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1,131 results for “oribatid mites”
Figure 2 Sphaerozetes parafirthensisErmilov n in New faunistical data on oribatid mites (Acari, Oribatida) from Altai, Russia, with description of a new species of Sphaerozetes (Ceratozetidae)
Figure 2 Sphaerozetes parafirthensisErmilov n. sp., adult: a – subcapitulum, ventral view; b – palp, right, antiaxial view; c – chelicera, left, paraxial view; d – leg I, right, antiaxial view; e – leg II, right, antiaxial view (tarsus omitted); f – leg III, right, antiaxial view (tarsus omitted); g – leg IV, left, antiaxial view. Scale bars 100 μm (a, c–g), 10 μm (b).
Figure 11 in Paedomorphosis and sexuality in Eulohmanniidae (Acari, Oribatida): surprising diversity in a relictual family of oribatid mites
Figure 11 Eulohmannia ribagai(Berlese): A – adult, left anal and adanal plates, ventral view; B – larva, paraproctal region, slightly flattened
Figure 6 in Paedomorphosis and sexuality in Eulohmanniidae (Acari, Oribatida): surprising diversity in a relictual family of oribatid mites
Figure 6 Eulohmannia ribagai(Berlese), uncleared specimens in glycerine: A – deutonymph, lateral view (musclem.pdv out of focus); B – adult hysterosoma, dorsal view, showing major organs; C – same, lateral view (one fascicle of musclem.pdv out of focus); D – as in C, closeup of humeral region; E – adult, anterior hysterosoma, showing some proterosomal retractor muscles. Scale bars 50 µm (A-C, E); 20 µm (D).
Figure 23 in Paedomorphosis and sexuality in Eulohmanniidae (Acari, Oribatida): surprising diversity in a relictual family of oribatid mites
Figure 23 Paedolohmannia metzin. sp., adult: A – leg I, right, abaxial view; B – leg II, right, abaxial view; C – leg III, left, abaxial view; D – leg IV, left, abaxial view. Scale bar 50 µm.
Figure 1 Sphaerozetes parafirthensisErmilov n in New faunistical data on oribatid mites (Acari, Oribatida) from Altai, Russia, with description of a new species of Sphaerozetes (Ceratozetidae)
Figure 1 Sphaerozetes parafirthensisErmilov n. sp., adult: a – dorsal view (legs omitted); b – medioanterior part of prodorsum, dorsoanterior view; c – ventral view (gnathosoma and legs omitted); d – right lateral view (gnathosoma and legs omitted); e – posterior view (right half omitted). Scale bars 100 μm (a, c–e), 50 μm (b).
Figure 22 in Paedomorphosis and sexuality in Eulohmanniidae (Acari, Oribatida): surprising diversity in a relictual family of oribatid mites
Figure 22 Paedolohmannia metzin. sp., adult: A – lateral view of gravid female; B – cuticle of prodorsum near rostral setaero(), anterior to right; C – supracoxal seta (eI), left (top), right (bottom) from same specimen; D – left bothridium, near-dorsal view; E – secretory saccules at base of bothridium; F – proterosoma, partial lateral view; G – ventral view of hysterosoma, uncleared specimen, showing food bolus precursor (pfb) in ventriculus, complete food bolus (fb) in colon, and fecal pellet (fp) in postcolon; H – venter, just posterior to leg III insertion (aggenital region to right); I – same, but to further right of H (arrow to neotrichous seta; several alveoli from broken setae visible); J – sejugal region ventral view; K – epimere III, just anterior to insertion of leg III, slightly deeper focus than in J (arrow to extrinsic muscles of trochanter). Scale bars 50 µm (A, G); 20 µm (B, F, J); 10 µm (H, I, K); 5 µm (D, E); 2 µm (C).
Figure 4 in Ontogenetic instars of the oribatid mite Scheloribates arsizonensis n. sp. (Acari, Oribatida, Scheloribatidae) from Ethiopia
Figure 4 Scheloribates arsizonensisn. sp., larva: a – dorsal view (legs omitted); b – ventral view (gnathosoma and legs except trochanters omitted); c – right lateral view (gnathosoma and legs except trochanters omitted). Scale bar 100 μm.
Figure 3 in Ontogenetic instars of the oribatid mite Scheloribates arsizonensis n. sp. (Acari, Oribatida, Scheloribatidae) from Ethiopia
Figure 3 Scheloribates arsizonensisn. sp., adult: a – subcapitulum, ventral view; b – palp, left, paraxial view; c – chelicera, left, paraxial view; d – leg I, right, antiaxial view; e – leg II, right, antiaxial view; f – leg III, left, antiaxial view; g – leg IV, left, antiaxial view. Scale bars 20 μm (a-c), 50 μm (d-g).
Figure 2 in Paedomorphosis and sexuality in Eulohmanniidae (Acari, Oribatida): surprising diversity in a relictual family of oribatid mites
Figure 2 Eulohmannia ribagai(Berlese), adult, SEM images: A – lateral view; B – closeup of posterior proterosoma; C – dorsal view; D – frontal view (black arrow to narrow solid rostral rim); E – sejugal region, dorsal view. Scale bars 100 µm (A, C); 20 µm (B, D, E).
Figure 26 in Paedomorphosis and sexuality in Eulohmanniidae (Acari, Oribatida): surprising diversity in a relictual family of oribatid mites
Figure 26 Paedolohmannia metzin. sp.: A – larva, leg I, abaxial view; B – same, leg II; C – same, leg III; D – protonymph, ventral view, anterior not shown; E – deutonymph, ventral view of hysterosoma; F – tritonymph, dorsal view; G – same, ventral view of hysterosoma. D-G with legs represented only by trochanters or absent. Scale bars 100 µm (D-G, to same scale); 20 µm (A-C, to same scale).
