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4,034 results for “Species associations”
Figure 1 in A new species of Paracarophenax (Acari: Heterostigmata: Acarophenacidae) associated with Triplax scutellaris (Coleoptera: Erotylidae) from European Russia
Figure 1 Paracarophenax triplaxophilusn. sp., female: A – dorsum of the body, B – venter of the body. Legs omitted.
Figure 5 in A new species of Paracarophenax (Acari: Heterostigmata: Acarophenacidae) associated with Triplax scutellaris (Coleoptera: Erotylidae) from European Russia
Figure 5 SEM micrographs of Paracarophenax triplaxophilusn. sp. female: A – general view, B – anterior part of prodorsum, C – stigma, D
Figure 4 in A new species of Paracarophenax (Acari: Heterostigmata: Acarophenacidae) associated with Triplax scutellaris (Coleoptera: Erotylidae) from European Russia
Figure 4 DIC micrographs of Paracarophenax triplaxophilusn. sp. female: A – central part of prodorsum, B – lateral part of tergite D, C
Figure 3 in A new species of Paracarophenax (Acari: Heterostigmata: Acarophenacidae) associated with Triplax scutellaris (Coleoptera: Erotylidae) from European Russia
Figure 3 Paracarophenax triplaxophilusn. sp., female: A – right leg III in dorsal view, B – right leg IV in dorsal view.
Text-fig. 17. Scatter diagram of length and width of Promephitis species from Late Miocene faunas of southern Europe and western Asia. a – Promephitis maeotica, p4, dex, Gaverdovsky, GIN-1144-301: labial (left) and lingual (right) views. b – P. maeotica, p4, sin, reversed, Novoelizavetovka, PIN-355: labial (left) and lingual (right) views. Scale 1 mm. in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology
Text-fig. 17. Scatter diagram of length and width of Promephitis species from Late Miocene faunas of southern Europe and western Asia. a – Promephitis maeotica, p4, dex, Gaverdovsky, GIN-1144-301: labial (left) and lingual (right) views. b – P. maeotica, p4, sin, reversed, Novoelizavetovka, PIN-355: labial (left) and lingual (right) views. Scale 1 mm.
Text-fig. 13. Hypsodonty in different Collimys species. a, b, d, f – M1, labial view; c, e, g – m1, lingual view; a – C. transversus, Steinheim, late Middle Miocene ("MN 7"); b, c – C. longidens, Nebelbergweg, Middle-Late Miocene transition, MN 8/9; d, e – C. primus, Eichkogel, Late Miocene, MN 11; f, g – C. caucasicus sp. nov., Gaverdovsky (f) and Volchaya Balka (g, holotype), Late Miocene, MN 11. a–e – modified after Kälin and Engesser (2001). in Late Miocene (Early Turolian) Vertebrate Faunas And Associated Biotic Record Of The Northern Caucasus: Geology, Taxonomy, Palaeoenvironment, Biochronology
Text-fig. 13. Hypsodonty in different Collimys species. a, b, d, f – M1, labial view; c, e, g – m1, lingual view; a – C. transversus, Steinheim, late Middle Miocene ("MN 7"); b, c – C. longidens, Nebelbergweg, Middle-Late Miocene transition, MN 8/9; d, e – C. primus, Eichkogel, Late Miocene, MN 11; f, g – C. caucasicus sp. nov., Gaverdovsky (f) and Volchaya Balka (g, holotype), Late Miocene, MN 11. a–e – modified after Kälin and Engesser (2001).
Fig. 3 in Association of Aceria cernuus (MASSE, 1927) (Acari: Eriophyidae) with Dolicolepta micrura (BAGNALL, 1914) (Thysanoptera: Phlaeothripdae) on two species of Zizipus
Fig. 3. close-up view of the gall (a); Aceria cernuus (b); eggs of A. cernuus (c) and Dolicolepta micrura (d).
Fig. 1 in Association of Aceria cernuus (MASSE, 1927) (Acari: Eriophyidae) with Dolicolepta micrura (BAGNALL, 1914) (Thysanoptera: Phlaeothripdae) on two species of Zizipus
Fig. 1. Aceria cernuus; (A) prorodorsal shield, (B) coxigenital region, (C) leg I and II and lateral view of prodorsum, (D) internal female genitalia, (E) dorsal view of annuli, (F) empodium. Scale bar: 1 μm.
