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41,236 results for “Review of reviews”
Figure 211 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figure 211: Phylogenetic tree with topology T, retrieved by cladistic analyses of 43 morphological characters under equal weights and 0 implied weights with concavity constants k = 10 – 30 (IW), and k = 4 – 30 (IW*). Boxes indicate unambiguous synapomorphies, filled boxes unique (derived once with reversals allowed), open boxes homoplasious synapomorphies (derived more than once). Numbers above nodes are character identifiers, those below nodes character states. Gray panels 1, 2 and 3: clades of interest.
Figures 52–53 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 52–53: Orthochiroides somalilandus sp. n., localities. Figure 52. Type locality, Somaliland, Mader Mage vill., between Eregavo and Maid. Figure 53. Somaliland, 5 km S of Maid.
Figures 205–210 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 205–210: Phylogenetic analysis of Orthochiroides, and Orthochirus and related buthid genera. Figures 205–209. Examples of most parsimonious trees (T 0, T 2, T 3, T 4 and T 7) retrieved by cladistic analyses of 43 morphological characters under equal and implied weights. Numbers above indicate jackknife supports (36% resampling probability), those below relative Bremer supports, computed for implied weights (IW), concavity constant k = 1 (207), and implied weights with characters 1 and 2 irreversible (IW*), concavity constants k = 10 (205), k = 6 (206), k = 1 (208) and k = 3 (209). Gray panels 1, 2 and 3: clades of interest. Figure 210. Phylogenetic trees of a subset of the exemplar species in Figs. 205–209, reconstructed by Bayesian inference (BEAST) and maximum likelihood (ML) analyses of multilocus sequence data (Štundlová et al., 2022) (node supports indicated).
Figures 46–49 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 46–49: Orthochiroides somalilandus sp. n., male paratype, right hemispermatophore. Figures 46. Whole hemispermatophore. Figures 47–49. Capsule in posterior (47), convex compressed (48) and anterior (49) views. Scale bars: 1 mm (46), 200 μm (47–49).
Figures 38–45 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 38–45: Orthochiroides somalilandus sp. n. Figures 38, 40, 42–45. Male holotype, carapace and tergites I–V (38), sternopectinal region and sternites (40), and left legs I–IV, retrolateral aspect (42–45). Figures 39, 41. Female paratopotype, carapace and tergites I–V (39), sternopectinal region and sternites (41).
Figures 50–51 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 50–51. Orthochiroides somalilandus sp. n., paratypes male (50) and female (51) in vivo (laboratory photographs on standard background).
Figures 19–37 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 19–37: Orthochiroides somalilandus sp. n., pedipalp. Figures 19–27. Male holotype, chela, dorsal (19), external (20), and ventral (21) views. Patella, dorsal (22), external (23) and ventral (24) views. Femur and trochanter, internal (25), dorsal (26), and ventral (27) views. Figures 28–37. Female paratopotype, chela, dorsal (28), external (29), and ventral (30) views. Patella, dorsal (31), external (32) and ventral (33) views. Femur and trochanter, internal (34), dorsal (35), and ventral (36) views. Movable finger dentation (37). Trichobothrial pattern indicated in Figures 19–23, 25–26 by white circles.
Figures 64–81 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 64–81: Orthochiroides vachoni, male from Socotra. Figures 64–75. Pedipalp. Chela, dorsal (64), external (65), and ventral (66) views. Patella, dorsal (67), external (68) and ventral (69) views. Femur and trochanter, internal (70), dorsal (71), ventral (72), and external (73) views. Movable (74) and fixed (75) finger dentation. Trichobothrial pattern indicated in Figures 64–68, 70–71 by white circles. Figures 76–77. Carapace and tergites I–VI (76), sternopectinal region and sternites (77). Figures 78–81. Right legs I–IV, retrolateral aspect.
Figures 9–12 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 9–12: Orthochiroides somalilandus sp. n. Figures 9–10. Male holotype, dorsal (9) and ventral (10) views. Figures 11–12. Female paratopotype, dorsal (11) and ventral (12) views. Scale bar: 10 mm.
Figures 5–8 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 5–8: Orthochiroides socotrensis. Figures 5–6. Male holotype, dorsal (5) and ventral (6) views. Figures 7–8. Female paratype, dorsal (7) and ventral (8) views. Scale bar: 10 mm.
Figures 136–141 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 136–141: Variation in telson shape of scorpion genera. Bivariate scatter plots of principal component scores, PC1 vs. PC2 (136, 138, 140) and PC3 vs. PC4 (137, 139, 141) for selected genera: Ananteris (83 spp.), Bothriurus (35 spp.), Buthus (43 spp.) and Tityus (199 spp.) (136–137); Diplocentrus (32 sp.), Euscorpius (43 spp.), Microtityus (32 sp.), Parabuthus (22 sp.) and Reddyanus (27 spp.) (138–139); Baloorthochirus (1 sp.), Fetilinia (1 sp.), Orthochiroides (4 spp.) and Orthochirus (43 spp.) (140–141).
