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Figures 14-21 from: Khalaim AI, Ruíz-Cancino E (2018) First record of the genera Diaparsis Förster and Phradis Förster (Hymenoptera, Ichneumonidae, Tersilochinae) from Mexico. Journal of Hymenoptera Research 63: 61-72. https://doi.org/10.3897/jhr.63.24491
Figures 14-21 Phradis nanacamilpus sp. n., holotype female. 14 habitus (without wings), lateral view 15 antenna, lateral view 16 head, front view 17 head, dorsal view 18 head, mesosoma and base of metasoma, lateral view 19 mesopleuron, postero-lateral view 20 propodeum, dorsal view 21 apex of metasoma with ovipositor, lateral view.
Figures 4-6 from: Huber JT (2018) Neotype designation for Anaphes brevis Walker (Hymenoptera, Mymaridae). Journal of Hymenoptera Research 63: 51-60. https://doi.org/10.3897/jhr.63.24427
Figures 4-6 - Anaphes brevis. 4 head + base of antennae 5 antenna, outer surface 6 antenna, inner surface. Note difference in fl4 and cross striations on inner surface of scape (striations very faint and more longitudinal on outer surface). Scale bars: 200 μm.
Figure 4 from: Ayala A, Pérez-Lachaud G, Toledo J, Liedo P, Montoya P (2018) Host acceptance by three native braconid parasitoid species attacking larvae of the Mexican fruit fly, Anastrepha ludens (Diptera, Tephritidae). Journal of Hymenoptera Research 63: 33-49. https://doi.org/10.3897/jhr.63.23724
Figure 4 Latency (average ± SE, in minutes) between ovipositions of three native opine parasitoids attacking non-parasitized and previously parasitized Anastrepha ludens larvae. Different capital letters indicate statistically significant difference between the bars. Different letters, indicate statistically significant difference between the bars. Different lower case letters, indicate statistically significant difference between species.
Figure 2 from: Ayala A, Pérez-Lachaud G, Toledo J, Liedo P, Montoya P (2018) Host acceptance by three native braconid parasitoid species attacking larvae of the Mexican fruit fly, Anastrepha ludens (Diptera, Tephritidae). Journal of Hymenoptera Research 63: 33-49. https://doi.org/10.3897/jhr.63.23724
Figure 2 Ethogram of oviposition of females of Utetes anastrephae on non-parasitized larvae (a) and larvae previously parasitized by conspecifics (b) under laboratory conditions. The width of the arrow is proportional to the relative frequency of transition. The numbers associated with the arrows represent the observed frequencies of the successive behaviors of a complex sequence of behavior (proportions are indicated in parentheses).
Figure 5 from: Komeda Y, Mita T, Yamagishi K (2018) Three new brachypterous species of Trimorus Förster (Hymenoptera, Scelionidae) from Japan. Journal of Hymenoptera Research 63: 15-32. https://doi.org/10.3897/jhr.63.23671
Figure 5 Trimorus granulatus sp. n., female. A head, frontal view B Antennae C mesosoma, dorsal view D mesosoma, lateral view E metasoma, dorsal view F metasoma, ventral view.
Figure 3 from: Komeda Y, Mita T, Yamagishi K (2018) Three new brachypterous species of Trimorus Förster (Hymenoptera, Scelionidae) from Japan. Journal of Hymenoptera Research 63: 15-32. https://doi.org/10.3897/jhr.63.23671
Figure 3 Trimorus haniyasu sp. n. A female, dorsal view B female lateral view C male, dorsal view D male lateral view. Scale bars: 1 mm.
Figure 8 from: Komeda Y, Mita T, Yamagishi K (2018) Three new brachypterous species of Trimorus Förster (Hymenoptera, Scelionidae) from Japan. Journal of Hymenoptera Research 63: 15-32. https://doi.org/10.3897/jhr.63.23671
Figure 8 Trimorus haniyasu sp. n., male. A head, frontal view B A5, lateral view C mesosoma, dorsal view D mesosoma, lateral view E metasoma, dorsal view F metasoma, ventral view.
