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Figures 25–29. Hydryphantes hellichi Thon, 1899 in On the taxonomic status of the water mite Hydryphantes hellichi Thon, 1899 (Acari, Hydrachnidia, Hydryphantidae)

Figures 25–29. Hydryphantes hellichi Thon, 1899, adults: 25 ­ frontal plate; 26 – coxal plates; 27 – genital field; 28 – capitulum; 29 – pedipalp. Scale bars: 25–26, 28 = 200µm, 27, 29 = 100µm.

opencc-by-4.0Dec 2014View details →
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Fig. 5 in Morphological Redescription and SSU rDNA-based Phylogeny of Two Freshwater Ciliates, Uronema nigricans and Lembadion lucens (Ciliophora, Oligohymenophorea), with Discussion on the Taxonomic Status of Uronemita sinensis

Fig. 5. Maximum likelihood (ML) tree inferred from SSU rDNA sequences, showing the position of Uronema nigricans and Lembadion lucens (red arrows). Numbers near branches denote ML bootstrap value/BI posterior probability. Asterisks (*) indicate topologies that differ between the ML and BI analyses. Fully supported (100%/1.00) branches are marked with solid circles. Question marks (?) in red color indicate that the two sequences are possibly misidentified. The scale bar corresponds to 5 substitutions per 100 nucleotide positions. All branches are drawn to scale. Systematic classification mainly follows Lynn (2008).

opencc-by-4.0Sep 2017View details →
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Fig. 4 in Morphological Redescription and SSU rDNA-based Phylogeny of Two Freshwater Ciliates, Uronema nigricans and Lembadion lucens (Ciliophora, Oligohymenophorea), with Discussion on the Taxonomic Status of Uronemita sinensis

Fig. 4. Photomicrographs of Lembadion lucens from life (A–D, with A in bright field illumination and others in DIC microscopy) and after protargol staining (E–K). (A, B) Ventral views of representative individuals, cell in B was slightly depressed. Arrow shows caudal cilia. (C) Dorsal view, arrowhead points to the contractile vacuole. (D) Apical view, revealing the shape of cross section. Arrow shows oral cilia. (E) Ventral view of a stained cell, showing the silverline system. (F, G) Ventral (F) and dorsal (G) view of a representative individual, to show the ciliature and nuclear apparatus. (H) Micronucleus (arrow) and macronucleus. (I) Ventral view of posterior portion. Arrows depict two basal body rows of caudal cilia. (J) Mid portion of dorsal view, illustrating the monokinetids and dikinetids. (K) Detailed view, arrows show the two separated pairs of basal bodies and arrowheads indicate the posterior ends of four gradually shortened outer rows of adoral membranelle. Scale bars: 30 μm.

opencc-by-4.0Sep 2017View details →
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Fig. 6 in Morphological Redescription and SSU rDNA-based Phylogeny of Two Freshwater Ciliates, Uronema nigricans and Lembadion lucens (Ciliophora, Oligohymenophorea), with Discussion on the Taxonomic Status of Uronemita sinensis

Fig. 6. Sequence comparison of the small subunit ribosomal RNA gene determined by BioEdit 7.0.5.2 (Hall 1999), showing the unmatched nucleotides of Uronema nigricans MF072399 and Lembadion lucens MF072398 with their sister sequences in the same clades, respectively (see Fig. 5). Nucleotide positions are given at the top of each column. Insertions and deletions are compensated by introducing alignment gaps (–). Numbers of unmatched sites (n) and sequence similarity percentages (%) compared with Uronema nigricans MF072399 and Lembadion lucens MF072398 are also supplied. The two sequences with question marks (?) are possibly misidentified. ID, identical; n, numbers of unmatched sites; %, sequence similarity percentages.

opencc-by-4.0Sep 2017View details →
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Fig. 3 in Morphological Redescription and SSU rDNA-based Phylogeny of Two Freshwater Ciliates, Uronema nigricans and Lembadion lucens (Ciliophora, Oligohymenophorea), with Discussion on the Taxonomic Status of Uronemita sinensis

