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Fig. 4 in New genera and species of the Oriental mirine plant bugs from Southeast Asia, with six new combinations (Insecta: Heteroptera: Miridae: Mirinae: Mirini)
Fig. 4. Habitus images of Sundacapsus flavonitidus (A–C) and S. kinabaluensis (D–E). A, D, male in dorsal view; B, E, female in dorsal view; C, female in ventral view.
Fig. 1 in New genera and species of the Oriental mirine plant bugs from Southeast Asia, with six new combinations (Insecta: Heteroptera: Miridae: Mirinae: Mirini)
Fig. 1. Habitus images (A–C) of Malayamiridius nigrotenuis and environments on which the (UV lighting) sampling sites of the new mirines faced (D–E). A, M. nigrotenuis, holotype male from Perak, Malaysia; B, ditto, female in ventral view; C, ditto, male in ventral view; D, tropical rain forest of the type locality (Bukit Larut, Perak, Malaysia in January 1990); F, Brastagi, N. Sumatra, type locality of Sundacapsus flavonitidus (December 1989).
Fig. 3 in New genera and species of the Oriental mirine plant bugs from Southeast Asia, with six new combinations (Insecta: Heteroptera: Miridae: Mirinae: Mirini)
Fig. 3. Male (A–D) and female (E–F) genitalia of Malayamiridius nigrotenuis. A, apex of pygophore in dorsal view; B, right paramere; C, D, endosoma; E, genital chamber, ventral view; F, posterior wall of bursae, anterior view. Scale bars = 0.1 mm.
FIG. 7 in A Remarkable New Genus and New Species of the Plant Bug (Heteroptera: Miridae: Phylinae), Inhabiting Psyllid Leaf Margin Roll Gall on Indian Banyan, Ficus benghalensis
FIG. 7. Minute pirate bugs, Montandoniola spp. (Anthocoridae: Oriini) and mirid bugs (Deraeocorinae) associated with leaf-roll gall produced by Gynaikothrips spp. (Thysanoptera: Tubulifera) (B and E) on Ficus microcarpa in Okinawa, Japan (A, C−D), Nakhon Nayok, Thailand (B), and Siem Reap, Cambodia (F), and termatophyline mirid from Nagasaki, Japan (G). A. Typical leaf-roll (or curl) galls (red arrow). B. Adult (blue arrow) and final instar nymph (yellow arrow) of Montandoniola sp. (possibly undescribed) with colonized Gynaikothrips sp. C, D. Montandoniola thripodes Bergroth, male adult. E. Gall-making thrips, Gynaikothrips ficorum (Marchal), adult. F. Fingulus sp. (Deraeocorini) (left) and Montandoniola sp. (right). G. Termatophylum hikosanum Miyamoto (Termatophylini), female adult on Ligustrum japonicum Thunb. (Oleaceae).
FIG 3. Scanning electron micrographs for Chimairacoris lakshmiae. A. Head, left ventrolateral view. B. Thoracic pleura, left lateral view. C. Profemur. D, E. Pretarsus. F in A Remarkable New Genus and New Species of the Plant Bug (Heteroptera: Miridae: Phylinae), Inhabiting Psyllid Leaf Margin Roll Gall on Indian Banyan, Ficus benghalensis
FIG 3. Scanning electron micrographs for Chimairacoris lakshmiae. A. Head, left ventrolateral view. B. Thoracic pleura, left lateral view. C. Profemur. D, E. Pretarsus. F. Male abdomen (sternum).
FIG. 2 in A Remarkable New Genus and New Species of the Plant Bug (Heteroptera: Miridae: Phylinae), Inhabiting Psyllid Leaf Margin Roll Gall on Indian Banyan, Ficus benghalensis
FIG. 2. Habitus images of Chimairacoris lakshmiae. A. Adult, dorsal habitus. B. Head and thorax in ventral view. C. Head and thorax in ventral view. D. Third instar nymph. E. Final (fifth) instar nymph.
FIG. 5 in A Remarkable New Genus and New Species of the Plant Bug (Heteroptera: Miridae: Phylinae), Inhabiting Psyllid Leaf Margin Roll Gall on Indian Banyan, Ficus benghalensis
FIG. 5. Male genitalia of Chimairacoris lakshmiae. Apical part of pygophore cracked along the midline appears to be a result of preparation or dissection, or this part may be weakly sclerotized (cf. fig. 3F).
