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2,120 results for “fly species”
Figure 8 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 8 - The Neighbour-Joining tree of the genus Campiglossa with Sphenella marginata as outgroup inferred from COI barcodes. Bootstrap values above 50 (1000 replicates) are given at the nodes.
Figure 9 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 9 - The Neighbour-Joining tree of the genus Orellia inferred from COI barcodes. Bootstrap values above 50 (1000 replicates) are given at the nodes.
Figure 6 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 6 - Best Close Match (BCM) identification of the stripped dataset, e.g. excluding singletons and Urophora (n = 414). Proportions of true positives (TP), false positives (FP), false negatives (FN) and true negatives (TN) are given for 30 arbitrary distance thresholds ranging from 0.15 to 0.00. For each threshold the percentages of precision, accuracy and discarded queries were calculated.
Figure 5 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 5 - Best Close Match (BCM) identification of the entire dataset (n = 555). Proportions of true positives (TP), false positives (FP), false negatives (FN) and true negatives (TN) are given for 30 arbitrary distance thresholds ranging from 0.15 to 0.00. For each threshold the percentages of precision, accuracy and discarded queries were calculated.
Figure 4 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 4 - Identification rates of all five criteria: Neighbour-Joining (NJT) sensu Hebert et al. (2003), revised criteria (NJT_M) according to Meier et al. (2006), and Best Match (BM), Best Close Match (BCM) and All Species Barcodes (ASB) also described by Meier et al. (2006) for four different datasets, including singletons and with (n = 555) or without (n = 452) Urophora, and the same excluding singletons (n = 514) and (n = 414) respectively.
Figure 3 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 3 - Box plots depicting the variation in mean distances using K2P-distance modeling of sequence divergence for intraspecific, interspecific difference among the species and genera, as well as the ingroup genera with the outgroup genus.
Figure 7 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 7 - Relative ID errors at 30 arbitrary threshold values for a. the entire dataset (n = 555), b. the stripped dataset, e.g. excluding singletons and Urophora (n = 414) and c. the stripped dataset excluding the problematic Terellia groups. Linear regression was used to infer the ad hoc threshold for the 95th percentile of the correctly identified queries and the relative ID error does not exceed 5%. In (a) and (b) this value is below 0.00, only in (c) this value is positive: 0.051 (R-square 0.91).
Figure 2 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 2 - The Neighbour-Joining tree of the entire dataset based on COI barcodes. Terminal branches have been collapsed in order to save space, the total number of specimens is given in brackets and the area surface of the triangle represents the amount of variation. When a terminal branch contains two species, both names are provided as well as their respective number of specimens. If a branch contains more than two species only the number of species as well as the number of specimens are given. Bootstrap values above 50 (1000 replicates) are given at the nodes.
Figure 10 from: Smit J, Reijnen B, Stokvis F (2013) Half of the European fruit fly species barcoded (Diptera, Tephritidae); a feasibility test for molecular identification. ZooKeys 365: 279-305. https://doi.org/10.3897/zookeys.365.5819
Figure 10 - The Neighbour-Joining tree of the genus Urophora inferred from COI barcodes. Bootstrap values above 50 (1000 replicates) are given at the nodes.
Figure 10 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 10 - Sternite and genitalia of Silbomyia hoeneana Enderlein, ♂. A Cercus, and surstylus, caudal view B Epandrium, cercus, and surstylus, lateral view C Fifth abdominal sternite, ventral view D Anterior and posterior parameres E Aedeagus, lateral view F Aedeagus, posterior view. Scale bars: 0.2 mm.
Figure 9 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 9 - Sternites and genitalia of Paradichosia lui sp. n., ♂. A Epandrium, cercus, and surstylus, lateral view B Cercus and surstylus, caudal view C Fifth abdominal sternite, ventral view D Aedeagus, lateral view E Aedeagus, posterior view F Anterior and posterior parameres G Third and fourth abdominal sternites, ventral view H Tufts on the third (left) and fourth (right) abdominal sternites. Scale bars: 0.2 mm.
