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62 results for “Complex characters”
Source: Photos courtesy of M.M. Le Roux (a–d) and K.S. Mashego (e–f) FIGURE 1: Morphological characters of Thesium confine (a, d, e) and T. durum (b, c, f) showing (a) the scale-like leaves found in both species; (b) involucral bracts that are invariably present in T. durum; (c) longitudinal section of a flower showing the dense hairs on the perianth lobes, stigma opposite the anthers and the twisted placental column; the habit of (d) T. confine and typical herbarium specimens of (e) T. confine and (f) T. durum. in A taxonomic evaluation of the Thesium confine species complex (Santalaceae)
Source: Photos courtesy of M.M. Le Roux (a–d) and K.S. Mashego (e–f) FIGURE 1: Morphological characters of Thesium confine (a, d, e) and T. durum (b, c, f) showing (a) the scale-like leaves found in both species; (b) involucral bracts that are invariably present in T. durum; (c) longitudinal section of a flower showing the dense hairs on the perianth lobes, stigma opposite the anthers and the twisted placental column; the habit of (d) T. confine and typical herbarium specimens of (e) T. confine and (f) T. durum.
Satyrium longicauda (Orchidaceae) species complex: Morphometric characters and DNA sequences
<p><strong>Morphology.xlsx</strong></p> <p>Morphological data obtained from 1802 individuals of the <em>Satyrium longicauda</em> (Orchidaceae) complex. Each entry has fifteen values representing both vegetative and reproductive characters. The full dataset or part of it has been used to perform univariate and multivariate analyses.<br> Each data point was obtained by measuring fresh material either with a ruler or a pair of calipers or by counting the number of different structures.</p> <p><strong>TS Alignment_130Samples.nex</strong></p> <p>Dataset that contains 130 ITS sequences including 14 gaps codified. This dataset has been used to perform phylogenetic analyses using both parsimony and Bayesian inference. All sequences are publically available on Genbank.</p>
Estimating ancestral states of complex characters: A case study on the evolution of feathers
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FIGURES 1–4. Measurement lines for metric characters. Fig. 1 in A taxonomic review of the Palaearctic Tetramorium ferox species-complex (Hymenoptera, Formicidae)
FIGURES 1–4. Measurement lines for metric characters. Fig. 1. Head in dorsal view. Measurement lines for POC, FL, FR and SL, Fig. 2. head in lateral view. Measurement lines for EL, EH, and OMD. Fig. 3. and 4. Propodeum, petiole and postpetiole in lateral view, measurement lines for NOL, PEL, PPL, NOH, PEH, PPH, SPSP, and SPL (for definition see text).
Fig. 6 in Taxonomic Use of Genitalic Characters in Mexican Copris (Coleoptera: Scarabaeidae, Scarabaeinae): The Case of Copris klugi sierrensis Matthews and the C. armatus Species Complex
Fig. 6. Copris sierrensis. Raspula. Note the size of the spines that form the subunits of the raspula.
Fig. 1. Male genitalia, Copris klugi Harold. a in Taxonomic Use of Genitalic Characters in Mexican Copris (Coleoptera: Scarabaeidae, Scarabaeinae): The Case of Copris klugi sierrensis Matthews and the C. armatus Species Complex
Fig. 1. Male genitalia, Copris klugi Harold. a) aedeagus; b) parameres; c) raspula; d) parietal accessory lamella; e) conical accessory lamellae. Scale line: 1: 150 mm.
Fig. 8. Female genitalia, Copris sierrensis. a in Taxonomic Use of Genitalic Characters in Mexican Copris (Coleoptera: Scarabaeidae, Scarabaeinae): The Case of Copris klugi sierrensis Matthews and the C. armatus Species Complex
Fig. 8. Female genitalia, Copris sierrensis. a) vagina; b) spermatheca; c) spermathecal duct. 12.8X.
Fig. 2. Male genitalia, Copris sierrensis Matthews. a in Taxonomic Use of Genitalic Characters in Mexican Copris (Coleoptera: Scarabaeidae, Scarabaeinae): The Case of Copris klugi sierrensis Matthews and the C. armatus Species Complex
Fig. 2. Male genitalia, Copris sierrensis Matthews. a) aedeagus; b) parameres; c) raspula; d) parietal accessory lamella; e) conical accessory lamellae. Scale line: 1: 150 mm.
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information. in Muridae
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information.
FIGURES 13–15 in Taxonomy of 'Euconnus complex'. Part XVII. Status of subgenera defined by male antennal characters: Androconnus Franz and Cladoconnus Reitter (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 13–15. Morphological structures of Euconnus (Cladoconnus) motschulskyi (Sturm), male. Head, prothorax and elytral base in dorsal view (13); head in frontal (14) and ventral (15) views. Abbreviations: abp, antebasal pit; bef, basal elytral fovea; cl, clypeus; fcg, frontoclypeal groove; fr, frons; gp, gular plate; hr, hypostomal ridge; lbr, labrum; mc, median carina; md, mandible; mn, mentum; ptp, posterior tentorial pits; slc, sublateral carina; smn, submentum; vt, vertex.
