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13,397 results for “sp. nov.”
Figures 2-8 in Rideriana amazonica gen. nov. and sp. nov. of Pentatomini (Heteroptera, Pentatomidae)
Figures 2-8. Rideriana amazonica sp. nov. (2-5) Pygophore: (2) dorsal, (3) ventral and (4) lateral view respectively, (5) right paramere: lateral view; (6-8) Phallus: (6) dorsal, (7) ventral and (8) lateral view respectively. (bp) basal plate, (dc) dorsal connectives, (dr) dorsal rim, (dsd) ductus seminis distalis, (gs) secundary gonopore, (hy) hypandrium, (me) membramblase, (pa) paramere, (pc) processus capitati, (ph) phallotheca, (prv1) processus vesicae 1, (prv2) processus vesicae 2, (vr) ventral rim, (v) vesica, (x) tenth segment. Scale: 1 mm.
Figures 1-7 in Pentatomiana beckerae gen. nov. and sp. nov., a new Neotropical Pentatomini (Hemiptera, Heteroptera, Pentatomidae)
Figures 1-7. Pentatomiana beckerae sp. nov.: (1) holotype; (2) right hemelytron of male paratype; (3-5) pygophore, respectively dorsal, caudal and ventral views.; (6-7) genital plates, respectively lateral and ventral views. (dr) Dorsal rim, (gc8) gonocoxite 8, (gc9) gonocoxite 9, (gcp) genital cup process, (la8) laterotergite 8, (la9) laterotergite 9, (pa) paramere, (VII) seventh segment, (vr) ventral rim, (X) tenth segment.Figures 3-5 and 6-7 respectively, in same scale.
Fig. 3 in Cerrorchestia taboukeli sp. nov., a new terrestrial amphipod (Amphipoda, Talitridae) from Martinique Island
Fig. 3. Cerrorchestia taboukeli sp. nov. A–B. Holotype, ♂, 11.3 mm, MNHN-IU-2019-2276. C–D. Paratype, ♀, 9.6 mm, MNHN-IU-2019-2278. A. Gnathopod 1 (scale 1). B. Gnathopod 2 (scale 2). C. Gnathopod 1 (scale 1). D. Gnathopod 2 (scale 1).
Fig. 1 in Pseudotelegeusis meloi sp. nov., the first Telegeusinae from Peru (Coleoptera: Omethidae, Telegeusinae)
Fig. 1. Pseudotelegeusis meloi sp. nov., paratype from Mazuko DZUP 458.569. A. Habitus, dorsal view; B. Habitus, lateral view. C. Antenna, lateral view. D. Head, dorsal view. E. Pronotum, dorsal view. F. Left elytron, dorsal view.
Fig. 1 in Trionymus okiensis sp. nov., a new species of mealybug from Japan (Hemiptera: Coccomorpha: Pseudococcidae)
Fig. 1. Trionymus okiensis sp. nov., left side dorsal view, right side ventral view. ALC – anal lobe cerarius; ANT – antenna; DP– discoidal pore; LG – hind tibia, tarsus and claw; MP – multilocular pore; OCD I – large type of oral-collar tubular duct; OCD II – small type of oral-collar tubular duct; PC– penultimate cerarius; TP – trilocular pore. Scale bars: 200 μm for ANT, LG; 100 μm for ALC, PC; 10 μm for others.
Fig. 1 in Nesterenkonia salmonea sp. nov. and Nesterenkonia sphaerica sp. nov., isolated from the Southern Atlantic Ocean
Fig. 1. Phylogenetic analysis of strains GY074T and GY239T and closely related members of the genus Nesterenkonia based on 16S rRNA gene sequences. GenBank accession numbers are given in parentheses. Multiple alignments, distance calculations and clustering with the neighbour-joining, maximum-likelihood and maximum-parsimony methods were performed by using the software package MEGA version 7. Bootstrap values based on 1000 replications are shown as percentages at the branching points. Bar, 0.005 nucleotide substitutions per nucleotide position. Filled circles (●) indicate that these branches cluster similarly using the different test algorithms.
