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933 results for “Phytoseiidae”
Figure 1 in Development and life table parameters of the Phytoseius corniger Wainstein (Acari: Phytoseiidae) feeding on the two-spotted spider mite, Tetranychus urticae Koch (Acari: Tetranychidae) under laboratory conditions
Figure 1. Age-stage specific survival rate (sjx) of the parent cohort of bisexual Phytoseius corniger fed on Tetranychus urticae under laboratory conditions (25 ± 2 °C, 55 ± 5% of RH, and 16L: 8D h photoperiod). Note: L stands for larva, N1 for protonymph, and N2 for deutonymph, respectively.
Figure 2 in Assessing predation parameters of the predatory mite Typhlodromus bagdasarjani (Acari: Phytoseiidae) on different host plants
Figure 2. Age-stage-specific predation rate (cxj) of predatory mite Typhlodromus bagdasarjani fed on immature stages of Tetranychus urticae on different host plants.
Figure 1 in Assessing predation parameters of the predatory mite Typhlodromus bagdasarjani (Acari: Phytoseiidae) on different host plants
Figure 1. The age-specific survival rate (lx), age-specific predation rate (kx), age-specific net predation rate (qx) of predatory mite Typhlodromus bagdasarjani fed on immature stages of Tetranychus urticae reared on different host plants.
Figure 3 in The effects of maize pollen on development and population growth potential of Amblyseius swirskii and Cydnoseius negevi (Acari: Phytoseiidae) in subsequent generations
Figure 3. Age-stage specific reproductive value (vxj) of Amblyseius swirskii and Cydnoseius negevi reared on pollen grains of maize for 11 generations.
Figure 2 in The effects of maize pollen on development and population growth potential of Amblyseius swirskii and Cydnoseius negevi (Acari: Phytoseiidae) in subsequent generations
Figure 2. Age-specific survival rate (lx), age-stage specific fecundity of female (fxj) and age-specific fecundity rate (mx) of Amblyseius swirskii and Cydnoseius negevi reared on pollen grains of maize for 11 generations.
Figure 1 in The effects of maize pollen on development and population growth potential of Amblyseius swirskii and Cydnoseius negevi (Acari: Phytoseiidae) in subsequent generations
Figure 1. Age-stage specific survival rate (sxj) of Amblyseius swirskii and Cydnoseius negevi reared on pollen grains of maize for 11 generations.
Figure 1 in First report on the occurrence of Typhlodromus (Anthoseius) transvaalensis (Nesbitt) (Acari: Phytoseiidae) in India with a redescription of the species
Figure 1 Typhlodromus (Anthoseius) transvaalensis(adult female): sparsely plumose and knobbed setae on the dorsal shield, 630×, differential interference contrast microscopy.
Figure 2 in First report on the occurrence of Typhlodromus (Anthoseius) transvaalensis (Nesbitt) (Acari: Phytoseiidae) in India with a redescription of the species
Figure 2 Typhlodromus (Anthoseius) transvaalensis(adult female): chelicera, 630×, differential interference contrast microscopy.
Fig. 5 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes
Fig. 5. Neoseiulus akimovi Kolodochka, sp. n. Female: A — dorsal shield; B — setae J5; C — fragment of ventral body surface; D —chelicera; E — metapodal plates; F1, F2 — spermatheca; G — caudal part of peritremal shield; H — fragment of leg IV; I — genu II (setal abbreviation the same on fig. 1). N. cucumeris (Oudemans, 1930). Female, spermatheca: K — from Karg (1993); L — sample from commercial mite culture.
Fig. 4 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes
Fig. 4. Neoseiulus brachychaetus Kolodochka, sp. n. Female: A — dorsal shield; B — fragment of ventral body surface; C — chelicera; D — metapodal plates; E1, E2— spermatheca; F — caudal part of peritremal shield; G — fragment of leg IV; H — genu II (setal abbreviation the same on fig. 1). Male: I — chelicera.
