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Fig. 9 in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 9. Phylogenetic history of the subtribe Oiocerina at the species level (A) according to the results of the cladistic analysis (Fig. 6) and (B) assuming a morpho−chronological and regional continuum for Samotragus. Grey and white boxes indicate reliably known and questionable chrono−stratigraphic occurrences, respectively. Dashed lines indicate presumed ranges (vertical) or relationships (horizontal). Abbreviations: NKT, Nikiti−1; RZ1, Ravin de Zouaves 1.
Fig. 5. Oiocerin antelope Samotragus from Northern Greece. A, B, E in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 5. Oiocerin antelope Samotragus from Northern Greece. A, B, E. Samotragus praecursor Bouvrain and Bonis, 1985 from Ravin de la Pluie (RPl), Axios Valley, late Vallesian (Late Miocene). A. LGPUT RPl−105n, cranium in dorsal (A1) and lateral (A2) views. B. LGPUT RPl−480, holotype cranium in lateral view. E. LGPUT RPl−37, left horncore in lateral view. C, D. Samotragus cf. praecursor Bouvrain and Bonis, 1985 from Ravin des Zouaves 1 (RZ1), Axios Valley, late Vallesian (Late Miocene). C. LGPUT RZ1−11, left horncore in anterior (C1) and lateral (C2) views. D. LGPUT RZ1−17 left horncore in anterior (D1) and lateral (D2) views.
Fig. 3 in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 3. Oiocerin antelope Hispanodorcas cf. orientalis Bouvrain and Bonis, 1988 from Nikiti−1 (NKT), Chalkidiki Peninsula, Northern Greece, latest Vallesian. A. LGPUT NKT−231, lateral view of the right basal horncore. B. LGPUT NKT−227, left lateral (B1) and anterior (B2) views of the frontlet. C. LGPUT NKT−232, lateral view of the left distal horncore. The arrow indicates the distal end of the lateral depression and marks the distal "bilobation" of the lateral side of the horncore.
Fig. 8 in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 8. Time range, geographic distribution, ecological features, and paleoenvironment of several members of the Oiocerina. Abbreviations: V, Vallesian; T, Turolian; R, Ruscinian; O, open, I, intermediate, and C, closed environment; grass for grazing, scrub for mixed, and tree for browsing diets; sheep for ramming (rm), kudu for wrestling/pushing (ps), eland for wrestling/fencing (fc), and dik−dik for stabbing (st) fighting style (some drawings adopted from Lundrigan 1996).
Fig. 7 in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 7. Drawings of the horncores of several Oiocerina in right lateral view, showing the main shared characters. A.?Hispanodorcas pilgrimi from Toril−3, Spain. B. Hispanodorcas orientalis from Dytiko−3, Greece. C. Urmiatherium rugosifrons from Samos (Greece) and Turkey, adult (C1) and juvenile (C2) individual. D. Samotragus crassicornis from Samos, Greece. E. Oioceros rothii (combination of Pikermi, Greece and Maragheh, Iran specimens). F. Urmiatherium polaki from Maragheh, Iran. G. Samotragus cf. praecursor from Ravin des Zouaves 1 (G1) and Samotragus praecursor from Ravin de la Pluie, Greece (G2). H. Paraoioceros wegneri from Samos, Greece.
Fig. 6. Cladograms showing the evolutionary relationships within Oiocerina. A in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 6. Cladograms showing the evolutionary relationships within Oiocerina. A. Intrageneric relationships (rooted to Eotragus Pilgrim, 1939), based on available morphological and zoogeographic evidence (see text). B. 75% majority−rule consensus of the four most parsimonious trees (length: 172; CI: 0.46; RI: 0.65) showing the relationships of eight fossil genera of Oiocerina, Gazella Blainville, 1816, Ovibos Blainville, 1816, Hemitragus Smith, 1826, and Turcocerus Köhler, 1987, based on the character matrix of Appendix 1. Outgroup: Eotragus Pilgrim, 1939. Synapomorphies supporting nodes (marked with bold letters) are discussed in the text.
