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Fig. 17–21 in First elucidation of a blood fluke (Electrovermis zappum n. gen., n. sp.) life cycle including a chondrichthyan or bivalve
Fig. 17–21. Cercaria infecting green jackknife clam, Solen viridis Say, 1821 (Bivalvia: Adapedonta: Solenidae). (17) Cercarial body showing mouth (m), anterior-most row of spines (arrow), and connection with tail (tl). (18) Anterior end showing concentric rows of minute spines about anterior body end, lateral view. (19) High magnification view of spine (arrow) and spine rows in anterior region of cercarial body near mouth, lateral view. (20 & 21) Granular material near tegumental pore.
Figs. 9–15 in First elucidation of a blood fluke (Electrovermis zappum n. gen., n. sp.) life cycle including a chondrichthyan or bivalve
Figs. 9–15. Scanning electron microscopy and histopathology of cercaria of Electrovermis zappum Warren and Bullard n. gen., n. sp. (Digenea: Aporocotylidae) infecting variable coquina clam, Donax variabilis Say, 1822 (Bivalvia: Cardiida: Donacidae). (9) Whole body, arrow = dorsal fin fold. (10) Body, white arrows = possible secretion masses from penetration glands; white bar = anterior-most end including concentric spines; white arrows = lateral body spine rows, lateral view (11) Higher magnification of lateral body margin, arrows = tegumental papillae. (12) Higher magnification of anterior body end, showing space between spines of anterior sucker and those of the lateral body margin. (13) Histological section of infected gonad adjacent to intestinal arms (ia) and digestive diverticulum (dd). (14) Histological section showing infiltration of hemocytes (*) surrounding intestinal arm (ia), spororcysts (sp), and ooctyes (arrow). (15) Higher magnification of sporocyst containing developed cercaria (arrow) adjacent to digestive diverticulum (dd).
Fig. 22 in First elucidation of a blood fluke (Electrovermis zappum n. gen., n. sp.) life cycle including a chondrichthyan or bivalve
Fig. 22. Life cycle of Electrovermis zappum Warren and Bullard n. gen., n. sp. (Digenea: Aporocotylidae) infecting the heart of the lesser electric ray, Narcine bancroftii (Griffith and Smith, 1834) Carvalho, 2001 (Torpediniformes: Narcinidae), and the variable coquina clam, Donax variabilis Say, 1822 (Bivalvia: Cardiida: Donacidae). (22) Letters indicate the life history: A) egg or miracidium emerges from definitive host, N. bancroftii; B) miracidium infects the intermediate host, D. variabilis; C) clonal asexual reproduction occurs in sporocyst and cercariae emerge; D) cercariae infect neonates, juveniles, or adults of N. bancroftii.
Fig. 5 in Huffmanela lusitana sp. n. (Nematoda: Trichosomoididae) infecting pouting, Trisopterus luscus (Teleostei: Gadidae) off the Atlantic coast of Portugal
Fig. 5. Hypaxial muscle of pouting containing eggs of Huffmanela lusitana sp. n. Longitudinal sections displayed at same scale and showing the relationship between darkness rating of flesh and degree of egg infection. Muscle section from fish graded as normal had 0 eggs (A); muscle section from fish graded as slight to moderate darkening had about 19 eggs (B); muscle section from fish graded as intense darkening had about 89 eggs (C). H&E. Bar: 100 μm.
Fig. 6 in Huffmanela lusitana sp. n. (Nematoda: Trichosomoididae) infecting pouting, Trisopterus luscus (Teleostei: Gadidae) off the Atlantic coast of Portugal
Fig. 6. Hypaxial muscle of pouting infected with eggs of H. lusitana sp. n. (H&E stain). Longitudinal sections: (A) immature eggs (1) and advanced brownshelled eggs (2) with a linear distribution; (B) clearshelled (1) and brown-shelled eggs (2). Cross sections: (C) eggs in different stages of development and intense inflammatory lesions and muscle destruction (note the eosinophilic color of polar plugs at arrows); (D) eggs and nematodes in cross section [(1, 4, 5) eggs with intercellular location; (2) worm with intracellular location, probably 3rd or 4th stage larva; (3) apical view of a polar plug]. H&E. Bar: 100 μm. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 2 in Huffmanela lusitana sp. n. (Nematoda: Trichosomoididae) infecting pouting, Trisopterus luscus (Teleostei: Gadidae) off the Atlantic coast of Portugal
Fig. 2. Presumptive developmental stages of eggs and larvae of Huffmanela lusitana sp. n. from pouting (a, a') Stage 1: apparent unfertilized egg surrounded only by vitelline membrane with no evidence of polar plugs. (b, b') Stage 2: clear-shelled egg with polar plugs consisting of an outer and inner layer. (c, c') Stage 3: amber-shelled egg with bilayer eggshell observable; outer layer translucent and innermost typically dark (circle). (d, d') Stage 4: brown-shelled egg. (e, e', f, f') Stage 5: advanced brown-shelled egg with larva and outer layer of polar plugs. (g, g') Stage 6: fully developed brown-shelled egg; outer layer of polar "plugs" missing; egg apparently ready to hatch. (h, h') Freshly hatched larva expressed from egg under coverslip pressure. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 2. Ornithodoros huajianensis n in Ornithodoros (Ornithodoros) huajianensis sp. nov. (Acari, argasidae), a new tick species from the Mongolian marmot (Marmota bobak sibirica), Gansu province in China
Fig. 2. Ornithodoros huajianensis n. sp. (female, holotype): E) Tarsi I ∼ IV; F) Spiracle plate; G) genital apron.