Fig. 1 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes
Fig. 1. Neoseiulus bicaudus (Wainstein). Female: A — dorsal shield; B — setae J5; C — fragment of ventral body surface; D —chelicera; E — metapodal plates; F — spermatheca; G — caudal part of peritremal shield; H — fragment of leg IV; I, genu II (setal abbreviation: ad — antero-dorsal, pd — post-dorsal; al — antero-lateral, pl — post-lateral; av — antero-ventral).
Fig. 3 in Two New Species Of The Genus Neoseiulus (Parasitiformes, Phytoseiidae) With Redescriptions Of N. Bicaudus And N. Micmac Based On Holotypes
Fig. 3. Neoseiulus micmac (Chant et Hansell). Female: A— dorsal shield; B — setae J5; C — fragment of ventral body surface; D 13–14, chelicerae (D — moveable digit; D — fixed digit); E — metapodal plates; F — spermatheca; G — caudal part of peritremal shield; H — fragment of leg IV.
Fig. 2 in Species Complexes Of Predatory Phytoseiid Mites (Parasitiformes, Phytoseiidae) In Green Urban Plantations Of Uman' (Ukraine)
Fig. 2. Phytoseiid mites occurrence on plants in green urban plantations of Uman': 1 — E. finlandicus, 2 — T. aceri, 3 — T. tiliarum, 4 — D. echinus, 5 — K. aberrans, 6 — P. incognitus, 7 — A. andersoni, 8 — P. soleiger, 9 — T. laurae, 10 — A. herbarius, 11 — G. longipilus, 12 — A. rademacheri.
Figure 3 in Phytoseiid mites of Ruyuan Yao Autonomous County, China (Acari: Mesostigmata, Phytoseiidae)
Figure 3 Female of Typhlodromus ruyuanensis sp. nov. a – Dorsal shield; b – Ventral idiosoma; c – Chelicera; d – Spermatheca; e – Leg IV, genu – basitarsus.
Figure 2 in Phytoseiid mites of Ruyuan Yao Autonomous County, China (Acari: Mesostigmata, Phytoseiidae)
Figure 2 Female of Phytoseius subcapitatus sp. nov. a – Dorsal shield; b – Ventral idiosoma; c – Chelicera; d – Spermatheca; e – Leg IV, genu – basitarsus.
Figure 1 in Functional response of the predatory mite, Typhlodromus bagdasarjani (Acari: Phytoseiidae) to protonymphs of Eotetranychus frosti (Acari: Tetranychidae) on four apple cultivars
Figure 1 The functional responses curves of adult females of Typhlodromus bagdasarjani to different densities ofEotetranychus frosti protonymphs on four apple cultivars.
Figure 1 in Phytoseiid mites of Ruyuan Yao Autonomous County, China (Acari: Mesostigmata, Phytoseiidae)
Figure 1 Female of Euseius hamiltonii sp. nov. a – Dorsal shield; b – Ventral idiosoma; c – Chelicera; d – Spermatheca; e – Leg IV, genu – basitarsus.
Figure 2 Proprioseiopsis salviae n in A new species of Proprioseiopsis (Mesostigmata, Phytoseiidae), with a dichotomous key to reported species from Egypt
Figure 2 Proprioseiopsis salviae n. sp. paratype male. a – Chelicera showing spermatodactyl, b – Ventrianal shield.
Figure 1 Proprioseiopsis salviae n in A new species of Proprioseiopsis (Mesostigmata, Phytoseiidae), with a dichotomous key to reported species from Egypt
Figure 1 Proprioseiopsis salviae n. sp. holotype female. a – Dorsal shield, b – Ventral shields, c – Spermathecae, d – Chelicera, e – Genu, tibia and basitarsus of leg IV.
Figure 4 in Phytoseiidae (Acari: Mesostigmata) of Syria: new records and first description of the male of Eharius stathakisi Döker
Figure 4 Ventrianal shield and its surrounding area of the female of Typhlodromus pyriScheuten. Scale bar = 50 μm.
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
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International Brain Laboratory public data
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OpenNeuro
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