Fig. 2 in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 2. Oiocerin antelope Hispanodorcas orientalis Bouvrain and Bonis, 1988, from the late Turolian locality of Dytiko−3 (DKO), Axios Valley, Northern Greece, in lateral (A) and anterior (B) views of the holotype cranium LGPUT DKO−4. The arrow in A indicates an enlarged version of the same view, where the white lines indicate the extent of the lateral depression; the arrows in B mark the trace of the anterior keel.
Fig. 1 in Taxonomic re-assessment and phylogenetic relationships of Miocene homonymously spiral-horned antelopes
Fig. 1. Box−plots of the horncore basal compression index (i.e., TD*100/ ADP) for several species and genera of Oiocerina, showing the medial (horizontal line inside the boxes), the 25–75% quartiles (gray boxes) and the minimum and maximum range of values (short horizontal lines). NKT−1, Nikiti−1; RZ1, Ravin des Zouaves 1.
Figure 1 in A replacement name for Chrysolina mikhailovi Lopatin, 2011 (Coleoptera: Chrysomelidae: Chrysomelinae), primary junior homonym of Ch. mikhailovi Ge & Daccordi, 2011
Figure 1. Holotype of Chrysolina mikhailovi Ge & Daccordi, 2011. A. Habitus; B–D. Aedeagus. Scale bars: A = 2.0 mm; B–D = 1.0 mm.
FIGURE 2 in Redescription of Ameroseius eumorphus Bregetova (Acari: Mesostigmata: Ameroseiidae), a new record of Epicriopsis Berlese from Iran and a new homonym in Ameroseiidae
FIGURE 2: Ameroseius eumorphus Bregetova, 1997 (female): A – dorsal shield, B – j1, C – dorsal setae.
FIGURE 1 in Redescription of Ameroseius eumorphus Bregetova (Acari: Mesostigmata: Ameroseiidae), a new record of Epicriopsis Berlese from Iran and a new homonym in Ameroseiidae
FIGURE 1: Ameroseius eumorphus Bregetova, 1997 (female): A – Hypostome, B – epistome, C – Chelicera, D – apotele.
FIGURE 4 in Redescription of Ameroseius eumorphus Bregetova (Acari: Mesostigmata: Ameroseiidae), a new record of Epicriopsis Berlese from Iran and a new homonym in Ameroseiidae
FIGURE 4: Ameroseius eumorphus Bregetova, 1997 (female): A – Leg I, B – Leg II, C – Leg III, D – Leg IV.
FIGURE 1. A–D in New names for some bryozoan homonyms
FIGURE 1. A–D. Reussinella arctica (Osburn, 1950), Pacific Institute of Bio-Organic Chemistry, Vladivostock (1/ 5614), off Bering Island, Russia (ST. 49, 55°25'5"N, 165°38'9"E, 119 m, coll. 24 August 1991 by A.V. Smirnov), Recent. A, Part of a linear colony branch; SEM scalebar 588 μm. B, Group of zooids with opercula and cuticularised epithelium retained; SEM scale bar 137 μm. C, Group of zooids, with two incomplete and one intact ovicell; SEM scalebar 182 μm. D, Zooid with marginal pores (presumably opesiular) and large distal pore-chamber; SEM scalebar 100 μm. E, F. Leiosellina rostrifera (Canu & Bassler, 1917), holotype (USNM 62597), SE of Bladen Springs, Alabama, Vicksburgian (Rupelian, Oligocene). E, Part of a branch; SEM scalebar 667 μm. F, Close-up of same specimen showing distribution of avicularia; SEM scale bar 179 μm.
