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126 results for “teratology”
Figure 4 in Teratological changes in tick morphology in ticks feeding on exotic reptiles
Figure 4. Amblyomma flavomaculatum, female, oligomely of the third left leg.
Figure 2 in Teratological changes in tick morphology in ticks feeding on exotic reptiles
Figure 2. Amblyomma latum, female, oligomely of the left porose area.
Figure 1 in Teratological changes in tick morphology in ticks feeding on exotic reptiles
Figure 1. Amblyomma latum, male, anomaly in the shape of the idiosoma.
Fig. 1 in Unusual Teratology for a Tenebrionid: Antennal Schistomelia inProbaticus granulatus(Allard, 1876) (Coleoptera: Tenebrionidae)
Fig. 1. Habitat of teratological specimen of Probaticus granulatus.
Organization of Teratology Information Services (OTIS) Autoimmune Diseases in Pregnancy Project
ClinicalTrials.gov study NCT00116272. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Data from: Teratological and behavioral screening of the National Toxicology Program 91-compound library in zebrafish (Danio rerio)
To screen the tens of thousands of chemicals for which no toxicity data currently exists, it is necessary to move from in vivo rodent models to alternative models, such as zebrafish. Here, we used dechorionated Tropical 5D wildtype zebrafish embryos to screen a 91-compound library provided by the National Toxicology Program (NTP) for developmental toxicity. This library contained 86 unique chemicals that included negative controls, flame retardants, polycyclic aromatic hydrocarbons (PAHs), drugs, industrial chemicals and pesticides. Fish were exposed to five concentrations of each chemical or an equal amount of vehicle (0.5% DMSO) in embryo medium from 6 h post-fertilization (hpf) to 5 d post-fertilization (dpf). Fish were examined daily for mortality and teratogenic effects and photomotor behavior was assessed at 4 and 5 dpf. Of the five negative control compounds in the library, none caused mortality/teratogenesis, but two altered behavior. Chemicals provided in duplicate produced similar outcomes. Overall, 13 compounds caused mortality/teratology but not behavioral abnormalities, 24 only affected behavior, and 18 altered both endpoints, with behavior affected at concentrations that did not cause mortality/teratology (55/86 hits). Of the compounds that affected behavior, 52% caused behavioral abnormalities at either 4 or 5 dpf. Compounds within the same functional group caused different behavioral abnormalities, while similar behavioral patterns were caused by compounds from different groups. Our data suggest that behavior is a sensitive endpoint for developmental toxicity screening that integrates multiple modes of toxic action and is influenced by the age of the larval fish at the time of testing.
Figure 1. Chiton cumingsii, LABSIM 15.03.0194 in New records of teratology in Chiton cumingsii and Chiton granosus (Mollusca: Polyplacophora) from the Peruvian coast
Figure 1. Chiton cumingsii, LABSIM 15.03.0194 (L = 23.01 mm). (A) Dorsal view of the body. (B) Dorsal view of separate valves. (C) Ventral view of separate valves. (D) Ventral drawing of abnormal valve III (black) over normal valve III drawing (red). Scale: 1 cm. Abbreviations: a = apex; ap = apophysis; jl = jugal laminae; jt = jugal tract; sl1-2 = slits; slr1-2 = slit rays; vtc = ventral tegmental callus.
Figs 1–2 in A case of teratology in weevil Sitona macularius (Marsham, 1802) (Coleoptera, Curculionidae)
Figs 1–2. Apex of the left mid leg of Sitona macularius. 1 – ventral view; 2 – dorsal view.
Use of GLP1 receptor agonists in early pregnancy and reproductive safety: a multicentre, observational, prospective cohort study based on the databases of six Teratology Information Services
Open the record for dataset details and reuse information.
Data from: Teratological and behavioral screening of the National Toxicology Program 91-compound library in zebrafish (Danio rerio)
Open the record for dataset details and reuse information.
FIGURES 4–9 in Megarthrus of China. Part 3. Comments on the occurrence of Megarthrus nitidulus Kraatz, 1857 in China, and description of a new species, with notes on teratology and phoretic acari in the genus (Coleoptera: Staphylinidae: Proteininae)
FIGURES 4–9. Megarthrus heise sp. nov., male: aedeagus in lateral (4–5) and ventral (7–8) views. antenna (6); left hemitergite IX (9). Scalebar = 0.1 mm.
