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269 results for “Cunaxidae”
Figure 13 in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 13 Scutopalus clavatus (Shiba), female: a – leg I; b – leg II; c – leg III (trochanter to genu);
Figure 11 in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 11 Scutopalus clavatus (Shiba), female: a – palp; b – subcapitulum; c – chelicera. Scale bar 50 µm.
Figure 10 in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 10 Lupaeus longisetus (Corpuz-Raros), male legs: a – I; b – II; c – III; d – IV. Scale bar 50 µm.
Figure 9 in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 9 Lupaeus longisetus (Corpuz-Raros), female legs: a – I; b – II; c – III; d – IV. Scale bar 50 µm.
Figure 8 in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 8 Lupaeus longisetus (Corpuz-Raros), female idiosoma: a – dorsum; b – venter. Scale bar 100 µm.
Figure 6 in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 6 Dactyloscirus trifidus Corpuz-Raros, male: a – palp; b – chelicera; c – leg I, genu to tarsus; d – leg II, genu to tarsus. Female, genu to tarsus of all legs: e – leg I; f – leg II; g – leg III, h – leg IV. Scale bar 50 µm.
Figure 5 in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 5 Dactyloscirus trifidus Corpuz-Raros, male idiosoma – a. dorsum; b. venter. Scale bar 100 µm.
Figure 4 Cunaxa minidiscondyla n in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 4 Cunaxa minidiscondyla n. sp., tritonymph: a – venter of idiosoma; b – leg I (trochanter to base of tarsus); c – leg II; d – leg III; e – leg IV. Scale bar 100 µm.
Figure 3 Cunaxa minidiscondyla n in Additional contributions to the knowledge of Philippine predatory mites mainly of the subfamilies Cunaxinae and Cunaxoidinae (Acari: Prostigmata: Cunaxidae)
Figure 3 Cunaxa minidiscondyla n. sp., female: a – Leg I; b – Leg II; c – Leg III; d – Leg IV. Scale bar 100 µm.
Figure 4 in Lupaeus neomartini, a new species of Cunaxidae (Acari: Prostigmata) from Southwestern China
Figure 4 Lupaeus neomartini Chen & Jin sp. nov. male: A – dorsal idiosoma; B – ventral idiosoma.
Figure 2 in Lupaeus neomartini, a new species of Cunaxidae (Acari: Prostigmata) from Southwestern China
Figure 2 Lupaeus neomartini Chen & Jin sp. nov. female: A – palp; B – chelicera; C – subcapitulum.
Figure 5 in Lupaeus neomartini, a new species of Cunaxidae (Acari: Prostigmata) from Southwestern China
Figure 5 Lupaeus neomartini Chen & Jin sp. nov. male: A – palp; B – chelicera; C – subcapitulum.
Figure 1 in Lupaeus neomartini, a new species of Cunaxidae (Acari: Prostigmata) from Southwestern China
Figure 1 Lupaeus neomartini Chen & Jin sp. nov. female: A – dorsal idiosoma; B – ventral idiosoma.
Figure 20 in A new species of Parabonzia (Trombidiformes: Cunaxidae) based on adults and nymphs with a key to the world species
Figure 20 Parabonzia xinningensis Chen & Jin sp. nov., protonymph: A – subcapitulum; B – palp telofemur branched (3 tines) seta. Scale represents 50 μm.
Figure 19 in A new species of Parabonzia (Trombidiformes: Cunaxidae) based on adults and nymphs with a key to the world species
Figure 19 Parabonzia xinningensisChen & Jin sp. nov., protonymph: A – dorsal idiosoma; B – ventral idiosoma. Scale represents 100 μm.
Figure 16 in A new species of Parabonzia (Trombidiformes: Cunaxidae) based on adults and nymphs with a key to the world species
Figure 16 Parabonzia xinningensisChen & Jin sp. nov., deutonymph: A – palp; B – chelicerae; C – subcapitulum. Scale represents 100 μm.
Figure 17 in A new species of Parabonzia (Trombidiformes: Cunaxidae) based on adults and nymphs with a key to the world species
Figure 17 Parabonzia xinningensis Chen & Jin sp. nov., deutonymph: A – subcapitulum; B – palp telofemur branched (3 tines) seta. Scale represents 50 μm.
Figure 18 in A new species of Parabonzia (Trombidiformes: Cunaxidae) based on adults and nymphs with a key to the world species
Figure 18 Parabonzia xinningensisChen & Jin sp. nov., deutonymph: A–D – leg I–IV respectively. Scale represents 100 μm.
Figure 15 in A new species of Parabonzia (Trombidiformes: Cunaxidae) based on adults and nymphs with a key to the world species
Figure 15 Parabonzia xinningensisChen & Jin sp. nov., deutonymph: A – dorsal idiosoma; B – ventral idiosoma. Scale represents 100 μm.
Figure 13 in A new species of Parabonzia (Trombidiformes: Cunaxidae) based on adults and nymphs with a key to the world species
Figure 13 Parabonzia xinningensisChen & Jin sp. nov., tritonymph: A – palp; B – chelicerae; C – subcapitulum. Scale represents 100 μm.
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.
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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.