FIGURES 6–12. Liothrips jatrophae. 6. Female fore tarsal tooth. 7. Head. 8. Pronotum. 9. Antenna. 10 in Replacement names for two homonyms of Liothrips brevitubus Karny: one from California, the other for a species damaging Jatropha crops in Mexico
FIGURES 6–12. Liothrips jatrophae. 6. Female fore tarsal tooth. 7. Head. 8. Pronotum. 9. Antenna. 10. Meso and metanota of micropterous female. 11. Meso and metanota, and pelta of macropterous female. 12. Tergites II–III of macropterous female.
FIGURES 1–5 in Replacement names for two homonyms of Liothrips brevitubus Karny: one from California, the other for a species damaging Jatropha crops in Mexico
FIGURES 1–5. Jatropha curcas damaged by Liothrips jatrophae. 1. Whole plant. 2. Terminal rosettes. 3. Distorted leaves. 4. Stunted plant apex. 5. Fruits.
FIGURE 1 in A new name for Myrmecodesmus potosinus (Shear) 1973, a homonym of Myrmecodesmus potosinus (Chamberlin) 1943 (Diplopoda, Polydesmida, Pyrgodesmidae)
FIGURE 1. Map showing the geographical location of the type localities of Myrmecodesmus sheari (circle), Myrmecodesmus potosinus (star) and Decaporodesmus montzoranginis (hexagon).
FIGURES 1–9 in Stenoloba ronkayi Sohn & Tzuoo 2012 — a new homonym of S. ronkayi Behounek & Kononenko, 2010 and new synonym of S. glauca Kononenko & Ronkay 2001. A postscript to the revision of Chinese Stenoloba (Lepidoptera, Noctuidae)
FIGURES 1–9. Stenoloba glauca, adult, male and female genitalia. 1. S. glauca, male, holotype, North Vietnam (after Kononenko & Ronkay 2001); 2. S. kyutekparki, holotype, South Korea (after Sohn & Han 2005); 3. S. glauca, China, Aut. Reg. Guangxi (after Han & Kononenko 2009); 4. S. ronkayi, holotype, Taiwan (after Sohn and Tzuoo 2012); 5. S. glauca, male genitalia, holotype, North Vietnam (after Kononenko & Ronkay 2001); 6. S. kyutekparki, male genitalia, holotype (after Sohn & Han 2005); 7. S. glauca, male genitalia, China, Aut. Reg. Guangxi (after Han & Kononenko 2009); 8. S. ronkayi, female genitalia, holotype, Taiwan (after Sohn and Tzuoo 2012); 9. S. kyutekparki paratype, female genitalia, South Korea (after Sohn & Han 2005).
Figs. 1–2. 1 in Aeolus variegatusCurtis (Coleoptera: Elateridae) is a Synonym ofPomachilius subfasciatus(Germar) and a Senior Homonym ofPomachilius variegatusSchwarz
Figs. 1–2. 1) "Aeolus? variegatus" Curtis, holotype, dorsal aspect; 2) Labels from "Aeolus? variegatus" Curtis, holotype. The "type" label is a Natural History Museum, London curatorial label applied to presumptive primary types. The circular label with "63 49" is the museum registration number for the specimen lot donated by the Linnean Society (Wheeler 1995). The first determination label is Capt. P. King's locality label "St. P." indicating "St. Paul's" (= São Paulo). The final label is by P. Cate, Vienna.
FIGURE 6 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 6. Eurypon verticillatum sp. nov. (UFPEPOR 1966, holotype). A, specimen in vivo; B, close up of sponge surface; C, thick section showing ectosome and choanosome. Scale bars: A = 2 cm; B = 5 mm; C = 700 µm.
FIGURE 2 in Description of three species of Eurypon Gray, 1867 (Raspailiidae: Demospongiae: Porifera) from the Western Atlantic and a name to replace the the secondary homonym Eurypon topsenti
FIGURE 2. Eurypon oxychaetum sp. nov. (UFPEPOR 3007, holotype). A, preserved specimen; B, close up of sponge surface; C, thick section showing ectosome and choanosome. Scale bars: A = 2 cm; B = 5 mm; C = 500 µm.
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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)
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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.
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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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