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Fig. 25. Typhlochactas cavicola Francke, 1986 in Systematic Revision Of The Troglomorphic North American Scorpion Family Typhlochactidae (Scorpiones: Chactoidea)

Fig. 25. Typhlochactas cavicola Francke, 1986, holotype ♀ (AMNH), sinistral pedipalp femur (A) and patella (B–D) showing carinae and distribution of trichobothria. A, B. Dorsal aspect. C. External aspect. D. Ventral aspect. Scales 5 0.5 mm.

opencc-by-4.0Sep 2009View details →
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Fig. 24. Typhlochactas cavicola Francke, 1986 in Systematic Revision Of The Troglomorphic North American Scorpion Family Typhlochactidae (Scorpiones: Chactoidea)

Fig. 24. Typhlochactas cavicola Francke, 1986, holotype ♀ (AMNH), sinistral pedipalp chela showing carinae and distribution of trichobothria. A. Dorsal aspect. B. External aspect. C. Ventral aspect. Scale 5 0.5 mm.

opencc-by-4.0Sep 2009View details →
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Fig. 2. Anonyx gurjanovai Steele, 1986 in Two new record of the genus Anonyx (Crustacea: Amphipoda: Uristidae) from Korean waters

Fig. 2. Anonyx gurjanovai Steele, 1986, adult male, 8.50 mm. A, habitus; B, antenna 1; C, antenna 2; D, left mandible; E, right mandible; F, gnathopod 1; G, gnathopod 2; H, pereopod 3; I, pereopod 4. Scale bars: A = 1.0 mm, B-G = 0.2 mm, H, I = 0.5 mm.

opencc-by-4.0Dec 2021View details →
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Fig. 3. Anonyx gurjanovai Steele, 1986 in Two new record of the genus Anonyx (Crustacea: Amphipoda: Uristidae) from Korean waters

Fig. 3. Anonyx gurjanovai Steele, 1986, adult male, 8.50 mm. A, pereopod 5; B, pereopod 6; C, pereopod 7; D, uropod 1; E, uropod 2; F, uropod 3; G, telson. Scale bars: A-C, G = 0.5 mm, D-F = 0.2 mm.

opencc-by-4.0Dec 2021View details →
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Text-fig. 5. Reconstruction of aeduellids from the Bohemian Massif. 1 – Spinarichthys dispersus (FRITSCH, 1895) (after Štamberg 1986). 2 – Neslovicella elongata ŠTAMBERG, 2010 (after Štamberg 2010). 3 – Neslovicella rzehaki ŠTAMBERG, 2007 (after Štamberg 2007). 4 – Bourbonnella hirsuta ŠTAMBERG, 2007 (after Štamberg, 2007). Scale bar represents 20 mm. in Knowledge Of The Carboniferous And Permian Actinopterygian Fishes Of The Bohemian Massif - 100 Years After Antonín Frič

Text-fig. 5. Reconstruction of aeduellids from the Bohemian Massif. 1 – Spinarichthys dispersus (FRITSCH, 1895) (after Štamberg 1986). 2 – Neslovicella elongata ŠTAMBERG, 2010 (after Štamberg 2010). 3 – Neslovicella rzehaki ŠTAMBERG, 2007 (after Štamberg 2007). 4 – Bourbonnella hirsuta ŠTAMBERG, 2007 (after Štamberg, 2007). Scale bar represents 20 mm.

opencc-by-4.0Dec 2013View details →
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Figure 1 in New record of Oribatula (Zygoribatula) nicora (Djaparidze, 1986) comb. nov. from Turkey with a redescription of species

Figure 1. Oribatula (Zygoribatula) nicora (Djaparidze, 1986) comb. nov. A) Dorsal view; B) ventral view. Scale bar 100 µm.

opencc-by-4.0Aug 2018View details →
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Figure 3 in New record of Oribatula (Zygoribatula) nicora (Djaparidze, 1986) comb. nov. from Turkey with a redescription of species

Figure 3. Prodorsum of A) Oribatula (Zygoribatula) nicora (Djaparidze, 1986) comb. nov. and B) Lucoppia burrowsi (Michael, 1890). Scale bar 50 µm.

opencc-by-4.0Aug 2018View details →
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Figure 2 in New record of Oribatula (Zygoribatula) nicora (Djaparidze, 1986) comb. nov. from Turkey with a redescription of species

