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Figures 14–17 in The geographic pattern of distribution of the genus Rhopalurus Thorell, 1876 in the Guayana-Amazon region (Scorpiones: Buthidae)

Figures 14–17: Rhopalurus pintoi kourouensis ssp. n. 14. Carapace. 15. Metasoma and telson, lateral aspect. 16–17. Metasoma and telson, dorsal and ventral aspects.

opencc-by-4.0Dec 2008View details →
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Figures 10–13 in The geographic pattern of distribution of the genus Rhopalurus Thorell, 1876 in the Guayana-Amazon region (Scorpiones: Buthidae)

Figures 10–13: Rhopalurus pintoi kourouensis ssp. n. 10. Chela, dorso-external aspect, showing trichobothria and very intense setation. 11. Chela, idem, represented without setation. 12–13. Patella and femur, dorsal aspect. Again an important setation can be observed.

opencc-by-4.0Dec 2008View details →
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Figures 5–9 in The geographic pattern of distribution of the genus Rhopalurus Thorell, 1876 in the Guayana-Amazon region (Scorpiones: Buthidae)

Figures 5–9: Rhopalurus crassicauda paruensis ssp. n., male holotype. 5–7. Chela, dorso-external, ventral and internal aspects, showing trichobothria. 8–9. Tarsi of leg IV, lateral and ventral aspects, showing setation.

opencc-by-4.0Dec 2008View details →
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Figure 4 in The geographic pattern of distribution of the genus Rhopalurus Thorell, 1876 in the Guayana-Amazon region (Scorpiones: Buthidae)

Figure 4: Present distribution of savannah formations in South America (after Sarmiento, 1984). Arrows indicated distinct savannah fragments inhabited by Rhopalurus species. 1. Llanos of the Magdalena (R. caribensis); 2. Llanos of Orinoco (R. laticauda); 3. Savannahs of the Rio Branco-Rupununi (R. pintoi & R. crassicauda); 4. Campos de Paru (R. crassicauda paruensis ssp. n.); 5. Coastal savannahs of the Guayanas (R. pintoi kourouensis ssp. n.).

opencc-by-4.0Dec 2008View details →
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Figure 1 in New data on distribution and ecology of seven species of Euscorpius Thorell, 1876 (Scorpiones: Euscorpiidae)

Figure 1: Euscorpius (Alpiscorpius) alpha, adult female, Cislano (Lombardy, Italy) (photo by Giorgio Colombo).

opencc-by-4.0Dec 2006View details →
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Figure 1 in The geographic pattern of distribution of the genus Rhopalurus Thorell, 1876 in the Guayana-Amazon region (Scorpiones: Buthidae)

Figure 1: Presumed dispersal tracks of Rhopalurus spp., between 18,000 and 13,000 years BP. A and B illustrate possible corridors between North-South and East-West savannah formations which coalesced during past dry periods (base map after Ab'Saber, 1977).

opencc-by-4.0Dec 2008View details →
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Figure 2 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)

Figure 2: Large adult male of Tityus columbianus from Chiquinquirá: a) prosoma, dorsal view; b) pedipalp, dorsal view; c) sternopectinal region, ventral view; d) pecten, ventral view; e) sternites V–VI, ventral view; f) metasomal segments II–IV, lateral view; g) metasomal segments IV–V and telson, lateral view.

opencc-by-4.0Dec 2008View details →
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Figure 4 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)

Figure 4: Adult female of Tityus columbianus from Chiquinquirá: a) entire dorsal view; b) entire ventral view.

opencc-by-4.0Dec 2008View details →
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Figure 3 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)

Figure 3: Small adult male of Tityus columbianus from Chiquinquirá: a) entire dorsal view; b) pedipalp, dorsal view; c) metasomal segments IV–V and telson, lateral view.

opencc-by-4.0Dec 2008View details →
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Figure 5 in Rare or poorly known scorpions from Colombia. II. Redescription of Tityus columbianus (Thorell, 1876) (Scorpiones: Buthidae)

Figure 5: Adult female of Tityus columbianus from Chiquinquirá: a) prosoma, dorsal view; b) pedipalp, dorsal view; c) movable finger, dorsal view; d) sternopectinal region, ventral view; e) pecten, ventral view; f) sternites V–VI, ventral view; g) metasomal segments II–IV, lateral view; h) metasomal segments IV–V and telson, lateral view.

opencc-by-4.0Dec 2008View details →
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Fig. 2 in Two new records of free-living marine nematodes of the family Ironidae de Man, 1876 (Nematoda: Enoplida) from Korea

