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505 results for “Confusion”
FIGURE 1 in The acasta conundrum: Polymorphism and taxonomic confusion within the parasitoid genus Melittobia (Hymenoptera: Eulophidae)
FIGURE 1. Examples of Melittobia polymorphism. a: long-winged (MF) female of Melittobia digitata; b: short-winged (BF) M. digitata; c: second-brood male of M. femorata (= megachilis); d: first-brood male of M. femorata (= megachilis).
FIGURES 17–20 in Confused identity: Pseudoeudesis brasiliensis Franz transferred to Heteroscydmus Franz, and Pseudoeudesis castrii Franz placed in Anthicimimus Franz (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 17–20. Anthicimimus castrii (Franz), comb. n., lectotype male. Aedeagus in ventral (17, 19) and lateral (18, 20) views.
FIGURES 14–16 in Confused identity: Pseudoeudesis brasiliensis Franz transferred to Heteroscydmus Franz, and Pseudoeudesis castrii Franz placed in Anthicimimus Franz (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 14–16. Anthicimimus castrii (Franz), comb. n., lectotype male. Prothorax (14) and pterothorax (15, 16) in ventral view. Abbreviations: amvp, anterior metaventral process; ar, anterior ridge; bst, basisternal part of prosternum; hyr, hypomeral ridge; msvp, mesoventral intercoxal process; mtvp, metaventral intercoxal process; nss, notosternal suture; pcc, procoxal cavity; pcr, procoxal rest; pre, prepectus; psp, prosternal process; v3, metaventrite.
FIGURES 12–13 in Confused identity: Pseudoeudesis brasiliensis Franz transferred to Heteroscydmus Franz, and Pseudoeudesis castrii Franz placed in Anthicimimus Franz (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 12–13. Anthicimimus castrii (Franz), comb. n., lectotype male. Head and prothorax in dorsal (12) and ventral (13) views. Abbreviations: abp, antebasal pit; bst, basisternal part of prosternum; fr, frons; gp, gular plate; gs, gular suture; hc, humeral carina; hr, hypostomal ridge; hyr, hypomeral ridge; mn, mentum; nss, notosternal suture; oc, occipital constriction; pcr, procoxal rest; ptp, posterior tentorial pit; smn, submentum; vt, vertex.
FIGURES 9–11 in Confused identity: Pseudoeudesis brasiliensis Franz transferred to Heteroscydmus Franz, and Pseudoeudesis castrii Franz placed in Anthicimimus Franz (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 9–11. Species of Anthicimimus Franz (9, 11) and original set of labels (10). Anthicimimus castrii (Franz), comb. n. (9, 10); Anthicimimus anthiciformis (Franz) (11).
FIGURES 6–8 in Confused identity: Pseudoeudesis brasiliensis Franz transferred to Heteroscydmus Franz, and Pseudoeudesis castrii Franz placed in Anthicimimus Franz (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 6–8. Heteroscydmus brasiliensis (Franz), comb. n., lectotype female. Pterothorax in ventral view (6); abdomen and spermatheca (7); original set of labels (8). Abbreviations: ar, anterior ridge; msvp, mesoventral intercoxal process; mtvp, metaventral intercoxal process; pcr, procoxal rest; pre, prepectus; sp, spermatheca; v3, metaventrite.
FIGURES 1–3 in Confused identity: Pseudoeudesis brasiliensis Franz transferred to Heteroscydmus Franz, and Pseudoeudesis castrii Franz placed in Anthicimimus Franz (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 1–3. Species of Heteroscydmus Franz. Heteroscydmus brasiliensis (Franz), comb. n., (1, 2); Heteroscydmus yapacariensis Franz (3).
FIGURES 4–5 in Confused identity: Pseudoeudesis brasiliensis Franz transferred to Heteroscydmus Franz, and Pseudoeudesis castrii Franz placed in Anthicimimus Franz (Coleoptera: Staphylinidae: Scydmaeninae)
FIGURES 4–5. Heteroscydmus brasiliensis (Franz), comb. n., lectotype female. Head and prothorax in dorsal (4) and ventral (5) views. Abbreviations: abg, antebasal groove; abp, antebasal pit; bst, basisternal part of prosternum; fr, frons; gp, gular plate; hr, hypostomal ridge; hyr, hypomeral ridge; mn, mentum; mxp, maxillary palp; nss, notosternal suture; occ, occipital constrictions; psp, prosternal process; ptp, posterior tentorial pit; smn, submentum; vt, vertex.
FIGURES 17–24 in Predation, phytophagy and character state confusion among North American species of the genus Leptothrips (Thysanoptera: Phlaeothripinae)
FIGURES 17–24. Leptothrips species of North America – pronotum. (17) maliaffinis holotype; (18) mali; (19) papago; (20) heliomanes; (21) macroocellatus; (22) fasciculatus; (23) pini; (24) purpuratus.
