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Figures 25–31. Pindamoraria boraceiae, female allotype. Fig. 25 in Pindamoraria boraceiae, a new genus and species of freshwater Canthocamptidae (Copepoda, Harpacticoida) from Brazil
Figures 25–31. Pindamoraria boraceiae, female allotype. Fig. 25. Genital double-somite, ventral view. Fig. 26. Caudal ramus, ventral view. Fig. 27. Antennule. Fig. 28. Antennal exopodite. Fig. 29. Maxilla. Fig. 30. Maxilliped. Fig. 31. Leg 5. Scales as indicated in figure.
Figures 32–35. Pindamoraria boraceiae, female allotype. Fig. 32. Right leg 2 endopodite, frontal view. Fig. 33. Left leg 3 endopodite, frontal view. Fig. 34. Left leg 4 endopodite, frontal view. Fig. 35. Right leg 4 in Pindamoraria boraceiae, a new genus and species of freshwater Canthocamptidae (Copepoda, Harpacticoida) from Brazil
Figures 32–35. Pindamoraria boraceiae, female allotype. Fig. 32. Right leg 2 endopodite, frontal view. Fig. 33. Left leg 3 endopodite, frontal view. Fig. 34. Left leg 4 endopodite, frontal view. Fig. 35. Right leg 4 endopodite, caudal view. Scales as indicated in figure.
FIGURES 121–132. Ischnothyreus velox Jackson, female. 121. Carapace, dorsal view. 122. Same, anterior view. 123. Habitus, lateral view. 124. Sternum, ventral view. 125. Habitus, dorsal view. 126. Abdomen, ventral view. 127, 128, 130. Genitalia, ventral view. 129. Same, dorsal view. 131. Postepigastric scutum, ventral view. 132 in The Goblin Spider Genus Ischnothyreus (Araneae, Oonopidae) in the New World
FIGURES 121–132. Ischnothyreus velox Jackson, female. 121. Carapace, dorsal view. 122. Same, anterior view. 123. Habitus, lateral view. 124. Sternum, ventral view. 125. Habitus, dorsal view. 126. Abdomen, ventral view. 127, 128, 130. Genitalia, ventral view. 129. Same, dorsal view. 131. Postepigastric scutum, ventral view. 132. Copulatory opening, ventral view.
Рис. 1–3. Самка Chrysopa viridinervis Jakowleff, 1869. 1 – экземпΛяр сбоку; 2 – гоΛова и груΑь сверху; 3 – гоΛова спереΑи. Figs 1–3. Female of Chrysopa viridinervis Jakowleff, 1869. 1 – specimen in lateral view; 2 – head and thorax, dorsal view; 3 – head, frontal view. in New data on Neuropterida from the southern part of the European Russia
Рис. 1–3. Самка Chrysopa viridinervis Jakowleff, 1869. 1 – экземпΛяр сбоку; 2 – гоΛова и груΑь сверху; 3 – гоΛова спереΑи. Figs 1–3. Female of Chrysopa viridinervis Jakowleff, 1869. 1 – specimen in lateral view; 2 – head and thorax, dorsal view; 3 – head, frontal view.
Рис. 5–10. Otiorhynchus paradigitalis sp. n., общий виΑ и ΑетаΛи строения. 5 –самец, гоΛотип; 6 – самка, паратип; 7 – эΑеагус; 8 – сперматека; 9 – spiculum ventrale; 10 – кокситы. Figs 5–10. Otiorhynchus paradigitalis sp. n., general view and details of structure. 5 – male, holotype; 6 – female, paratype; 7 – aedeagus; 8 – spermatheca; 9 – spiculum ventrale; 10 – coxites. in A new weevil of the subgenus Otismotilus Reitter, 1912, genus Otiorhynchus Germar, 1824 (Coleoptera: Curculionidae: Entiminae) from the Caucasus
Рис. 5–10. Otiorhynchus paradigitalis sp. n., общий виΑ и ΑетаΛи строения. 5 –самец, гоΛотип; 6 – самка, паратип; 7 – эΑеагус; 8 – сперматека; 9 – spiculum ventrale; 10 – кокситы. Figs 5–10. Otiorhynchus paradigitalis sp. n., general view and details of structure. 5 – male, holotype; 6 – female, paratype; 7 – aedeagus; 8 – spermatheca; 9 – spiculum ventrale; 10 – coxites.
