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145 results for “taxonomic confusion”
Figs. 27 29 in Taxonomic updates for some confusing Micronesian species of Camponotus (Hymenoptera: Formicidae: Formicinae)
Figs. 27 29: Frontal views of Camponotus micronesicussp.n. types (collection details in Table 4): paratype FSM.13. CAM.Yap (27), paratype FSM.4. CAM.Chuuk (28), and holotype FSM.10. CAM.Pohnpei (29).
Figs. 30 35 in Taxonomic updates for some confusing Micronesian species of Camponotus (Hymenoptera: Formicidae: Formicinae)
Figs. 30 35: Holotype of Camponotus tol sp.n. in frontal (30), dorsal (31), and lateral (32) views, and minor paratype from the same collection in frontal (33), dorsal (34), and lateral (35) views.
Figs. 11 16 in Taxonomic updates for some confusing Micronesian species of Camponotus (Hymenoptera: Formicidae: Formicinae)
Figs. 11 16: Syntypes of Camponotus kubaryi stat. rev. (11 12; CASENT0904012 and CASENT0910153, from www.AntWeb.org, photographs by Zach Lieberman), holotype of C. micronesicus sp.n. (13), specimen of C. kubaryi stat. rev. collected from Peliliu Is. (14; CASENT0173088, from www.AntWeb.org, photograph by April Nobile), and syntypes ofC. chloroticus from New Guinea (15) and Tonga (16). Scale bar in Fig. 13 applicable to Figures 11 16.
Figs. 17 20 in Taxonomic updates for some confusing Micronesian species of Camponotus (Hymenoptera: Formicidae: Formicinae)
Figs. 17 20: Syntype ofCamponotus chloroticus from New Guinea in frontal (17), lateral (18), and dorsal (19) views, and the original locality label (20).
Figs. 8 10 in Taxonomic updates for some confusing Micronesian species of Camponotus (Hymenoptera: Formicidae: Formicinae)
Figs. 8 10: Simplified representation of the PCA plots shown in Figs. 3 7, with the total area covered by individual points colored as single blocks. Figure 8 shows all species together, with missing measurements (including in cases when minor or major specimens are not associated), and figures 9 and 10 show majors and minors separately, without missing data extrapolated.
Figs. 3 7 in Taxonomic updates for some confusing Micronesian species of Camponotus (Hymenoptera: Formicidae: Formicinae)
Figs. 3 7: Relationships between Principal Components 1 and 2 for the Principal Component Analysis of morphological measurements taken from specimens in the molecular phylogeny of CLOUSE & al. (2015) and types for the species of interest in this study. Figure 3 shows all species together, with missing measurements (including in cases when minor or major specimens are not associated), and figures 4 and 5 show magnified views of the same scatterplot, with some species removed. Figures 6 and 7 show majors and minors separately, without missing data extrapolated.
FIGURE 7 in On some taxonomically confused species of the genus Amphiesma Duméril, Bibron & Duméril, 1854 related to Amphiesma khasiense (Boulenger, 1890) (Squamata, Natricidae)
FIGURE 7. Head portrait of Amphiesma kerinciense David & Das, 2003, ZRC 2.3521, holotype, adult female. Photo Patrick David.
FIGURE 6 in On some taxonomically confused species of the genus Amphiesma Duméril, Bibron & Duméril, 1854 related to Amphiesma khasiense (Boulenger, 1890) (Squamata, Natricidae)
FIGURE 6. Living specimen of Amphiesma inas (Laidlaw, 1901), San Yen, Khao Nan National Park, Nakhon Si Thammarat Province, Thailand. Photo Michael Cota.
FIGURE 5 in On some taxonomically confused species of the genus Amphiesma Duméril, Bibron & Duméril, 1854 related to Amphiesma khasiense (Boulenger, 1890) (Squamata, Natricidae)
FIGURE 5. Comparison of the pattern in life of four species of the Amphiesma khasiense group. Top left. Amphiesma khasiense (Boulenger, 1890), Umphang, Tak Province, Thailand. Photo Sjon Hauser. Top right. Amphiesma khasiense (Boulenger, 1890), Nokrek Biosphere Reserve, State of Meghalaya, India. Photo Ashok Kumar Mallik. Centre left. Amphiesma boulengeri (Gressitt, 1937), Hainan Island, China. Photo Kevin Messenger. Centre right. Amphiesma boulengeri (Gressitt, 1937), Phnom Aural Province, Cambodia. Photo Lee Grismer. Bottom. Amphiesma boulengeri (Gressitt, 1937), Kon Tum Province, Vietnam. Note the dorsal spots and separate blotches on supralabials, closer to the pattern of Amphiesma khasiense rather than to a typical A. boulengeri. Photo Truong Quang Nguyen.
