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FIGURE 1 in A new species of Ungla (Neuroptera: Chrysopidae) that exhibits remarkable homoplasy in male secondary sexual characters
FIGURE 1. Ungla pseudomeleoma, sp. nov., Holotype (male, Peru: La Libertad, FSCA). A. Head, prothorax (frontolateral); B. Head, prothorax (lateral); C. Head (frontal); D. Head (lateral); E. Face (frontal); F. Head, prothorax (dorsal). f1, first flagellomere; in.fu., interantennal furrow; in.h., interantennal horn; lo.h., lower horn; ped, pedicel.
FIGURES 48–55. Anaphothrips species, male. Abdominal sternites 48–51 in The genus Anaphothrips (Thysanoptera, Thripidae) in China, with three new species
FIGURES 48–55. Anaphothrips species, male. Abdominal sternites 48–51 (48) beijingensis III–VIII; (49) oroqeni III–VIII; (50) populi III–VII; (51) qinghaiensis III–VII. Abdominal sternites VIII–X 52–55 (52) beijingensis; (53) oroqeni; (54) populi; (55) qinghaiensis.
FIGURE 16 in On three new oonopid species from China and the discovery of the male Orchestina bialata Liu, Xiao & Xu, 2016 (Araneae: Oonopidae)
FIGURE 16. Collection localities for Ischnothyreus tergeminus sp. nov., Orchestina colubrina sp. nov., O. bialata Liu, Xiao & Xu, 2016 and O. zhiwui sp. nov. in China.
Figs 1–16. Aphrophora spp., male calling signal oscillograms. 1–11 ― A in Review of the Aphrophora salicina (Goeze, 1778) (Homoptera: Cercopoidea: Aphrophoridae) species group of Russia and adjacent territories with description of a new species
Figs 1–16. Aphrophora spp., male calling signal oscillograms. 1–11 ― A. salicina; 12–13 ― A. willemsi; 14–16 ― A. itiliensis sp.n. Faster oscillograms of the parts of signals indicated as "17–31" are given under the same numbers, signal recording localities are given under the oscillograms. Scale mark at the bottom is the same for all oscillograms. Рис. 1–16. Aphrophora spp., осциллограммы приЗывных сигналов самцов. 1–11 ― A. salicina; 12–13 ― A. willemsi; 14–16 ― A. itiliensis sp.n. Фрагменты сигналов, помеченные цифрами "17–31", представлены при большей скорости раЗвёртки на осциллограммах под соответствуюЩими номерами, места сбора насекомых длЯ Записи сигналов укаЗаны под осциллограммами. Отметка времени вниЗу обЩаЯ длЯ всех осциллограмм.
Figs 17–31. Aphrophora spp., male calling signal oscillograms. 17–26 ― A in Review of the Aphrophora salicina (Goeze, 1778) (Homoptera: Cercopoidea: Aphrophoridae) species group of Russia and adjacent territories with description of a new species
Figs 17–31. Aphrophora spp., male calling signal oscillograms. 17–26 ― A. salicina; 27–28 ― A. willemsi; 29–31 ― A. itiliensis sp.n. Signal recording localities are given under the oscillograms. Scale mark at the bottom is the same for all oscillograms. Рис. 17–31. Aphrophora spp., осциллограммы приЗывных сигналов самцов. 17–26 ― A. salicina; 27–28 ― A. willemsi; 29–31 ― A. itiliensis sp.n. Места сбора насекомых длЯ Записи сигналов укаЗаны под осциллограммами. Отметка времени вниЗу обЩаЯ длЯ всех осциллограмм.