FIG 1. A in A Remarkable New Genus and New Species of the Plant Bug (Heteroptera: Miridae: Phylinae), Inhabiting Psyllid Leaf Margin Roll Gall on Indian Banyan, Ficus benghalensis
FIG 1. A. Dorsal habitus of Chimairacoris lakshmiae, adult. B. Same, fifth instar nymph. C. Eggs, chorion exposed on gall surface. D. Eggs laid in a gall. E. Ficus benghalensis, leaf-margin roll gall. F. Chimairacoris lakshmiae, adult female on a gall. G. A gall-making psyllid, Trioza sp., aggregation of immature forms and damaged leaf. H. Trioza sp., adult. I. A mealybug, Phenacoccus parvus Morrison, female.
FIG 4 in A Remarkable New Genus and New Species of the Plant Bug (Heteroptera: Miridae: Phylinae), Inhabiting Psyllid Leaf Margin Roll Gall on Indian Banyan, Ficus benghalensis
FIG 4. Images made by stereoscopic microscope (A−B) and compound microscope (C−E) for Chimairacoris lakshmiae. A. Thoracic pleuron, left lateral view. B. Metafemur. C. Pretarsus. D. Phallotheca. E. Apical part of endosoma.
Figs 28–35. Randallopsallus spp., male genitalia. 28–32 – R. paracastaneae Yasunaga, 2013 in Two new species of the phyline plant bug genus Randallopsallus from Southeast Asia (Hemiptera: Heteroptera: Miridae)
Figs 28–35. Randallopsallus spp., male genitalia. 28–32 – R. paracastaneae Yasunaga, 2013: 28 – pygophore in dorsal view, 29 – right paramere, 30 – left paramere, 31 – phallotheca, 32 – endosoma; 33–35 – R. malayanus sp. nov.: 33 – apex of pygophore in dorsal view, 34 – phallotheca, 35 – endosoma.
Figs 48–54. Scanning electron micrographs for Randallopsallus spp. 48–50 – R in Two new species of the phyline plant bug genus Randallopsallus from Southeast Asia (Hemiptera: Heteroptera: Miridae)
Figs 48–54. Scanning electron micrographs for Randallopsallus spp. 48–50 – R. berastagi sp. nov., ♀: 48 – head and thorax, left lateral view, 49 – thoracic pleura and scent efferent system, 50 – metatarsi; 51–54 – R. paracastaneae Yasunaga, 2013, ♀: 51 – head and thorax, left lateral view, 52 – thoracic pleura and scent efferent system, 53 – metatarsi, 54 – pretarsus of foreleg.
Figs 36–47 in Two new species of the phyline plant bug genus Randallopsallus from Southeast Asia (Hemiptera: Heteroptera: Miridae)
Figs 36–47. Randallopsallus spp. and Hypseloecus castaneus Yasunaga, Yamada & Artchawakom, 2015, female genitalia: 36–40 – R. berastagi sp. nov.: 36 – bursa copulatrix in dorsal view, 37 – ditto in ventral view, 38 – sclerotized ring, 39 – medioventral extension of ventral labiate plate, 40 – posterior wall; 41–43 – R. malayanus sp. nov.: 41 – bursa copulatrix in dorsal view, 42 – posterior wall, 43 – medioventral extension of ventral labiate plate; 44–46 – R. paracastaneae Yasunaga, 2013: 44 – posterior wall, 45 – bursa copulatrix in dorsal view, 46 – medioventral extension of ventral labiate plate; 47 – Hypseloecus castaneus: bursa copulatrix in dorsal view. Scale bars 0.2 mm.
Figs 18–27 in Two new species of the phyline plant bug genus Randallopsallus from Southeast Asia (Hemiptera: Heteroptera: Miridae)
Figs 18–27. Randallopsallus spp., head in frontal view (18–21), scent efferent system (22–24), and pro- (27), meso- (26) and metatarsus (25). 18, 19, 22, 25 – R. malayanus sp. nov.; 20, 23, 26 – R. berastagi sp. nov.; 21, 24, 27 – R. paracastaneae Yasunaga, 2013.
Figs 6–17 in Two new species of the phyline plant bug genus Randallopsallus from Southeast Asia (Hemiptera: Heteroptera: Miridae)
Figs 6–17. Habitus images of Randallopsallus spp. (6, 9, 10 – dorsal, 7, 8, 12–13 – ventral, 14–17 – left lateral views). 6–8, 14 – R. malayanus sp. nov. 9–10, 15 – R. berastagi sp. nov. 11–13, 16–17 – R. paracastaneae Yasunaga, 2013.
