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75 results for “SEM morphology”
Figures 627-632. Elytra, SEMs. 627-628 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 627-632. Elytra, SEMs. 627-628, Baris sp. 627, apical region of elytron, dorsal aspect; 628, medial region of elytron, dorsal aspect. 629, Zygobaris sp., setae along elytral suture, dorsal aspect; 630, Diorymeropsis disjuncta, ventral view showing submarginal fold; 631, Diorymeropsis disjuncta, microtrichia along submarginal fold (ventral view); 632, Pertorcus sp., elytral apex (ventral view), showing apical field of microtrichia.
Figures 619-626. Elytra, SEMs. 619-621 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 619-626. Elytra, SEMs. 619-621, Anthinobaris sp., setae along intervals and associated pores; 622, Anthinobaris sp., showing dense covering of setae (not organized into rows) on intervals; 623, Anthinobaris sp., showing scattered setae (not organized into rows) on intervals; 624, Anthinobaris sp., showing single row of setae on each interval; 625, Anthinobaris sp., showing scattered setae (not organized into rows) on intervals; 626, Anthinobaris sp., showing single row of setae on each interval.
Figures 175-182. Antennae, SEMs. 175 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)
Figures 175-182. Antennae, SEMs. 175, Idiostethus subcalvus; 176, Stethobaris laevimargo; 177, Pertorcus sp.; 178, Madarus bistrigellus; 179-180, Cylindrocerus comma, showing elongate club; 181-182, Taiwanobaris sp., showing annulation on 3rd club article.
Fig. 12. Cistenides hyperborea Malmgren, 1866. SEM micrographs from a in Taxonomy and distribution of Pectinariidae (Annelida) from Iceland with a comparative analysis of uncinal morphology
Fig. 12. Cistenides hyperborea Malmgren, 1866. SEM micrographs from a medium-sized specimen (BIOICE sample 2660, IINH-40474). A. Anterior end, right lateral view (framed: paleae distal end, detail). B–C. Unciniger 1, dorsal and ventral uncini, respectively. D–E. Unciniger 9, dorsal and ventral uncini, respectively. F. Scaphal hooks.
Figure 3 in The tubificids (Annelida, Oligochaeta) of Lake Trasimeno and Lake Piediluco in Central Italy, with a study of SEM morphology of some species
Figure 3. Chaetae under SEM. Tubifex tubifex: a) anterior hair (H) and pectinate (Pe) dorsal chaetae; b) detail of a pectinate chaeta; c) dorsal postclitellar chaetae (H, hair; B, bifid dorsal chaeta without intermediate teeth); d) bundles 2 of ventral bifid chaetae. Psammoryctides barbatus: e) bundles of anterior dorsal chaetae (H, hair; Pa, palmate); f) detail of a palmate chaeta showing the fringes, each of them with a distal end thinner and folded backwards; g) dorsal postclitellar chaetae; h) bundles of ventral bifid chaetae, whose detailed apical region is zoomed in the inset.
Fig. 8. SEM photos. A‒C in Six new species of Zaischnopsis Ashmead (Hymenoptera: Chalcidoidea: Eupelmidae) from China based on morphological and molecular data
Fig. 8. SEM photos. A‒C. Parascrobal region, show sculpture and setae. A. Zaischnopsis covid Jiang & Peng sp. nov. B. Z. campaniformis Tang & Peng sp. nov. C. Z. pacis Jiang & Peng sp. nov. D‒J. Seta of gena. D. Z. covid. E‒F. Z. fuscolivida Tang & Peng sp. nov. G. Z. lii Jiang & Peng sp. nov. H. Z. pacis. I. Z. campaniformis. J. Z. zhongi Jiang & Peng sp. nov. K‒O. Z. lii. K. Mesosoma. L. Setae of anterior convex region of mesoscutal medial lobe. M. Setae of posterior depressed region of mesoscutal medial lobe. N. Setae of mesoscutal lateral lobe. O. Setae of axilla.
Fig. 7. SEM photos. A‒F. Head. A in Six new species of Zaischnopsis Ashmead (Hymenoptera: Chalcidoidea: Eupelmidae) from China based on morphological and molecular data
Fig. 7. SEM photos. A‒F. Head. A. Zaischnopsis covid Jiang & Peng sp. nov. B. Z. fuscolivida Tang & Peng sp. nov. C. Z. lii Jiang & Peng sp. nov. D. Z. pacis Jiang & Peng sp. nov. E. Z. campaniformis Tang & Peng sp. nov. F. Z. zhongi Jiang & Peng sp. nov. G. Z. covid, front part of frons, show sculpture and setae. H. Z. campaniformis, sculpture and setae around anterior ocellus. I. Z. lii, front part of frons, show sculpture and setae.
