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421 results for “thrips”

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Figure 40. A–D in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 40. A–D) Frankliniella longipennis A) Body. B) Ventral eye. C) Head and pronotum. D) Abdominal tergite I.

opencc-by-4.0Apr 2024View details →
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Figure 39. A–D in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 39. A–D) Frankliniella kelliae. A) Body. B) Pedicel of antennal segment III. C) Head and pronotum. D) Abdominal

opencc-by-4.0Apr 2024View details →
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Figure 38. A–D in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 38. A–D) Frankliniella invasor. A) Body. B) Antennal segments II and III. C) Pedicel and basal collar of antennal segment III. D) Head, pronotum and mesonotum.

opencc-by-4.0Apr 2024View details →
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Figure 48. A–D in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 48. A–D) Frankliniella sanabriana, holotype, USNM 01207647. A) Body. B) Antennal segment II and pedicel of antennal segment III. C) Head and pronotum. D) Abdominal tergite VIII posteromarginal comb.

opencc-by-4.0Apr 2024View details →
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Figure 6. A–F in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 6. A–F) Frankliniella spp. A) Antennal segments I–III of F. pelucensis. B–C) Pronotum, anterior margin. B) F. xanthaner. C) F. cognata. D–F) Mid and hind legs. D) F. varipes. E) F. annulipes. F) F. regia.

opencc-by-4.0Apr 2024View details →
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Figure 4. A–B in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 4. A–B) Frankliniella spp. A–B) Antennal segment VI. Arrows indicate location of the small setae on large bases. A) F. citripes, holotype, USNM 74422. B) F. auripes.

opencc-by-4.0Apr 2024View details →
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Figure 5. A–C in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 5. A–C) Frankliniella spp. A) Upper surface of the hind coxae of F. panamensis. Arrows indicate microtrichia. B–C) Head with postocular setae labelled. B) F. fallaciosa. C) F. tuberosi.

opencc-by-4.0Apr 2024View details →
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Figure 3. A–E in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 3. A–E) Frankliniella spp. A) Abdominal sternites I–III of F. australis. Arrows indicate pore plates. B) Ventral compound eye of F. fulvipennis C) Abdominal tergite I of F. longipennis. D–E) Pedicel of antennal segment III. D) F. brevicaulis. E) F. parvula.

opencc-by-4.0Apr 2024View details →
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Figure 1. A–E in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 1. A–E) Frankliniella spp. A) Metanotum of F. tuberosi. Arrows indicate campaniform sensilla. B) Head of F. tenuicornis with ocellar setae and postocular setae labelled. C–D) Abdominal tergite VIII posteromarginal comb. C) F. xanthaner. D) F. schultzei. E) Forewing clavus of F. minuta.

opencc-by-4.0Apr 2024View details →
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Figure 2. A–C in The identification of the flower thrips, Frankliniella Karny (Thysanoptera: Thripidae) intercepted at U.S. ports of entry

Figure 2. A–C) Frankliniella spp. A–B) Antennal segments II and III. Arrows indicate pedicel. A) F. tenuicornis. B) F. tritici. C) Antennal segments VI and VII of F. insularis. Arrows indicate bases of sense cones.

opencc-by-4.0Apr 2024View details →
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Fig. 1 in Flower thrips (Thysanoptera: Thripidae and Phlaeothripidae) species complex on Florida blackberries and the effect of blackberry cultivar

Fig. 1. Numbers of flower thrips sampled from 6 blackberry cultivars. a) Mean total numbers of thrips larvae and adults per flower. b) Mean numbers of thrips adults and c) mean numbers of thrips larvae per flower on each sampling date. Error bars represent SE. Treatments with the same letter are not significantly different at P <0.05. Significant differences for the last 3 sampling weeks in (c) are described in the text.

opencc-by-4.0Jun 2017View details →
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Figs 8–9 in Thrips Atratus Haliday, 1836 And T. Montanus Priesner, 1920 (Thysanoptera: Thripidae) - One Or Two Species? Comparative Morphological Studies