Figures 189–204 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 189–204: Hemispermatophore capsules of Compsobuthus, Neobuthus, Gint, Orthochiroides and Orthochirus. Figure 189. Compsobuthus eritreaensis. Figures 190–191. Neobuthus kutcheri (190), N. eritreaensis (191). Figure 192. Gint maidensis. Figures 193– 196. Orthochiroides somalilandus, DNA specimens 1539, 1543, 1544. Figures 197–204. Orthochirus glabrifrons (197–198), O. afar, DNA specimen 1301 (199–200), O. sp., Morocco, DNA specimen 1165 (201), O. 'innesi', Oman (202–204). Convex (189–195, 197–199, 201–204), anterior (196) and posterior (200) views. Convex views show compressed profiles. Scale bars: 200 μm.
Figures 82–86 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 82–86: Orthochiroides, males. Figures 82. O. insularis, metasoma and telson, ventral view. Figures 82. O. socotrensis, holotype, metasoma and telson ventral view. Figures 84–86. O. vachoni, paratype, metasoma and telson, lateral (84), ventral (85), and dorsal (86) views. Scale bars: 10 mm (82–83, 84–86).
Figures 166–188 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 166–188: Ventral profiles of metasoma and telson of female Orthochiroides and Orthochirus. Figures 166–167. Orthochiroides insularis (166), O. somalilandus (167). Figures 168–188. Orthochirus afar (168), O. birulai (169), O. carinatus (170), O. fomichevi (171), O. formozovi (172), O. grosseri (173), O. gruberi (174), O. hormozgonensis (175), O. iranus (176), O. kermanensis (177), O. kucerai (178), O. masihipouri (179), O. melanurus (180), O. mesopotamicus (181), O. navidpouri (182), O. nordmanni (183), O. olivaceus (184), O. persa (185), O. scrobiculosus (186), O. sejnai (187), O. vignolii (188). Colored arrows: character 29, antero-lateral corners of metasoma IV (green = flush, 0; blue = wedge-shaped, 1); character 32, widening of metasoma III near posterior margin (orange = graded, 0; red = abrupt, 1). Figs. 168–188 after: Kovařík et al., 2016, 2019b, 2020a, 2020b; Kovařík & Navidpour, 2020; Navidpour et al., 2019.
Figures 1–4 in Review of Orthochiroides Kovařík 1998 with description of a new species (Scorpiones: Buthidae)
Figures 1–4: Orthochiroides insularis, Socotra Island. Figures 1–2. Male, dorsal (1) and ventral (2) views. Figures 3–4. Female, dorsal (3) and ventral (4) views. Scale bar: 10 mm.
Figs 5–7 in A mini-review of advances in the study of the evolution of Perdix species
Figs 5–7. Morphological comparison on three species of Perdix (Pictures from http://image.baidu.com/).
Figs 1–4 in A mini-review of advances in the study of the evolution of Perdix species
Figs 1–4. Phylogenies trees of Perdix. 1. Monophyletic group consisting of Perdix, Meleagrididae, and Tetraoninae in the supertree (Eo et al., 2009). 2. Based on morphological and zoogeographical data (Zheng, 1978). 3. Based on C-mos + Cyt b + ND2 (Bao et al., 2010). 4. Based on Cyt b + ND2 (Bao et al., 2010).
Figs 2–4 in Review of the genus Eugauria Snellen (Lepidoptera: Crambidae: Musotiminae) in China, with descriptions of two new species
Figs 2–4. Adults of Eugauria spp. (a. enlargement of forewing). 2. E. albidentata. 3. E. arcuosa Chen & Wu, sp. nov., holotype, ♂. 4. E. crenata Chen & Wu, sp. nov., holotype, ♂.
Figs 5–9 in Review of the genus Eugauria Snellen (Lepidoptera: Crambidae: Musotiminae) in China, with descriptions of two new species
Figs 5–9. Genetalia of Eugauria spp. (a. aedeagus; b. dorsal view of apical gnathos). 5. E. albidentata, male. 6–7. E. arcuosa Chen & Wu, sp. nov., male and female. 8–9. E. crenata Chen & Wu, sp. nov., male and female. Scales bars = 1 mm.
Figure 5. Female genitalia. A in Taxonomic review on Acrocercopinae, Gracillariinae and Ornixolinae from Shandong, China, with new data on distribution and host associations (Lepidoptera: Gracillariidae)
Figure 5. Female genitalia. A. Calybites phasianipennella, slide no. JYR17048. B. Caloptilia (Caloptilia) chrysolampra, slide no. JYR17054. C. Acrocercops transecta, slide no. LIU0027. D. Spulerina parthenocissi, slide no. LIU16010. E. Telamoptilia grewiae, slide no. JYR17052. F. Eteoryctis picrasmae, slide no. JYR17053. G. Epicephala relictella, slide no. JYR17046. H. Conopomorpha flueggella, slide no. LIU0041. Scale bars = 0.5 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.