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631 results for “Tenuipalpidae”
Figs. 1 and 2 in First report of Raoiella indica (Acari: Tenuipalpidae) in southeastern Brazil
Figs. 1 and 2. The red palm mite, Raoiella indica, in Dracena, São Paulo, Brazil. 1. Symptoms on leaves of a coconut plantlet. 2. A, Adult female; B, post-embryonic immature; C, eggs; and D, exuviae.
Fig. 8 in New report of Brevipalpus yothersi (Prostigmata: Tenuipalpidae) on blueberry in Florida
Fig. 8. Blueberry leaves infested with Brevipalpus yothersi and the bacterial plant disease Xylella sp. (Bacteria: Xanthomonadales).
Fig. 4 in New report of Brevipalpus yothersi (Prostigmata: Tenuipalpidae) on blueberry in Florida
Fig. 4. Brevipalpus yothersi female - ventral view of propodosoma (a), the region between coxal fields of legs III and IV, and the bases of setae 3a and 4a, and the area between setae 3a and 4a, and the area posterior to the 4a setae (b).
Fig. 1 in New report of Brevipalpus yothersi (Prostigmata: Tenuipalpidae) on blueberry in Florida
Fig. 1. Brevipalpus yothersi on blueberry (abundance) leaf - adult (a), egg (b), larva (c), protonymph (d).
Figure 7 in An amazing sub-cambium flat mite from South Africa (Acari: Trombidiformes: Tenuipalpidae)
Figure 7 Phytoptipalpus occultuae sp. n., female. A – SEM of dorsal view of gnathosoma; B – SEM of ventral view of gnathosoma; C – SEM of chelicera; D – SEM of tip of chelicera; E – SEM of empodium I; F – SEM of leg IV; G – SEM of egg.
Figure 1 A in An amazing sub-cambium flat mite from South Africa (Acari: Trombidiformes: Tenuipalpidae)
Figure 1 A – Senegalia caffra, Rietondale, Pretoria South Africa; B – Blister on stem; C – Founder specimens either larvae or protonymphs of Phytoptipalpus occultuae sp. n. in blister; D – P. occultuae sp. n. with eggs and unkown eriophyid; E – Large population in blister; F – Phytoptipalpus multistriatum on surface of host tree.
Figure 1 in Field application of six commercial essential oils against Date Palm mite, Phyllotetranychus aegypticus (Acari: Tenuipalpidae) in Egypt
Figure 1. The relationship (regression modeling at P = 0.05) between X (temperature recorded in spring, summer, and autumn), and Y (predicted value which representing mite populations before and after oil treatments). The line is the linear model, significant part till temperature ≤ 27 (which represents spring and autumn treatments). While the circle in the end part, temperature> 27.50 (representing effect of oil in summer) is not significant, P = 0.202ns.
Figure 5 in Field application of six commercial essential oils against Date Palm mite, Phyllotetranychus aegypticus (Acari: Tenuipalpidae) in Egypt
Figure 5. Independent-samples test of ordered alternatives (Jonckheere-Terpstra Test) on the relation between tested commercial essential oils of thyme, spearmint, jasmine, banana, camphor and clove across the temperature recorded in the field application 2018, at 0.05 significance level.
Figure 4 in Field application of six commercial essential oils against Date Palm mite, Phyllotetranychus aegypticus (Acari: Tenuipalpidae) in Egypt
Figure 4. Independent-samples median (Kolmogorov-Smirnov Test) resulted the distribution and the median of tested commercial essential oils of thyme, spearmint, jasmine, banana, camphor and clove across the three categories of season (spring, summer, and autumn), at 0.05 significance level.
Figure 2 in Field application of six commercial essential oils against Date Palm mite, Phyllotetranychus aegypticus (Acari: Tenuipalpidae) in Egypt
Figure 2. The relationship between numbers of Phyllotetranychus aegyptiacus active stages/50 leaflets of palm trees (treated and control), and the optimum temperature recorded (°C) during spring, summer, and autumn 2018 in Giza.
Figure 16 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 16 Cenopalpus pulcher(Canestrini & Fanzago, 1876) – Female: A – dorsal view; B – opisthogaster; Deutonymph: C – dorsal view.
Figure 11 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 11 Brevipalpus yothersiBaker – Female: A – dorsal view; B – opisthogaster; C – spermatheca; Deutonymph: D – dorsal view.
Figure 8 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 8 Brevipalpus oleariusSayed – Female: A – dorsal view; B – opisthogaster; C – spermatheca; Deutonymph: D – dorsal view.
Figure 23 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 23 Tenuipalpus cupressoidesSmith Meyer & Gerson – Female: A – dorsal view; B – opisthogaster; C – spermatheca.
Figure 15 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 15 Cenopalpus lineola(Canestrini & Fanzago) – Female: A – dorsal view; Deutonymph: B – dorsal view.
Figure 5 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 5 Brevipalpus lewisiMcGregor – Female: A – dorsal view; B – opisthogaster; C – sermatheca; Deutonymph: D – dorsal view.
Figure 7 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 7 Brevipalpus oleaeBaker – Female: A – dorsal view; B – opisthogaster; C – spermatheca; Deutonymph: D – dorsal view.
Figure 10 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 10 Brevipalpus reckiLivshitz & Mitrofanov – Female: A – dorsal view; B – Tarsi I and II; Deutonymph: C – dorsal view.
Figure 2 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 2 Aegyptobia eremiaSmith Meyer & Gerson – Female: A – dorsal view; B – dorsal setac1; C – opisthogaster.
Figure 4 in The Tenuipalpidae (Acari: Trombidiformes) of Israel
Figure 4 Brevipalpus californicus(Banks) – Female: A – dorsal view; B – ventral view; C – spermatheca; D – tarsus II, the arrows indicate the two distal solenidia.
ScienceDex guides
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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)
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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
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.