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Figure 93–99. 93, 96 in The wasp genus Sphex in Sub-Saharan Africa (Hymenoptera: Sphecidae)
Figure 93–99. 93, 96. Habitus of ♀. 94–95, 97. Habitus of ♂. 93. Sphex pseudopraedator sp. nov. 94. S. schoutedeni schoutedeni Kohl, 1913. 95. S. stadelmanni stadelmanni Kohl, 1895. 96– 97. S. stadelmanni rufus subsp. nov. 98. Geographic distribution of S. pseudopraedator sp. nov. 99. Geographic distribution of S. schoutedeni schoutedeni (red); S. schoutedeni malawicus subsp. nov. (blue); S. stadelmanni stadelmanni (yellow); S. stadelmanni rufus subsp. nov. (purple).
Text-fig. 8. SEM (a, b) and SRXTM (c, d) images of fruit associated with Miranthus elegans and Miranthus kvacekii; Mira locality, Portugal. a: Apical view of capsular fruit with five, partly open valves revealing the enclosed reticulate seeds (arrows). b: Detail of fruit wall showing an enclosed seed (arrow). c: Transverse section (orthoslice xy1200) of fruit showing central column (cc) of placenta and numerous angular and bitegmic seeds; note that the outer integument (black arrow) is thicker than inner integument (white arrow). d: Longitudinal section (orthoslice yz1239) of fruit showing perigynous attachment of calyx, central column (cc) of the placenta and sections through seeds. Specimen, Mira 99-S156331 (a–d). Scale bars = 600 µm (a, c, d), 200 µm (b). in Early Flowers Of Primuloid Ericales From The Late Cretaceous Of Portugal And Their Ecological And Phytogeographic Implications
Text-fig. 8. SEM (a, b) and SRXTM (c, d) images of fruit associated with Miranthus elegans and Miranthus kvacekii; Mira locality, Portugal. a: Apical view of capsular fruit with five, partly open valves revealing the enclosed reticulate seeds (arrows). b: Detail of fruit wall showing an enclosed seed (arrow). c: Transverse section (orthoslice xy1200) of fruit showing central column (cc) of placenta and numerous angular and bitegmic seeds; note that the outer integument (black arrow) is thicker than inner integument (white arrow). d: Longitudinal section (orthoslice yz1239) of fruit showing perigynous attachment of calyx, central column (cc) of the placenta and sections through seeds. Specimen, Mira 99-S156331 (a–d). Scale bars = 600 µm (a, c, d), 200 µm (b).
Figs 96–99 in Review of the genus Anaphes Haliday, 1833 (Hymenoptera: Mymaridae) in Russia, part 1: subgenus Anaphes s. str.
Figs 96–99. Anaphes (Anaphes) stygius, female (Fryazevo, Noginskiy rayon, Moskovskaya oblast', Russia). 96) Antenna, 97) wings, 98) ovipositor, 99) metatibia and metatarsus.
Figures 95–99 in Scorpions of the Horn of Africa (Arachnida Scorpiones) Part XXVIII Scorpions of Djibouti
Figures 95–99. Hemiscorpius lipsae sp. n. female holotype, carapace and tergites I–III (95), sternopectinal region and sternites III–IV (96), metasoma and telson, lateral (97), dorsal (98), and ventral (99) views. Scale bar: 10 mm (73–75).
Figs 91–99. Dorsal views. 91 in New World genera of Galerucinae Latreille, 1802 (tribes Galerucini Latreille, 1802, Metacyclini Chapuis, 1875, and Luperini Gistel, 1848): an annotated list and identification key (Coleoptera: Chrysomelidae)
Figs 91–99. Dorsal views. 91. Aristobrotica allardi (Jacoby, 1887). 92. Hyperbrotica ebraea (Fabricius, 1787). 93. Hystiopsis beniensis Blake, 1966. 94. Metrobrotica geometrica (Erichson, 1847). 95. Rachicephala vittatipennis (Jacoby, 1887). 96. Neobrotica variabilis Jacoby, 1887. 97. Cerotoma arcuata (Olivier, 1791). 98. Potamobrotica trifasciata Blake, 1966, holotype. 99. Eucerotoma sp.
