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FIG. 2 in On the distinction of Atractocarpus heterophyllus (Montrouz.) Guillaumin & Beauvis. and A. bracteatus Schltr. & K.Krause (Rubiaceae): in search of the correct name for the type species of Atractocarpus Schltr. & K.Krause
FIG. 2. — Atractocarpus bracteatus Schltr. & K.Krause: A, female flower; B, longitudinal section of a female flower (corolla and stamens detached from hypanthium); C, detail of stipules at branch apex; D, entire fruit and longitudinal section of a fruit; E, transversal section of a fruit; F, entire seed and its longitudinal section; G, embryo. Scale bars: A-C, 1.5 cm; D, 6 cm; E, 1.5 cm; F, 5 mm; G, 2 mm. Based on Mouly 149 (P).
FIG. 1 in On the distinction of Atractocarpus heterophyllus (Montrouz.) Guillaumin & Beauvis. and A. bracteatus Schltr. & K.Krause (Rubiaceae): in search of the correct name for the type species of Atractocarpus Schltr. & K.Krause
FIG. 1. — Atractocarpus bracteatus Schltr. & K.Krause: A, view of a female individual in fruit; B, male inflorescence, and detail of a flower with ant; C, mature fruit. Scale bars: A, 10 cm; B, C, 1 cm. Based on pictures by Daniel & Irène Létocart (www.endemia.nc).
Figure 41 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figure 41. Aleiodes unipunctator (Thunberg), ex Apamea unanimis (Denis and Schiffermüller) (Noctuidae): (a) lateral, (b) dorsal and (c) ventral aspects, the latter showing the site of weak attachment as a hole.
Figure 40 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figure 40. Aleiodes albitibia (Herrich-Schaeffer), ex Notodonta dromedarius (Linnaeus) (Notodontidae): (a) lateral and (b) dorsal aspects, with anterior and posterior views also indicated.
Figure 39 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figure 39. Aleiodes sp., ex Eupithecia assimilata Doubleday (Geometridae): (a) lateral and (b) dorsal aspects.
Figures 34–38 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 34–38. Photographs of Clinocentrini, Stiropiini, and Yeliconini mummies. (34) Clinocentrus cunctator (Haliday), ex Anthophila fabriciana (Linnaeus) (Choreutidae), showing antero-ventral emergence. (35) Clinocentrus hungaricus Szépligeti, ex Ypsolopha vittella (Linnaeus) (Yponomeutidae). (36) Stiropius bucculatricis (Ashmead), ex Bucculatrix, partly exposed in situ in host cocoon showing ragged antero-dorsal emergence hole in the very thin transparent host mummy. (37) Yelicones delicatus Say ex Psorosina hammondi (Riley) (Pyralidae), showing anterodorsal adult emergence hole at left. (38) Yelicones koreanus Papp, ex pyralid larva, postero-dorsal adult emergence hole.
Figures 32, 33 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 32, 33. Photographs of gregarious Rogadini mummies. (32) Macrostomion gnathothlibi Shaw, ex Gnathothlibus erotus eras (Boisduval) (Sphingidae), with arrows indicating some of the emergence holes. (33) Aleiodes pallescens Hellén ex Cerura vinula (Linnaeus) (Notodontidae): (a) lateral and (b) dorsal aspects of mummy to show highly ordered alignment of individual Aleiodes pupation chambers.
Figures 29–31 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 29–31. Photographs of various Rogadini mummies. (29) Triraphis tricolor (Wesmael), ex Apoda limacodes (Hufnagel) (Limacodidae). (30) Triraphis tricolor, ex Apoda limacodes, an instar later than in Figure 29. (31) Rogas luteus Nees ex Apoda limacodes (prepupal, extracted from cocoon).
Figures 14–17 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 14–17. Reared female of Canalirogas sp. aff. balgooyi, Automontageẹ light micrographs. (14) Mesosoma, lateral view. (15) Metasomal tergites 1–3, dorsal view. (16) Metasomal tergites 4–6, dorsal view. (17) Apex of metasoma, lateral view, showing hypopygium and ovipositor.
Figures 18–28 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 18–28. Photographs of various Rogadini mummies with arrows indicating the emergence hole made by the adult parasitoid. (18) Megarhogas sp. ex Perina nuda (Fabricius) (Lymantriidae), India. (19) Megarhogas sp., India. (20) Rectivena sp., ex limacodid larva, Nigeria. (21) Spinaria sp., ex Sitora nidens Walker (Limacodidae), Java. (22) Batotheca sp., ex limacodid on Adhatoda vasica Nees (Acanthaceae) leaf, India. (23) Hemigyroneuron sp., ex unidentified species of Geometridae on toon leaf, India. (24) Aleiodes lymantriae Watanabe, ex. Lymantria dispar (L.) (Lymantriidae), Japan. (25) Aleiodes sp. ex Remigia repanda (Fabricius) (Noctuidae). (26) Aleiodes narangae (Rohwer) ex Naranga aenescens Moore (Noctuidae), on rice. (27) Aleiodes sp. ex Trichoplusia ni (Hubner) (Noctuidae), Thailand. (28) Canalirogas sp. aff. balgooyi ex unidentified 'nettle caterpillar' (5unidentified Lymantriidae) on clove, Sumatra.