Fig. 4. Ornithodoros huajianensis n in Ornithodoros (Ornithodoros) huajianensis sp. nov. (Acari, argasidae), a new tick species from the Mongolian marmot (Marmota bobak sibirica), Gansu province in China
Fig. 4. Ornithodoros huajianensis n. sp. (nymph, paratype): A) ventral view, entire; B) Coxa I ∼ IV; C) basis capitulum; D) tarsi II and IV; E) Spiracular plate.
Text-fig. 3. Sakalavastraea perturbata n. sp., a, c, holotype and invalid neotype of Glenarea cretacea (CGS-HF2478), transversal thin section; b, d, paratype (CGS-HF1706), b, transversal thin section, d, longitudinal thin section. Scale bar 1 mm. in The Scleractinian Coral Genus Glenarea (Bohemian Cretaceous Basin)
Text-fig. 3. Sakalavastraea perturbata n. sp., a, c, holotype and invalid neotype of Glenarea cretacea (CGS-HF2478), transversal thin section; b, d, paratype (CGS-HF1706), b, transversal thin section, d, longitudinal thin section. Scale bar 1 mm.
Text-fig. 9. Revultex impression of a siliceous concretion NM L 31967. A – an assemblage of three specimens of Barrandicella cf. tarda (PERNER, 1903); a – indeterminate early shell (? Barrandicella sp.), b – Mytoconula sp., ×...... B – Mytoconula sp., obligue left lateral view of an early shell just after landing on the Barrandicella surface, with a narrow flat rim of initial teleoconch shell, probably pressed down by sediment, ×......; C – the same, obligue left lateral view, ×......; D – the same, oblique right posterolateral view showing increments in the early shell, ×....... Dobrotivá F., PrahaŠárka. in Patelliconus Horný, 1961 And Mytoconula Gen. N. (Mollusca, Tergomya) From The Ordovician Of Perunica
Text-fig. 9. Revultex impression of a siliceous concretion NM L 31967. A – an assemblage of three specimens of Barrandicella cf. tarda (PERNER, 1903); a – indeterminate early shell (? Barrandicella sp.), b – Mytoconula sp., ×...... B – Mytoconula sp., obligue left lateral view of an early shell just after landing on the Barrandicella surface, with a narrow flat rim of initial teleoconch shell, probably pressed down by sediment, ×......; C – the same, obligue left lateral view, ×......; D – the same, oblique right posterolateral view showing increments in the early shell, ×....... Dobrotivá F., PrahaŠárka.
Text-fig. 8. Mytoconula vonkai sp. n. Specimen NM L 38914, internal mould with patches of shell. A – apical view, ×......; B – oblique posterior view showing radial ribs on internal mould, ×......; C – anteri- or part with a large patch of shell with irregular incremental structures, ×......; D – left lateral view, ×......;. Dobrotivá F., Malé Přílepy. in Patelliconus Horný, 1961 And Mytoconula Gen. N. (Mollusca, Tergomya) From The Ordovician Of Perunica
Text-fig. 8. Mytoconula vonkai sp. n. Specimen NM L 38914, internal mould with patches of shell. A – apical view, ×......; B – oblique posterior view showing radial ribs on internal mould, ×......; C – anteri- or part with a large patch of shell with irregular incremental structures, ×......; D – left lateral view, ×......;. Dobrotivá F., Malé Přílepy.
Text-fig. 5. Mytoconula vonkai sp. n. The holotype NM L 31983, internal mould. A – apical, B – right apical and right antero-lateral views, both with visible series of muscle scars in two raised zones, ×......;. Note the two long divergent scar zones in A. Dobrotivá F., Mýto near Holoubkov. in Patelliconus Horný, 1961 And Mytoconula Gen. N. (Mollusca, Tergomya) From The Ordovician Of Perunica
Text-fig. 5. Mytoconula vonkai sp. n. The holotype NM L 31983, internal mould. A – apical, B – right apical and right antero-lateral views, both with visible series of muscle scars in two raised zones, ×......;. Note the two long divergent scar zones in A. Dobrotivá F., Mýto near Holoubkov.
