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584 results for “larval stages”
FIG. 2. Anisakis spp. third-stage larvae from the squid Onychoteuthis borealijaponic a in Larval anisakid nematodes from four species of squid (Cephalopoda: Teuthoidea) from the central and western North Paci®c Ocean
FIG. 2. Anisakis spp. third-stage larvae from the squid Onychoteuthis borealijaponic a. (A±D) A. simplex: (A) anterior part of body; (B) cephalic end; (C) caudal end; (D) tip of tail. (E±H) A. physeteris: (E) cephalic end; (F) anterior part of body; (G) caudal end; (H) tip of tail. Scale bars in mm.
FIGURE 6. Stage Immature. A in Larval development of the shrimp Hippolyte sapphica d'Udekem d'Acoz, 1993 forma A and B (Decapoda: Caridea: Hippolytidae) reared in the laboratory, confirmation of the conspecific status of the two forms
FIGURE 6. Stage Immature. A. Maxilla; B. 1st Maxilliped; C. 2nd Maxilliped; D. 3rd Maxilliped; E. 1st Pereiopod; F. 2nd Pereiopod; G. 3rd Pereiopod. Scales: A. 0.036mm; B. 0.046mm; C. 0.011mm; D. 0.038mm; E. 0.043mm; F. 0.046mm; G. 0.023mm.
FIGURE 4. A–E Stage V, F–H Stage VI and I– K Stage VII. A in Larval development of the shrimp Hippolyte sapphica d'Udekem d'Acoz, 1993 forma A and B (Decapoda: Caridea: Hippolytidae) reared in the laboratory, confirmation of the conspecific status of the two forms
FIGURE 4. A–E Stage V, F–H Stage VI and I– K Stage VII. A. Telson; B. Uropod; C. 3rd Maxilliped; D. 1st Pereiopod; E. 2nd Pereiopod; F. Telson; G. 1st Maxilliped; H. 2nd Maxilliped; I. 1st and 2nd Pleopods; J. Telson; K. Antennula. Scales: A. 0.015mm; B. 0.040mm; C. 0.003mm; D. 0.0011mm; E. 0.028mm; F. 0.038mm; G. 0.066mm; H. 0.028mm; I. 0.019mm; J. 0.039mm; K. 0.046mm.
FIGURE 2. A – G Stage II and H – N Stage III. A in Larval development of the shrimp Hippolyte sapphica d'Udekem d'Acoz, 1993 forma A and B (Decapoda: Caridea: Hippolytidae) reared in the laboratory, confirmation of the conspecific status of the two forms
FIGURE 2. A – G Stage II and H – N Stage III. A. Eye; B. Telson; C. Antennula; D. Antenna; E. Maxillula; F. 3rd Maxilliped; G. 1st Pereiopod; H. Telson; I. Pleopod; J. Antenna; K. Maxilla; L. 2nd Maxilliped; M.1st Pereiopod; N. Pereiopods. Scales: A. 0.0731mm; B. 0.0731mm; C. 0.033mm; D. 0.044mm; E. 0.002mm; F. 0.0044mm; G. 0.0066mm; H. 0.078mm; I. 0.018mm; J. 0.034mm; K. 0.002mm; L. 0.028mm; M. 0.0012mm; N. 0.045mm.
FIGURE 5. Stage Immature. A and B. Forma A in Larval development of the shrimp Hippolyte sapphica d'Udekem d'Acoz, 1993 forma A and B (Decapoda: Caridea: Hippolytidae) reared in the laboratory, confirmation of the conspecific status of the two forms
FIGURE 5. Stage Immature. A and B. Forma A Rostrum; C. Forma B Rostrum; D. 1st Pleopod (male); E. 2nd Pleopod (male); F. 1st Pleopod (female); G. 2 nd Pleopod (female); H. Telson; I. Uropod; J. Antennula. Scales: A. 0.019mm; B. 0.019mm; C. 0.2475mm; D. 0.044mm; E. 0.044mm; F. 0.039mm; G. 0.038mm; H. 0.090mm; I. 0.090mm; J. 0.026mm.
FIGURE 3. Stage IV. A in Larval development of the shrimp Hippolyte sapphica d'Udekem d'Acoz, 1993 forma A and B (Decapoda: Caridea: Hippolytidae) reared in the laboratory, confirmation of the conspecific status of the two forms
FIGURE 3. Stage IV. A. Pleopod; B. Telson; C. Antenna; D. Maxillula; E. Maxilla; F. 1st Maxilliped; G. 2nd Maxilliped; H. 3rd Maxilliped; I. 1st Pereiopod; J. 2nd Pereiopod; K. 3rd Pereiopod. Scales: A. 0.029mm; B. 0.039mm; C. 0.016mm; D. 0.021mm; E. 0.0013mm; F. 0.0044mm; G. 0.0025mm; H. 0.044mm; I. 0.017mm; J. 0.017mm; K. 0.028mm.