Fig. 3 Yphthimoides gabriela, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 3 Yphthimoides gabriela, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 8 Yphthimoides iserhardi, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 8 Yphthimoides iserhardi, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 2 Yphthimoides gabriela. a Male wing venation. b Female wing venation. c Male palpus. d Male foreleg. e Male midleg. f Female foreleg
Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 4 Male A. lutindi n in Ecology, acoustics and chromosomes of the East African genus Afroanthracites Hemp & Ingrisch (Orthoptera, Tettigoniidae, Conocephalinae, Agraeciini) with the description of new species
Fig. 4 Male A. lutindi n. sp., lateral view, note orange part of tenth abdominal tergite, orange clypeus and coloration of eyes and antennae
Fig. 4 A freshly killed male Archiboreoiulus pallidus with a in Infectious intimacy and contaminated caves-three new species of ectoparasitic fungi (Ascomycota: Laboulbeniales) from blaniulid millipedes (Diplopoda: Julida) and inferences about their transmittal mechanisms
Fig. 4 A freshly killed male Archiboreoiulus pallidus with a group of T. triandrus (arrow) on the right mandible. Inset: close-up of mandibular 'parrot bill' and fungi. Scale bar 0.5 mm
Fig. 5 P in Deep-sea Kinorhyncha: two new species from the Guinea Basin, with evaluation of an unusual male feature
Fig. 5 P. farinellii sp. nov. Differential interference contrast photographs. a–c and g Holotypic female. d–f and h Paratypic male. a Ventral view. b Dorsal view. c Dorsal view of anterior margin of segment 1. d Ventral view of segment 1. e Right sternal plates of segment 2. f Ventral view of segment 5. g Right sternal plates of segments 8 and 9. h Ventral view of
Fig. 4 in Deep-sea Kinorhyncha: two new species from the Guinea Basin, with evaluation of an unusual male feature
Fig. 4 Line art illustrations of P. farinellii sp. nov. a Female, ventral view. b Female, dorsal view. c Male, segments 10 and 11, ventral view. Scale bar 100 μm. cr cuticular ridge, cs cuticular scar, ica intracuticular atria, lds laterodorsal seta, ldss laterodorsal sensory spot, lvs lateroventral seta,
Fig. 1 in Deep-sea Kinorhyncha: two new species from the Guinea Basin, with evaluation of an unusual male feature
Fig. 1 Map showing the sampling areas of R/V Meteor and the two sampling localities, M63/2 79 and M63/2 98
Fig. 3 in Deep-sea Kinorhyncha: two new species from the Guinea Basin, with evaluation of an unusual male feature
Fig. 3 Holotypic female of P. nubilis sp. nov. Differential interference contrast photographs. a Ventral view. b Dorsal view. c Dorsal placids and dorsal anterior margin of segment 1. d Ventral placids and ventral anterior margin of segment 1. e Dorsal view of segments 1 and 2. f Dorsal view of segments 8 and 9. g Ventral view of segments 10 and 11. h Right sternal plates of segments 5 and 6. i Dorsal view of segment 10. Scale bar a and b
Fig. 1 in New information on the evolution of mating behaviour in Sepsidae (Diptera) and the cost of male copulations in Saltella sphondylii
Fig. 1 Evolution of behavioural characters modified from Puniamoorthy et al. (2009) on the phylogenetic tree of Sepsidae based on the molecular data from Puniamoorthy et al. (2008) and Su et al. (2008) (ACCTRAN: black symbols non-homoplasious; open symbols homoplasious changes)
FIGURE 6. Magnolia heribertoi. A. Leaves. B. Flower starting male phase. C. Seeds. D in Three new Mesoamerican species of Magnolia (M. sect. Talauma, Magnoliaceae) from the Chimalapas-Uxpanapa region, Mexico
FIGURE 6. Magnolia heribertoi. A. Leaves. B. Flower starting male phase. C. Seeds. D. Top: from left to right, three sepals, three outer petals and three inner petals; bottom: stamens. E. Fruit. F. Multi-carpellate irregular mass detached from fruit axis. A, C, E and F from Hernández G. 2302; B and D from Vázquez-García et al. 9152. Photographs by A. Vázquez.
FIGURE 2. Lomandra tenuis. A. Tufted plant. B. Leaf tips. C. Male flower. D. Female flower. E in Two new species of Lomandra (Asparagaceae: Lomandroideae) from north Queensland, Australia
FIGURE 2. Lomandra tenuis. A. Tufted plant. B. Leaf tips. C. Male flower. D. Female flower. E. Fruits. Photos by B. Gray.
FIGURE 1. Lomandra scabrifolia. A. Tufted plant. B. Leaf tips. C. Male flowers. D. Female flowers. E in Two new species of Lomandra (Asparagaceae: Lomandroideae) from north Queensland, Australia
FIGURE 1. Lomandra scabrifolia. A. Tufted plant. B. Leaf tips. C. Male flowers. D. Female flowers. E. Fruit. Photos by B. Gray.
FIGURE 1 in A new species of Etrocorema from Yunnan, China, with a redescription of the male of E. hochii (Wu, 1938) (Plecoptera: Perlidae)
FIGURE 1. Etrocorema wui sp. nov. (male). A. Head and pronotum, dorsal view; B. Terminalia, ventral view; C. Terminalia, dorsal view; D. Hemitergal lobes, dorsal view.
ScienceDex guides
Understand access before you commit
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.