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2,196 results for “water mite”
Figure 4 in First record of larva of the water mite Hydrachna skorikowi Piersig (Acari, Hydrachnidia, Hydrachnidae) from Iran
Figure 4. Larva of Hydrachna skorikowi (mounted specimens) – A. Ventral view of body; B. Ventral view of coxal plates. Scale bar: 100 μm for A, 40 μm for B.
Figure 3 in First record of larva of the water mite Hydrachna skorikowi Piersig (Acari, Hydrachnidia, Hydrachnidae) from Iran
Figure 3. Larva of Hydrachna skorikowi (mounted specimens) – A. Dorsal habitus of newly emerged larva; B. Dorsal habitus of parasitizing larvae. Scale bars: 100 μm.
Figure 2 in Redescription of the water mite Eylais extendens (Müller) (Acari, Eylaidae) larva based on material collected from Iran
Figure 2. DIC micrographs of Eylais extendens (larvae) – A. Dorsal view of body; B. Ventral view of body; C.
Figure 4 in Redescription of the water mite Eylais extendens (Müller) (Acari, Eylaidae) larva based on material collected from Iran
Figure 4. Water beetles infected with larvae of Eylais extendens – A. Noteridae; B. Noteridae; C. Dytiscidae; D. Heteroceridae.
Figure 3 in Redescription of the water mite Eylais extendens (Müller) (Acari, Eylaidae) larva based on material collected from Iran
Figure 3. DIC micrographs of Eylais extendens (larva) – A. Legs; B. Trichobothrium on femur; C. Solenidion on tarsus II; D. Tarsus and pretarsus. Scale bar: 67 μm for A; 21 μm for B; 26 μm for C; 14 μm for D.
Figure 1 in Redescription of the water mite Eylais extendens (Müller) (Acari, Eylaidae) larva based on material collected from Iran
Figure 1. Eylais extendens (larva) – A. Dorsal plate; B. Ventral plate; C. Velum; D. Palp; E. Stylophore. Scale bar: 65 μm for A; 75 μm for B; 19 μm for C; 27 μm for D; 21 μm for E.
Figs 5–7 in Deutonymphal morphology of the water mite Piona neumani (Koenike, 1883) (Acari, Hydrachnidia, Pionidae)
Figs 5–7. Piona neumani (Koenike, 1883), deutonymph: 5 — I–Leg–5–6; 6 — IV–Leg–5–6; 7 — claw of leg I. Scale bars: 5–6, 7 = 50 μm Рис. 5–7. Piona neumani (Koenike, 1883), Ãейтонимфа: 5 — гоΛень и Λапка ноги I; 6 — гоΛень и Λапка ноги IV; 7 — коготок ноги I. ШкаΛы: 5–6, 7 = 50 μm
Figs. 15–18 in Two new water mite species of the genus Lebertia Neuman, 1880 (Acari, Hydrachnidae: Lebertiidae) from northern lakes of Russia
Figs. 15–18. Lebertia prokini sp. n., male: 15 — genital field, right side; 16 — chelicera; 17 — IV-Leg-6; 18 — leg claw. Lebertia porosa, male: 19 — fragment of integument; 20 — pedipalp. Scale bars: 15–17 = 100 μm, 18 = 50 μm Рис. 15–18. Lebertia prokini sp. n., самец: 15 — генитаΛьное поΛе, правая сторона; 16 — хеΛицера; 17 — Λапка ноги IV; 18 — коготок ног. Lebertia porosa, самец: 19 — фрагмент покрова; 20 — пеΔипаΛьпа. ШкаΛы: 15–17 = 100 μm, 18 = 50 μm
Figs. 10–14 in Two new water mite species of the genus Lebertia Neuman, 1880 (Acari, Hydrachnidae: Lebertiidae) from northern lakes of Russia
Figs. 10–14. Lebertia prokini sp. n., male: 10 — seta Fch; 11 — seta Oi; 12 — seta Oe; 13 — ventral view; 14 — pedipalp, lateral view. Scale bars: 10– 13 = 100 μm; 14 = 50 μm Рис. 10-14. Lebertia prokini sp. n., самец: 10 — щетинка Fch; 11 — щетинка Oi; 12 — щетинка Oe; 13 — вентраΛьная сторона; 14 — пеΔипаΛьпа, боковая сторона. ШкаΛы: 10–13 = 100 μm; 14 = 50 μm
Figs. 1–5 in Two new water mite species of the genus Lebertia Neuman, 1880 (Acari, Hydrachnidae: Lebertiidae) from northern lakes of Russia
Figs. 1–5. Lebertia makarovae sp. n., female: 1 — seta Fch; 2 — seta Oi; 3 — seta Oe; 4 — ventral view; 5 — pedipalp. Scale bars: 1–3, 5 = 100 μm; 4 = 200 μm Рис. 1–5. Lebertia makarovae sp. n., самка: 1 — щетинка Fch; 2 — щетинка Oi; 3 — щетинка Oe; 4 — вентраΛьная сторона; 5 — пеΔипаΛьпа. ШкаΛы: 1–3, 5 = 100 μm; 4 = 200 μm
Figs 1–4 in Deutonymphal morphology of the water mite Piona neumani (Koenike, 1883) (Acari, Hydrachnidia, Pionidae)