FIGURES 1–5 Ixodes luciae larval chaetotaxy. 1. Gnathosoma dorsal view. 2. Gnathosoma ventral view. 3. Idiosoma dorsal view. 4. Idiosoma ventral view. 5. Tarsus I in Description of immature stages and redescription of adults of Ixodes luciae Sénevet (Acari: Ixodidae)
FIGURES 1–5 Ixodes luciae larval chaetotaxy. 1. Gnathosoma dorsal view. 2. Gnathosoma ventral view. 3. Idiosoma dorsal view. 4. Idiosoma ventral view. 5. Tarsus I dorsolateral view. Abbreviations: CHO, capsule of Haller's organ; Pv, pulvillus. Setal abbreviations: A, anal; Cd, central dorsal; CIa, coxa I anterior; CIp, coxa I posterior; CIpa, coxa I paraxial; CIIa, coxa II anterior; CIIp, coxa II posterior; CIIIa, coxa III anterior; CIIIp, coxa III posterior; dII, dorsal (group II); dIII, dorsal (group III), dVI, dorsal (group VI); Fa, femoral antiaxial; Fd, femoral dorsal; Fp, femoral paraxial; Fv, femoral ventral; Ga, genual antiaxial; Gd, genual dorsal; Gp, genual paraxial; Gv, genual ventral; LaI, lateral anterior (group I); LaII, lateral anterior (group II); LpI, lateral posterior (group I); LpII, lateral posterior (group II); Md, maginal dorsal; Mv, marginal ventral; Pa, pre-anal; Ph, posthypostomal; Pm, premarginal; Sc, scutal; St, sternal; Ttt, tibiotarsal; vI, ventral (group I); vII, ventral (group II); vIII, ventral (group III). Scale-bars: 1, 2, 3, 4, 5, 100 µm.
FIGURE 10 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 10. Plesionika narval, detail of the distal row of spinules of telson: zoea I. Scale bar: 20 µm.
FIGURE 8 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 8. Plesionika narval, first pereiopod: A, zoea III; B, zoea IV; C, zoea V; second pereiopod: D, zoea IV; E, zoea V. Scale bar: 100 µm.
FIGURE 5 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 5. Plesionika narval, maxillule: A, zoea I; B, zoea II; maxilla: C, zoea I. Scale bars: 100 µm.
FIGURE 4 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 4. Plesionika narval, antenna: A, zoea I; B, zoea III; C, zoea IV; D, zoea V. Scale bar: 100 µm.
FIGURE 9 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 9. Plesionika narval, telson: A, zoea I; B, zoea II; C, zoea III; D, zoea IV. Scale bar: 100 µm.
FIGURE 6 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 6. Plesionika narval, first maxilliped: A, zoea I; B, zoea II; second maxilliped: C, zoea I; D, zoea II. Scale bar: 100 µm.
FIGURE 7 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 7. Plesionika narval, third maxilliped: A, zoea I; B, zoea II; C, zoea III; D, zoea IV; E, zoea V. Scale bars: 100 µm.
FIGURE 3 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 3. Plesionika narval, antennule: A, zoea I; B, zoea II; C, zoea III; D, zoea IV; E, zoea V. Scale bars: 100 µm.
FIGURE 2 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 2. Plesionika narval, Cephalotorax dorsal view: A, zoea I; B, zoea II; C, zoea III; D, zoea IV; E, zoea V. Scale bar: 500 µm.
FIGURE 1 in Description of the first five larval stages of Plesionika narval (Fabricius, 1787) (Crustacea, Decapoda, Pandalidae) obtained under laboratory conditions
FIGURE 1. Plesionika narval, lateral view: A, zoea I; B, zoea II; C, zoea III; D, zoea IV; E, zoea V. Scale bar: 500 µm.
Figs. 9–10. Myrmeanthrenus frontalis. 9, abdominal tergum 1 in Description of the Larval Stage ofMyrmeanthrenus frontalisArmstrong andAnthrenocerus stigmacrophilusArmstrong (Coleoptera: Dermestidae), with a Discussion of their Phylogenetic Relationships
Figs. 9–10. Myrmeanthrenus frontalis. 9, abdominal tergum 1, right half, lateral setae abbreviated, scale line 0.5 mm; 10, abdominal segment 9, denuded, scale line 0.1 mm.
Figs. 21–24. Anthrenocerus australis. Scale line 0.1 in Description of the Larval Stage ofMyrmeanthrenus frontalisArmstrong andAnthrenocerus stigmacrophilusArmstrong (Coleoptera: Dermestidae), with a Discussion of their Phylogenetic Relationships
Figs. 21–24. Anthrenocerus australis. Scale line 0.1 mm. 21, maxilla, dorsal; 22, right antenna, ventral; 23, epipharynx; 24, abdominal tergum 1, right half, long setae abbreviated.
Figs. 2–8. Myrmeanthrenus frontalis. Figs 2, 3 scale line 0.05 in Description of the Larval Stage ofMyrmeanthrenus frontalisArmstrong andAnthrenocerus stigmacrophilusArmstrong (Coleoptera: Dermestidae), with a Discussion of their Phylogenetic Relationships
Figs. 2–8. Myrmeanthrenus frontalis. Figs 2, 3 scale line 0.05 mm; figs 4–8 scale line 0.1 mm. 2, club-shaped spinulate setae from pronotum; 3, hastisetae from pronotum and abdominal tergum 1; 4, left antenna, ventral, segments 2 and 3; 5, epipharynx; 6, left mandible, dorsal; 7, apex of maxilla, ventral; 8, apex of maxilla, dorsal.
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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.