Figure 11 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 11 - The male fifth abdominal sternites of Silbomyia species. A Silbomyia sauteri B Silbomyia hoeneana, Taiwan C Silbomyia hoeneana, China. Scale bars: 0.2 mm.
Figure 6 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 6 - Pteropleuron (pt) of Bengalia emarginata Malloch, which is mostly clothed in black hairs.
Figure 2 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 2 - Pteropleuron (pt) of Bengalia chekiangensis Fan, hairs on pteropleuron are totally whitish yellow.
Figure 5 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 5 - Pteropleuron (pt) of Bengalia varicolor (Fabricius), which is mostly clothed in yellow hairs, with a few black hairs present on upper part. Arrow shows the blackish hairs.
Figure 1 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 1 - Pteropleuron (pt) of Bengalia torosa (Wiedemann), hairs on pteropleuron are wholly yellowish.
Figure 4 from: Shiao S, Yang S, Kurahashi H (2014) Keys to the blow flies of Taiwan, with a checklist of recorded species and the description of a new species of Paradichosia Senior-White (Diptera, Calliphoridae). ZooKeys 434: 57-109. https://doi.org/10.3897/zookeys.434.7540
Figure 4 - Pteropleuron (pt) of Bengalia fuscipennis Bezzi, which is largely covered with yellow hairs except for a tuft of blackish hairs. Arrow shows the blackish hair tuft.
Figure 1 from: Juárez ML, Devescovi F, Břízová R, Bachmann G, Segura DF, Kalinová B, Fernández P, Ruiz MJ, Yang J, Teal PEA, Cáceres C, Vreysen MJB, Hendrichs J, Vera MT (2015) Evaluating mating compatibility within fruit fly cryptic species complexes and the potential role of sex pheromones in pre-mating isolation. In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 125-155. https://doi.org/10.3897/zookeys.540.6133
Figure 1 - Walk-in field cage set up to evaluate female response to male pheromone: a artificial lek hanging from the tree b Anastrepha fraterculus female over an artificial lek.
Figures 8-11 from: Starý J, Roháček J (2015) Rediscovery of Rhabdomastix (Rhabdomastix) incapax Starý, 2005 (Diptera, Limoniidae), a crane fly species flightless in both sexes and probably endemic to Sardinia. ZooKeys 498: 93-101. https://doi.org/10.3897/zookeys.498.9446
Figures 8-11 - Rhabdomastix (Rhabdomastix) incapax, photographs of a live specimen and habitats. 8–9 Rhabdomastix (Rhabdomastix) incapax, female 10 Another habitat of Rhabdomastix (Rhabdomastix) incapax at the type locality (under the bridge, with Juncus sp. predominating) 11 Locality of Rhabdomastix (Rhabdomastix) incapax at Mazzinaiu nr. Alà dei Sardi, 6.6 km NE. Photographs by J. Roháček.
Figures 4-7 from: Starý J, Roháček J (2015) Rediscovery of Rhabdomastix (Rhabdomastix) incapax Starý, 2005 (Diptera, Limoniidae), a crane fly species flightless in both sexes and probably endemic to Sardinia. ZooKeys 498: 93-101. https://doi.org/10.3897/zookeys.498.9446
Figures 4-7 - Rhabdomastix (Rhabdomastix) incapax, photographs of a live specimen, habitats, and collecting. 4–5 Rhabdomastix (Rhabdomastix) incapax, male on Eleocharis and Juncus stems and inflorescences 6 Éleme river taken from the bridge on road 389 (type locality, habitat of Rhabdomastix (Rhabdomastix) incapax is arrowed) 7 Collecting Rhabdomastix (Rhabdomastix) incapax in growth of Eleocharis palustris on the site arrowed in Fig. 6. Photographs by J. Roháček (4–6) and M. Vála (7).
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Allen Brain Atlas
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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
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