FIGURES 4–5 in Taxonomy of 'Euconnus complex'. Part XVII. Status of subgenera defined by male antennal characters: Androconnus Franz and Cladoconnus Reitter (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 4–5. Morphological structures of Euconnus (Androconnus) bechyneae Franz, male. Head, prothorax and elytral base in dorsal view (4); head, prothorax and anterior portion of pterothorax in ventral view (5). Abbreviations: abg, antebasal groove; abp, antebasal pit; bef, basal elytral fovea; bst, basisternal part of prosternum; fr, frons; gp, gular plate; hr, hypostomal ridge; hyr, hypomeral ridge; mn, mentum; nss, notosternal suture; ptp, posterior tentorial pit; slc, sublateral carina; smn, submentum; vt, vertex.
FIGURES 1–3 in Taxonomy of 'Euconnus complex'. Part XVII. Status of subgenera defined by male antennal characters: Androconnus Franz and Cladoconnus Reitter (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 1–3. Dorsal habitus. Euconnus (Androconnus) bechyneae Franz, male (1); Euconnus (Cladoconnus) motschulskyi (Sturm), male (2); Euconnus (Cladoconnus) denticornis (Müller & Kunze), female (3).
FIGURES 20–23 in Taxonomy of 'Euconnus complex'. Part XVII. Status of subgenera defined by male antennal characters: Androconnus Franz and Cladoconnus Reitter (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 20–23. Morphological structures of Euconnus (Cladoconnus) motschulskyi (Sturm), male. Prothorax in ventral view (20); pterothorax in ventral view (21); aedeagus in ventral (22) and lateral (23) views. Abbreviations: bst, basisternal part of prosternum; hyr, hypomeral ridge; msvp, mesoventral intercoxal process; mtvp, metaventral intercoxal process; nss, notosternal suture; pcr, procoxal rest.
FIGURES 9–12 in Taxonomy of 'Euconnus complex'. Part XVII. Status of subgenera defined by male antennal characters: Androconnus Franz and Cladoconnus Reitter (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 9–12. Morphological structures of Euconnus (Androconnus) bechyneae Franz, male. Pterothorax and anterior portion of abdomen in ventral view (9); aedeagus in lateroventral (10), ventral (11) and lateral (12) views. Abbreviations: msvp, mesoventral intercoxal process; mtvp, metaventral intercoxal process; pcr, procoxal rest.
FIGURES 6–8 in Taxonomy of 'Euconnus complex'. Part XVII. Status of subgenera defined by male antennal characters: Androconnus Franz and Cladoconnus Reitter (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 6–8. Morphological structures of Euconnus (Androconnus) bechyneae Franz, male. Distal portion of left antenna in dorsal (6) and mesal (7) views; antennomeres X–XI in mesal view (8). Abbreviations: anIX–XI, antennomere IX–XI.
FIGURES 16–19 in Taxonomy of 'Euconnus complex'. Part XVII. Status of subgenera defined by male antennal characters: Androconnus Franz and Cladoconnus Reitter (Coleoptera, Staphylinidae, Scydmaeninae)
FIGURES 16–19. Morphological structures of Euconnus (Cladoconnus) motschulskyi (Sturm), male. Distal portion of right antenna in dorsal view (16); antennomeres VIII–X in dorsal (17) and mesal (18) views; serrate carina of antennomere IX in mesal view (19). Abbreviations: anVIII–XI, antennomere VIII–X.
FIGURES 13–22. Sexual characters. 13–18 male sternite VII 19, 20 male sternite VIII 21 female sternite VIII 22 valvifer 13 Dianous vietnamensis 14 D. rougemontianus 15 D. ruginosus 16 D. aerator 17, 21, 22 D. pseudaerator 18, 20 D in Notes on the Dianous aereus complex with description of a new species (Coleoptera, Staphylinidae)
FIGURES 13–22. Sexual characters. 13–18 male sternite VII 19, 20 male sternite VIII 21 female sternite VIII 22 valvifer 13 Dianous vietnamensis 14 D. rougemontianus 15 D. ruginosus 16 D. aerator 17, 21, 22 D. pseudaerator 18, 20 D. brevicornis. Scale bars: 0.25 mm.
FIGURE 6 in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 6. Chromosomes of Smilax microdontus sp. nov. and other two closer species: A & B. Smilax sp.nov. 2n=32, (A. mHB, B. mZZ: 2n=32); C. Smilax biflora (bAM: 2n=40); D. Smilax trinervula (tYS: 2n=32).
FIGURE 2 in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 2. Principal component analysis (PCA) of 13 morphological characters of the Smilax china complex. Axes R1 and R2 explain 44.68% and 24.36% of the total variation, respectively.
FIGURE 5. Smilax microdontus Z.S. Sun & C.X in Molecular, chromosomal and morphological characters reveal a new diploid species in the Smilax china complex (Smilacaceae)
FIGURE 5. Smilax microdontus Z.S. Sun & C.X. Fu, sp. nov. A. Fertile branch with fruits; B. Enlarged leaf margin, show the small teeth; C. Narrowly winged petiole; D. Staminate flower; E. Fruit; F. Seed. Drawn by Dr. Xiaofeng Jin.
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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.