Figs 1–4. Piona neumani (Koenike, 1883), deutonymph: 1 — seta Fch; 2 — idiosoma, ventral view; 3 — chelicera; 4 — pedipalp. Scale bars: 16, 18 = 100 μm; 17, 19 = 50 μm Рис 1–4. Piona neumani (Koenike, 1883), Ãейтонимфа: 1 — seta Fch; 2 — иÃиосома, вентраΛьная сторона; 3 — хеΛицера; 4 — пеÃипаΛьпа. ШкаΛы: 1–2 = 100 μm; 3, 4 = 50 μm
Figs. 6–9 in Two new water mite species of the genus Lebertia Neuman, 1880 (Acari, Hydrachnidae: Lebertiidae) from northern lakes of Russia
Figs. 6–9. Lebertia females: 6–8 — Lebertia makarovae sp. n., 6 — genital field; 7 — IV-Leg-4–6; 8 — l eg claw; 9 — Lebertia porosa, genital field. Scale bars: 6, 9 = 100 μm, 7 = 200 μm, 8 = 50 μm Рис. 6–9. Lebertia самки: 6–8 — Lebertia makarovae sp. n., 6 — генитаΛьное поΛе; 7 — нога IV-4-6; 8 — коготок ног; 9 — Lebertia porosa, генитаΛьное поΛе. ШкаΛы: 6, 9 = 100 μm; 7 = 200 μm; 8 = 50 μm
Figs. 6–7 in Description of a new water mite species of the genus Atractides Koch, 1837 (Acari, Hydrachnidia, Hygrobatidae) from Kazakhstan
Figs. 6–7. Atractides: 6 — A. tienshanensis, pedipalp; 7 — A. aksuensis, pedipalp. Scale bars: 6, 7 = 50 µm Рис. 6–7. Atractides: 6 — A. tienshanensis, пеΑипаΛьпа; 7 — A. aksuensis, пеΑипаΛьпа. ШкаΛы: 6, 7 = 50 µm
Figs. 1–7 in New water mite species of the genus Protzia Piersig, 1896 (Acari, Hydrachnidia, Hydryphantidae) from Kazakhstan
Figs. 1–7. Protzia aksuensis sp. n., male: 1 — coxal plates I+II; 2 — coxal plates III+IV; 3 — genital field; 4 — acetabula; 5 — capitulum, ventral view; 6 — chelicera; 7 — pedipalp. Scale bars: 1–2, 4–7 = 50 μm; 3 = 100 μm Рис. 1–7. Protzia aksuensis sp. n., самец: 1 — коксаΛьные пΛастинки I+II; 2 — коксаΛьные пΛастинки III+IV; 3 — генитаΛьное поΛе; 4 — присоски; 5 — капитуΛум, вентраΛьный виÃ; 6 — хеΛицера; 7 — пеÃипаΛьпа. ШкаΛы: 1–2, 4–7 = 50 μm; 3 = 100 μm
Figs. 8–12 in New water mite species of the genus Protzia Piersig, 1896 (Acari, Hydrachnidia, Hydryphantidae) from Kazakhstan
Figs. 8–12. Protzia aksuensis sp. n., male: 8 — leg I; 9 — leg II; 10 — leg III; 11 — leg IV; 12 — leg claw. Scale bars: 8–11 = 100 μm; 12 = 50 μm Рис. 8–12. Protzia aksuensis sp. n., самец: 8 — нога I; 9 — нога II; 10 — нога III; 11 — нога IV; 12 — коготок ног. ШкаΛы: 8–11 = 100 μm; 12 = 50 μm
Figure 14 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 14 Photographs of dorsal shield. A – Evidaturus scopticus Cook, 1983, male holotype, stream on Wainui Rd (from: ); B –Kritaturus sornus Cook, 1983, female, Longbeach Creek; C – K. jacundusCook, 1983,
Figure 12 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 12 Zelandalbia thibaultin. sp., female, Simpson Creek. A – dorsal shield; B – idiosoma, ventral view (partly damaged); C – palp; D – chelicera; E – gnathosoma; F – IV-leg-3-6. Scale bars = 100 μm.
Figure 11 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 11 Zelandalbiacf. hopkinsi (A-C male, D-H female), Simpson Creek. A – idiosoma, dorsal view; B – idiosoma, ventral view; C – gnathosoma and palp; D – anterodorsal part of ventral shield; E – posterior part of ventral shield; F – palp; G – I-leg-3-6; H – IV-leg-4-6. Scale bars = 100 μm.
Figure 13 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 13 Zelandalbia thibaultin. sp., male, Simpson Creek. A – idiosoma, dorsal view; B – idiosoma, ventral view (partial view); C – posteromedial plate and excretory pore; D – palp; E – I-leg-3-6; F – IV-leg. Scale bars = 100 μm.
Figure 10 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 10 Tryssaturus longwoodn. sp., female, Caution Creek. A – idiosoma, dorsal view; B – idiosoma, ventral view; C – palp; D – IV-leg- 2-6. Scale bars = 100 μm.
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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)
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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
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