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Figure 46 from: Awad J, Bremer JS, Butterill PT, Moore MR, Talamas EJ (2021) A taxonomic treatment of Synopeas Förster (Platygastridae, Platygastrinae) from the island of New Guinea. In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 5-65. https://doi.org/10.3897/jhr.87.65563
Figure 46 Neighbor-joining tree of Synopeas 5'-CO1 barcodes. Terminal taxa are labeled to their narrowest identification level. Numbers in parentheses after terminal taxa indicate how many sequences are represented in each cluster. Bootstrap support values greater than 75% are indicated on the tree.
Figure 4 from: Awad J, Bremer JS, Butterill PT, Moore MR, Talamas EJ (2021) A taxonomic treatment of Synopeas Förster (Platygastridae, Platygastrinae) from the island of New Guinea. In: Lahey Z, Talamas E (Eds) Advances in the Systematics of Platygastroidea III. Journal of Hymenoptera Research 87: 5-65. https://doi.org/10.3897/jhr.87.65563
Figure 4 Margin of lateral propodeal carinae AS. klingunculum (FSCA 00000237) BS. toto (FSCA 00000258) CS. codex (FSCA 00000310) DS. valavala (FSCA 00000259). Scale bars in mm.
Supplementary material 1 from: Dickey JWE, Arnott G, McGlade CLO, Moore A, Riddell GE, Dick JTA (2022) Threats at home? Assessing the potential ecological impacts and risks of commonly traded pet fishes. NeoBiota 73: 109-136. https://doi.org/10.3897/neobiota.73.80542
Table S1
Supplementary material 3 from: Dickey JWE, Arnott G, McGlade CLO, Moore A, Riddell GE, Dick JTA (2022) Threats at home? Assessing the potential ecological impacts and risks of commonly traded pet fishes. NeoBiota 73: 109-136. https://doi.org/10.3897/neobiota.73.80542
Figure S2
Supplementary material 2 from: Dickey JWE, Arnott G, McGlade CLO, Moore A, Riddell GE, Dick JTA (2022) Threats at home? Assessing the potential ecological impacts and risks of commonly traded pet fishes. NeoBiota 73: 109-136. https://doi.org/10.3897/neobiota.73.80542
Figure S1
Supplementary material 1 from: Palting JD, Moore W (2022) Molecular phylogeny of Lichen Tiger Moths (Lepidoptera, Erebidae, Arctiinae, Lithosiini): a contribution toward classifying Western Hemisphere genera. ZooKeys 1108: 119-139. https://doi.org/10.3897/zookeys.1108.80783
Figure S1
Supplementary material 1 from: Moore MA, Scheible MK, Robertson JB, Meiklejohn KA (2022) Assessing the lysis of diverse pollen from bulk environmental samples for DNA metabarcoding. Metabarcoding and Metagenomics 6: e89753. https://doi.org/10.3897/mbmg.6.89753
Table S1
Supplementary material 2 from: Moore MA, Scheible MK, Robertson JB, Meiklejohn KA (2022) Assessing the lysis of diverse pollen from bulk environmental samples for DNA metabarcoding. Metabarcoding and Metagenomics 6: e89753. https://doi.org/10.3897/mbmg.6.89753
Table S2
Figure 5 from: Topalović O, Moore JF, Janssen T, Bert W, Karssen G (2017) An early record of Meloidogyne fallax from Ireland. ZooKeys 643: 33-52. https://doi.org/10.3897/zookeys.643.11266
Figure 5 - Irish population of Meloidogyne sp. (lateral position) from Ireland from 1965. A female anterior region B male anterior region C male – spicules D anterior region of the second-stage juvenile E–G tail variations in the second-stage juvenile.
Figure 2 from: Topalović O, Moore JF, Janssen T, Bert W, Karssen G (2017) An early record of Meloidogyne fallax from Ireland. ZooKeys 643: 33-52. https://doi.org/10.3897/zookeys.643.11266
Figure 2 - The comparison of tail and hyaline tail terminus shape in second-stage juveniles, lateral position. A an unknown Irish species B type material of Meloidogyne fallax C type material of Meloidogyne chitwoodi D type material of Meloidogyne minor E reference material of Meloidogyne hapla; F reference material of Meloidogyne incognita. Scale bar = 20 µm.
Figure 3 from: Topalović O, Moore JF, Janssen T, Bert W, Karssen G (2017) An early record of Meloidogyne fallax from Ireland. ZooKeys 643: 33-52. https://doi.org/10.3897/zookeys.643.11266
Figure 3 - The comparison of anterior region in males of populations of observed Meloidogyne species. A an unknown Irish species (ventral position) B type material of Meloidogyne fallax (lateral position); C: type material of Meloidogyne chitwoodi (ventral position) D reference material of Meloidogyne hapla (lateral position) E reference material of Meloidogyne incognita (lateral position) F type material of Meloidogyne minor (lateral position). Scale bar = 20 µm.
Figure 1 from: Topalović O, Moore JF, Janssen T, Bert W, Karssen G (2017) An early record of Meloidogyne fallax from Ireland. ZooKeys 643: 33-52. https://doi.org/10.3897/zookeys.643.11266
Figure 1 - Comparison of perineal patterns in females. A Irish unknown Meloidogyne sp. B type material of Meloidogyne fallax; C type material of Meloidogyne chitwoodi D type material of Meloidogyne minor. Scale bar = 20 µm.