Text-fig. 5. a – Quercus lonchitis UNGER, No. Sf. 8253, nat. size; b – Betula alboides ENGELHARDT emend., holotype, Sf. 8264, (re-illustrated from Engelhardt 1870, pl. 3, fig. 23); c–e – Carpinus roscheri WALTHER et KVAČEK sp. n., c – Sf 1630, d – holotype, Sf. 8408 (re-illustrated from Walther 1964, as Carpinus grandis UNGER), e – Sf. 4740:1, all nat. size. in Early Oligocene Flora Of Seifhennersdorf (Saxony)
Text-fig. 5. a – Quercus lonchitis UNGER, No. Sf. 8253, nat. size; b – Betula alboides ENGELHARDT emend., holotype, Sf. 8264, (re-illustrated from Engelhardt 1870, pl. 3, fig. 23); c–e – Carpinus roscheri WALTHER et KVAČEK sp. n., c – Sf 1630, d – holotype, Sf. 8408 (re-illustrated from Walther 1964, as Carpinus grandis UNGER), e – Sf. 4740:1, all nat. size.
Figs 1-2 in Caccoleptus (Bicaccoleptus) westerduijni sp. n. from Peru (Coleoptera: Dermestidae: Megatomini)
Figs 1-2. Caccoleptus (Bicaccoleptus) westerduijni sp. n.: 1- habitus dorsal aspect, 2- antennae and head.
Figs. 1 – 11 in Hister punctifemur sp. n., a new Hister-species (Coleoptera: Histeridae) from China
Figs. 1 – 11. Hister punctifemur sp. n. 1 – body, dorsal view, 2 – head, 3 – body, lateral view, 4 – foretibia, 5 – profemora, 6 – body, under side, 7 – 9 – edeagus, 10 – 8th tergite, 11 – 9th and 10th tergite, 7 – ventrally, 8 – dorsally, 9 – laterally.
Figure 3 in Neobisium (N.) tothi sp. nov., a new species from Hungary and Romania, and first records of Neobisium (N.) noricum Beier, 1939 from Hungary (Pseudoscorpiones: Neobisiidae)
Figure 3. Neobisium (N.) noricum Beier, 1939 (HNHM Pseud-1880): A- carapace, dorsal view (female); B- right chelicera (female), dorsal view; C- left pedipalp (male), dorsal view; D- left chela (male), lateral view.
Figure 2. Distribution map for N in Neobisium (N.) tothi sp. nov., a new species from Hungary and Romania, and first records of Neobisium (N.) noricum Beier, 1939 from Hungary (Pseudoscorpiones: Neobisiidae)
Figure 2. Distribution map for N. (N.) tothi sp. nov. (squares) and N. (N.) noricum Beier, 1939 (empty circles: earlier data; filled circles: new data).
Figure 1 in Neobisium (N.) tothi sp. nov., a new species from Hungary and Romania, and first records of Neobisium (N.) noricum Beier, 1939 from Hungary (Pseudoscorpiones: Neobisiidae)
Figure 1. Neobisium (N.) tothi, sp. nov. (male holotype, if not mentioned otherwise): A- carapace, dorsal view; Bepistome developed, female paratype; C- epistome reduced, male paratype; D- anterior part of coxa I, ventral view; E- right chelicera, dorsal view; F- left pedipalp, dorsal view; G- right chela, lateral view of paraxial face; H- leg I; I- leg IV.
Figure 5 in Morphological and molecular characterization of Myxobolus puntiusii n. sp. (Cnidaria: Myxosporea) infecting Puntius sophore Hamilton, 1822 from Ranjit Sagar Wetland, Punjab (India)
Figure 5. Phylogenetic tree generated by maximum likelihood showing the phylogenetic position of Myxobolus puntiusii n. sp. (KU156662) with other myxosporeans. GenBank accession numbers are given and number above nodes indicates bootstrap confidence values. Scale bar: amount of inferred evolutionary change along the branch lengths.
Figure 2 in Morphological and molecular characterization of Myxobolus puntiusii n. sp. (Cnidaria: Myxosporea) infecting Puntius sophore Hamilton, 1822 from Ranjit Sagar Wetland, Punjab (India)
Figure 2. Line drawing of myxospores of Myxobolus puntiusii n. sp. a. Ziehl–Neelsen stain (frontal view). b. Fresh myxospore (sutural view). c. Myxospore showing sporoplasmic nuclei with extruded polar filament (iron–hematoxylin stain).
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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.