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Figure 1 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)

Figure 1 – Freshly emerged adult male of Colotis lais reared from a larva collected on 19 December 2021 on a Cadaba aphylla shrub, north of the Dedeben Research Centre, Tswalu Kalahari, South Africa. The CRG reference number for this rearing is RFT21H78. Photo: R.F. Terblanche.

opencc-by-4.0Dec 2023View details →
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DATASET Stridulation sounds of the pacamã Lophiosilurus alexandri Steindachner, 1876 (Pseudopimelodidae), a threatened endemic Brazilian catfish

<p>This dataset contains acoustic files with sounds produced by the pacam&atilde; Lophiosilurus alexandri Steindachner, 1876. The details can be found in the related publication Raick et al. 2025.</p>

opencc-by-4.0Nov 2024View details →
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Fig. 26. Lycosa piochardi Simon, 1876, ten carapace molts shed between 9 Mar. 2018–1 Jun. 2020 in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 26. Lycosa piochardi Simon, 1876, ten carapace molts shed between 9 Mar. 2018–1 Jun. 2020, by a single specimen (HUJ INV-AR20813) in laboratory conditions. Scale bar = 10 mm. Photo by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Fig. 18. Lycosa piochardi Simon, 1876 in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 18. Lycosa piochardi Simon, 1876, paratype, ♀ (MNHN 1266, vial 2076). A. Epigyne, ventral view. B. Epigyne, dorsal view. C. Habitus, dorsal view. D. Habitus, ventral view. Scale bars A–B = 0.5 mm; C–D = 10 mm. Photos by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Fig. 17. Lycosa piochardi Simon, 1876, live females demonstrating common dorsal coloration morphs. A in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 17. Lycosa piochardi Simon, 1876, live females demonstrating common dorsal coloration morphs. A. Sandy morph, Midreshet Ben-Gurion. B. Dark brown morph, Mt. Gilboa. C. Light brown with dark brown median bands, Mt. Hermon. D. Light brown morph, Modi'in. Photos by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Fig. 15. Lycosa piochardi Simon, 1876 in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 15. Lycosa piochardi Simon, 1876, ♀♀, common ventral abdominal coloration morphs. A. Black patch reaches posterior tip (HUJ INV-AR20735). B. Black patch does not reach posterior tip (HUJ INV-AR20626). C. Black patch with shallow notch (HUJ INV-AR20763). D. Black patch with deep notch (HUJ INV-AR20913). E. Black patch divided (HUJ INV-AR20671). F. No black patch (HUJ INV-AR20803). Scale bars = 10 mm. Photos by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Fig. 13. Lycosa piochardi Simon, 1876 in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 13. Lycosa piochardi Simon, 1876, ♂ (HUJ INV-AR20948) right pedipalp (flipped) line drawings. A. Ventral view. B. Prolateral view. C. Retrolateral view. D. Distal view. Scale bars = 0.5 mm. Drawings by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Fig. 14. Lycosa piochardi Simon,1876 in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 14. Lycosa piochardi Simon,1876, size comparison of largest and smallest ♀♀ in the dataset. A. HUJ INV-AR20671. B. HUJ INV-AR20897. Scale bar = 5 mm. Photo by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Fig. 25. Lycosa piochardi Simon, 1876, habitat extremes. A in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 25. Lycosa piochardi Simon, 1876, habitat extremes. A. Alpine tragacanth steppe, Mt. Hermon. B. Natural woodland, Odem Forest. C. Sandy desert, western Negev. D. Dead Sea oasis, En Gedi. Photos by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Fig. 16. Lycosa piochardi Simon, 1876, natural history. A in Lycosa Latreille, 1804 (Araneae, Lycosidae) of Israel, with a note on Geolycosa Montgomery, 1904

Fig. 16. Lycosa piochardi Simon, 1876, natural history. A. Feeding on Pyrrhocoris apterus (Linnaeus, 1758), Mt. Gilboa. B. At the opening of a turretless burrow, central Negev. C. Female with egg sac, Midreshet Ben-Gurion. D. Turreted burrow sealed with silk, Midreshet Ben-Gurion. Photos by I. Armiach Steinpress.

opencc-by-4.0Jul 2022View details →
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Text-fig. 1. The pioneers of scientific palaeobotany whose ideas laid the foundations of how we now name plant fossil-taxa. a: Ernst von Schlotheim (1764 – 1821); b: Kaspar Maria von Sternberg (1761 – 1837), reproduced by permission from J. Kvaček (National Museum, Prague); c: Adolphe Brongniart (1801 – 1876). Adapted from Cleal and Thomas (2019: fig. 2.1). in Naming Of Parts: The Use Of Fossil-Taxa In Palaeobotany

Text-fig. 1. The pioneers of scientific palaeobotany whose ideas laid the foundations of how we now name plant fossil-taxa. a: Ernst von Schlotheim (1764 – 1821); b: Kaspar Maria von Sternberg (1761 – 1837), reproduced by permission from J. Kvaček (National Museum, Prague); c: Adolphe Brongniart (1801 – 1876). Adapted from Cleal and Thomas (2019: fig. 2.1).

