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.
173
datasets available to search
ShareScore release 0.9.0
Dataset results
173 results for “323”
Figures 67-72 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 67-72 Gryon aetherium, lateral habitus 67 female (FSCA 00094902), ex. Bagrada hilaris68 female (FSCA 00094885), ex. Bagrada hilaris69 female (FSCA 00094903), ex. Holcostethus70 female (FSCA 00094899), ex. Thyanta custator71 male (FSCA 00094877), ex. Banasa sordida72 male (FSCA 00094901), ex. Euschistus conspersus.
Figures 79-82 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 79-82 Gryon gryonis, holotype female 79 habitus, lateral view 80 mesosoma and T1, lateral view 81 head, anterior view 82 head and mesosoma, anterolateral view.
Figure 2 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figure 2 Position and phylogenetic relationships of Hadronotus relative to other Scelionidae based on the topology depicted in Figure 1. Colored boxes above branches correspond to the level of support obtained for that branch based on the support metric. Branches annotated with a single box received equal levels of support in all analyses. The scale bar indicates the expected number of substitutions per site.
Figures 59-66 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 59-66 Gryon aetherium59 female (FSCA 00094873), head, anterior view 60 female (FSCA 00094869), head, posterolateral view 61 female (FSCA 00094873), antennal clava, lateral view 62 female (FSCA 00094869), mesosoma, ventral view 63 female (FSCA 00094873), mesosoma, dorsolateral view 64 female (FSCA 00094874), mesosoma, anterolateral view 65 female (FSCA 00094874), mesosoma, posterolateral view 66 female (FSCA 00094871), hind tibia, dorsal view.
Figures 29-34 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 29-34 Gryon cydnoide29 holotype female (USNMENT01059665), head and mesosoma, anterior view 30 female (OSUC 395743) head, anterior view 31 holotype female (USNMENT01059665), habitus, dorsal view 32 female (OSUC 395739), habitus, dorsolateral view 33 holotype female, habitus, lateral view 34 mesosoma and T1, dorsolateral view.
Figures 26-28 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 26-28 Gryon paradigma (CNC664037) 26 head, anterior view 27 mesosoma and T1, dorsolateral view 28 hind leg, lateral view.
Figures 47-50 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 47-50 47Encyrtoscelio (OSUC 334153), head, lateral view 48Tyrannoscelio genieri Masner & Johnson (OSUC 545772), head and mesosoma, lateral view 49Acanthoscelio (OSUC 232241), head, anterior view 50Sparasion philippinensis (USNMENT00872835), head, anterior view.
Figures 41-46 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 41-46 Gryon crenatum41 holotype female (MZLU Type no. 911:1), habitus, dorsolateral view 42 female (SAM-HYM-P093658), head, anterior view 43 female (SAM-HYM-P093675), head and mesosoma, lateral view 44 female (SAM-HYM-P093658), head, lateral view 45 female (SAM-HYM-P093658), fore tarsus, lateral view 46 female (SAM-HYM-P093658), subgenual spines on hind tibia, posterolateral view.
Figures 51-53 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figures 51-53 Gryon californicum, paratype female (USNMENT01109308) 51 habitus, lateral view 52 head, anterior view 53 metasoma, dorsal view.
Figure 1 from: Talamas EJ, Bremer JS, Moore MR, Bon M-C, Lahey Z, Roberts CG, Combee LA, McGathey N, van Noort S, Timokhov AV, Hougardy E, Hogg B (2021) A maximalist approach to the systematics of a biological control agent: Gryon aetherium Talamas, sp. nov. (Hymenoptera, Scelionidae). In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 323-480. https://doi.org/10.3897/jhr.87.72842
Figure 1 Best tree from the multi-gene, maximum likelihood phylogenetic analysis of Scelionidae conducted in IQ-TREE. Branch support values were generated from 10,000 ultrafast bootstrap replicates and are indicated above branches. The positions of Hadronotus (Clade A), Gryon (Clade B), and Dyscritobaeus (Clade B) are indicated in green, blue, and red, respectively.
Figs 317–323. Liroetis paragrandis Jiang, 1988. 317–320 in Redefinition of Liroetis, with descriptions of two new species and an annotated list of species (Coleoptera: Chrysomelidae: Galerucinae)
Figs 317–323. Liroetis paragrandis Jiang, 1988. 317–320 – Female, paratype (13.8 mm). 317 – dorsal view; 318 – ventral view; 319 – lateral view; 320 – labels. 321–322 – Male (12.2 mm): 321 – dorsal view; 322 – head and pronotum. 323 – Female (12.7 mm).
Figures 323-331 from: Biström O, Nilsson AN, Bergsten J (2015) Taxonomic revision of Afrotropical Laccophilus Leach, 1815 (Coleoptera, Dytiscidae). ZooKeys 542: 1-379. https://doi.org/10.3897/zookeys.542.5975
Figures 323-331 - Male genitalia 323 Laccophilus mutatus, penis, lateral aspect, 324 penis apex, dorsal aspect, and 325 paramere 326 Laccophilus quindecimvittatus, penis and paramere, lateral aspect 327 Laccophilus incrassatus, penis and paramere, lateral aspect 328 Laccophilus empheres, penis, lateral aspect, and 329 paramere 330 Laccophilus lateralis, penis, lateral aspect, and 331 paramere. Scale bar 0.5 mm.