Fig. 3. Photomicrographs of Uronema nigricans from life (A–E, in bright field illumination) and after protargol (F–M) staining. (A–C) Right ventrolateral views of representative individuals, with cell in C slightly depressed. Arrow in A shows contractile vacuole, while in C indicates macronucleus. (D) View of caudal portion of another cell, arrow points to caudal cilium. (E) Different body sizes, showing conspicuous apical plate. (F, G) Ventral views of stained individuals, indicating the structure of scutica. (H, I) Portion views of oral apparatus, revealing the number of kinety rows in M2 (two rows in H and three rows in I). (J, K) Ventral (J) and dorsal (K) view of a representative individual to show the ciliature and nuclear apparatus. Arrow in J points to basal body of caudal cilium, arrow in K indicating the apical plate. (L, M) Left ventrolateral (L) and right dorsolateral (M) view of another stained individual to show the ciliature and oral apparatus. Scale bars: 15 μm (A, B); 30 μm (E).

opencc-by-4.0Sep 2017View details →
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Fig. 1 in Morphological Redescription and SSU rDNA-based Phylogeny of Two Freshwater Ciliates, Uronema nigricans and Lembadion lucens (Ciliophora, Oligohymenophorea), with Discussion on the Taxonomic Status of Uronemita sinensis

Fig. 1. Map and sampling site. The yellow dots on the map and two corresponding photographs (A, B) show the collecting sites. (A) Fresh- water river in Shenzhen, southern China (22°32'19"N; 114°06'45"E). (B) Huguangyan Lake, an oligotrophic lake in Zhanjiang, southern China (21°08'38"N; 110°16'20"E).

opencc-by-4.0Sep 2017View details →
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Fig. 7 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)

Fig. 7. Sexual organs of selected Dina spp.; schematic drawings and photograph. A. Dina ratschaensis from Sakishore Cave (Georgia). B. Dina cf. ratschaensis Kobakhidze, 1958 from Western Georgia (unknown cave). C. Dina absoloni Johansson, 1913 from Brestice (Herzegovina). A, C. Dissected by Grosser. B. Dissected by Epshtein (in Lukin 1976: fig. 263a–d; length × width of dissected specimens. A. 50 × 9 mm. B. b1 38 × 5 mm, b2 50 × 6 mm. C. 30 × 6 mm. a = genital atrium; b = ovisacs; c = vas deferens; d = testisacs.

opencc-by-4.0Sep 2023View details →
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Fig. 5 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)

Fig. 5. Dina samegreloensis Grosser, Barjadze & Shavadze sp. nov., holotype (IZISU: AL-T-00004), sexual organs. A. Schematic drawing of reproductive system. B. Schematic drawing of genital atrium. C. Photograph of genital atrium. a = genital atrium; b = ovisacs; c = vas deferens; d = testisacs.

opencc-by-4.0Sep 2023View details →
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Fig. 2 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)

Fig. 2. Dina imeretiensis Grosser, Barjadze & Maghradze sp. nov., external morphology. A, D–E. Holotype (IZISU: Al-T-00002). B–C, E. Paratype (IZISU: AL-T-00003). A. Dorsal view. B. Lateral view. C. Dorso-lateral view. D. Caudal sucker (above holotype, below paratype). E. Oral sucker (left paratype, right holotype). F. Annulation of two midboddy somites, dorsal view. Abbreviations: a2, b1, b2, b5, b6 = annuli of somites.

opencc-by-4.0Sep 2023View details →
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Fig. 4 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)

Fig. 4. Dina samegreloensis Grosser, Barjadze & Shavadze sp. nov., holotype (IZISU: AL-T-00004), external morphology. A. Dorsal view. B. Ventral view. C. Lateral view. D. Caudal sucker. E. Oral sucker. F. Annulation of five midbody somites. G. Position of genital pores and annulation in the clitellar region. Abbreviations: a2, b1, b2, b5, b6 = annuli of somites; f = female genital pore; m = male genital pore.