Figures 10–13 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 10–13. Reared female of Canalirogas sp. aff. balgooyi, Automontageẹ light micrographs. (10) Habitus. (11) Head, dorsal view. (12) Head and anterior part of mesosoma, lateral view. (13) Mesosoma, dorsal view.
Figures 5–8 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 5–8. Rogasodes scytaloptericola sp. nov., Automontageẹ light micrographs. (5) Distal part of hind wing showing thickened vein 1-SR+M and basally curved vein SR. (6) Metasomal tergites 1–3, oblique dorsal aspect. (7) Habitus, lateral aspect. (8) Mummified host remains, posterior segments missing, showing its pale almost transparent nature.
Figures 1–4 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figures 1–4. Rogasodes scytaloptericola sp. nov., Automontageẹ light micrographs. (1) Head, lateral aspect. (2) Head, dorsal aspect. (3) Pronotum, mesoscutum and scutellum, dorsal aspect. (4) Mesosoma, lateral aspect.
Figure 9 in First host records for the rogadine genera Rogasodes Chen and He and Canalirogas van Achterberg and Chen (Hymenoptera: Braconidae) with description of a new species and survey of mummy types within Rogadinae s. str.
Figure 9. Rogasodes scytaloptericola sp. nov., drawing of fore wing venation showing interstitial vein cu-a. Note: the pterostigma is damaged and therefore the reconstructed image may not be that accurate.
Figure 2 in Types of cladoceran species described by Sven Ekman in the Swedish Museum of Natural History, with redescription of Daphnia cavicervix Ekman, 1900 (Daphniidae, Anomopoda, Cladocera)
Figure 2. Daphnia cavicervix, parthenogenetic female from unknown water body near Morro Chico, Chile. (A) Adult parthenogenetic female, lectotype; arrows show portions of ventral margin enlarged in (H–M); (B) posterodorsal region; (C) reticulation on valves; (D, E) head and rostrum; (F) head shield, dorsal view; (G) labrum; (H– M) armature of ventral margin of valve; (N) postabdomen; (O, P) postabdominal claw in outer and inner view; (Q) juvenile female, second instar; (R, S) its postabdominal claw and abdominal projections. Scale bars: 0.1 mm.
Figure 3 in Types of cladoceran species described by Sven Ekman in the Swedish Museum of Natural History, with redescription of Daphnia cavicervix Ekman, 1900 (Daphniidae, Anomopoda, Cladocera)
Figure 3. Daphnia cavicervix, female from unknown water body near Morro Chico, Chile. (A) Antenna II; (B, C) apical segments of exopod and endopod; (D) limb I; (E) limb II; (F, G) limb III and its inner-distal portion; (H, I) limb IV and its inner-distal portion; (J) limb V. Scale bars: 0.1 mm.
Figure 1 in Types of cladoceran species described by Sven Ekman in the Swedish Museum of Natural History, with redescription of Daphnia cavicervix Ekman, 1900 (Daphniidae, Anomopoda, Cladocera)
Figure 1. Daphnia cavicervix from unknown water body near Morro Chico, Chile. (A) Adult parthenogenetic female, lectotype; (B) its head; (C) juvenile female; (D) its head; (E) its postabdomen; (F) ephippial female; (G) sculpture of ephippium; (H) juvenile male, pre-reproductive instar; (I) its head; (J) adult male; (K) its head. Scale bars were not taken.
Figure 4 in Types of cladoceran species described by Sven Ekman in the Swedish Museum of Natural History, with redescription of Daphnia cavicervix Ekman, 1900 (Daphniidae, Anomopoda, Cladocera)
Figure 4. Daphnia cavicervix from unknown water body near Morro Chico, Chile. (A) Ephippial female; (B) sculpture of ephippium, marginal portion; (C) sculpture of ephippium, portion close to egg chamber; (D) sculpture on egg chamber; (E) juvenile male (pre-reproductive instar); (F) its antenna I; (G) distal portion of its limb I. Scale bars: 0.1 mm.
Figure 7 in The genera Myriochele and Myrioglobula (Polychaeta, Oweniidae) in Icelandic waters with the revision of type material of Myriochele heeri Malmgren, 1867, and the description of a new species
Figure 7. Three specimens from Greenland (USNM 51164) from Blake and Dean (1973). (A) Myriochele heeri in ventro-lateral showing the dorsolateral folds; (B) Myriochele indet. with the anterior end in process of regeneration and with ventral pharyngeal organ everted; (C) Myriochele aff. olgae in lateral view. dlcf, dorsolateral ciliary folds; vpo, ventral pharyngeal organ. Scale bars: 0.5 mm (A, B); 1 mm (C).
Figure 4 in The genera Myriochele and Myrioglobula (Polychaeta, Oweniidae) in Icelandic waters with the revision of type material of Myriochele heeri Malmgren, 1867, and the description of a new species
Figure 4. Anterior end of two Myriochele species studied in this work. (A, B) Myriochele heeri Malmgren, 1867 (BIOICE 2257) in lateral and ventral view; (C) Myriochele olgae Blake, 2000 (BIOICE 2152) in latero-ventral view (drawn without cover glass). In (B), the neck ciliated field is observed and notochaetae of chaetigers 4 and 5 are concealed by the body. Scale bars: 0.5 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.