Figures 323-330 from: Popov GB, Fishpool LDC, Rowell CHF (2019) A review of the Acridinae s. str. (Orthoptera: Acridoidea: Acrididae) of eastern Africa with taxonomic changes and description of new taxa. Journal of Orthoptera Research 28(2): 37-105. https://doi.org/10.3897/jor.28.29312
Figures 323-330 Tribe Gymnobothrini. Zacompsa spp. Figs 323–327. Z.festafesta: 323. Head and pronotum obliquely; 324. Epiphallus dorsally and laterally; 325. Apical valves of aedeagus; 326. Female subgenital plate from above and side; 327. Spermathecal duct and spermatheca. Figs 328–330.Zacompsapedestris: 328. Epiphallus from above and left side; 329. Female spermathecal duct; 330. Female sub-genital plate from above and right side and left female cercus. All scales represent 1 mm; that under Fig. 325 applies to Figs 324, 325, 328; that under Fig. 323 applies to Figs 323, 326, 327, 330, 329, and 330.
Figure 5 from: Ross A, Wichard W, Ross E (2011) Palerasnitsynus gen. n. (Trichoptera, Psychomyiidae) from Burmese amber. ZooKeys 130: 323-330. https://doi.org/10.3897/zookeys.130.1449
Figure 5 - Palerasnitsynus sp. female left forewing (part) and left hind wing (part). Scale bar 1mm.
Figures 323-327 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 323-327 - Aptostichus cajalco sp. n. male holotype (MY3778) from Riverside County; scale bars = 1.0mm. 323 habitus [806393] 324 retrolateral aspect, leg I [806395] 325 prolateral aspect, leg I [806397] 326 retrolateral aspect, pedipalp [806399] 327 line drawings of leg I spination pattern; retrolateral aspect, tibia, metatarsus, tarsus; tibia.
Figures 323-328 from: Johnson N, Yoder M, Valerio A, Polaszek A, van Noort S, Masner L (2014) Monograph of the Afrotropical species of Scelio Latreille (Hymenoptera, Platygastridae), egg parasitoids of acridid grasshoppers (Orthoptera, Acrididae). ZooKeys 380: 1-188. https://doi.org/10.3897/zookeys.380.5755
Figures 323-328 - 168 Scelio vannoorti sp. n., holotype female (OSUC 213199). 323 Habitus, dorsal view 324 Habitus, lateral view 325 Head and mesosoma, dorsal view 326 Head and mesosoma, lateral view 327 Head, anterior view 328 Apex of metasoma, dorsal view. Scale bars in millimeters.
Figures 49-55 from: Lee C, Bezdek J (2013) Revision of the genus Dercetina from Taiwan and their similar species, with description of a new species from Myanmar (Insecta, Chrysomelidae, Galerucinae). ZooKeys 323: 1-33. https://doi.org/10.3897/zookeys.323.5195
Figures 49-55 - Dercetina shirozui. 49 Antenna, male 50 Antenna, female 51 Aedeagus, dorsal view 52 Aedeagus, lateral view 53 Sternite VIII 54 Gonocoxae 55 Spermatheca.
Figures 43-48 from: Lee C, Bezdek J (2013) Revision of the genus Dercetina from Taiwan and their similar species, with description of a new species from Myanmar (Insecta, Chrysomelidae, Galerucinae). ZooKeys 323: 1-33. https://doi.org/10.3897/zookeys.323.5195
Figures 43-48 - Habitus of Dercetina species. 43 Dercetina shirozui, dorsal view 44 Dercetina shirozui, ventral view 45 Dercetina shirozui, color variation 46 Dercetina taiwana, dorsal view 47 Dercetina taiwana, ventral view 48 Dercetina taiwana, color variation.
Figures 29-35 from: Lee C, Bezdek J (2013) Revision of the genus Dercetina from Taiwan and their similar species, with description of a new species from Myanmar (Insecta, Chrysomelidae, Galerucinae). ZooKeys 323: 1-33. https://doi.org/10.3897/zookeys.323.5195
Figures 29-35 - Dercetina chinensis. 29 Antenna, male 30 Antenna, female 31 Aedeagus, dorsal view 32 Aedeagus, lateral view 33 Sternite VIII 34 Gonocoxae 35 Spermatheca.
Figures 16-22 from: Lee C, Bezdek J (2013) Revision of the genus Dercetina from Taiwan and their similar species, with description of a new species from Myanmar (Insecta, Chrysomelidae, Galerucinae). ZooKeys 323: 1-33. https://doi.org/10.3897/zookeys.323.5195
Figures 16-22 - Dercetina barclayi sp. n. 16 Antenna, male 17 Antenna, female 18 Aedeagus, dorsal view 19 Aedeagus, lateral view 20 Sternite VIII 21 Gonocoxae 22 Spermatheca.
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.