥammad</p>
Figure 4 from: Lin C, Wang M, Yang D (2024) The genus Neurigona Rondani, 1856 (Diptera, Dolichopodidae) from Yunnan, China, with descriptions of seven new species and a key to the species of China. ZooKeys 1190: 319-345. https://doi.org/10.3897/zookeys.1190.109222
Figure 4 Neurigona convexa sp. nov. A male habitus, lateral view B wing C genitalia, lateral view. Scale bars: 1 mm (A); 0.05 mm (B); 0.1 mm (C).
Figure 1 from: Lin C, Wang M, Yang D (2024) The genus Neurigona Rondani, 1856 (Diptera, Dolichopodidae) from Yunnan, China, with descriptions of seven new species and a key to the species of China. ZooKeys 1190: 319-345. https://doi.org/10.3897/zookeys.1190.109222
Figure 1 Neurigona apicilata sp. nov. A male habitus, lateral view B genitalia, lateral view. Abbreviations: C – cercus; H – hypandrium; LP – lateral process; PH – phallus; SDL – surstylus dorsal lobe; SVL – surstylus ventral lobe. Scale bars: 1 mm (A); 0.1 mm (B).
Figure 3 from: Lin C, Wang M, Yang D (2024) The genus Neurigona Rondani, 1856 (Diptera, Dolichopodidae) from Yunnan, China, with descriptions of seven new species and a key to the species of China. ZooKeys 1190: 319-345. https://doi.org/10.3897/zookeys.1190.109222
Figure 3 Neurigona brevidigitata sp. nov. A male habitus, lateral view B genitalia, lateral view. Scale bars: 1 mm (A); 0.1 mm (B).
Figure 7 from: Lin C, Wang M, Yang D (2024) The genus Neurigona Rondani, 1856 (Diptera, Dolichopodidae) from Yunnan, China, with descriptions of seven new species and a key to the species of China. ZooKeys 1190: 319-345. https://doi.org/10.3897/zookeys.1190.109222
Figure 7 Neurigona ventriprocessa sp. nov. A male habitus, lateral view B genitalia, lateral view. Scale bars: 1 mm (A); 0.1 mm (B).
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.