Figure 6 from: Arvidson R, Landa V, Frankenberg S, Adams ME (2018) Life History of the Emerald Jewel Wasp Ampulex compressa. Journal of Hymenoptera Research 63: 1-13. https://doi.org/10.3897/jhr.63.21762
Figure 6 Viscera of P. americana before (A) and after (B) parasitization by A. compressa. A The entire digestive system has been isolated to more thoroughly illustrate all parts of the gut as well as tissues previously obstructed such as trachea, ovaries, thoracic muscle and fat body B Isolated gut from after completion of A. compressa larval development. Abbreviations: TM = thoracic muscle, Tr = trachea, Ovl = ovarioles of ovary, FB = fat body, Cn = colon, Mg = midgut, Cm = caeca, Cp = crop, VNC = ventral nerve cord, Pv = proventriculus.
Figure 3 from: Arvidson R, Landa V, Frankenberg S, Adams ME (2018) Life History of the Emerald Jewel Wasp Ampulex compressa. Journal of Hymenoptera Research 63: 1-13. https://doi.org/10.3897/jhr.63.21762
Figure 3 Ampulex compressa larvae develop through three instars. The number of instars of A. compressa were determined by taking representative larva from different time intervals and plotting the product of the length and width of the head capsule (area) against age of the larva. The data plots as three distinct groups, indicative of three instars (green - first instar, orange - second instar, blue - third instar. Horizontal bars represent average area of the head capsule in each instar and vertical error bars are standard deviation. Each mean head capsule size is significantly different from the others, as indicated by the Kruskal-Wallis test (p < 0.0001).
Figure 2 from: Komeda Y, Mita T, Yamagishi K (2018) Three new brachypterous species of Trimorus Förster (Hymenoptera, Scelionidae) from Japan. Journal of Hymenoptera Research 63: 15-32. https://doi.org/10.3897/jhr.63.23671
Figure 2 Trimorus granulatus sp. n. A female, dorsal view B female lateral view C male, dorsal view D male lateral view. Scale bars: 1 mm.
Figures 10- 11 from: Huber JT (2018) Neotype designation for Anaphes brevis Walker (Hymenoptera, Mymaridae). Journal of Hymenoptera Research 63: 51-60. https://doi.org/10.3897/jhr.63.24427
Figures 10- 11 - Anaphes brevis, body, lateral. 10 outer surface 11 median view of gaster showing ovipositor. Scale bars: 200 μm.
Figure 9 from: Werner J, Peters RS (2018) Taxonomic revision of the genus Oodera Westwood, 1874 (Hymenoptera, Chalcidoidea, Pteromalidae, Cleonyminae), with description of ten new species. Journal of Hymenoptera Research 63: 73-123. https://doi.org/10.3897/jhr.63.12754
Figure 9 Head (lateral) II a O. gracilis Westwood (imaged specimen: OGr01) b O. heikewernerae sp. n. (OHe01, holotype) c O. hoggarensis Hedqvist (OHo02, paratype) d O. leibnizi sp. n. (OLe03, paratype) e O. longicollis (Cameron) (OLo01) f O. madegassa Bouček (OMad01, holotype). Scale bars: 1 mm.
Figure 2 from: Arvidson R, Landa V, Frankenberg S, Adams ME (2018) Life History of the Emerald Jewel Wasp Ampulex compressa. Journal of Hymenoptera Research 63: 1-13. https://doi.org/10.3897/jhr.63.21762
Figure 2 Cocoon mass and volume can be predictors of sex. The probability that a cocoon will emerge as a female is given as A a function of pupal volume (p < 0.0001, Chi Square = 16.5), and B a function of cocoon mass (p < 0.0001, Chi Square = 19.6)
Figures 1-6 from: Khalaim AI, Ruíz-Cancino E (2018) First record of the genera Diaparsis Förster and Phradis Förster (Hymenoptera, Ichneumonidae, Tersilochinae) from Mexico. Journal of Hymenoptera Research 63: 61-72. https://doi.org/10.3897/jhr.63.24491
Figures 1-6 Diaparsis splendens, female (Mexico). 1 head with antenna and mesoscutum, dorsal view 2 head, front view 3 mesosoma, dorsal view 4 propodeum and metasoma, lateral view 5 postpetiole and second tergite, dorsal view 6 apex of ovipositor, lateral view.