FIGURE 8 in Taxonomy of epilithic diatoms and teratological forms under the presence of metals in surface sediment
FIGURE 8. Epilithic diatoms from Cascavel River micro-watershed in LM. A. Amphipleura lindheimeri. B. Frustulia acidophilissima. C. F. australocrassinervia. D. F. guayanensis. E. F. neomundana. F. F. undosa. G. F. weinholdii. H. F. vulgaris. I–J. F. saxonica. I. Teratological valve. K–L. F. pumilio. M. Brachysira serians var. acuta. N. B. brebissonii. O. B. microcephala. P. Nupela praecipuoides. Q– R. N. semifasciata. S. Neidium gracile f. aequale. T. N. iridis. U. N. affine var. amphirhynchus. V. N. tenuissimum. W–X. N. essequiboanum. Y. N. catarinense. Z–AA. Pinnularia acoricola. AB. P. acrosphaeria. AC. P. gaiserae. AD. P. borealis var. rectangularis. AE. P. borealis var. sublinearis. AF. P. brauniana. AG. P. divergens var. media. AH. P. butantanum. AI–AJ. P. divergens. AJ. Teratological valve. AK. P. decrescens var. ignorata. AL. P. divergens var. mesoleptiformis. Scale bars: 10 µm.
FIGURE 58 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 58. Cases of leg teratology in Brachysandalus species. A, dorsal habitus of B. lurco Stål, 1866; B, left mid tarsus of B. lurco Stål, 1866; C, right mid tarsus of B. lurco Stål, 1866; D, dorsal habitus of B. helluo Stål, 1866; E, right mid tarsus of B. helluo Stål, 1866; F, left mid tarsus of B. helluo Stål, 1866; G, dorsal habitus of B. flavidus Malipatil & Liu, sp. nov.; H, left hind tarsus of B. flavidus Malipatil & Liu, sp. nov.; I, right hind tarsus of B. flavidus Malipatil & Liu, sp. nov.; J, dorsal habitus of B. gunbalanyae Malipatil & Liu, sp. nov.; K, left hind tarsus of B. gunbalanyae Malipatil & Liu, sp. nov.; L, right hind tarsus of B. gunbalanyae Malipatil & Liu, sp. nov. Scale bar = 4.00 mm (for habitus); 0.50 mm (for tarsi).
FIGURE 49 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 49. Brachysandalus setosus (Stål, 1874), lectotype, brachypterous female, habitus. A, dorsal view; B, ventral view; C, lateral view. Scale bar = 3.00 mm.
FIGURE 56 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 56. Illustrations of extragenital process of Australian Brachysandalus species. A, B. sepulchralis (Distant, 1902); B, B. howarthi Malipatil & Liu, sp. nov.; C, B. alutaceus (Reuter, 1881); D, B. helluo Stål, 1866; E, B. ephippiger (White, 1843); F, B. punctorius Stål, 1866; G, B. flavidus Malipatil & Liu, sp. nov.; H, B. crassifemur (Reuter, 1881); I, B. maculatus Malipatil & Liu, sp. nov.; J. B. ayyammae Malipatil & Liu, sp. nov.; K, B. fulvipes Malipatil & Liu, sp. nov.; L, B. gunbalanyae Malipatil & Liu, sp. nov.; M–P, B. westraliensis Malipatil & Liu, sp. nov. Scale bar = 0.50 mm.
FIGURE 22 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 22. Brachysandalus fulvipes Malipatil & Liu, sp. nov., paratype, brachypterous male, habitus. A, dorsal view; B, ventral view; C, lateral view. Red arrow indicates median carina on abdomen, blue arrow indicates extragenital process. Scale bar = 2.00 mm.
FIGURE 48 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 48. Brachysandalus setosus (Stål, 1874), live brachypterous male, Brisbane, Queensland, September 2022 (Photo: Campbell Paine).
FIGURE 18 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 18. Brachysandalus fulvipennis (Walker, 1873), lectotype of Pirates (Brachysandalus) flavo-pictus Stål, 1874, macropterous male, habitus. A, dorsal view; B, ventral view; C, lateral view. Red arrow indicates median carina on abdomen. Scale bar = 3.00 mm.
FIGURE 21 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 21. Brachysandalus fulvipes Malipatil & Liu, sp. nov., holotype, macropterous female, habitus. A, dorsal view; B, lateral view; C, ventral view. Scale bar = 2.00 mm.
FIGURE 15 in Revision of Australian Brachysandalus with the description of nine new species including one cavernicolous species (Hemiptera: Heteroptera: Reduviidae), and observations on male extragenital structure and leg teratology
FIGURE 15. Brachysandalus fuliginosus (Erichson, 1842), lectotype of Pirates (Brachysandalus) melanolestoides Stål, 1874, macropterous male, habitus. A, dorsal view; B, ventral view; C, lateral view. Red arrow indicates median carina on abdomen. Scale bar = 3.00 mm.
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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.