FIGURES 10–16 in Predation, phytophagy and character state confusion among North American species of the genus Leptothrips (Thysanoptera: Phlaeothripinae)
FIGURES 10–16. Leptothrips species of North America – abdominal segment X (tube). (10) mali female; (11) mali Male; (12) pini; (13) oribates (brevicapitis holotype); (14) gurdus holotype; (15) opimus holotype; (16) robustus holotype.
FIGURES 25–30 in Predation, phytophagy and character state confusion among North American species of the genus Leptothrips (Thysanoptera: Phlaeothripinae)
FIGURES 25–30. Leptothrips species of North America—metanotum. (25) mali; (26) papago; (27) purpuratus; (28) fasciculatus; (29) oribates (brevicapitis holotype); (30) occipitalis holotype.
FIGURES 7–9 in Predation, phytophagy and character state confusion among North American species of the genus Leptothrips (Thysanoptera: Phlaeothripinae)
FIGURES 7–9. Leptothrips species of North America, head and pronotum. (7) gurdus holotype; (8) opimus holotype; (9) robustus holotype.
FIGURES 1–6 in Predation, phytophagy and character state confusion among North American species of the genus Leptothrips (Thysanoptera: Phlaeothripinae)
FIGURES 1–6. Leptothrips species of North America. (1) cassiae; (2) mali; (3) pini; (4) purpuratus; (5) occipitalis holotype; (6) opimus holotype, antennal segments I–III.
Confusion Matrices for Person Identification using E-Nose
<p>The Validation results folder contains results from the classification problem. This zip file contains confusion matrices for each participant with each configuration and the cumulative classifier for each configuration. Each confusion matrix shows the detailed classification results of a test set containing 18 positive and 486 negative samples.</p> <p>The CrossValidation results folder contains results from cross-validation. This zip file only contains cumulative confusion matrices for each configuration. The confusion matrices here show the test set which should contain approximately 54 positive samples and 1456 negative samples.</p> <p>The filename for each confusion matrix shows what they represent, and are in the form of 'CM_<Classifier name>_P<Participant No./Cumulative>_BL<Breath Length>_REF <Reference Value used>'</p> <p>Reference value refers to using either relative, absolute, or both signals together.</p>
Subspecies and Distribution. T.n.napuF.Cuvier,1822—SMyanmar,Thai/MalayPeninsula,islandsoffWMalayPeninsula(Langkawi&Pangkor),Borneo,SSumatra,BangkaI,islandsoffBorneo(Laut&Serasan). T.n.bangue:Chasen&Kloss,1931—BanggiIandBalembanganI,offNBorneo. T.n.bunguranensisMiller,1901—NatunaIs(=Bunguran),oftWBorneo. T.n.neubronneriSody,1931—NSumatra. T.n.nmiasisLyon,1916—NiasI,offWSumatra. T.n.rufulusMiller,1900—TiomanI,offEMalayPeninsula,RiauandLinggaArchipelagos. T. n. terutus Thomas & Wroughton, 1909 — Terutau I, off W Malay Peninsula. The species was recently reconfirmed for Singapore. Maps that include Vietnam, Cambodia, and Laos in the distribution range are based on the earlier assumption that 7. versicolor was a subspecies of 1. napu. Subsequent studies have indicated that 7. versicolor is a distinct species, and that the range of 1. napu therefore does not extend into Cambodia, Laos, and Vietnam. The northern limit on the Thai-Malay peninsula is not well defined. Specimens of 1. napu have been collected from as far north as Bankachon in southern Myanmar (10° 08" N), but despite fairly intensive camera-trapping in Kui Buri National Park, Thailand (12° N), 7. napu has not been photographed there. At the northern margin ofits range, it is generally rare. It has been reported, for example, that during the flooding of the Chiew Larn Reservoir (Surat Thani Province; about 9° N, 98° 45' E), only six 7. napu were rescued compared with 172 71. kanchil. This area is the transition zone from wetter evergreen forest to drier deciduous types, and it might be that 7° napu is not well adapted to the drier forest types towards the northern limit ofits range. There are unconfirmed reports of the species on Java, where it may have been confused with one of the two color morphs of 7. javanicus. As explained in the Taxonomy section, the subspecific status of the populations of several islands remains unclear. in Tragulidae