Рис. 1–4. Otiorhynchus digitalis Yunakov et Davidian, 2002, самка, гоΛотип. 1 – общий виΑ; 2 – кокситы; 3 – сперматека; 4 – spiculum ventrale. Figs 1–4. Otiorhynchus digitalis Yunakov et Davidian, 2002, female, holotype. 1 – general view; 2 – coxites; 3 – spermatheca; 4 – spiculum ventrale. in A new weevil of the subgenus Otismotilus Reitter, 1912, genus Otiorhynchus Germar, 1824 (Coleoptera: Curculionidae: Entiminae) from the Caucasus
Рис. 1–4. Otiorhynchus digitalis Yunakov et Davidian, 2002, самка, гоΛотип. 1 – общий виΑ; 2 – кокситы; 3 – сперматека; 4 – spiculum ventrale. Figs 1–4. Otiorhynchus digitalis Yunakov et Davidian, 2002, female, holotype. 1 – general view; 2 – coxites; 3 – spermatheca; 4 – spiculum ventrale.
Fig. 2 in Description of a new hoverfly species of the genus Ferdinandea and the female of Eumerus muratovi from Tajikistan (Diptera: Syrphidae: Eristalinae)
Fig. 2. Ferdinandea volkovae sp. nov., male (holotype). A, general appearance, in lateral view; B, head, in anterior view. Scale bars: 5 mm (A), 1 mm (B).
Fig. 1 in Description of a new hoverfly species of the genus Ferdinandea and the female of Eumerus muratovi from Tajikistan (Diptera: Syrphidae: Eristalinae)
Fig. 1. Ferdinandea volkovae sp. nov., male (holotype). A, head, in lateral view; B, antenna, in lateral view; C, surstylus and cercus, in lateral view; D, superior lobe of hypandrium, in lateral view; E, aedeagus with apodeme. Arrows indicate diagnostic characters. Scale bars: 0.45 mm (A, B), 0.23 mm (C–E).
Fig. 4 in Description of a new hoverfly species of the genus Ferdinandea and the female of Eumerus muratovi from Tajikistan (Diptera: Syrphidae: Eristalinae)
Fig. 4. Collecting localities in Tajikistan. 1, Ferdinandea volkovae sp. nov. (holotype); 2, 3, Eumerus muratovi Barkalov, 2020 (females).
Fig. 3. Eumerus muratovi Barkalov, 2020, female. A in Description of a new hoverfly species of the genus Ferdinandea and the female of Eumerus muratovi from Tajikistan (Diptera: Syrphidae: Eristalinae)
Fig. 3. Eumerus muratovi Barkalov, 2020, female. A, general appearance, in dorsal view; B, antenna, in lateral view; C, scutellum and abdomen, in dorsal view; D, head, in anterior view. Scale bars: 2 mm (A), 0.5 mm (B), 1 mm (C, D).
Fig. 1. Female genitalia. A in Six new species in the genus Innobindus Jacobi 1928 (Hemiptera: Auchenorrhyncha: Fulgoromorpha: Cixiidae: Brixiini)
Fig. 1. Female genitalia. A. Innobindus gimani sp. nov., ♀, paratype (MLM MLM01006), ventral view. B–D. I. loriensis, ♀, paratype (ASCU ASCTHE017056). B. Ventral view. C. Lateral view. D. Caudolateral view.
