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Figure 4 in Integrative description of a new subspecies of the water mite genus Hygrobates Koch, 1837 from southwestern Türkiye (Acariformes, Hydrachnidia, Hygrobatidae)
Figure 4. Photograph of the locus typicus of Hygrobates ponticus yildirimi subsp. nov.: Aksu Stream, Isparta Province. Photo by P. Gülle.
Figures 9–12 in A new subspecies of Apamea ingloria (A. Bang-Haas, 1912) from northern Tien Shan Mountains (Lepidoptera: Noctuidae: Noctuinae: Xylenini: Apameina)
Figures 9–12. Apamea ingloria sspp.: male genitalia. Depositories of the specimens dissected: 9 in WIGJ; 10–12 in CAV.
Figure 20 in A new subspecies of Apamea ingloria (A. Bang-Haas, 1912) from northern Tien Shan Mountains (Lepidoptera: Noctuidae: Noctuinae: Xylenini: Apameina)
Figure 20. Southeast Kazakhstan, Almaty Region, Ketmen Ridge, vicinities of Ketmen Pass, 43°19'39.32"N 80°19'9.41"E, ca. 3000m, the habitat of Apamea ingloria postnikovi spp. n. (photo by A. Volynkin).
Figures 13–16 in A new subspecies of Apamea ingloria (A. Bang-Haas, 1912) from northern Tien Shan Mountains (Lepidoptera: Noctuidae: Noctuinae: Xylenini: Apameina)
Figures 13–16. Apamea ingloria sspp.: sternite A1+2. Depositories of the specimens dissected: 13 in WIGJ; 14–16 in CAV.
Fig. 2 in Large lungworms (Nematoda: Dictyocaulidae) recovered from the European bison may represent a new nematode subspecies
Fig. 2. Dictyocaulus viviparus of European bison, female genital system, light microscopy. (A) Ovejectors in left lateral view, showing relationships for the vulva (vu), vestibules, and combined anterior infundibulum, and sphincter (ainf + asph), and posterior infundibulum and sphincter (pinf + psph). (B) Region of posterior infundibulum (pinf) and posterior sphincter (psph), left lateral view. (C) female tail, right lateral view, showing anus and phasmids (ph).
Fig. 4 in Large lungworms (Nematoda: Dictyocaulidae) recovered from the European bison may represent a new nematode subspecies
Fig. 4. Phylogenetic tree of Dictyocaulus spp. based on cox1, cytB and nad5 partial sequences, constructed with the use of Bayesian inference (BI) analysis using MrBayes version 3.2. The GTR + G (cox1, cytB) and GTR + I (nad5) model was chosen based on jModelTest version 2.1.4 using Akaike Information Criterion. The analysis was run for 2,000,000 generations, with 500,000 generations discarded as 'burn-in'. Hosts (for Dictyocaulus viviparus) and Gen- Bank accession numbers of origin are shown. Nodal support is indicated as Bayesian posterior probabilities. Sequence from Angiostrongylus cantoniensis (AP017672.1) was used as an outgroup.
Fig. 1 in Large lungworms (Nematoda: Dictyocaulidae) recovered from the European bison may represent a new nematode subspecies
Fig. 1. Dictyocaulus viviparus of European bison, anterior end. (A) Male, anterior end in optical section, showing head, cephalic vesicle (cv), esophagus, nerve ring (nr), lateral view. (B) Female, anterior end in optical section, showing buccal capsule (bc), buccal capsule wall (bcw), cephalic vesicle (cv), nerve ring (nr), and excretory pore (ep), lateral view. (C) Cephalic region, scanning electron microscopy, showing two lateral amphids (LA) and four submedian papillae (SCP).
Fig. 3 in Large lungworms (Nematoda: Dictyocaulidae) recovered from the European bison may represent a new nematode subspecies
Fig. 3. Dictyocaulus viviparus of European bison, male genital system, light microscopy. (A) Bursa, dorsal view. (B) Bursa, left lateral view, showing gubernaculum (gub), and left spicula (spi). (C) Spiculae, dorsal view.
Figure 2 in A taxonomic revision of the subspecies Arctia matronula (Linnaeus, 1758) (Lepidoptera: Erebidae: Arctiinae)
Figure 2 Male genitalia Arctia matronula (Linnaeus, 1758). (A) A. m. matronula (Linnaeus, 1758) from Moscow Region (B) and Sakhalin Island [topotype Pericallia matronula sachalinensis Draudt, 1931 syn. nov. (C) Arctia matronula helena (Dubatolov & Kishida, 2004) from Kunashir Island (Photos: Elizaveta A. Spitsyna).