Figs 1–6 in Two new species of the phyline plant bug genus Randallopsallus from Southeast Asia (Hemiptera: Heteroptera: Miridae)
Figs 1–6. Habitus images of phyline plant bugs, live adult individuals. 1 – Randallopsallus paracastaneae Yasunaga, 2013 (all attracted to UV light trap) (SERS, Thailand), 2–3 – Hypseloecus castaneus Yasunaga, Yamada & Artchawakom, 2015 (2 – J, Chaiyaphum, Thailand; 3 – ♀, Nakhon Nayok, Thailand), 4 – Sthenaridea piceonigra (Motschulsky, 1863) (J, Yangon, Myanmar), 5 – Psallus edoensis Yasunaga & Vinokurov, 2000 (♀, Tokyo, Japan).
Text-fig. 2. ONM T-68, Arsinoitherium cf. zitteli right upper molar fragment from the divide between Oued Cherichera and Oued Grigema, Central Tunisia. a) distal view (apical part towards bottom of page), b) lingual view (apex down, distal surface to right of page) (note the almost vertical enamel-dentine junction), c) occlusal view (lingual part towards top of page). in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 2. ONM T-68, Arsinoitherium cf. zitteli right upper molar fragment from the divide between Oued Cherichera and Oued Grigema, Central Tunisia. a) distal view (apical part towards bottom of page), b) lingual view (apex down, distal surface to right of page) (note the almost vertical enamel-dentine junction), c) occlusal view (lingual part towards top of page).
Text-fig. 8. Palaeogene terrestrial fossiliferous deposits of Africa. Note the position of the Tunisian Oligocene deposits, and their obvious interest in terms of geographic position and age (data for the Palaeogene of North Africa are from Tabuce et al. 2000, 2001, 2011, Delmer et al. 2006, Coster et al. 2012, Yans et al. 2014, Solé et al. 2016). Note that Nakwai (Kenya) is no longer considered to be Oligocene. in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 8. Palaeogene terrestrial fossiliferous deposits of Africa. Note the position of the Tunisian Oligocene deposits, and their obvious interest in terms of geographic position and age (data for the Palaeogene of North Africa are from Tabuce et al. 2000, 2001, 2011, Delmer et al. 2006, Coster et al. 2012, Yans et al. 2014, Solé et al. 2016). Note that Nakwai (Kenya) is no longer considered to be Oligocene.
Text-fig. 5. Fossil mammals from the Oligocene of Djebel Bou Gobrine, Tunisia, stored in the ONM Museum, El Charguia, Tunis. a–b) (?)Phiomia sp. maxilla containing parts of two upper molars (probably M1/ and M2/) (a – occlusal view, b – buccal view); c–d) anthracothere distal tibia in coarse sand matrix (c – plantar view, d – distal view) (all in scale). in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 5. Fossil mammals from the Oligocene of Djebel Bou Gobrine, Tunisia, stored in the ONM Museum, El Charguia, Tunis. a–b) (?)Phiomia sp. maxilla containing parts of two upper molars (probably M1/ and M2/) (a – occlusal view, b – buccal view); c–d) anthracothere distal tibia in coarse sand matrix (c – plantar view, d – distal view) (all in scale).
Text-fig. 1. Location map and original field label of T 68, fragment of arsinoithere upper molar from Oued Grigema, Tunisia. in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 1. Location map and original field label of T 68, fragment of arsinoithere upper molar from Oued Grigema, Tunisia.
Text-fig. 3. Right maxilla of a young adult individual of Arsinoitherium zitteli from the Fayum, Egypt (M 8802, NHM collection, London). The dotted lines indicate the homologous part preserved in the specimen from Grigema, Tunisia. a) stereo occlusal view, b) stereo buccal view, c) stereo lingual view. in Arsinoitherium (Embrithopoda) And Other Large Mammals And Plants From The Oligocene Of Tunisia
Text-fig. 3. Right maxilla of a young adult individual of Arsinoitherium zitteli from the Fayum, Egypt (M 8802, NHM collection, London). The dotted lines indicate the homologous part preserved in the specimen from Grigema, Tunisia. a) stereo occlusal view, b) stereo buccal view, c) stereo lingual view.
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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.