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1,913 results for “Morphological characters”
FIGURE 11 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 11. Lysmata lipkei Okuno & Fiedler, 2010, non-ov. specimen from Sergipe, Brazil (pocl 5.5 mm; MZUSP 37415): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view. Weak articulations represented by a dotted line.
FIGURE 8 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 8. Lysmata cf. jundalini Rhyne, Calado & Santos, 2012, non-ov. specimen from Espírito Santo (pocl 4.1 mm; MZUSP 34362): (A) left antennule, third article of antennular peduncle and flagella, mesial view; (B) same, articles preceding bifurcation of accessory ramus; (C) right first pereopod, merus to propodus, lateral view. Weak articulations represented by a dotted line.
FIGURE 5 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 5. Lysmata grabhami (Gordon, 1935), (A–G) non-ov. specimen from Bahia (pocl 13.5 mm; MZUSP 36814), (H) non-ov. specimen from Ceará (pocl 12.0 mm; MZUSP 39093): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view; (H) infraorbital region, lateral view. Weak articulations represented by a dotted line.
FIGURE 6 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 6. Lysmata intermedia (Kingsley, 1878): non-ov. specimen (pocl 5.8 mm; MZUSP 32642) from Ilha das Couves, São Paulo, reported in Barros-Alves et al. (2016), in lateral view. White arrow: swollen area on the upper antennular flagellum; black arrow: coxa of fourth pereopod. Photograph: D.F.R. Alves.
FIGURE 2 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 2. Lysmata ankeri Rhyne & Lin, 2006, non-ov. specimen from Bahia (pocl 9.6 mm; MZUSP 36970): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view.
FIGURE 7 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 7. Lysmata intermedia (Kingsley, 1878), (A–G) non-ov. specimen from Rio Grande do Norte (pocl 5.9 mm; MZUSP 29792), (H) non-ov. specimen from São Paulo (pocl 5.8 mm; MZUSP 32642), (I, J) non-ov. specimen from Bocas del Toro, Panama (pocl 3.5 mm; MZUSP 38020): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) right first pereopod, merus to propodus, lateral view; (F) left antennule, third article of antennular peduncle and flagella, mesial view; (G) same, bifurcation between upper flagellum and accessory ramus, mesial view; (H, I) right first pereopod, merus to propodus, lateral view; (J) left antennule, third article of antennular peduncle and flagella, mesial view. Weak articulations represented by a dotted line.
FIGURE 4 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 4. Hierarchical clustering of the biogeographical distribution of Helicotylenchus pseudorobustus.
FIGURE 3 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 3. Helicotylenchus pseudorobustus (Steiner, 1914) Golden, 1956 [population from Astaneh (Guilan Province, Iran)]. A: Neck. B: Female reproductive system. C–E: Anterior end (stoma and DGO). F–H: Habitus of the females. I–N: Female posterior end.
FIGURE 5 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 5. Hierarchical clustering of different populations of Helicotylenchus pseudorobustus and its junior synonym Helicotylenchus microlobus.
FIGURE 2 in Molecular and morphological characters of Helicotylenchus Steiner, 1945 species from Iran with a note on the identity of H. pseudorobustus (Steiner, 1914) Golden 1956
FIGURE 2. Helicotylenchus pseudorobustus (Steiner, 1914) Golden, 1956 [population from Roodsar (Guilan Province, Iran)]. A: Neck. B: Female reproductive system. C: Anterior end (stoma and DGO). D–E: Female posterior end. F–G: Habitus of the females.
FIGURE 2. General characters. A–G in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 2. General characters. A–G. linear structures; F. marginal and submarginal edges; G. flange (e = external; i = internal).
FIGURE 7 in Comparative morphology of myrmecophilous immature stages of European Microdon species (Diptera: Syrphidae): updated identification key and new diagnostic characters
FIGURE 7. Dorsal reticulation of third instar larvae of M. myrmicae (A, B), M. analis (C, D) and M. devius (E, F); left, general view; right, detail of single reticulation processes. A = 400 µm; B = 50 µm; C, E = 500 µm; D = 100 µm; F = 200 µm.
FIGURES 7–12 in Aphonopelma braunshausenii Tesmoingt, 1996 is a nomen dubium, with review of some historic morphological characters ineffective at species delineation (Araneae: Theraphosidae)
FIGURES 7–12. Labia of the above Aphonopelma specimens all showing near identical morphology in shape and cuspule density, 7 Aphonopelma platnicki holotype male BMNH 1894.2.18.1, 8 Aphonopelma clarki holotype female BMNH 1959.1.2 [= A. hentzi Girard, 1853 per Hamilton et al. 2016)], 9 Aphonopelma anax non-type male OUMNH 2009-001, 10 Aphonopelma pallidum holotype male BMNH 1898.12.24.34–37, 11 Aphonopelma bicoloratum non-type male OUMNH 2011-045, 12 Aphonopelma marxi non-type male OUMNH 2007-064. Scale lines = 1mm.