Fig. 99. FeMale Agroeca kltina n in Family Clubionidae Wagner- Genera Alaeho, Castianeira, Agroeca, Phrurolithus & Scotinella
Fig. 99. FeMale Agroeca kltina n. sp. (a); epigynuM (b); sternuM, labiuM, and Maxillae (c); cheliceral teeth (d);and ventral tibia I (e).
FIG. 99 in Form and function of the pelvic girdle of Thalattosuchia and Dyrosauridae (Crocodyliformes)
FIG. 99. — Comparison of hind fin shapes in three different clades of marine reptiles:A, Thalattosuchia; B, Ichthyosauria;C, Plesiosauria.
Dataset: 99 Acquisition Group Inc. (NNAGR) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: 99 Acquisition Group Inc. (NNAG) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: 99 Acquisition Group Inc. (NNAGU) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: 99 Acquisition Group Inc. (NNAGW) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Figs 96–99 in Systematic Redefinition Of Taxa Belonging To The Genera Ahermodontus Báguena, 1930 And Ammoecius Mulsant, 1842, With Description Of The New Genus Vladimirellus (Coleoptera: Aphodiidae)
Figs 96–99. Habitus of: 96 = Ammoecius incultus (PETROVITZ, 1961) (male, length 3.0 mm, South Africa: S. W. Cape, Gansbaa 10 km NE), 97 = A. terminatus HAROLD, 1869 (male, length 3.5 mm, South Africa: S. W. Cape, Brackfontein farm), 98 = A. mimus (PÉRINGUEY, 1901) (male, length 4.5 mm, South Africa: Cape, Karroo, Olifantsulei farm), 99 = A. lugubris BOHEMAN, 1857 (male, length
Figs 94–99 in DIPTERA OF THAILAND A summary of the families and genera with references to the species representations
Figs 94–99. Cyamops fumipennis sp. n., paratype male, genitalia. 94 = pregenital sclerites in ventral view, 95 = left surstylus, broadest extension (almost caudal view), 96 = ejaculatory apodeme, dorsal view, 97 = same, lateral view, 98 = right surstylus, broadest ventral view, 99 = same, broadest caudal
Figs 99–103 in Revision Of The Genus Amygdalops Lamb, 1914 (Diptera, Anthomyzidae) Of The Oriental, Australasian And Oceanian Regions
Figs 99–103. Amygdalops nigrinotum SUEYOSHI & ROHÁČEK, male (Figs 99, 100, 103 – paratype, Japan; Figs 101, 102 – Seychelles). 99 = external genitalia, caudal view, 100 = same, lateral view, 101 = transandrium, caudal view, 102 = aedeagal complex, lateral view, 103 = gonostylus, sublateral view (widest extension). Scales: Fig. 103 = 0.05 mm, others = 0.1 mm. All according to ROHÁČEK (2004)
Figures 98–106. Stricosus and Thalassiosira. Figs 98–103. Stricosus harrisonii. Figs 98, 99. Living cells showing plastids with pyrenoids. Figs 100, 101 in Marine benthic diatoms of Guam: new records, Dictyoneis apapae sp. nov., and updates to the checklist
Figures 98–106. Stricosus and Thalassiosira. Figs 98–103. Stricosus harrisonii. Figs 98, 99. Living cells showing plastids with pyrenoids. Figs 100, 101. Acid cleaned valves in LM and SEM. Fig. 102. External apex showing triangular hyaline area, two spines, rimoportula opening, and ocellulimbus with at least 7 rows of pores (contrast Fig. 62, Hyalosynedra). Fig. 103. Apex internal view showing symmetrical rimoportula (arrow). Figs 104–106. Thalassiosira nanolineata. Fig. 104. Valve in LM at two focal planes. Fig. 105, 106. External and internal aspects in SEM, showing central fultoportulae (F) and rimoportula (R) (arrows). Scale bars: Figs 98, 100, 101 = 20 µm, Fig 104 = 10 µm, Figs 99, 103, 105, 106 = 5 µm, Fig. 102 = 2 µm.
