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983 results for “Lice”
Fig. 1 in Activity of tea tree oil and nerolidol alone or in combination against Pediculus capitis (head lice) and its eggs
Fig. 1 Head lice and louse eggs detection. (a) Collection of lice by combing from infested head. (b) Basket for lice. (c) Viable louse egg attached to the hair. (d) Lice and louse eggs treated for experiments
Fig. 6 in Activity of tea tree oil and nerolidol alone or in combination against Pediculus capitis (head lice) and its eggs
Fig. 6 Phases of hatching of louse egg, in time. Eye spot (arrow). Operculum with aeropyles (inset). Original magnification ×100. Scale bar 0500 μm
Fig. 1 in How many threatened lice are there? An approximation to the red list of the Spanish Phthiraptera
Fig. 1. Felicola (Lorisicola) isidoroi. Adult male, habitus. This is the holotype of the species and is deposited in the collection of the Museo Nacional de Ciencias Naturales (CSIC) in Madrid, Spain. Photography by Jean-Claude Stahl (Te Papa Tongarewa Museum, Wellington, New Zealand).
Fig. 2. A 15 in Chewing lice Trichodectes pinguis pinguis in Scandinavian brown bears (Ursus arctos)
Fig. 2. A 15-year-old male brown bear (Ursus arctos), ID No. W1211, parasitized by Trichodectes pinguis pinguis. Notice the areas with partial or complete hair loss, hyperpigmentation and lichenification of the skin. a) April 2015 at the time of capture. b) June 2015 when feeding on a carcass.
Fig. 1. A 5 in Chewing lice Trichodectes pinguis pinguis in Scandinavian brown bears (Ursus arctos)
Fig. 1. A 5-year-old female brown bear (Ursus arctos), ID No. W1017, captured in Sweden. a) and b) April 2014: Hair loss in the ventral region of the neck and upper chest probably caused by Trichodectes spp. c) April 2015: Hair loss and scar tissue in the neck; no lice were found.
Fig. 4 in Chewing lice Trichodectes pinguis pinguis in Scandinavian brown bears (Ursus arctos)
Fig. 4. Specimen of Trichodectes pinguis pinguis recovered from a brown bear (Ursus arctos) killed because of human-wildlife conflict in south-central Sweden in May 2015. The distance between the measuring bars is 1 mm.
Fig. 3 in Chewing lice Trichodectes pinguis pinguis in Scandinavian brown bears (Ursus arctos)
Fig. 3. Brown bear (Ursus arctos) killed because of human-wildlife conflict in south-central Sweden in May 2015. The bear showed extensive alopecia in the area covering a) the chin, ventral part of the neck; b) axillar region, and abdomen.
Fig. 1 in Lousy chicks: Chewing lice from the Imperial Shag, Leucocarbo atriceps
Fig. 1. Mean intensity of instars (adults in dark grey, nymphs in light grey) of the lice Pectinopygus turbinatus and Piagetiella caputincisum in Imperial Shag chicks from Punta Léon, Patagonia, Argentina. Vertical bars correspond to the 95% confidence intervals.
Fig. 25. Anuretes quadrilaterus Shiino, female. A. leg 2. B. leg 3. C. leg 4 in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 25. Anuretes quadrilaterus Shiino, female. A. leg 2. B. leg 3. C. leg 4. Scales=A. 0.2 mm. B, C. 0.1 mm.
Fig. 23. Lepeophtheirus gusevi n in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 23. Lepeophtheirus gusevi n. sp., female. A. leg 4. B. juction between second and third exopodal segment of leg 4. C. leg 5. Male. D. habitus, dorsal. E. genital somite and abdomen, dorsal. F. antenna. G. maxillule. H. maxilliped. Scales=A, C, E. 0.2 mm. B, F-H. 0.1 mm. D. 0.5 mm.
Fig. 27. Pseudanuretes chaetodontis Yamaguti, female. A. habitus, dorsal. B. cephalic area, ventral. C. caudal ramus, ventral. D. antennule. E. antenna and maxillule. F. postantennal process. G in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 27. Pseudanuretes chaetodontis Yamaguti, female. A. habitus, dorsal. B. cephalic area, ventral. C. caudal ramus, ventral. D. antennule. E. antenna and maxillule. F. postantennal process. G. maxilla and maxillary whip. Scales=A, B. 0.1 mm. C-G. 0.02 mm.