Figure 2. Oribatula (Zygoribatula) nicora (Djaparidze, 1986) comb. nov. A) Leg I; B) leg II; C) leg III; D) leg IV. Scale bar 50 µm.

opencc-by-4.0Aug 2018View details →
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Fig. 5. Oviraptorosaur theropod Conchoraptor gracilis Barbsold, 1986 in Oviraptorosaur tail forms and functions

Fig. 5. Oviraptorosaur theropod Conchoraptor gracilis Barbsold, 1986, from the Nemegt Formation of Mongolia. Pygostyle and pre-pygostle terminal vertebrae of MPC-D 100/1275, in ventral view, with pygostyle vertebrae (P1–P3) denoted).

opencc-by-4.0Jan 2013View details →
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Fig. 1. A–C. Oesia disjuncta Walcott, 1911. A. USNM 57631. B. USNM 57632. C. USNM 57630, lectotype. D. Archeterokrohnia rubra Casanova, 1986. E in Cambrian chaetognaths recognized in Burgess Shale fossils

Fig. 1. A–C. Oesia disjuncta Walcott, 1911. A. USNM 57631. B. USNM 57632. C. USNM 57630, lectotype. D. Archeterokrohnia rubra Casanova, 1986. E. Heterokrohnia mirabilis Ritter−Záhony, 1911. F. H. furnestine Casanova and Chidgey, 1987. A–C, after Walcott (1911); D–F, after Kapp (1991).

opencc-by-4.0Dec 2005View details →
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Fig. 8. Plant cuticles and tracheids from the Ivanye Zolote section. GIUS 4−3592. A. Cosmochlaina verrucosa Edwards, 1986 in Palynology and microfacies of Lower Devonian mixed carbonate-siliciclastic deposits in Podolia, Ukraine

Fig. 8. Plant cuticles and tracheids from the Ivanye Zolote section. GIUS 4−3592. A. Cosmochlaina verrucosa Edwards, 1986; IZ−7 sample. B. Nematothallus sp.; IZ−7 sample. C. Nematothallus sp.; IZ−1 sample. D–G. Nematothallus? like structures. D, E. IZ−6 sample. F, G. IZ−1 sample. H–I. Porcatitubulus annulatus Burges and Edwards, 1991. H. IZ−5 sample. I. IZ−4 sample. J. Laevitubulus sp.; IZ−1 sample. K. Porcatitubulus annulatus Burges and Edwards, 1991; IZ−5 sample.

opencc-by-4.0Aug 2012View details →
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FIGURE 7 in Two new species of Pseudaetobatus Cappetta, 1986 (Batoidei: Myliobatidae) from the southeastern United States

FIGURE 7. Myliobatiform ray teeth associated with Pseudaetobatus in Alabama and South Carolina, comparative specimens of Aetobatus irregularis from Alabama, and late Eocene Rhinoptera sp. from Georgia. 1, Rhinoptera sp. (Tallahatta Formation), MSC 33915, incomplete median tooth, labial (1.1), lingual (1.2), and occlusal (1.3) views. 2, Rhinoptera sp. (Dry Branch Formation), SC 2001.1.12, lateral tooth, labial (2.1), lingual (2.2), and occlusal (2.3) views. 3, Rhinoptera sp. (Clinchfield Formation), SC 2013.44.8, lateral tooth, labial (3.1), lingual (3.2), and occlusal (3.3) views. 4, Aetomylaeus sp. (Tallahatta Formation), MSC 33931, incomplete lower median tooth, labial (4.1), lingual (4.2), and occlusal (4.3) views. 5, Aetomylaeus sp. (Dry Branch Formation), SC 2001.1, incomplete lower median tooth, labial (5.1), lingual (5.2), and occlusal (5.3) views. 6, Rhinoptera sp. (Clinchfield Formation), SC 2013.44.9, distal-most lateral tooth similar to Pseudaetobatus sp., labial (6.1), lingual (6.2), and occlusal (6.3) views. 7-8, Aetobatus irregularis (Lisbon Formation). 7, SC 2012.47.24, incomplete lower median tooth, occlusal view. 8, SC 2012.47.26, left side of upper? median tooth, distal (8.1), labial (8.2), and occlusal (8.3) views. Scale bars equal 1.0 cm.