Fig. 2. Conilia sinensis Chen and Guo, 2015, female in lateral view. A, Habitus; B, Anterior region; C, Vulva region; D, Head region; E, Tail region. Scale bars: A-C, 50 μm; D, E, 10 μm.

opencc-by-4.0Feb 2023View details →
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◂Fig. 14 Scanning electron micrographs (SEM) showing radular ribbon form, middle adhesive zone (az) and rows of dentition (rd) of Dinaride and Iberian individuals (notation denotes aspects on one Dinaride Zospeum and one Iberozospeum ribbon); (a) Z. exiguum (NMBE 553384), Križna jama, Slovenia (45.7452, 14.4673), long and narrow, tapered anterior end (tae), short adhesive zone (az), bottom furled with narrow obtuse or straight base (nosb); (b) Z. pretneri, (NMBE 553290), Gornja Cerovačka pećina, Croatia (44.2701, 15.8855), ibid., with straight base; (c) I. vasconicum, (AJC 1848), Cueva Ermita de Sandaili (42.9994, -2.4381), moderately long and broad, tapered anterior end (tae), prominent adhesive zone (az), straight base (sb); (d) I. zaldivarae, (AJC 1876), Cueva de Las Paúles (43.1282, -2.7362), ibid.; (e) Iberozospeum sp. (RMNH.MOL. 234,109), Cueva de la Foz, long and broad, ibid; (f) Iberozospeum sp., (RMNH.MOL. 234,144), Cueva de Rales, very long and broad, ibid; (g) Iberozospeum sp., (RMNH.MOL. 234,116), Cueva a Sul, long and broad, ibid; (h) Iberozospeum sp., (RMNH.MOL. 234,108), Cueva de Torcona, very long and broad, ibid. — Magnification varies for each perspective, see scale bars; all Figs imaged by M. Ruppel, (ret.) Goethe University Frankfurt am Main in Molecular investigation and description of Iberozospeum n. gen., including the description of one new species (Eupulmonata, Ellobioidea, Carychiidae)

◂Fig. 14 Scanning electron micrographs (SEM) showing radular ribbon form, middle adhesive zone (az) and rows of dentition (rd) of Dinaride and Iberian individuals (notation denotes aspects on one Dinaride Zospeum and one Iberozospeum ribbon); (a) Z. exiguum (NMBE 553384), Križna jama, Slovenia (45.7452, 14.4673), long and narrow, tapered anterior end (tae), short adhesive zone (az), bottom furled with narrow obtuse or straight base (nosb); (b) Z. pretneri, (NMBE 553290), Gornja Cerovačka pećina, Croatia (44.2701, 15.8855), ibid., with straight base; (c) I. vasconicum, (AJC 1848), Cueva Ermita de Sandaili (42.9994, -2.4381), moderately long and broad, tapered anterior end (tae), prominent adhesive zone (az), straight base (sb); (d) I. zaldivarae, (AJC 1876), Cueva de Las Paúles (43.1282, -2.7362), ibid.; (e) Iberozospeum sp. (RMNH.MOL. 234,109), Cueva de la Foz, long and broad, ibid; (f) Iberozospeum sp., (RMNH.MOL. 234,144), Cueva de Rales, very long and broad, ibid; (g) Iberozospeum sp., (RMNH.MOL. 234,116), Cueva a Sul, long and broad, ibid; (h) Iberozospeum sp., (RMNH.MOL. 234,108), Cueva de Torcona, very long and broad, ibid. — Magnification varies for each perspective, see scale bars; all Figs imaged by M. Ruppel, (ret.) Goethe University Frankfurt am Main

opencc-by-4.0Nov 2021View details →
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Fig. 10 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 10. Range distribution of extant and fossil species of Akodon in Brazil and Paraguay. Localities: 1 – Fazenda Califórnia, Parque Nacional da Serra da Bodoquena (Brandão et al. 2021); 2 – Nossa Senhora Aparecida cave, Serra da Bodoquena (Boroni et al. 2020); 3 – Carneiro cave (Boroni 2019); 4 – Igrejinha cave (Salles et al. 1999); 5 – Gruta dos Moura cave (Tobelém et al. 2013); 6 – Gruta do Urso cave (Pires et al. 2018); 7 – Toca da Barra da Janela do Antonião cave (Guérin et al. 1996); 8 – Lagoa Santa (Winge 1887); 9 – Abismo Iguatemi site (Castro and Langer 2011); 10 – Garivaldino site (Stutz et al. 2017); 11 – Adelar Pilger site (Hadler et al. 2016); 12 – Deobaldino Marques site (Roth 2018); 13 – Sangão site (Stutz et al. 2018); 14 – Risso Cave, Paraguay (Torres et al. 2015). Also see table 1. Gray area was based on the geographic range of the extant species of genus Akodon according to Pardiñas et al. (2015).