Fig. 1 in Lysinimonas yzui sp. nov., isolated from cattail root soil from mine tailings
Fig. 1. Neighbour-joining phylogenetic tree based on 16S rRNA gene sequences, showing positions of N7XX-4T and related taxa within the family Microbacteriaceae. Bootstrap values of over 60% (based on 1000 replicates) are shown at branching points. Dots indicate that the corresponding branches were also recovered in the maximum parsimony tree. Bar, 0.01 substitutions per nucleotide.
Fig. 1 in Streptomyces aquilus sp. nov., a novel actinomycete isolated from a Chinese medicinal plant
Fig. 1. Optical micrograph (a) and scanning electron micrograph (b) of GGCR-6T grown on Gause's synthetic medium at 28 °C after incubation for 14 days.
FIG. 5 in Psychotria niauensis sp. nov. (Rubiaceae), espèce calcicole endémique de la Polynésie française, décrite de l'atoll soulevé de Niau (Tuamotu)
FIG. 5. — Image de l'isotype de Psychotria niauensis Butaud & J.Florence, sp. nov. (Butaud 1519 [PAP015889]).
Fig. 3 in Rare sponges from marine caves: discovery of Neophrissospongia nana nov. sp. (Demospongiae, Corallistidae) from Sardinia with an annotated checklist of Mediterranean lithistids
Fig. 3. Neophrissospongia nana nov. sp., holotype MSNG 54599, spicular complement. A. Dichotriaene. B. Cladome of a tubercled dichotriaene (top view). C. Streptaster/amphiaster microscleres with tubercles. D. Cladome of a smooth dichotriaene (top view). E. Dicranoclone desma. F. Styles/sub-tylostyles.
Fig. 26 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 26. Akromystax tilmachiton Poyato-Ariza & Wenz, 2005. Pelvic girdle and scales from the cloacal region of sample CLC S-712.
Fig. 24. Brembodus ridens Tintori, 1980. Sample CLC J-420. Small scales forming a in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 24. Brembodus ridens Tintori, 1980. Sample CLC J-420. Small scales forming a mosaic surrounding the cloaca.
Fig. 23. Brembodus ridens Tintori, 1980. Sample CLC J-420. A in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 23. Brembodus ridens Tintori, 1980. Sample CLC J-420. A. Scale of the dorsal region. B. Scale of the ventral region.
Fig. 21. Brembodus ridens Tintori, 1980 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 21. Brembodus ridens Tintori, 1980. Skull and pectoral girdle of sample CLC J-420. The right opercle and preopercle, the ventral part of the hyomandibula, the maxillae, the premaxillae and the right mandible are lost. The left mandible and the hyoid bar are displaced due to the fossilization. The left mandible is seen from its inner face. The first tooth of the dentary is displaced under the anterior ceratohyal. A small part of the inner face of the left opercle and preopercle is visible.
Fig. 19 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 19. Acrorhinichthys poyatoi gen. et sp. nov. Reconstruction of the pelvic girdle and the scales of the cloacal region based on the holotype CLC S-630a, b.
Fig. 17 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 17. Acrorhinichthys poyatoi gen. et sp. nov. Caudal skeleton of paratype CLC S-461. The arrows point to the most external principal caudal rays.
Fig. 25 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 25. Akromystax tilmachiton Poyato-Ariza & Wenz, 2005. Sample CLC S-712 from the marine Cenomanian of Haqel, Lebanon.
Fig. 16 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 16. Acrorhinichthys poyatoi gen. et sp. nov. Caudal skeleton of the holotype CLC S-630a, completed with face b. The arrows point to the most external principal caudal rays.
Fig. 12 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 12. Acrorhinichthys poyatoi gen. et sp. nov. Holotype CLC S-630b. Two vertebral segments, at the level of the twelfth and the fifteenth neural spines.
Fig. 7 in Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon
Fig. 7. Acrorhinichthys poyatoi gen. et sp. nov. Head and anterior region of the holotype CLC S-630b
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.