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Figures 19–20 in Two new species for Gonotrichidia from West and East Africa (Lepidoptera, Lasiocampidae, Lasiocampinae)

Figures 19–20. Distribution maps of Gonotrichidia spp. 19. G. eponine sp. n. 20. G. modestissima (white) and G. braedan sp. n. (green).

opencc-by-4.0Nov 2023View details →
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Figures 17–18 in Two new species for Gonotrichidia from West and East Africa (Lepidoptera, Lasiocampidae, Lasiocampinae)

Figures 17–18. ♀ genitalia of Gonotrichidia spp. (CGM/USTTB). 17. G. modestissima, DRC, Ekongo, GS 0785. 18. G. braedan sp. n., PT, Malawi, Nyika National Park, GS 29716. Scale bar – 1 mm.

opencc-by-4.0Nov 2023View details →
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Figures 41–45 in Two new species of the genus Rhynchobombyx from Central and East Africa (Lepidoptera, Lasiocampidae, Lasiocampinae)

Figures 41–45. ♀ genitalia of Rhynchobombyx spp. (CGM/USTTB, except 41 – NHMZ, 45 – MfNB). 41. Rh. levi sp. n., PT, Zimbabwe, Harare, GS Las-16. 42. Rh. julianjameseaton, PT, DRC, Ekongo camp, GS 0624. 43. Rh. madisonellafriend, HT, DRC, Ekongo camp, GS 0630. 44. Rh. avadomenicarocchio, PT, DRC, Ekongo camp, GS 0618. 45. Rh. nasuta, CAR, Mongoumba, GS 2017-031. Scale bar – 1 mm.

opencc-by-4.0Nov 2023View details →
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Figures 32–35 in Lithosiccia, a new genus with four new species from mainland Africa (Lepidoptera: Erebidae: Arctiinae: Lithosiini)

Figures 32–35. Lithosiccia spp. (32, 33), Palaeosiccia punctata (34), and Siccia caffra (35): female genitalia. Depositories of the specimens dissected: 32 and 34 in ANHRT; 33 in GMF-B; 35 in MfN.

opencc-by-4.0Aug 2023View details →
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Figures 29–31 in Lithosiccia, a new genus with four new species from mainland Africa (Lepidoptera: Erebidae: Arctiinae: Lithosiini)

Figures 29–31. Lithosiccia smithi (29), Palaeosiccia punctata (30), and Siccia caffra (31): male genitalia. Depositories of the specimens dissected: 29 and 30 in ANHRT; 31 in HNHM.

opencc-by-4.0Aug 2023View details →
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Figures 11–19 in Lithosiccia, a new genus with four new species from mainland Africa (Lepidoptera: Erebidae: Arctiinae: Lithosiini)

Figures 11–19. Lithosiccia smithi (11–15), Palaeosiccia punctata (16, 17), and Siccia caffra (18, 19): adults. Depositories of the specimens: 11–13 and 17 in ANHRT; 14 and 15 in GMF-B; 16 and 19 in NHMUK (©The Trustees of NHMUK); 18 in MfN.

opencc-by-4.0Aug 2023View details →
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Figures 2–10 in Lithosiccia, a new genus with four new species from mainland Africa (Lepidoptera: Erebidae: Arctiinae: Lithosiini)

Figures 2–10. Lithosiccia spp.: adults. Depositories of the specimens: 2 in CMNH (photo by V. Verdecia); 3 in GMFB; 4, 7 and 8 in NHMUK (©The Trustees of NHMUK); 5, 6, 9 and 10 in ANHRT.

opencc-by-4.0Aug 2023View details →
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Figure 1 in Lithosiccia, a new genus with four new species from mainland Africa (Lepidoptera: Erebidae: Arctiinae: Lithosiini)

Figure 1. Phylogenetic tree of the genus Lithosiccia from Afrotropics recovered from the ML analysis of COI barcodes.

opencc-by-4.0Aug 2023View details →
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Figure 2 in Long forgotten record of a freshwater leech on Madagascar indicates a host-associated dispersal event from continental Africa

Figure 2. General view and labels of F. Sikora's sample of Placobdelloides multistriatus (N = 2), Andrahomana, Southern Madagascar (ZIN Hirudinea 2227). (a) Specimen No 1 (red arrow shows a rupture at the ventral side). (b) Specimen No 2. (c) Original label with locality and host data (handwritten by F. Sikora in 1899). (d) Example of the word 'Andrahomana' from a handwritten letter of F. Sikora, Fort Dauphin, 17 December 1900 (Breure 2015, fig. 55c). (e) Original label with collection number (handwritten by F. Sikora in 1899 or later). (f) Two examples of a crossed out letter 'N' from a handwritten letter of F. Sikora, Fort Dauphin, 17 December 1900 (Breure 2015, fig. 55b). (g) Secondary label containing species name with a question mark (most likely handwritten by V. Plotnikov in 1904). (h) Secondary label (most likely handwritten by E. Lukin in 1960s-1970s). Scale bar = 1.0 mm (a-b). Photos: Tatyana A. Eliseeva and Iya G. Tsiplenkina.