Fig. 18 in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 18. Lepeophtheirus parvulus Shiino, female, A. leg 2. B. leg 3. C. leg 4. Male. D. habitus, dorsal. E. genital somite and abdomen, dorsal. F. antenna. G. maxillule. H. maxilliped. Scales=A-C, E-H. 0.1 mm. D. 0.5 mm.
Fig. 3. Caligus equulae Nordmann, female. A. habitus, dorsal. B. urosome, dorsal. C. antennule. D. antenna. E. postantennal process. F. maxillule. G. maxilla. H. maxilliped. I. sternal furca. J. leg 1 in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 3. Caligus equulae Nordmann, female. A. habitus, dorsal. B. urosome, dorsal. C. antennule. D. antenna. E. postantennal process. F. maxillule. G. maxilla. H. maxilliped. I. sternal furca. J. leg 1. Scales=A. 0.2 mm. B. 0.1 mm. C-J. 0.05 mm.
Fig. 12. Pseudocaligus longipes n in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 12. Pseudocaligus longipes n. sp., female. A. sternal furca. B. leg 3. C. leg 4. Male. D. habitus, dorsal. E. urosome, dorsal. F. antenna. G. maxilliped. H. legs 5 and 6. Scales=A-C, F-H. 0.05 mm. D. 0.5 mm. E. 0.1 mm.
Fig. 1. Caligus elongatus Nordmann, female. A. habitus, dorsal. B. abdomen, ventral. C. antennule. D. antenna. E. postantennary process. F. mandible. G. maxillule. H. maxilla. I. maxilliped. J in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 1. Caligus elongatus Nordmann, female. A. habitus, dorsal. B. abdomen, ventral. C. antennule. D. antenna. E. postantennary process. F. mandible. G. maxillule. H. maxilla. I. maxilliped. J. sternal furca. Scales=A. 1 mm. B. 0.2 mm. C-J. 0.1 mm.
Fig. 28. Pseudanuretes chaetodontis Yamaguti, female. A. maxilliped. B. leg 1. C. leg 2. D. leg 3. E. leg 4. F. legs 5 and 6 in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 28. Pseudanuretes chaetodontis Yamaguti, female. A. maxilliped. B. leg 1. C. leg 2. D. leg 3. E. leg 4. F. legs 5 and 6. Scales=A. 0.05 mm. B-F. 0.02 mm.
Fig. 21. Lepeophtheirus gusevi n in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 21. Lepeophtheirus gusevi n. sp., female. A. habitus, dorsal. B. abdomen, dorsal. C. antennule. D. antenna. E. postantennal process. F. mandible. G. maxillule. H, I. maxilla. Scales=A. 1 mm. B, D, E, G, H. 0.2 mm. C, F, I. 0.1 mm.
Fig. 17. Lepeophtheirus parvulus Shiino, female. A. habitus, dorsal. B. abdomen, ventral. C. antennule. D in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 17. Lepeophtheirus parvulus Shiino, female. A. habitus, dorsal. B. abdomen, ventral. C. antennule. D. antenna, postantennal process, and maxillule. E. maxilla. F. maxilliped. G. sternal furca. H. leg 1. Scales=A. 0.5 mm. B-H. 0.1 mm.
Fig. 13 in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 13. Metacaligus uruguyensis (Thomsen), fmale. A. habitus, dorsal. B. abdomen, ventral. C. caudal rami. D. antennule. E. antenna, postantennal process, and maxillule. F. maxilla. G. maxilliped. H. leg 1. Scales=A. 1 mm. B. 0.5 mm. C-F, H. 0.1 mm. G. 0.2 mm.
Fig. 20. Lepeophtheirus tamladus n in Sea lice (Copepoda, Siphonostomatoida, Caligidae) new to Korea, including three new species
Fig. 20. Lepeophtheirus tamladus n. sp., female. A. leg 2. B. leg 3. C. leg 4. Male: D. urosome, dorsal. E. antenna. F. postantennal process. G. maxillule. H. maxilliped. I. legs 5 and 6. Scales=A, C, D, H. 0.1 mm. B, E-G, I. 0.05 mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.
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.