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FIGURES 14–19 in Taxonomic notes on the predatory mite genus Proparholaspulus Ishikawa, 1980 and the first description of the male of Proparholaspulus ishikawai Liang & Hu 1993 (Acari: Parholaspididae)
FIGURES 14–19. Proparholaspulus ishikawai Liang & Hu, 1993, female. 14. Median projection of epistome; 15. Lateral projection of epistome; 16. Sternal shield; 17. Geniti-ventrianal shield; 18. Hypostome; 19. Tarsus II. Scale bar 14, 15 = 10μm; 16–19 = 50μm.
FIGURES 12–13 in Taxonomic notes on the predatory mite genus Proparholaspulus Ishikawa, 1980 and the first description of the male of Proparholaspulus ishikawai Liang & Hu 1993 (Acari: Parholaspididae)
FIGURES 12–13. Proparholaspulus ishikawai Liang & Hu, 1993, female. 12. Dorsum; 13. Venter. Scale bar 12, 13 = 1000μm.
FIGURES 1–2 in Taxonomic notes on the predatory mite genus Proparholaspulus Ishikawa, 1980 and the first description of the male of Proparholaspulus ishikawai Liang & Hu 1993 (Acari: Parholaspididae)
FIGURES 1–2. Proparholaspulus ishikawai Liang & Hu, 1993, male. 1. Dorsum; 2. Venter. Scale bar 1, 2 = 100μm.
FIGURES 3–7 in Taxonomic notes on the predatory mite genus Proparholaspulus Ishikawa, 1980 and the first description of the male of Proparholaspulus ishikawai Liang & Hu 1993 (Acari: Parholaspididae)
FIGURES 3–7. Proparholaspulus ishikawai Liang & Hu, 1993, male. 3. Tritosternum; 4. Gnathosoma; 5. Palp; 6. Chelicera; 7. Epistome; Scale bar 3–7 = 50μm.
FIGURES 8–11 in Taxonomic notes on the predatory mite genus Proparholaspulus Ishikawa, 1980 and the first description of the male of Proparholaspulus ishikawai Liang & Hu 1993 (Acari: Parholaspididae)
FIGURES 8–11. Proparholaspulus ishikawai Liang & Hu, 1993, male. 8. Leg I; 9. Leg II; 10. Leg III; 11. Leg IV. Scale bar 8–11 = 100μm.
Comparative reconstruction of the predatory feeding structures of the polyphenic nematode Pristionchus pacificus
<p class="MsoNormal"><em><span>Pristionchus pacificus</span></em><span> is a nematode model for the developmental genetics of morphological polyphenism, especially at the level of individual cells. Morphological polyphenism in this species includes an evolutionary novelty, moveable teeth, which have enabled predatory feeding in this species and others in its family (Diplogastridae). From transmission electron micrographs of serial thin sections through an adult hermaphrodite of <em>P. pacificus</em>, we three-dimensionally reconstructed all epithelial and myoepithelial cells and syncytia, corresponding to 74 nuclei, of its face, mouth, and pharynx. We found that the epithelia that produce the predatory morphology of <em>P. pacificus</em> are identical to <em>Caenorhabditis elegans</em> in the number of cell classes and nuclei. However, differences in cell form, spatial relationships, and nucleus position correlate with gross morphological differences from <em>C. elegans</em> and outgroups. Moreover, we identified fine-structural features</span><span>, especially in the anteriormost pharyngeal muscles, that underlie the conspicuous, left-right asymmetry that characterizes the <em>P. pacificus </em>feeding apparatus. Our reconstruction provides an anatomical map for studying the genetics of polyphenism, feeding behavior, and the development of novel form in a satellite model to <em>C. elegans</em>.</span></p>
Figure 6 in Redescription and molecular characterisation of the predatory isopod Tachaea spongillicola Stebbing, 1907 (Isopoda: Corallanidae) infesting the freshwater fish Pangasius silasi from India
Figure 6. Gross features of the infested fish Pangasius silasi with arrows showing infestation with Tachaea spongillicola at caudal and anal fins and lesions on various parts of the body.
Figure 4. Tachaea spongillicola Stebbing, 1907 in Redescription and molecular characterisation of the predatory isopod Tachaea spongillicola Stebbing, 1907 (Isopoda: Corallanidae) infesting the freshwater fish Pangasius silasi from India
Figure 4. Tachaea spongillicola Stebbing, 1907, non-ovigerous female (7.2 mm; NBFGR/CORTSPO I-01). (a–g) pereopod 1–7; (h) uropod.
Figure 3. Tachaea spongillicola Stebbing, 1907 in Redescription and molecular characterisation of the predatory isopod Tachaea spongillicola Stebbing, 1907 (Isopoda: Corallanidae) infesting the freshwater fish Pangasius silasi from India
Figure 3. Tachaea spongillicola Stebbing, 1907, non-ovigerous female (7.2 mm; NBFGR/CORTSPO I-01). (a) mouthparts; (b) antennule; (c) antenna; (d) mandible; (e) maxilliped; (f) maxillula; (g) maxilla.
Figure 7 in Redescription and molecular characterisation of the predatory isopod Tachaea spongillicola Stebbing, 1907 (Isopoda: Corallanidae) infesting the freshwater fish Pangasius silasi from India
Figure 7. Molecular phylogenetic relationships among Indian Cymothooidea taxa obtained based on cytochrome oxidase I sequences.