opencc-by-4.0Dec 2022View details →
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Fig. 9 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 9. Occlusal views of the upper and lower molar toothrows of Akodon sp. (A–D) and Akodon kadiweu (E–F). Legends: anteroloph (An); ectolophid (ect); mesoloph (Ms), mesolophid (msl). Vouchers: MN 57650 (A), MN 57631 (B), MN 57635 (C), MN 57642 (D), MZUSP 35767 (E, F).

opencc-by-4.0Dec 2022View details →
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Fig. 8 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 8. Lateral view of the skull and mandible of past (A) and extant (B-G) species of Akodon. A: Akodon sp. (MN 58086, 57649). B: A. azarae (CNP 5639). C: A. philipmyersi (CNP 3029). D: A. lindberghi (MN 33683, 33682). E: A. kadiweu (MZUSP 35994). F: A. montensis (UFMG 2719, 2723). G: A. toba (FMNH 164169). Legends: angular notch (an), angular process (ap), condyloid process (cp), capsular projection (cap), coronoid process (crp), sigmoid notch (sn), zygomatic plate (zp). The dotted white bars show the different shapes of the zygomatic plate, and the arrow points to two broken portions of the mandible of Akodon sp.

opencc-by-4.0Dec 2022View details →
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Fig. 6 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 6. Dorsal view of the skull of past (A) and extant (B-G) species of Akodon. A: Akodon sp. (MN 58086). B: A. azarae (CNP 3154). C: A. philipmyersi (CNP 3029). D: A. lindberghi (MN 33501). E: A. kadiweu (MZUSP 35994). F: A. montensis (UFMG 2695). G: A. toba (FMNH 164129). Legends: Nasal (Na), supraorbital margins (spm), zygomatic notch (zn). The dotted white and red lines show the different shapes of the interorbital and nasal region, respectively.

opencc-by-4.0Dec 2022View details →
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Fig. 5 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 5. Distribution of the factorial scores in the first (DF1) and second (DF2) canonical variates of the discriminant function analysis (DFA) of log-transformed craniometric variables of the skull of adult specimens of Akodon. The DFA could not be performed using the data of mandibles separately due to the low number of measurements.

opencc-by-4.0Dec 2022View details →
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Fig. 7 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 7. Ventral view of the skull of past (A, E) and extant (B-D, and F-H) species of Akodon. A: Akodon sp. (MN 58086). B: A. azarae (CNP 3154). C: A. philipmyersi (CNP 3029). D: A. lindberghi (MN 33683). E: Akodon sp. (MN 57635). F: A. kadiweu (MZUSP 35994). G: A. montensis (UFMG 2695). H: A. toba (FMNH 164136). Legends: incisive foramen (if), maxillary (mx), median palatine process (mpp). The bluish and reddish markings evidence, respectively, the mesopterygoid fossa region and right portion of maxillary located posteriorly to the posterior margin of the incisive foramen (black bars). The black bars are level with hypoflexus (B, C, D – see text for variation), and anterior (E, F, H) or posterior (B, G) portion of protocone of M1. Note that in Akodon sp. (A) the clean part of the palate (dotted reddish markings) is aligned with the mid portion of protocone of M1, with no trace of the incisive foramen (encrusted with sediments). The dotted black bars show the level between the posterior margin of molars and anterior margin of mesopterygoid fossa.

opencc-by-4.0Dec 2022View details →
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Fig. 4 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 4. Distribution of the factorial scores in the first (PC1) and second principal (PC2) components of log-transformed craniometric variables of skull (above) and mandible (below) of adult specimens of Akodon.

opencc-by-4.0Dec 2022View details →
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Fig. 2 in Fig. 2 in A New Species of Bleeker, 1876 (Teleostei: Scorpaenidae) from Taiwan.

Fig. 2. Boxplots of the ratio of cranial measurements of seven species of Akodon. Outliers are represented by dots. Variables are defined in the text.

opencc-by-4.0Dec 2022View details →

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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.

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Last verified 2026-04-29Open record