opencc-by-4.0Mar 2023View details →
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Figure 3 in Long forgotten record of a freshwater leech on Madagascar indicates a host-associated dispersal event from continental Africa

Figure 3. External morphology of a Placobdelloides multistriatus specimen from F. Sikora's sample, Andrahomana, Southern Madagascar (ZIN Hirudinea 2227: specimen No 2). (a) Dorsal view. (b) Ventral view. (c) Anterior region (dorsal view). Abbreviations: MO, mouth; AS, anterior sucker; PS, posterior sucker; MS, traces of the median light (aureate) stripe; mg, male gonopore; and fg, female gonopore. Body somites are indicated by roman numerals; symbols a1, a2, and a3 indicate the number of annulus. Scale bars = 1.0 mm (a-b) and 0.5 mm (c). Photos: Tatyana A. Eliseeva; graphics: Ivan N. Bolotov.

opencc-by-4.0Mar 2023View details →
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Figure 1 in Long forgotten record of a freshwater leech on Madagascar indicates a host-associated dispersal event from continental Africa

Figure 1. Range map of Placobdelloides multistriatus. The light red filling indicates country-level records from continental Africa and Western Asia (Oosthuizen 1979; Al-Safadi and El-Shimy 1993; Leslie et al. 2011); the red star indicates F. Sikora's record from Madagascar discussed herein. Map: Mikhail Y. Gofarov.

opencc-by-4.0Mar 2023View details →
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Fig. 1 in Stable isotope analysis spills the beans about spatial variance in trophic structure in a fish host - parasite system from the Vaal River System, South Africa

Fig. 1. Map of the Vaal River showing the position of sampling sites (I: below Grootdraai Dam; II: Vaal Dam; III: below Vaal River Barrage; IV: Bloemhof Dam; V: below Vaalharts Weir; VI: Douglas Weir) along the Vaal River. The block (B) indicates the position of the Vaal River within South Africa and insert A indicates the position of South Africa shaded on the African continent.

opencc-by-4.0Aug 2020View details →
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Fig. 4 in Resolution of the identity of three species of Diplostomum (Digenea: Diplostomidae) parasitising freshwater fishes in South Africa, combining molecular and morphological evidence

Fig. 4. Metacercariae of Diplostomum spp. from eye lenses of different fish hosts; (a) Diplostomum sp. from Tilipia sparrmanii, live, ventral view (b) Diplostomum sp. from Tilipia sparrmanii, fixed, ventral view (c) Diplostomum sp. from Tilipia sparrmanii, live, sunken pseudosuckers (arrowhead) (hologenophore, GenBank MN813526, MN813534 and MN808616) (d) Diplostomum sp. 14 sensu Locke et al. (2015) from Synodontis zambezensis, live, ventral view (hologenophore, GenBank MN813541) (e) Diplostomum sp. 14 sensu Locke et al. (2015) from Oreochromis mossambicus, fixed, ventral view, small excretory granules (arrowhead) (hologenophore, GenBank MN813531, MN813539 and MN808621) (f) Diplostomum sp. 14 sensu Locke et al. (2015) from Synodontis zambezensis, fixed, ventral view, large excretory granules (arrowhead) (hologenophore, GenBank MN813541) (g) Diplostomum sp. 16 sensu Locke et al. (2015) from Pseudocrenilabrus philander, fixed, ventral view, everted pseudosuckers (arrowhead) (hologenophore, GenBank MN813532, MN813547 and MN808627) (h) Diplostomum sp. 16 sensu Locke et al. (2015) from Pseudocrenilabrus philander, fixed, ventral view, inverted pseudosuckers (arrowhead) (hologenophore, GenBank MN813533, MN813548 and MN808628) (i) Diplostomum sp. 16 sensu Locke et al. (2015) from Pseudocrenilabrus philander, live metacercariae inside of fish lens. Scale bars: a–h = 100 μm; i = 700 μm.

opencc-by-4.0Apr 2020View details →
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Fig. 3 in Resolution of the identity of three species of Diplostomum (Digenea: Diplostomidae) parasitising freshwater fishes in South Africa, combining molecular and morphological evidence

Fig. 3. Bayesian inference (BI) and maximum likelihood (ML) phylogram reconstructed using cox1 sequences for species of Diplostomum. Nodal support from BI and ML analyses indicated as BI/ML; only values> 0.90 (BI) and> 70 (ML) are displayed. Scale-bar indicates the expected number of substitution per site. Sequences generated in this study are in bold and indicated by blue rectangles. Codes with isolate information for newly generated sequences are provided in Table 3. Sequences derived from Africa are highlighted in blue, from Asia in purple, from Europe in orange, from North America in green (according to the map) and sequences reported from more than one continent are highlighted in black. Black arrows on the map demonstrate distribution of Diplostomum spathaceum and 'D. mergi Lineage 2' in both, Asia and Europe, and Diplostomum sp. 14 and Diplostomum sp. 16 in both, Africa and Asia. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Apr 2020View details →
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Fig. 2 in Resolution of the identity of three species of Diplostomum (Digenea: Diplostomidae) parasitising freshwater fishes in South Africa, combining molecular and morphological evidence