FIGURE 4 in On some taxonomically confused species of the genus Amphiesma Duméril, Bibron & Duméril, 1854 related to Amphiesma khasiense (Boulenger, 1890) (Squamata, Natricidae)
FIGURE 4. Comparison of the pattern of the upper labials of three species of the Amphiesma khasiense group. A. A. boulengeri, BMNH 1969.1710, Kampot Province, Cambodia. B. A. boulengeri, FMNH 180153, Nakhon Ratchasima Province, Thailand. C. A. modestum, BMNH 1925.9.17.2, Kachin Hills, Myanmar. D. A. khasiense, BMNH 1946.1.12.82, syntype, State of Meghalaya, India. E. A. khasiense, BMNH 1946.1.13.63, holotype of Natrix gilhodesi, Kachin State, Myanmar. F. A. khasiense, BMNH 1925.4.2.13, Kachin State, Myanmar. Photos Gernot Vogel.
FIGURE 3 in On some taxonomically confused species of the genus Amphiesma Duméril, Bibron & Duméril, 1854 related to Amphiesma khasiense (Boulenger, 1890) (Squamata, Natricidae)
FIGURE 3. One of the syntypes of Tropidonotus khasiensis, BMNH 1946.1.12.81, Khasi Hills, India. Photos Gernot Vogel.
FIGURE 1 in On some taxonomically confused species of the genus Amphiesma Duméril, Bibron & Duméril, 1854 related to Amphiesma khasiense (Boulenger, 1890) (Squamata, Natricidae)
FIGURE 1. Object scores of first principal component along the geographic coordinates: circles: A. khasiense, males; triangles pointed upwards: A. khasiense, females; triangles pointed downwards: "A. cf. khasiense" of the Indochinese Peninsula, males; triangles pointed to the right: "A. cf. khasiense" of the Indochinese Peninsula, females; triangles pointed to the left: A. boulengeri, males; pentagons: A. boulengeri, females; squares: A. inas, males; diamonds: A. inas, females.
FIGURE 2 in On some taxonomically confused species of the genus Amphiesma Duméril, Bibron & Duméril, 1854 related to Amphiesma khasiense (Boulenger, 1890) (Squamata, Natricidae)
FIGURE 2. Object scores of first principal component along the geographic coordinates: circles: A. boulengeri, Cambodia, males; triangles pointed upwards: A. boulengeri, Cambodia, females; triangles pointed downwards: A. boulengeri, males; triangles pointed to the right: A. boulengeri, females.
FIGURE 2 in Reconciling more than 150 years of taxonomic confusion: the true identity of Moenkhausia lepidura, with a key to the species of the M. lepidura group (Characiformes: Characidae)
FIGURE 2. Color variation of Moenkhausia lepidura, all from Brazil: A) MZUSP 18220, 76.9 mm SL, rio Tapajós basin, Pará, B) MZUSP 37458, 66.6 mm SL, rio Guaporé drainage, rio Madeira basin, Mato Grosso, C) MZUSP 112371, 62.4 mm SL, rio Jufari, rio Negro basin, Amazonas, D) MZUSP 6227, 37.8 mm SL, rio Negro basin, Amazonas.
FIGURE 5 in Reconciling more than 150 years of taxonomic confusion: the true identity of Moenkhausia lepidura, with a key to the species of the M. lepidura group (Characiformes: Characidae)
FIGURE 5. Arrangement of the scales of the predorsal region of Moenkhausia lepidura. MZUSP 76538, 44.4 mm SL.
FIGURE 6 in Reconciling more than 150 years of taxonomic confusion: the true identity of Moenkhausia lepidura, with a key to the species of the M. lepidura group (Characiformes: Characidae)
FIGURE 6. Distribution of Moenkhausia lepidura in the rio Amazonas and Orinoco basins. Red circle represents the approximate type locality.
FIGURE 4 in Reconciling more than 150 years of taxonomic confusion: the true identity of Moenkhausia lepidura, with a key to the species of the M. lepidura group (Characiformes: Characidae)
FIGURE 4. Upper and lower jaws of Moenkhausia lepidura, MZUSP 37458, 70.0 mm SL, medial view of left side. Scale bar 1 mm.
FIGURE 1. A in Reconciling more than 150 years of taxonomic confusion: the true identity of Moenkhausia lepidura, with a key to the species of the M. lepidura group (Characiformes: Characidae)
FIGURE 1. A) Lectotype of Tetragonopterus lepidurus, NMW 57566, 88.7 mm SL, rio Guaporé, rio Madeira basin, Brazil, B) holotype of Gymnotichthys hildae, MHNL 963, 69.4 mm SL, rio Autana, rio Orinoco basin, Venezuela.
FIGURE 7 in Reconciling more than 150 years of taxonomic confusion: the true identity of Moenkhausia lepidura, with a key to the species of the M. lepidura group (Characiformes: Characidae)
FIGURE 7. Lateral view of right epibranchial of first branchial arch: A) Moenkhausia lepidura MZUSP 6247, 61.11 mm SL, gill filaments removed, B) M. hasemani MZUSP 91868, 52.0 mm SL. Scale bar 0.2 mm.
FIGURE 3 in Reconciling more than 150 years of taxonomic confusion: the true identity of Moenkhausia lepidura, with a key to the species of the M. lepidura group (Characiformes: Characidae)
FIGURE 3. Moenkhausia lepidura, color in life. Rio Madeira at Porto Velho, Rondônia, Brazil. Not preserved. Photo by L. Sousa.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.