opencc-by-4.0Mar 2015View details →
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FIGURE 5 in Two new species of Pseudaetobatus Cappetta, 1986 (Batoidei: Myliobatidae) from the southeastern United States

FIGURE 5. Pseudaetobatus belli sp. nov. from lower Eocene strata of Alabama and Mississippi. 1, MSC 12699.1, partial upper median tooth, baso-labial (1.1), lingual oblique (1.2), occlusal (1.3), and profile (1.4) views. 2, MSC 35078, partial lower median tooth, labial (2.1), lingual (2.2), lingual oblique (2.3), occlusal (2.4), and profile (2.5) views. 3, MSC 35055, lower right distal-most lateral tooth, basal (3.1), distal (3.2), labial (3.3), mesial (3.4), and occlusal (3.5) views. 4, MSC 35081, partial median tooth, basal (4.1), labial (4.2), lingual (4.3), lingual oblique (4.4), and profile (4.5) views. 5, MSC 35049, lower median tooth, occlusal view. 6, MSC 35071, partial lower median tooth, lingual oblique (6.1), and profile (6.2) views. 7, MSC 35050, lower median tooth, occlusal view. 8, MSC 35061, upper right distal-most lateral tooth, occlusal (8.1), and basal (8.2) views. 9, MSC 12776, upper right distal-most lateral tooth, basal (9.1), labial (9.2), lingual oblique (9.3), occlusal (9.4), distal (9.5), and mesial (9.6) views. 10, MSC 35080, partial median tooth, lingual (10.1), lingual oblique (10.2), and occlusal (10.3) views. 11, MSC 35056, lower right distal-most lateral tooth, distal (11.1), labial (11.2), lingual (11.3), mesial (11.4), and occlusal (labial at left) (11.5) views. 12, MSC 35060, upper right distal-most lateral tooth, basal (12.1), labial (12.2), lingual oblique (12.3), occlusal (12.4), mesial (12.5), and distal (12.6) views. 13, MSC 35079, partial lower median tooth, lingual oblique (13.1), and occlusal (13.2) views. 14, MSC 35065, nearly complete lower median tooth, occlusal view. 15, MSC 35052, partial lower median tooth, occlusal view. Scale bars equal 1.0 cm.

opencc-by-4.0Mar 2015View details →
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FIGURE 4 in Two new species of Pseudaetobatus Cappetta, 1986 (Batoidei: Myliobatidae) from the southeastern United States

FIGURE 4. Pseudaetobatus belli sp. nov. hypodigm from the type stratum within the lower Eocene (NP 13) Tallahatta Formation, Dale County, Alabama. 1, MSC 35048, lower median tooth, oblique lingual (1.1), occlusal (1.2), basal (1.3), labial (1.4), and lingual (1.5) views. 2, MSC 35054, lower right distal-most lateral tooth, occlusal (2.1), basal (2.2), distal (2.3), mesial (2.4), and labial (2.5) views. 3, MSC 35059, upper right distal-most lateral tooth, oblique lingual (3.1), occlusal (3.2), basal (3.3), and labial (3.4) views. 4, MSC 35062, intermediate lateral tooth, occlusal (4.1) (labial at top), lingual (4.2), labial (4.3), mesial (4.4), and distal (4.5) views. 5, MSC 35058, partial upper? median tooth, occlusal view. 6, Occlusal view of hypothetical reconstruction of part of the lower dentition. This consists of specimens shown in 1 (MSC 35048), 2 (MSC 35054), 4 (MSC 35062), and Figure 5.3 (MSC 35055). 2, 4, and Figure 5.3 were reduced in size to be consistent with 1. 4 was replicated and reversed to represent the left and right tooth rows. 2 and Figure 5.3 are from the right side but were reversed to represent the left side. The resulting composite series was then replicated. Scale bars equal 1.0 cm.

opencc-by-4.0Mar 2015View details →
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FIGURE 3 in Two new species of Pseudaetobatus Cappetta, 1986 (Batoidei: Myliobatidae) from the southeastern United States

FIGURE 3. Chronostratigraphy, lithostratigraphy, and biostratigraphy of middle-to-upper Eocene strata of south-central South Carolina. Abbreviation: O'burg = Orangeburg.