opencc-by-4.0Dec 2021View details →
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Figs 169–174. Andrena nitidicollis Morawitz, 1876 in A revision of the Andrena (Hymenoptera: Andrenidae) fauna of Iran, with the description of 16 new species

Figs 169–174. Andrena nitidicollis Morawitz, 1876, ♀ (OÖLM). 169. Profile. 170. Face. 171. Scutum. 172. Propodeum. 173. Terga. 174. Terga, detail.

opencc-by-4.0Oct 2022View details →
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Figs 133–138. Andrena assimilis Radoszkowski, 1876 in A revision of the Andrena (Hymenoptera: Andrenidae) fauna of Iran, with the description of 16 new species

Figs 133–138. Andrena assimilis Radoszkowski, 1876, ♀, lectotype (ZMHB). 133. Label, detail. 134. Profile. 135. Face. 136. Scutum, detail. 137. Wing, detail. 138. Terga.

opencc-by-4.0Oct 2022View details →
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Figs 145–148. Andrena assimilis Radoszkowski, 1876 from Spain. 145 in A revision of the Andrena (Hymenoptera: Andrenidae) fauna of Iran, with the description of 16 new species

Figs 145–148. Andrena assimilis Radoszkowski, 1876 from Spain. 145. ♀ (OSCA), wing, detail (Setcases, Girona). 146. ♀ (OSCA), wing, detail (Puerto de Somosierra, Madrid). 147. ♀, on Eryngium sp. (Trevélez, Sierra Nevada, Granada). 148. ♀, on Rubus sp. (Navacepeda de Tormes, Ávila).

opencc-by-4.0Oct 2022View details →
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Figure 14. Molpadia violacea Studer, 1876 photos and SEM ossicle images. a in Sea cucumbers of the Kerguelen Plateau, with descriptions of new genus and species (Echinodermata: Holothuroidea)

Figure 14. Molpadia violacea Studer, 1876 photos and SEM ossicle images. a, left lateral view of holotype (oral end left) (ZMB 2070) (bottom left insert with photo of tentacles); b, right lateral view of HIMI specimen of Molpadia violacea (NMV F165737) (insert with drawing of radial (left) and inter-radial plates of the calcareous ring); c, d, SEM images of fusiform rod ossicles from HIMI specimen of Molpadia violacea (NMV F165737); c, from mid-body wall (insert with drawings of table disc and spire); d, from caudal body wall.

opencc-by-4.0Dec 2015View details →
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Fig. 1 in Induced spawning and reproductive variables of the catfish Lophiosilurus alexandri Steindachner, 1876 (Siluriformes: Pseudopimelodidae)

Fig. 1. Linear relationships of total fecundity (TF), initial fertility (IF) and final fertility (FF) to variations in body weight (BW) (a) and total length (TL) (b), obtained simultaneously from nine Lophiosilurus alexandri females submitted to hypophysation at Três Marias Hydrobiology and Hatchery Station in January 1997.

opencc-by-4.0Sep 2013View details →
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Fig. 2 in Induced spawning and reproductive variables of the catfish Lophiosilurus alexandri Steindachner, 1876 (Siluriformes: Pseudopimelodidae)

Fig. 2. Macro and microscopic morphology of the ovaries (a-b) and testis (c-d) mature of the Lophiosilurus alexandri. (a) The mature ovaries were bulky, highly vascularized, yellowish and presenting large vitellogenic oocytes. (b) Histological section of the vitellogenic oocyte characterized by the presence of acidophilic yolk globules (Y) throughout the ooplasm and nucleus (N) migrating toward the animal pole. (c) Mature testis (arrow) are whitish, turgids, vascularized and with well developed fringes (Insert showing fringes). (d) Mature testis showing seminiferous tubules (ST) filled by spermatozoa (SPZ). (a, c and insert) bars 1cm; (b and d) stained with hemotoxylin-eosin and bars 100 μm.

opencc-by-4.0Sep 2013View details →
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Fig. 1 in Effect of water temperature and prey concentrations on initial development of Lophiosilurus alexandri Steindachner, 1876 (Siluriformes: Pseudopimelodidae), a freshwater fish

Fig. 1. Total length of Lophiosilurus alexandri after 15 days of exogenous feeding. The graph "A" and "B" showed the best temperature for the prey concentration P 700 and P 1,300, respectively.

opencc-by-4.0Dec 2014View details →
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Fig. 2 in Effect of water temperature and prey concentrations on initial development of Lophiosilurus alexandri Steindachner, 1876 (Siluriformes: Pseudopimelodidae), a freshwater fish

Fig. 2. Mean body weight of Lophiosilurus alexandri after 15 days of exogenous feeding. Different letters represent significant differences (P&lt;0.05) among temperatures (a, b, c and d) and prey concentrations (x and y).

opencc-by-4.0Dec 2014View details →
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Fig. 2 in Allometric larval growth of the bottom-dwelling catfish Lophiosilurus alexandri Steindachner, 1876 (Siluriformes: Pseudopimelodidae)

Fig. 2. Mean ± standard deviation of total length of Lophiosilurus alexandri larvae in relation to age.

opencc-by-4.0Dec 2015View details →

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