FIG. 72 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 72. Male genitalic morphology of Erysivena sydneyensis. A. Pygophore, ventral. B. Pygophore, right lateral. C. Aedeagus, left lateral. D. Aedeagus, ventral. E. Aedeagus, right dorsolateral. Scale bars = 30 µm.
FIG. 58 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 58. Male genitalic morphology of Erysivena kalbarri. A. Pygophore, left lateral. B. Pygophore, ventral. C. Aedeagus, left lateral. D. Aedeagus, ventral. E. Aedeagus, right lateral. Arrow indicates membrane join between PES and DES2 endosomal spicules. Scale bars = 30 µm.
FIG. 55 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 55. Female genitalia of Erysivena emeraldensis. A. Bursa copulatrix, ventral. B. Posterior wall, dorsal. Scale bar = 0.1 mm.
FIG. 65 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 65. Male genitalia of Erysivena mareeba. A. Pygophore, dorsal. B. Left paramere, ventral. C. Right paramere, right lateral. D. Phallotheca, right lateral. E. Aedeagus, right lateral. Scale bars = 0.1 mm.
FIG. 71 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 71. External morphology of Erysivena sydneyensis. A. Head, dorsal, scale bar = 30 µm. B. Head, lateral, scale bar = 30 µm. C. Head and pronotum, dorsal, scale bar = 100 µm. D. Head, and pronotum, lateral, scale bar = 100 µm. E. Meso- and metathorax, scale bar = 30 µm. F. Metathoracic scent gland, scale bar = 10 µm. G. Tarsal claw, scale bar = 10 µm. H. Pygophore, dorsal, scale bar = 30 µm.
FIG. 77 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 77. Male genitalia of Ngullamiris whadjuk. A. Pygophore, dorsal. B. Left paramere, dorsal. C. Left paramere, ventral. D. Right paramere, dorsal. E. Phallotheca, dorsal. F. Aedeagus, ventral. Scale bars = 0.1 mm.
FIG. 78 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 78. Female genitalia of Ngullamiris whadjuk. A. Bursa copulatrix, ventral. C. Posterior wall, dorsal. Scale bar = 0.1 mm.
FIG. 68 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 68. Male genitalia of Erysivena paluma. A. Pygophore, dorsal. B. Left paramere, ventral. C. Right paramere, ventral. D. Phallotheca, dorsal. E. Phallotheca, right lateral. E. Aedeagus, left lateral. Scale bars = 0.1 mm.
FIG. 57 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 57. Scanning electron micrograph images of Erysivena kalbarri, male. A. Head, dorsal, scale bar = 30 µm. B. Head, lateral, scale bar = 30 µm. C. Head and pronotum, dorsal, scale bar = 100 µm. D. Head and pronotum, lateral, scale bar = 30 µm. E. Meso- and metathorax, scale bar = 30 µm. F. Metathoracic scent gland, scale bar = 10 µm. G. Tarsal claw, scale bar = 10 µm. H. Pygophore, dorsal, scale bar = 30 µm.
FIG. 70 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 70. Male genitalia of Erysivena schwartzi. A. Pygophore, dorsal. B. Left paramere, ventral. C. Right paramere, dorsal. D. Phallotheca, dorsal. E. Aedeagus, right dorsolateral. Scale bars = 0.1 mm.
FIG. 62 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 62. Male genitalia of Erysivena majori. A. Pygophore, dorsal. B. Left paramere, ventral. C. Right paramere, left lateral. E. Phallotheca, right lateral. D. Aedeagus, right lateral. Scale bars = 0.1 mm.
FIG. 50 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 50. Male genitalia of Erysivena bundjalung. A. Pygophore, dorsal. B. Left paramere, ventral. C. Right paramere, left lateral. D. Phallotheca, dorsal. E. Aedeagus, right lateral. F. Aedeagus, ventral. Scale bars = 0.1 mm.
ScienceDex guides
Understand access before you commit
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.