Figure 18 in Paedomorphosis and sexuality in Eulohmanniidae (Acari, Oribatida): surprising diversity in a relictual family of oribatid mites
Figure 18 Eulohmannia bifurcataFujikawa (A-D) andEulohmanniaspp. (E-I): A – holotype (13642), right anogenital region seen by transparency (black arrow to separate, ′island-like′ sclerite); B – paratype 13643A, genu and tibia I; C – same, tibia and tarsus II; D – same, leg IV (arrows to edge of adaxial declivity); E –Eulohmanniasp. A from Aborigen, Russian Far East, lateral view of gravid female; F – same specimen, ventral lobe of ovipositor (rectangle in A); G – male of same species, ventral view of spermatopositor; H –Eulohmanniasp. B from Kashmir, lateral view of gravid female; I – same specimen tarsus II (indicated by rectangle in H), with enlargement of distal region (arrow basal spine of empodial claw). Scale bars 50 µm (E, H); 20 µm (B, C); 10 µm (A, D, I); 5 µm (F, G).
Figures 3–6. Edwardzetes elongatus Wallwork, 1966 in Additions to the Tasmanian oribatid mites, with supplementary description of Edwardzetes elongatus Wallwork, 1966 (Acari, Oribatida)
Figures 3–6. Edwardzetes elongatus Wallwork, 1966, adult: 3 — lateral view of anterior part of body (legs not illustrated); 4 — subcapitulum, right half, ventral view; 5 — palptarsus; 6 — chelicera, paraxial view. Scale bars 200 μm (3), 50 μm (4, 6), 20 μm (5).
Figure 2. Edwardzetes elongatus Wallwork, 1966 in Additions to the Tasmanian oribatid mites, with supplementary description of Edwardzetes elongatus Wallwork, 1966 (Acari, Oribatida)
Figure 2. Edwardzetes elongatus Wallwork, 1966, adult: ventral view (legs not illustrated). Scale bar 200 μm.
Figures 19–22. Edwardzetes elongatus Wallwork, 1966 in Additions to the Tasmanian oribatid mites, with supplementary description of Edwardzetes elongatus Wallwork, 1966 (Acari, Oribatida)
Figures 19–22. Edwardzetes elongatus Wallwork, 1966, adult, microscope images: 19 — custodium and discidium; 20 — genital plates; 21 — adanal lyrifissures, adanal seta ad3 and part of anal plate; 22 — claws of leg III. Scale bar 20 μm.
Figures 11–18. Edwardzetes elongatus Wallwork, 1966 in Additions to the Tasmanian oribatid mites, with supplementary description of Edwardzetes elongatus Wallwork, 1966 (Acari, Oribatida)
Figures 11–18. Edwardzetes elongatus Wallwork, 1966, adult, microscope images: 11 — rostral seta; 12 — bothridial seta; 13 — medio-distal part of interlamellar seta; 14 — genal tooth; 15 — medio-distal part of tutorium; 16 — notogastral seta p1; 17 — genu and anterior part of femur of leg I, left, antiaxial view; 18 — genu and anterior part of femur of leg II, left, antiaxial view. Scale bar 20 μm.
Figures 7–10. Edwardzetes elongatus Wallwork, 1966 in Additions to the Tasmanian oribatid mites, with supplementary description of Edwardzetes elongatus Wallwork, 1966 (Acari, Oribatida)
Figures 7–10. Edwardzetes elongatus Wallwork, 1966, adult: 7 — leg I (without trochanter), left, antiaxial view; 8 — femur, genu and tibia of leg II, right, antiaxial view; 9 — trochanter, femur and genu of leg III, right, antiaxial view; 10 — leg IV, right, antiaxial view. Scale bar 100 μm.
Figure 2. A in Biology of the oribatid mite Acrotritia clavata (Märkel, 1964) from the mangrove ecosystems of North Kerala, India
Figure 2. A. Adult of Acrotritia clavata showing egg inside the body, B. Adult of A. clavata with fully developed larva (LA), C. Newly emerged larva (LA) and protonymph (PN), D. Protonymph and its quiescent phase, E. Deutonymph (DN) feeding on dead filaments of Microspora sp. and quiescent deutonymph, F. Tritonymph (TN) and quiescent tritonymph, G. Moulting of quiescent tritonymph to adult (A) and moulting skin (MS) of quiescent tritonymph, H. Newly emerged adult (A) (Scale bar=1mm).
Figure 1 in Biology of the oribatid mite Acrotritia clavata (Märkel, 1964) from the mangrove ecosystems of North Kerala, India
Figure 1. Geographical description of mangrove ecosystems at Kadalundi-Vallikkunnu Community Reserve (Image accessed via Google Earth Pro Software).
Figure 4 in Biology of the oribatid mite Acrotritia clavata (Märkel, 1964) from the mangrove ecosystems of North Kerala, India
Figure 4. SEM image of Acrotritia clavata (lateral view). A. Aspis with prodorsal setae (in, le and ro), B. Enlarged view of aspis showing clavate sensillus (ss), bothridium (bo) and lateral carina (car), C. Genital plate with 6 pairs of small fine genital setae (g1-6).
Figure 1 in Karyotype analysis of two oribatid mite species (Acari: Oribatida)
Figure 1. Photomicrograph of mitotic metaphase chromosomes, A-D. Hermanniella gibber, E-I. Oribotritia hermanni
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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
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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.