Figs 99–101 in Review Of The Genus Paraploderus Herman, 1970 (Coleoptera: Staphylinidae: Oxytelinae)
Figs 99–101. Habitus of Paraploderus species. 99 = P. fauveli sp. n., 100 = P. hammondi sp. n., 101 = P. loebli sp. n.
Figs 88–99 in Преąваритеλьная Гипотеза Об Истории Поąсемейства Gryllinae (Orthoptera: Gryllidae) В Америке И Новые Таксоны Поąтрибы Anurogryllina И Роąа
Figs 88–99. Anurogryllus and Megalogryllus, male: 88–93 — A. (Urogryllus) pantanal sp. nov.; 94–96 — A. (U.) mataracu sp. nov.; 97–99 — M. (Gigantogryllus) neotropicus (Gor.). Genitalia from above (88, 91, 94, 97), from below (89, 92, 95, 98) and from side (90, 93, 96, 99)
Fig. 3 in A modern type of ant-like stone beetle larva preserved in 99-million-year-old Kachin amber (Coleoptera: Staphylinidae, Scydmaeninae)
Fig. 3 – Schematic restorations of ant-like stone beetles. A – The new fossil (based on Fig. 1); not to scale. B – Stage 2 larva of the extant species Stenomastigus longicornis (based on Jałoszyński & Kilian 2016 figs 1–4 p. 153); not to scale; note the similarities to the fossil larva. C–G – Restorations of different fossils, all to the same scale for size comparison. C–E – Fossils of adult ant-like stone beetles. C) Clidicostigus arachnipes (based on Jałoszyński et al. 2017 fig. 3A p. 114). D) Cascomastigus monstrabilis (based on Yin et al. 2017b fig. 1a p. 2). E) Cascomastigus minor (based on Yin et al. 2018b fig. 2A; width of body estimated based on the other species). F) The new fossil (same as A), but to scale. G) Estimated size of a possible stage 3 larva following the stage 2 larva which the new fossil presumably represents (by simply resizing the latter to 200%).
Fig. 2 – Specimen SNHMB.G 8109, Kachin amber. A – Ventral view. B in A modern type of ant-like stone beetle larva preserved in 99-million-year-old Kachin amber (Coleoptera: Staphylinidae, Scydmaeninae)
Fig. 2 – Specimen SNHMB.G 8109, Kachin amber. A – Ventral view. B – Detail of head, ventral. C – Colour-marked version of B. D – Detail of trunk appendage. Abbreviations: cl = claw; cx = coxa; de = distal visible element of maxillary palp; fe = femur; gl = possible galea; li = labium; lr = labrum; md = mandible; pe = proximal visible element of maxillary palp; pm = proximal region of maxilla (stipes?); ti = tibio-tarsus; tr = trochanter.
Figures 88–99 in The genus Vachoniolus (Scorpiones: Buthidae) in Oman
Figures 88–99: Pedipalp segments of Vachoniolus, species, viewed under UV fluorescence. 88–90, V. batinahensis, sp. nov., holotype male; 91–93, V. gallagheri, sp. nov., holotype male; 94–96, V. globimanus, male from Barik; 97–99, V. iranus, male from Iran. 88, 91, 94, 97: pedipalp femur, dorsal aspect; 89, 92, 95, 98: pedipalp patella, dorsal aspect; 90, 93, 96, 99: pedipalp chela, external aspect. Scale bar: 88–89, 99: 2.0 mm; 90: 2.4 mm; 91–92: 1.7 mm; 93, 96: 2.7 mm; 94–95: 2.1 mm; 97–98: 1.3 mm.
ScienceDex guides
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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.