Figure 1 from: Arvidson R, Landa V, Frankenberg S, Adams ME (2018) Life History of the Emerald Jewel Wasp Ampulex compressa. Journal of Hymenoptera Research 63: 1-13. https://doi.org/10.3897/jhr.63.21762
Figure 1 A. compressa development time and adult size are sexually dimorphic. A Larval development as defined by the duration between egg laying and pupation shows no difference between males and females (black, p = 0.26). Pupal duration - time between cocoon spinning and eclosion - is sexually dimorphic (red, p < 0.0001). Statistical difference determined by Welch's T test, NS = not significant, **** = p < 0.0001. (n = 200, males; n = 135, females) B Cocoon volume (black) of females is significantly larger than that of the males. (female n = 8, male n=21). Adult mass (red) is significantly larger for females (Female n = 8, male n=17). (*** = p < 0.001, **** = p < 0.0001, by Welch's T test). Error bars indicate standard deviation.
Figure 6 from: Werner J, Peters RS (2018) Taxonomic revision of the genus Oodera Westwood, 1874 (Hymenoptera, Chalcidoidea, Pteromalidae, Cleonyminae), with description of ten new species. Journal of Hymenoptera Research 63: 73-123. https://doi.org/10.3897/jhr.63.12754
Figure 6 Head (frontal) II a O. gracilis Westwood (imaged specimen: OGr01) b O. heikewernerae sp. n. (OHe01, holotype) c O. hoggarensis Hedqvist (OHo02, paratype) d O. leibnizi sp. n. (OLe03, paratype) e O. longicollis (Cameron) (OLo01) f O. madegassa Bouček (OMad01, holotype). Scale bars: 1 mm.
Figure 5 from: Werner J, Peters RS (2018) Taxonomic revision of the genus Oodera Westwood, 1874 (Hymenoptera, Chalcidoidea, Pteromalidae, Cleonyminae), with description of ten new species. Journal of Hymenoptera Research 63: 73-123. https://doi.org/10.3897/jhr.63.12754
Figure 5 Head (frontal) I a O. ahoma (Mani & Kaul) (imaged specimen: OAh01, holotype) b O. circularicollis sp. n. (OCi01, holotype) c O. felix sp. n. (OFe01, holotype) d O. fidelis sp. n. (OFi01, holotype) e O. florea sp. n. (OFl01, holotype) f O. formosa (Giraud) (OFo03). Scale bars: 1 mm.
Figure 8 from: Werner J, Peters RS (2018) Taxonomic revision of the genus Oodera Westwood, 1874 (Hymenoptera, Chalcidoidea, Pteromalidae, Cleonyminae), with description of ten new species. Journal of Hymenoptera Research 63: 73-123. https://doi.org/10.3897/jhr.63.12754
Figure 8 Head (lateral) I a O. ahoma (Mani & Kaul) (imaged specimen: OAh01, holotype) b O. circularicollis sp. n. (OCi01, holotype) c O. felix sp. n. (OFe01, holotype) d O. fidelis sp. n. (OFi01, holotype) e O. florea sp. n. (OFl01, holotype) f O. formosa (Giraud) (OFo06). Scale bars: 1 mm.
Figure 3 from: Ayala A, Pérez-Lachaud G, Toledo J, Liedo P, Montoya P (2018) Host acceptance by three native braconid parasitoid species attacking larvae of the Mexican fruit fly, Anastrepha ludens (Diptera, Tephritidae). Journal of Hymenoptera Research 63: 33-49. https://doi.org/10.3897/jhr.63.23724
Figure 3 Ethogram of oviposition of females of Opius hirtus on non-parasitized larvae (a) and larvae previously parasitized by conspecifics (b) under laboratory conditions. The width of the arrow is proportional to the relative frequency of transition. The numbers associated with the arrows represent the observed frequencies of the successive behaviors of a complex sequence of behavior (proportions are indicated in parentheses).
Figure 3 from: Werner J, Peters RS (2018) Taxonomic revision of the genus Oodera Westwood, 1874 (Hymenoptera, Chalcidoidea, Pteromalidae, Cleonyminae), with description of ten new species. Journal of Hymenoptera Research 63: 73-123. https://doi.org/10.3897/jhr.63.12754
Figure 3 Habitus (dorsal) II a O. gracilis Westwood (imaged specimen: OGr01; ovipositor not visible in full length) b O. heikewernerae sp. n. (OHe01, holotype) c O. hoggarensis Hedqvist (OHo02, paratype) d O. leibnizi sp. n. (OLe01, holotype) e O. longicollis (Cameron) (OLo01) f O. madegassa Bouček (OMad01, holotype). Scale bars: 1 mm.
ScienceDex guides
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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.