Fig. 2. Bayesian inference (BI) and maximum likelihood (ML) phylograms reconstructed using (a) partial 28S rDNA sequences (b) ITS1-5.8S-ITS2 sequences for species of Diplostomum. Nodal support from BI and ML analyses indicated as BI/ML; only values> 0.90 (BI) and> 70 (ML) are displayed. Scale-bar indicates the expected number of substitution per site. Sequences generated in this study are in bold and indicated by blue rectangles. Codes with isolate information for newly generated sequences are provided in Table 3. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Apr 2020View details →
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Fig. 1 in Resolution of the identity of three species of Diplostomum (Digenea: Diplostomidae) parasitising freshwater fishes in South Africa, combining molecular and morphological evidence

Fig. 1. Map illustrating the sampling localities on (a) River Riet in Mokala National Park (b) River Phongolo (Site 1, Site 2 and Nyamithi Lake) and the River Usuthu (Shokwe Pan) in Ndumo Game Reserve and (c) River Mooi (Boskop Dam) in Boskop Dam Nature Reserve, South Africa. The illustration was compiled in ArcGIS 10.6 (Available from https://support.esri.com/en/downloads).

opencc-by-4.0Apr 2020View details →
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Fig. 7 in Occurrence and characterisation of tongue worms, Linguatula spp., in South Africa

Fig. 7. Scanning electron microscopy of the nymph #8–5 from African buffalo: A) full view of the parasite; B) anterior end of the parasite showing the mouth and hooks; C) location of sensillae; D) right anterior dorsal accessory piece (white box), left anterior dorsal accessory piece (blue box) and annular spines (orange boxes); E & F) tip of the right anterior dorsal accessory piece; G) tip of the right posterior dorsal accessory piece; H) tip of the left anterior dorsal accessory piece; I) tip of the left posterior dorsal accessory piece; J) rows of annular spines on the mid-body region (ventral); K) pore (arrow) and annular spines in mid body region (ventral view); L) posterior end of the parasite (ventral view). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Apr 2020View details →
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Fig. 6 in Occurrence and characterisation of tongue worms, Linguatula spp., in South Africa

Fig. 6. Scanning electron microscopy of the nymph #8–2 from African buffalo: A) full view of the parasite; B) anterior end of the parasite showing the mouth, hooks, sensillae (the squares at the top of the image) and the sensory papilla (white square); C) & D) magnified view of the right and left sensillae, respectively; E) structure of the surface of the oral papilla; F to H) left anterior, right anterior and right posterior hooks, respectively; I) annular spines on the anterior ventral region; J) tips of the annular spines; K) pores and annular spine in mid body region (ventral); L) posterior end of the parasite (ventral view).

opencc-by-4.0Apr 2020View details →
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Fig. 3 in Occurrence and characterisation of tongue worms, Linguatula spp., in South Africa

Fig. 3. Scanning electron microscopy of an adult male Linguatula nuttali from Panthera leo. Colours and shapes in images are enlargement of the corresponding areas in the previous images: A) ventral view of the anterior end of the parasite; B) magnified view of the anterior end indicating location of the minute tentacles on the right side of the parasite; C) magnified view of the right tentacles. Note presence of minute structures around tentacles (arrows); D) Tentacles and the minute structures on the left side of the anterior end; E) mouth; F) magnified view of the most anterior right hook; G) magnified view of the posterior right hook; H) magnified view of a sensory papilla located lateral to the genital pore; I) genital pore; J) magnified view of the posterior left hook; K) arrangement of the annuli on the abdominal region of the parasites; L) magnified view of the border of the annuli in the abdominal region showing presence and arrangements of the scale like projections and pores (arrow); Note presence of multiple rows of scale like projections on the posterior of each annulus and a row of pores on the anterior part of each annulus; M) posterior end showing the terminal cleft (ventral view). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Apr 2020View details →
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Fig. 1. Linguatula nuttali female specimen collected from Panthera leo. A in Occurrence and characterisation of tongue worms, Linguatula spp., in South Africa

Fig. 1. Linguatula nuttali female specimen collected from Panthera leo. A) Anterior end, ventral surface. B) L. nuttali (on the right) compared to a specimen of L. serrata collected from a Canis familiaris in Australia (on the left). Note the differences in annuli and overall body shape. C) Posterior ends of L. nuttali (on the bottom) compared to a specimen of L. serrata collected from a C. familiaris in Australia (on the top). Note the deep cleft in the posterior end of L. nuttali compared to the posterior end of L. serrata. D) The posterior end of L. nuttali showing the deep cleft.

opencc-by-4.0Apr 2020View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record