Figure 1 in A taxonomic revision of the subspecies Arctia matronula (Linnaeus, 1758) (Lepidoptera: Erebidae: Arctiinae)
Figure 1 Arctia matronula (Linnaeus, 1758). (A-B) A. m. matronula (Linnaeus, 1758) from Moscow Region, male. (C) A. m. matronula (Linnaeus, 1758) from Primorsky Krai, male. (D) A. m. matronula (Linnaeus, 1758) from Khabarovsk Krai, female. (E-F) A. m. matronula (Linnaeus, 1758) from Sakhalin Island [topotype Pericallia matronula sachalinensis Draudt, 1931 syn. nov.], male. (G-H) A. m. helena (Dubatolov & Kishida, 2004) from Kunashir Island, male. Scale bar = 10 mm. (Photos: Elizaveta A. Spitsyna & Polina D. Burchalovskaia).
Figures 13–16 in On the taxonomy of Miltochrista dagmarae Černý with descriptions of a new species and a new subspecies (Lepidoptera: Erebidae: Arctiinae)
Figures 13–16. Miltochrista spp.: male (13, 14) and female (15, 16) genitalia. Depositories of the specimens dissected: 13 and 14 in MWM/ZSM; 15 and 16 in CKC.
Figures 1–8 in On the taxonomy of Miltochrista dagmarae Černý with descriptions of a new species and a new subspecies (Lepidoptera: Erebidae: Arctiinae)
Figures 1–8. Miltochrista spp.: adults. Depositories of the specimens: 1, 7 and 8 in MWM/ZSM; 2 –6 in CKC.
Рис. 2–5. Glaphyrus oxypterus, Αва поΑвиΑа. 2–4 – G. o. kasatkini Shokhin, subsp. n.; 5 – G. o. oxypterus (Pallas, 1771). 2–3 – внешний виΑ; 2, 4, 5 – самец; 3 – самка; 4–5 – вершина наΑкрыΛий. Figs 2–4. Glaphyrus oxypterus, two subspecies 2–4 – G. o. kasatkini Shokhin, subsp. n.; 5 – G. o. oxypterus (Pallas, 1771). 2–3 – habitus; 2, 4, 5 – male; 3 – female; 4–5 – apex of elytra. in The fauna of lamellicorn beetles (Coleoptera: Scarabaeoidea) of Azerbaijan
Рис. 2–5. Glaphyrus oxypterus, Αва поΑвиΑа. 2–4 – G. o. kasatkini Shokhin, subsp. n.; 5 – G. o. oxypterus (Pallas, 1771). 2–3 – внешний виΑ; 2, 4, 5 – самец; 3 – самка; 4–5 – вершина наΑкрыΛий. Figs 2–4. Glaphyrus oxypterus, two subspecies 2–4 – G. o. kasatkini Shokhin, subsp. n.; 5 – G. o. oxypterus (Pallas, 1771). 2–3 – habitus; 2, 4, 5 – male; 3 – female; 4–5 – apex of elytra.
Рис. 4. Типовое местонахожΔение Dorcadion pantherinum ludmilae subsp. n. Fig. 4. The type locality of Dorcadion pantherinum ludmilae subsp. n. in A new subspecies of Dorcadion pantherinum Jakowleff, 1901 (Coleoptera: Cerambycidae) from South Kazakhstan
Рис. 4. Типовое местонахожΔение Dorcadion pantherinum ludmilae subsp. n. Fig. 4. The type locality of Dorcadion pantherinum ludmilae subsp. n.
Рис. 3. Распространение поΔвиΔов Dorcadion (s. str.) pantherinum Jakowleff, 1901 в Южном Казахстане. 1 – центраΛьная часть пустыни Бетпак-ÀаΛа, преΔпоΛагаемое типовое местонахожΔение D. p. pantherinum; 2 – ЧуΛак-Эспе, местонахожΔение D. p. pantherinum; 3 – Аксуек, местонахожΔение D. p. pantherinum; 4 – Капчагай, типовое местонахожΔение D. p. shamaevi; 5 – 120 км северовосточнее Баканаса, типовое местонахожΔение D. p. desertum; 6 – 37 км восточнее КызыΛ-ОрΔы, типовое местонахожΔение D. p. sabulosum; 7 – 41 км восточнее Айтеке-Би, типовое местонахожΔение D. p. ludmilae subsp. n. Fig. 3. Localities of subspecies of Dorcadion (s. str.) pantherinum Jakowleff, 1901 in South Kazakhstan. 1 – central part of Betpak-Dala desert, possible type locality of D. p. pantherinum; 2 – Chulak-Espe, locality of D. p. pantherinum; 3 – Aksuek, locality of D. p. pantherinum; 4 – Kapchagai, type locality of D. p. shamaevi; 5 – 120 km NE Bakanas, type locality of D. p. desertum; 6 – 37 km E Kyzyl-Orda, type locality of D. p. sabulosum; 7 – 41 km E Ayteke-Bi, type locality of D. p. ludmilae subsp. n. in A new subspecies of Dorcadion pantherinum Jakowleff, 1901 (Coleoptera: Cerambycidae) from South Kazakhstan