FIGURES 1–6 in Aphonopelma braunshausenii Tesmoingt, 1996 is a nomen dubium, with review of some historic morphological characters ineffective at species delineation (Araneae: Theraphosidae)
FIGURES 1–6. Ocular tubercles of some Aphonopelma species showing variation in size and distance between eyes, 1 Aphonopelma platnicki holotype male BMNH 1894.2.18.1, 2 Aphonopelma clarki holotype female BMNH 1959.1.2 [= A. hentzi Girard, 1853 per Hamilton et al. 2016)], 3 Aphonopelma anax non-type male OUMNH 2009-001, 4 Aphonopelma pallidum holotype male BMNH 1898.12.24.34–37, 5 Aphonopelma bicoloratum non-type male OUMNH 2011-045, 6 Aphonopelma marxi nontype male OUMNH 2007-064. Scale lines = 1mm.
PLATE 9 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 9. Male genitalia (without aedeagus) in dorsal projection and tegumens of M. distans stat. n. (1, 2, 7, 8), M. alatauica (3, 9, 10) and M. aurelia (4–6, 11–14) from different localities: 1, 2, 7, 8—Tian–Shan, the Bajankol river; 3, 9—Burchansarytau; 10—Dzhungarian Alatau, the Koksu river; 4—Chelyabinsk Region, Arkaim; 5—Omsk Region, Kalachinsk; 6, 14—Novosibirsk Region, Karasuk Distr.; 11—Moscow Region, Lukhovitsy Distr.; 12—Crimea, Chatyr–Dah; 13– Vinnitsa Region, Mohyliv–Podilskyi Distr.
PLATE 6 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 6. Photos of M. alatauica from different localities of Dzhungarian Alatau Mts.: 1–4 males, upperside; 5–8—females, upperside; 9–12—males, underside; 13–16—females, underside; 1, 4, 8, 9, 12, 16—the Tentek river; 2, 3, 5, 6, 10, 11, 13, 14—Burchansarytau, the Usek river; 7, 15—the Tyshkan Mts.
PLATE 2 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 2. Phylogenetic tree showing the relationship between species of the genus Mellicta according to the analysis of 658 bp the COI gene fragment. A phylogenetic tree was constructed using the Bayesian analysis (BA) and the Maximum Likelihood (ML) methods. The nodes are marked with Bayesian posterior probabilities (PP) and bootstrap (BS). Aglais io and Nymphalis antiopa used as outgroups.
PLATE 5 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 5. Photos of M. aurelia from different localities: 1–8 males, upperside; 9–12—females, upperside; 13–20—males, underside; 21–24—females, underside; 1, 13—Crimea, Chatyr–Dah; 2, 14—Vinnitsa Region., Mohyliv–Podilskyi Distr.; 3, 15—Moscow Region, Yegoryevsk Distr.; 4, 16—Republic of Bashkortostan, Uchaly Distr.; 5, 17—Orenburg Region, Buzuluk; 6, 18—Volgograd Region, Kamyshyn Distr.; 7, 19—Chelyabinsk Region, Arkaim; 8, 20—Novosibirsk Region, Karasuk Distr.; 9, 21—Crimea, Sudak, Lesnoe Vill.; 10, 22—Orenburg Region, Kuvandyk; 11, 23—Chelyabinsk Region, Chebarkul; 12, 24—Novosibirsk Region, Karasuk Distr.
PLATE 10 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 10. Female genitalia (without the anal papillae, copulatory bursa, and anterior and posterior apophyses) of M. distans stat. n. (1–3) and M. alatauica (4–6) from different localities: 1–3—Tian–Shan, the Bajankol river; 4—Burchansarytau; 5—Kulja; 6—Dzhungarian Alatau, the Kora river. The red arrow points a short postvaginal plate. The blue arrow points rounded side lobes, protruding sideways. The green arrow points an enlarged antrum.
PLATE 1 in Revealing the specific status of Mellicta distans Higgins, 1955, stat. n. (Lepidoptera Nymphalidae) with morphological and molecular characters
PLATE 1. Distribution of M. distans stat. n., M. alatauica, M. aurelia and M. menetriesi in Kazakhstan and adjacent territories.
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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.