Subspecies and Distribution. T.n.napuF.Cuvier,1822—SMyanmar,Thai/MalayPeninsula,islandsoffWMalayPeninsula(Langkawi&Pangkor),Borneo,SSumatra,BangkaI,islandsoffBorneo(Laut&Serasan). T.n.bangue:Chasen&Kloss,1931—BanggiIandBalembanganI,offNBorneo. T.n.bunguranensisMiller,1901—NatunaIs(=Bunguran),oftWBorneo. T.n.neubronneriSody,1931—NSumatra. T.n.nmiasisLyon,1916—NiasI,offWSumatra. T.n.rufulusMiller,1900—TiomanI,offEMalayPeninsula,RiauandLinggaArchipelagos. T. n. terutus Thomas & Wroughton, 1909 — Terutau I, off W Malay Peninsula. The species was recently reconfirmed for Singapore. Maps that include Vietnam, Cambodia, and Laos in the distribution range are based on the earlier assumption that 7. versicolor was a subspecies of 1. napu. Subsequent studies have indicated that 7. versicolor is a distinct species, and that the range of 1. napu therefore does not extend into Cambodia, Laos, and Vietnam. The northern limit on the Thai-Malay peninsula is not well defined. Specimens of 1. napu have been collected from as far north as Bankachon in southern Myanmar (10° 08" N), but despite fairly intensive camera-trapping in Kui Buri National Park, Thailand (12° N), 7. napu has not been photographed there. At the northern margin ofits range, it is generally rare. It has been reported, for example, that during the flooding of the Chiew Larn Reservoir (Surat Thani Province; about 9° N, 98° 45' E), only six 7. napu were rescued compared with 172 71. kanchil. This area is the transition zone from wetter evergreen forest to drier deciduous types, and it might be that 7° napu is not well adapted to the drier forest types towards the northern limit ofits range. There are unconfirmed reports of the species on Java, where it may have been confused with one of the two color morphs of 7. javanicus. As explained in the Taxonomy section, the subspecific status of the populations of several islands remains unclear.
FIGURE 3. Trivalvaria species with which the new species have previously been confused. A–C in Three new species of Trivalvaria (Annonaceae) from Thailand, with a key to the Thai species
FIGURE 3. Trivalvaria species with which the new species have previously been confused. A–C. Trivalvaria macrophylla, Songkhla Province, Thailand. A. Flower, viewed from above. B. Flower, side view. C. Fruit, showing the large number of short-stiped monocarps. D–E. Trivalvaria costata, Nakhon Si Thammarat Province, Thailand. D. Flower, viewed from above. E. Flower, side view. F–G. Trivalvaria dubia, s. l., Phuket Province, Thailand. F. Flower, viewed from above. G. Flower, side view. A–C by Charan Leeratiwong from Leeratiwong 20-1521, D–E by Charan Leeratiwong from Leeratiwong 16-487, F–G by Simon Gardner from Gardner & Sidisunthorn ST 2595.
Figure 7 in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 7. Maximum likelihood tree for Belonocnema of the southern and south-eastern USA based on sampling and SNP data collected by Driscoe et al. (2019), using 1 individual sampled randomly from each of N = 58 populations. Numbers at nodes represent ultrafast bootstrap and SH-aLRT. (See Supporting Information,Table S1 for corresponding site abbreviations.)
Figure 5 in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 5. Geographic distribution of Belonocnema species across the geographic ranges of their host plants Quercus fusiformis (light grey), Q. virginiana (diagonal pattern) and Q. geminata (dark grey) within the southern and south-eastern United States along with a summary of host-plant associations for each Belonocnema species. The proportions of each species using each host plant are based on the 58 sites and 1219 individuals from Driscoe et al. (2019). Site symbol and inner colour denote Belonocnema species, while the outline colour indicates host-plant species sampled at each site; Qf = white; Qg = black; and Qv = no outline. Plant ranges redrawn from Cavender-Bares et al. (2015).
Figure 4. Belonocnema kinseyi. A in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 4. Belonocnema kinseyi. A, lateral habitus of asexual-generation female syntype, arrow pointing to areolet. B, dorsal habitus of asexual-generation female syntype. C, frontal view of asexual-generation female syntype. D, label of syntype specimen. E, lateral habitus of sexual-generation female. F, dorsal view of sexual-generation female, arrow pointing to scutellar fovea. (Photos A–D by Rachel Osborn, USNM: http://n2t.net/ark:/65665/m3098f569a-1f76-44b1-8519- c06bf912057d, Accessed 28 September 2020)
Figure 6 in One hundred and sixty years of taxonomic confusion resolved: Belonocnema (Hymenoptera: Cynipidae: Cynipini) gall wasps associated with live oaks in the USA
Figure 6. Maximum likelihood tree for Belonocnema of the southern and south-eastern USA based on sampling of 23 populations and COI data collected by Schuler et al. (2018). Numbers at nodes represent ultrafast bootstrap and SH-aLRT. (See Supporting Information, Table S1 for corresponding site abbreviations.)
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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
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.