opencc-by-4.0Sep 2023View details →
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Fig. 3 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)

Fig. 3. Dina imeretiensis Grosser, Barjadze & Maghradze sp. nov., holotype (IZISU: Al-T-00002), sexual organs. A. Schematic drawing of reproductive system. B. Schematic drawing of genital atrium. C. Photograph of genital atrium. a = genital atrium; b = ovisacs; c = vas deferens; d = testisacs.

opencc-by-4.0Sep 2023View details →
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Fig. 1 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)

Fig. 1. Dina imeretiensis Grosser, Barjadze & Maghradze sp. nov. Living holotype and paratype from Prometheus Cave.

opencc-by-4.0Sep 2023View details →
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Fig. 8 in On the taxonomic status of Dina ratschaensis Kobakhidze, 1958 with a description of two new species - Dina imeretiensis sp. nov. and D. samegreloensis sp. nov. (Annelida, Hirudinida: Erpobdellidae)

Fig. 8. Maximum Likelihood tree of Dina spp. obtained with RAxML and the Cox1 sequences. The position of Dina imeretiensis Grosser, Barjadze & Maghradze sp. nov. is indicated in red. Above nodes, bootstrap support values when> 50%. GenBank accession numbers are listed together with the species names directly on the tree.

opencc-by-4.0Sep 2023View details →
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Image 10 in Taxonomic status of the arboreal Skink Lizard Dasia halianus (Haly & Nevill, 1887) in Sri Lanka and the redescription of Dasia subcaeruleum (Boulenger, 1891) from India

Image 10. The sketch done by Annandale (1906) of the juvenile paralectotype.

opencc-by-4.0Aug 2011View details →
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Image 11 in Taxonomic status of the arboreal Skink Lizard Dasia halianus (Haly & Nevill, 1887) in Sri Lanka and the redescription of Dasia subcaeruleum (Boulenger, 1891) from India

Image 11. Dasia halianus live specimen, from Kuda-oya, Sri Lanka.

opencc-by-4.0Aug 2011View details →
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Image 9 in Taxonomic status of the arboreal Skink Lizard Dasia halianus (Haly & Nevill, 1887) in Sri Lanka and the redescription of Dasia subcaeruleum (Boulenger, 1891) from India

Image 9. Dorsolateral view of the lectotype Dasia halianus BMNH 1908.3.19.3.

opencc-by-4.0Aug 2011View details →
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Image 5 in Taxonomic status of the arboreal Skink Lizard Dasia halianus (Haly & Nevill, 1887) in Sri Lanka and the redescription of Dasia subcaeruleum (Boulenger, 1891) from India

Image 5. The dorsal view of type specimen of Dasia subcaeruleum BMNH 1946[1].8.15.55 011.

opencc-by-4.0Aug 2011View details →
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Image 7 in Taxonomic status of the arboreal Skink Lizard Dasia halianus (Haly & Nevill, 1887) in Sri Lanka and the redescription of Dasia subcaeruleum (Boulenger, 1891) from India

Image 7. Lateral view of NMSL R.S.K. II.

opencc-by-4.0Aug 2011View details →
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FIGURE 1 in Redescription of Apteronotus mariae (Eigenmann & Fisher, 1914) and the taxonomic status of Apteronotus jurubidae (Fowler, 1944) (Gymnotiformes: Apteronotidae)

FIGURE 1. Lateral and dorsal views of paratype of Apteronotus mariae, CAS 62345.

opencc-zeroDec 2004View details →
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FIGURE 4 in Redescription of Apteronotus mariae (Eigenmann & Fisher, 1914) and the taxonomic status of Apteronotus jurubidae (Fowler, 1944) (Gymnotiformes: Apteronotidae)

FIGURE 4. Lateral view of anterior portion of Apteronotus jurubidae, ANSP 71435.

opencc-zeroDec 2004View 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

OpenNeuro

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Last verified 2026-04-29Open record