Figs 8–9. Thrips atratus (left), Thrips montanus (right): 8 = Sculpture of abdominal sternum VIII in larvae (vs1 – ventral seta 1, vs2 – ventral seta 2); 9 = Larvae – pigmentation of abdominal terga IX

opencc-by-4.0Nov 2009View details →
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Figs 5–7 in Thrips Atratus Haliday, 1836 And T. Montanus Priesner, 1920 (Thysanoptera: Thripidae) - One Or Two Species? Comparative Morphological Studies

Figs 5–7. Thrips atratus (left), Thrips montanus (right): 5 = Sculpture of abdominal sternum X in males (IX, X – sterna); 6 = Pigmentation of larval pronotum; 7 = Coxa and sculpture of lateral part of

opencc-by-4.0Nov 2009View details →
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Fig. 4 in Thrips Atratus Haliday, 1836 And T. Montanus Priesner, 1920 (Thysanoptera: Thripidae) - One Or Two Species? Comparative Morphological Studies

Fig. 4. Principal component analysis (PCA) – scatter diagram of individual male specimens of Thrips atratus and T. montanus as OTUs along PC1 and PC2, based on 12 quantitative features (Table 1). For abbreviations see Figure 2

opencc-by-4.0Nov 2009View details →
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Fig. 1 in Thrips Atratus Haliday, 1836 And T. Montanus Priesner, 1920 (Thysanoptera: Thripidae) - One Or Two Species? Comparative Morphological Studies

Fig. 1. Results of the cluster analysis (Ward's method, with Euclidian distances) for female specimens made on the basis of 8 quantitative features (Table 1), the feature of 3rd antennal segment col-

opencc-by-4.0Nov 2009View details →
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Fig. 2 in Thrips Atratus Haliday, 1836 And T. Montanus Priesner, 1920 (Thysanoptera: Thripidae) - One Or Two Species? Comparative Morphological Studies

Fig. 2. Principal component analysis (PCA) – scatter diagram of individual female specimens of Thrips atratus and T. montanus as OTUs along PC1 and PC2, based on 8 quantitative features (Table 1). Abbreviations: squares – T. montanus, circles – T. atratus, A-O – features (bold and arrow – fea-

opencc-by-4.0Nov 2009View details →
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Fig. 3 in Thrips Atratus Haliday, 1836 And T. Montanus Priesner, 1920 (Thysanoptera: Thripidae) - One Or Two Species? Comparative Morphological Studies

Fig. 3. Results of the cluster analysis (Ward's method, with Euclidian distances) for male specimens made on the basis of 12 quantitative features (Table 1). Two qualitative features were added: 3rd antennal segment colour: white circles – yellow, black and white circles – yellowish brown, black cir-

opencc-by-4.0Nov 2009View details →
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Fig. 9 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico

Fig. 9. Population fluctuation of Thrips tabaci in the onion crops at Axochiapan, Morelos, Mexico, 2010–2011. Sufficient thermal units (180 degree days) occurred to support 1 life cycle of T. tabaci from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.

opencc-by-4.0Jun 2015View details →
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Fig. 6 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico

Fig. 6. Population fluctuation of Frankliniella occidentalis related with tomato crops at Tlayacapan and Atlatlahucan, Morelos, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.

opencc-by-4.0Jun 2015View details →
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Fig. 2 in Population fluctuations of thrips (Thysanoptera) and their relationship to the phenology of vegetable crops in the central region of Mexico

Fig. 2. Population fluctuation of Frankliniella occidentalis in the cucumber crops at Tlayacapan, Morelos, Mexico, 2010–2011. Sufficient thermal units (195 degree days) occurred to support 1 life cycle of F. occidentalis from transplantation until the 1st vertical arrow and subsequently between consecutive arrows.

opencc-by-4.0Jun 2015View details →

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International Brain Laboratory public data

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OpenNeuro

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Last verified 2026-04-29Open record