opencc-by-4.0Mar 2015View details →
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FIGURE 2 in Two new species of Pseudaetobatus Cappetta, 1986 (Batoidei: Myliobatidae) from the southeastern United States

FIGURE 2. Chronostratigraphy, lithostratigraphy, and biostratigraphy of lower-to-middle Eocene strata of eastern Mississippi and Alabama. Modified from Bybell and Gibson (1985).

opencc-by-4.0Mar 2015View details →
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FIGURE 1 in Two new species of Pseudaetobatus Cappetta, 1986 (Batoidei: Myliobatidae) from the southeastern United States

FIGURE 1. Generalized geographic map of the southeastern United States, with counties from which Pseudaetobatus teeth were recovered (highlighted in light gray). Specific localities indicated by black dots. 1, Whynot locality, Lauderdale County, MS; 2, site AWa-1, Washington County, AL; 3, site ABu-3, Butler County, AL; 4, site ADl-1, Dale County (type locality Pseudaetobatus belli), AL; 5, Dry Branch localities, Aiken County, SC.

opencc-by-4.0Mar 2015View details →
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FIGURE 6 in Two new species of Pseudaetobatus Cappetta, 1986 (Batoidei: Myliobatidae) from the southeastern United States

FIGURE 6. Pseudaetobatus undulatus sp. nov. hypodigm and other specimens from the upper Eocene Dry Branch Formation, Aiken County, South Carolina. 1, SC 2013.38.91, upper right distal-most lateral tooth (holotype), basal (1.1), distal (1.2), labial (1.3), mesial (1.4), lingual oblique (1.5), and occlusal (1.6) views. 2, SC 2001.1.4.1, upper left distal-most lateral tooth, labial (2.1), lingual (2.2), and occlusal (2.3) views. 3, SC 2013.38.93.3, lower left distal-most lateral tooth, labial (3.1), lingual (3.2), and occlusal (3.3) views. 4, SC 2001.1.5.2, intermediate lateral tooth (paratype), basal (4.1), distal (4.2), labial (4.3), mesial (4.4), lingual oblique (4.5), and occlusal (4.6) views. 5, SC 2001.1.5.1 (paratype), lower right distal-most lateral tooth, mesial (5.1), lingual oblique (5.2), distal (5.3), labial (5.4), and occlusal (5.5) views. 6, SC 2013.38.84, lower median tooth (paratype), lingual oblique (6.1), basal (6.2), and occlusal (6.3) views. 7, SC 2013.38.90, lower median tooth, lingual oblique view. 8, SC 2013.38.86, upper median tooth (paratype), lingual oblique (8.1), baso-lingual (8.2), and occlusal (8.3) views. 9, Occlusal view of hypothetical reconstruction of part of the upper dentition. This consists of specimens shown in 1 (SC 2001.1.5.2), and 8 (SC 2013.38.86. 1 and 4 were reduced in size to be consistent with 8, and they were reversed to also represent the right tooth rows. The resulting composite series was then replicated. 10, SC 2013.38.85, upper median tooth, occlusal view. Scale bars equal 0.5 cm.

opencc-by-4.0Mar 2015View details →
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Fig. 6. Comparison between Ophioderma sodipallaresi Caso, 1986 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 6. Comparison between Ophioderma sodipallaresi Caso, 1986 (= Ophioderma teres (Lyman, 1860)), holotype from Mexico (ICML-UNAM 3.24.3, DD = 20.9 mm) (left), and Ophioderma teres, non-type material from Panama (USNM E23215, DD = 19.3 mm) (right). A–B. Dorsal disc. C–D. Jaws. E–F. Section between the arm and the distal genital slit. G, I. Dorsal arm (proximalmost). H, J. Dorsal arm (median).

opencc-by-4.0Aug 2024View details →
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Fig. 3. Representative C in Allopatric chromosomal variation in Nematocharax venustus Weitzman, Menezes & Britski, 1986 (Actinopterygii: Characiformes) based on mapping of repetitive sequences

Fig. 3. Representative C-banded karyotypes of Nematocharax venustus from (a) Almada, Gongogi 1, Gongogi 2, Gongogi 3, Jequitinhonha 1, Jequitinhonha 2 and (b) Upper Contas. Bar = 5 µm.

opencc-by-4.0Jun 2016View details →

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Last verified 2026-04-29Open record