Figure 2. Tachaea spongillicola Stebbing, 1907 in Redescription and molecular characterisation of the predatory isopod Tachaea spongillicola Stebbing, 1907 (Isopoda: Corallanidae) infesting the freshwater fish Pangasius silasi from India
Figure 2. Tachaea spongillicola Stebbing, 1907, (a–b) non-ovigerous female (7.2 mm; NBFGR/CORTSPO I-01). (a) dorsal view; (b) lateral view; (c) male dorsolateral view (5.4 mm) (NBFGR/CORTSPO I-05).
Figure 1. Tachaea spongillicola Stebbing, 1907 in Redescription and molecular characterisation of the predatory isopod Tachaea spongillicola Stebbing, 1907 (Isopoda: Corallanidae) infesting the freshwater fish Pangasius silasi from India
Figure 1. Tachaea spongillicola Stebbing, 1907, (a–b) non-ovigerous female (7.2 mm; NBFGR/CORTSPO I-01); (a) dorsal view; (b) ventral view; (c–d) male (5.4 mm) (NBFGR/CORTSPO I-05); (c) dorsal view; (d) ventral view. Photographs taken under a Leica M-205A stereomicroscope.
Figure 5. Tachaea spongillicola Stebbing, 1907 in Redescription and molecular characterisation of the predatory isopod Tachaea spongillicola Stebbing, 1907 (Isopoda: Corallanidae) infesting the freshwater fish Pangasius silasi from India
Figure 5. Tachaea spongillicola Stebbing, 1907, non-ovigerous female (7.2 mm; NBFGR/CORTSPO I-01). (a–e) pleopod 1–5; (f) pleopod 2 (male, 5.4 mm).
Figure 9 in Redescription of the monotypic micro-predatory isopod genera Alitropus H. Milne Edwards, 1840 and Barybrotes Schioedte & Meinert, 1879 (Isopoda, Cymothoida), with a taxonomic key to the Cymothooidea Leach, 1814 from India
Figure 9. Barybrotes indus Schioedte and Meinert, 1879, ovigerous female (20.0 mm; ZSI/MBRC D1- 553). (a–d) Pereopods 1–4; (e) pereopod 4 merus ventral view; (f) pereopod 6.
Figure 8 in Redescription of the monotypic micro-predatory isopod genera Alitropus H. Milne Edwards, 1840 and Barybrotes Schioedte & Meinert, 1879 (Isopoda, Cymothoida), with a taxonomic key to the Cymothooidea Leach, 1814 from India
Figure 8. Barybrotes indus Schioedte and Meinert, 1879, ovigerous female (20.0 mm; ZSI/MBRC D1- 553). (a) Lateral view; (b) antennula; (c) antenna; (d) mandible; (e) maxillule; (f) maxilla; (g) maxilliped.
Figure 7 in Redescription of the monotypic micro-predatory isopod genera Alitropus H. Milne Edwards, 1840 and Barybrotes Schioedte & Meinert, 1879 (Isopoda, Cymothoida), with a taxonomic key to the Cymothooidea Leach, 1814 from India
Figure 7. Barybrotes indus Schioedte and Meinert, 1879, ovigerous female. (a) Holotype (22.0 mm; NHMD-84636 (previously ZMUC-CRU-6792)); (b–d) non-type (20.0 mm; ZSI/MBRC D1-553). (a, b) dorsal view; (c) ventral view of cephalon with mouth parts; (d) uropod.
Figure 4. Alitropus typus H. Milne Edwards 1840 in Redescription of the monotypic micro-predatory isopod genera Alitropus H. Milne Edwards, 1840 and Barybrotes Schioedte & Meinert, 1879 (Isopoda, Cymothoida), with a taxonomic key to the Cymothooidea Leach, 1814 from India
Figure 4. Alitropus typus H. Milne Edwards 1840 (as Aega (Conilera) interrupta Von Martens, 1868), holotype female (15.0 mm; ZMB No. 3366). (a) Dorsal view; (b) ventral view; (c) lateral view; (d) ventral view of cephalon with mouthparts; (e) dorsal view of posterior region. Please replace in colour figures
Figure 5. Alitropus typus H. Milne Edwards 1840 in Redescription of the monotypic micro-predatory isopod genera Alitropus H. Milne Edwards, 1840 and Barybrotes Schioedte & Meinert, 1879 (Isopoda, Cymothoida), with a taxonomic key to the Cymothooidea Leach, 1814 from India
Figure 5. Alitropus typus H. Milne Edwards 1840 (as Aega (Conilera) interrupta Von Martens, 1868), holotype female (15.0 mm; ZMB No. 3366). (a) Dorsal view; (b) lateral view; (c) clypeal region.
Figure 3. Alitropus typus H. Milne Edwards 1840 in Redescription of the monotypic micro-predatory isopod genera Alitropus H. Milne Edwards, 1840 and Barybrotes Schioedte & Meinert, 1879 (Isopoda, Cymothoida), with a taxonomic key to the Cymothooidea Leach, 1814 from India
Figure 3. Alitropus typus H. Milne Edwards 1840, male (19.0 mm; ZSI/MBRC D1-568). (a–e) Pleopods 1– 5 respectively; (f) right uropod.
Figure 2. Alitropus typus H. Milne Edwards 1840 in Redescription of the monotypic micro-predatory isopod genera Alitropus H. Milne Edwards, 1840 and Barybrotes Schioedte & Meinert, 1879 (Isopoda, Cymothoida), with a taxonomic key to the Cymothooidea Leach, 1814 from India
Figure 2. Alitropus typus H. Milne Edwards 1840, male (19.0 mm; ZSI/MBRC D1-568). (a–e) Pereopods 1–4, 7, respectively.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.