Fig. 4 in Two New Flightless Species Of Lacon Laporte, 1838 From Yunnan, China, With Discovery Of The Female Of L. Habashanensis Platia Et Al., 2023 (Coleoptera: Elateridae: Agrypninae)
Fig. 4. Morphology of Lacon yejiei sp. n., female: A = abdominal tergite VIII, dorsal view; B = abdominal sternite VIII, ventral view; C = ovipositor, ventral view; D = part of female genital tract (sac-like spermatophores removed). Scale bar: 1 mm
Fig. 1 in Two New Flightless Species Of Lacon Laporte, 1838 From Yunnan, China, With Discovery Of The Female Of L. Habashanensis Platia Et Al., 2023 (Coleoptera: Elateridae: Agrypninae)
Fig. 1. Habitus of Lacon species, dorsal view: A = L. taotie sp. n., holotype, male; B = L. taotie sp. n., paratype, male; C = L. yejiei sp. n., holotype, male; D = L. yejiei sp. n., paratype, female; E = L. lijiangensis Prosvirov, 2016, holotype, female; F = L. diqingensis Prosvirov, 2016,
Fig. 6 in Two New Flightless Species Of Lacon Laporte, 1838 From Yunnan, China, With Discovery Of The Female Of L. Habashanensis Platia Et Al., 2023 (Coleoptera: Elateridae: Agrypninae)
Fig. 6. Morphology of Lacon habashanensis Platia, Mertlik et Dušánek, 2023 from Lanping, Nujiang: A = female antenna; B = aedeagus, dorsal view; C = part of female genital tract; D =
Fig. 3 in Two New Flightless Species Of Lacon Laporte, 1838 From Yunnan, China, With Discovery Of The Female Of L. Habashanensis Platia Et Al., 2023 (Coleoptera: Elateridae: Agrypninae)
Fig. 3. Morphology of Lacon species, male: A–D. L. taotie sp. n., holotype; E–H. L. yejiei sp. n., holotype. A, E = Abdominal sternite IX, ventral view; B, F = abdominal tergites IX–X,
Fig. 2 in Two New Flightless Species Of Lacon Laporte, 1838 From Yunnan, China, With Discovery Of The Female Of L. Habashanensis Platia Et Al., 2023 (Coleoptera: Elateridae: Agrypninae)
Fig. 2. Morphology of Lacon species: A–D = pronotum, dorsal view; E–H = antennae. A, E = L. taotie sp. n., holotype, male; B, F = L. taotie sp. n., paratype, male; C, G = L. yejiei sp. n.,
Fig. 5 in Two New Flightless Species Of Lacon Laporte, 1838 From Yunnan, China, With Discovery Of The Female Of L. Habashanensis Platia Et Al., 2023 (Coleoptera: Elateridae: Agrypninae)
Fig. 5. Habitus of Lacon habashanensis Platia, Mertlik et Dušánek, 2023 from Lanping, Nujiang: A = male, dorsal view; B = female, dorsal view; C = female, lateral view. Scale bar: 2 mm
Figs 71–73. Female genitalia. 71. S in A review of Mexican Stamnodes (Lepidoptera: Geometridae) with the description of 16 new species
Figs 71–73. Female genitalia. 71. S. saltillo sp. nov., paratype (TAM-2020-060, CNIN). 72. S. churro sp. nov., holotype (TAM-2022-106, AMNH). 73. S. ferropulvisa sp. nov., paratype (TAM-2023-200, USNM 154207). Scale bar = 2 mm.
Figs 61–63. Female genitalia. 61. S in A review of Mexican Stamnodes (Lepidoptera: Geometridae) with the description of 16 new species
Figs 61–63. Female genitalia. 61. S. aumatlapalli sp. nov., paratype (TAM-2020-041, CNIN). 62. S. penguinifera (Dyar, 1910) (TAM-2023-249, CMNH). 63. S. carota sp. nov., holotype (TAM- 2023-263, BMEC). Scale bar = 2 mm.
Figs 67–70. Female genitalia. 67. S in A review of Mexican Stamnodes (Lepidoptera: Geometridae) with the description of 16 new species
Figs 67–70. Female genitalia. 67. S. disrupta sp. nov., paratype (TAM-2023-261, BMEC). 68. S. mariachi sp. nov., paratype (TAM-2023-283, AMNH). 69. S. erupta sp. nov., paratype (TAM- 2023-286, USNM 154212). 70. S. ceniza sp. nov., paratype (TAM-2020-035, CNIN). Scale bar = 2 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.