Рис. 3. Распространение поΔвиΔов Dorcadion (s. str.) pantherinum Jakowleff, 1901 в Южном Казахстане. 1 – центраΛьная часть пустыни Бетпак-ÀаΛа, преΔпоΛагаемое типовое местонахожΔение D. p. pantherinum; 2 – ЧуΛак-Эспе, местонахожΔение D. p. pantherinum; 3 – Аксуек, местонахожΔение D. p. pantherinum; 4 – Капчагай, типовое местонахожΔение D. p. shamaevi; 5 – 120 км северовосточнее Баканаса, типовое местонахожΔение D. p. desertum; 6 – 37 км восточнее КызыΛ-ОрΔы, типовое местонахожΔение D. p. sabulosum; 7 – 41 км восточнее Айтеке-Би, типовое местонахожΔение D. p. ludmilae subsp. n. Fig. 3. Localities of subspecies of Dorcadion (s. str.) pantherinum Jakowleff, 1901 in South Kazakhstan. 1 – central part of Betpak-Dala desert, possible type locality of D. p. pantherinum; 2 – Chulak-Espe, locality of D. p. pantherinum; 3 – Aksuek, locality of D. p. pantherinum; 4 – Kapchagai, type locality of D. p. shamaevi; 5 – 120 km NE Bakanas, type locality of D. p. desertum; 6 – 37 km E Kyzyl-Orda, type locality of D. p. sabulosum; 7 – 41 km E Ayteke-Bi, type locality of D. p. ludmilae subsp. n.
Рис. 1–2. Dorcadion pantherinum ludmilae subsp. n. 1 – самец, гоΛотип; 2 – самка, паратип. Figs 1–2. Dorcadion pantherinum ludmilae subsp. n. 1 – male, holotype; 2 – female, paratype. in A new subspecies of Dorcadion pantherinum Jakowleff, 1901 (Coleoptera: Cerambycidae) from South Kazakhstan
Рис. 1–2. Dorcadion pantherinum ludmilae subsp. n. 1 – самец, гоΛотип; 2 – самка, паратип. Figs 1–2. Dorcadion pantherinum ludmilae subsp. n. 1 – male, holotype; 2 – female, paratype.
Fig. 2 in Experimental evaluation of pathogenicity and acquired immunity of Eimeria species, E. uekii and E. raichoi, infecting Japanese rock ptarmigans in a subspecies of the birds
Fig. 2. The number of oocysts per gram of feces (OPG) after inoculation with E. uekii and E. raichoi oocysts. Panels A and B show E. uekii and E. raichoi OPG, respectively. Chicks Nos. 1–3 were inoculated depending on the manner of oocysts E. uekii and E. raichoi as described at the bottom of Figure, and mouse no. 4 was inoculated with oocysts of E. raichoi.
Fig. 1 in Experimental evaluation of pathogenicity and acquired immunity of Eimeria species, E. uekii and E. raichoi, infecting Japanese rock ptarmigans in a subspecies of the birds
Fig. 1. Weight gain of Svalbard rock ptarmigans after inoculation with E. uekii and E. raichoi oocysts. The inoculation doses of E. uekii and E. raichoi were 4 104 and × 17 103 or 4 103 (A), 2 104 and 8 103 (B), 4 103 and 17 or 4 102 (C), and 4 102 and 17 or 4 101 (D), respectively. Group E was administered PBS as a × × × × × × × × control, and group F was inoculated with 4 104 oocysts of E. raichoi that had been passed in turkeys. "n" indicates the numbers of examined chicks.
Fig. 5 in Experimental evaluation of pathogenicity and acquired immunity of Eimeria species, E. uekii and E. raichoi, infecting Japanese rock ptarmigans in a subspecies of the birds
Fig. 5. Histopathological photomicrographs of sections of the intestines of challenged chicks. Panels A and B show the ileum and duodenum of the primary inoculated chick at 7 days PI, respectively. Panels C and D show the ileum and colon of a non-inoculated chick at 7 days PI, respectively. Arrows indicate developmental zoites (sexual stages in panels C and D). Scale bars are 20 μm in panels A and C and 50 μm in panels B and D.
Fig. 4 in Experimental evaluation of pathogenicity and acquired immunity of Eimeria species, E. uekii and E. raichoi, infecting Japanese rock ptarmigans in a subspecies of the birds
Fig. 4. Weight gain of Svalbard rock ptarmigans after challenge inoculation. Panels A and B show the weight of control (PBS) and primary inoculated chicks, respectively. Two-direction arrows indicate the period of challenge inoculation, 4 104 E. uekii and 2 103 E. raichoi for 5 days.
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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.