Figs. 6–10 in Two new species of genus Zadadra Moore (Lepidoptera: Erebidae: Arctiinae) from India
Figs. 6–10. Zadadra neodistorta sp. nov. 6, Adult male.7, Male genitalia.8, Uncus with Tegumen. 9, Valva.10, Aedeagus.
Figure 1 from: Moore MR, Cave RD, Branham MA (2018) Annotated catalog and bibliography of the cyclocephaline scarab beetles (Coleoptera, Scarabaeidae, Dynastinae, Cyclocephalini). ZooKeys 745: 101-378. https://doi.org/10.3897/zookeys.745.23685
Figure 1 Cumulative number of described cyclocephaline species-group taxa by decade. Species description accumulation was based on the compiled catalog. The synonymy curve also includes names that were homonyms and later replaced.
Figures 9-17 from: Moore MR, Cave RD, Branham MA (2018) Synopsis of the cyclocephaline scarab beetles (Coleoptera, Scarabaeidae, Dynastinae). ZooKeys 745: 1-99. https://doi.org/10.3897/zookeys.745.23683
Figures 9-17 Clypeal and labral form of cyclocephaline species. 9 Peltonotus malayensis Arrow; black arrow indicates the anteriorly produced labrum 10 Augoderia nitidula Burmeister; clypeus rounded 11 Arriguttia brevissima (Arrow); clypeus truncate and apex strongly reflexed dorsally 12 Aspidolea singularis Bates; clypeus broadly rounded and with lateral margins slightly divergent at base 13 Cyclocephala weidneri Endrődi; clypeus truncate without apex strongly reflexed dorsally 14 Cyclocephala octopunctata Burmeister; clypeus rounded 15 Cyclocephala hartmannorum Malý; clypeus bisinuate and with lateral margins divergent at base 16 Cyclocephala mafaffa Burmeister; clypeus emarginate 17 Cyclocephala acuta Arrow; clypeus acute.
Figures 5-8 from: Moore MR, Cave RD, Branham MA (2018) Synopsis of the cyclocephaline scarab beetles (Coleoptera, Scarabaeidae, Dynastinae). ZooKeys 745: 1-99. https://doi.org/10.3897/zookeys.745.23683
Figures 5-8 Gender specific characteristics of cyclocephaline species. 5) Surutu dytiscoides Martínez; male protarsus. 6) S. dytiscoides; female protarsus. 7) Cyclocephala conspicua Sharp; male, last abdominal sternite emarginate. 8) C. conspicua Sharp; female, last abdominal sternite entire.
Figures 49-50 from: Moore MR, Cave RD, Branham MA (2018) Synopsis of the cyclocephaline scarab beetles (Coleoptera, Scarabaeidae, Dynastinae). ZooKeys 745: 1-99. https://doi.org/10.3897/zookeys.745.23683
Figures 49-50 Meso- and metatibia of Acrobolbia macrophylla Ohaus. 49 A. macrophylla; mesotibia. Arrow indicates the acute, spine-like apices 50 A. macrophylla; metatibia. Arrow indicates the acute, spine-like apices.
Figures 42-45 from: Moore MR, Cave RD, Branham MA (2018) Synopsis of the cyclocephaline scarab beetles (Coleoptera, Scarabaeidae, Dynastinae). ZooKeys 745: 1-99. https://doi.org/10.3897/zookeys.745.23683
Figures 42-45 Pronotum and labium morphology of Harposceles paradoxus Burmeister and Surutu dytiscoides Martínez. 42 H. paradoxus; anterior margin of pronotum. Box indicates the complete marginal bead 43 S. dytiscoides; anterior margin of pronotum. Box indicates the incomplete marginal bead 44 S. dytiscoides; apex of the mentum. Arrow indicates the deeply emarginate apex of the mentum 45 H. paradoxus; apex of the mentum.
Figures 18-23 from: Moore MR, Cave RD, Branham MA (2018) Synopsis of the cyclocephaline scarab beetles (Coleoptera, Scarabaeidae, Dynastinae). ZooKeys 745: 1-99. https://doi.org/10.3897/zookeys.745.23683
Figures 18-23 Hindwings of cyclocephaline species. 18 Peltonotus nasutus Arrow; labeled veins of the hindwing 19 Cyclocephala amazona (Linnaeus); labeled veins of the hindwing 20 C. amazona; view of vein RA proximal to AH showing lack of setae and double row of pegs 21 C. amazona; view of vein RA 3 distal to AH showing lack of setae. Arrow indicates membranous border of RA 3 22 Chalepides barbatus (Fabricius); view of veins RA and RA 3 showing presence of setae proximally and distally from AH. Arrow indicates the presence of setae along RA 3 23 C. barbatus; view of vein RA 3 distal to AH showing erect row of setae along the vein. Abbreviations: AA=Anal anterior vein; AP=Anal posterior vein; AH=Apical hinge of hind wing; CuA=Cubitus anterior vein; MP=Medial posterior vein; RA=Radius anterior vein; RP=Radius posterior vein; ScA=Subcosta anterior vein.
Figure 57 from: Moore MR, Cave RD, Branham MA (2018) Synopsis of the cyclocephaline scarab beetles (Coleoptera, Scarabaeidae, Dynastinae). ZooKeys 745: 1-99. https://doi.org/10.3897/zookeys.745.23683
Figure 57 Country-level distribution of Cyclocephala taxa in the Neotropical and Neartic realms. Numbers indicate number of taxa per country or region.
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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.