FIGURES 35–42. General Morphology, SEM. 35 in A study of the subfamily Archoleptonetinae (Araneae, Leptonetidae) with a review of the morphology and relationships for the Leptonetidae
FIGURES 35–42. General Morphology, SEM. 35. Archoleptoneta schusteri, female, right endite, ventral, Burdell Mountain, Marin County, CA, USA, arrows to paired stout setae; 36. Leptoneta infuscata, female, left endite, ventral, Cova de l'avenc, Spain; 37. A. schusteri, female, tarsal organ, right tarsus, leg I, Burdell Mountain; 38. L. infuscata, female, tarsal organ, right tarsus, leg I, Cova de l'avenc, Spain; 39. A. schusteri, male, tarsal organ, right tarsus, leg I, Burdell Mountain; 40. L. infuscata, male, tarsal organ, right tarsus, leg I, Cova de l'avenc, Spain; 41. A. schusteri, female, left chelicera, Burdell Mountain; 42. Neoleptoneta myopica, female, right chelicera, Gallifer Cave, Travis County, TX, USA.
FIGURES 31–36. Luciola substriata first instar larva, SEM. 31, 32 in The external larval morphology of aquatic and terrestrial Luciolinae fireflies (Coleoptera: Lampyridae)
FIGURES 31–36. Luciola substriata first instar larva, SEM. 31, 32 body, dorsal (31) and ventral; 33 ventral abdominal segments 3–7; 34 anterior portion of prothorax and retracted head, ventral; 35 left antenna, ventral; 36 apical maxillary palpomere, ventral.
FIGURE 8 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 8. Salivary gland chromosomes of Glyptotendipes glaucus; a—Chromosome AB; b—Chromosome CD; c— Chromosome EF; d—Chromosome G.
FIGURE 3 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 3. Glyptotendipes glaucus larvae (light microscope); A—Head, ventral view; B—Premandible; C—Seta subdentalis of mandible; D—Lower part of labrum; E—Mentum. Abbreviations: BS—basal sclerite; ChL—chaetulae laterales; LL—labral lamella; M—mentum; MP—maxilary palpus; PE—pecten epipharings; Pm—premandible; U—ungula.
FIGURE 4 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 4. Glyptotendipes glaucus larvae—maxilla (SEM); A—Head capsule, ventral view (200x); B—Maxilla (200x); C— Maxilary palp and setae maxillaris (SM 1 and SM 2) (1000x); D—Maxilary palp (1000x); E—Lacinia, left side (750x); F— Lacinia, right side (750x); G—Plate X (2000x); G1. Part of plate X (5000x). Abbreviations: A—a seta; Aa—antaxial seta; Bb seta; Bs—bisensillum; G—galea; La—lacinia; LCh—lacinial chaeta; LL—labral lamella; M—mentum; MP—maxillary palp; Pa— paraxial seta;? Pl X—plate X; SM 1 and SM 2 —setae maxillaris;VmP—ventromental plate.
FIGURE 7 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 7. Glyptotendipes glaucus larvae—anal end of body, lateral view (SEM); A—General view (75x); B—Ventral tubules, ventral view (350x); C—Anal end of body, ventral view (75x). Posterior parapod (200x); D—Procercus and anal tubules (200x); E—Posterior parapods (200x); F—Claws of posterior parapods (500x). Abbreviations: PP—parapods; TAanal tubule; TV—ventral tubules.
FIGURE 2 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 2. Glyptotendipes glaucus larvae—labrum (SEM); A—General view of labrum (350x); B—Anterior part of labrum (750x); C—Labral lamela (1000x); D—Part of labrum (2000x); E—Pecten epipharingis (5000x). Abbreviations: Ch—chaeta of labrum; LL—labral lamella; PE—pecten epipharingis; S I, S II, S III—labral setas; TB—tormal bar.
FIGURE 1 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 1. Glyptotendipes glaucus larvae—head; A—Head capsule, side view (SEM 75x); B— Granulation of head surface (SEM 2000x); C—Head, dorsal view (SEM 150x); D—Head, dorsal view (light microscope); E—Antenna (SEM 200x); F— Antenna (SEM 1000x); G—Antenna (light microscope). Abbreviations: A.P. —anterior parapods; ABl—accessory blade; Blantennal segments II–V; S 1, S 2 —labral setae; Sl 1—labral sclerite 1; Sl 2—sclerite 2, anterior margin strongly concave; Sl 3—labral sclerite 3; Sl 4—labral sclerite 4.
FIGURE 10 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 10. Maxilla of some species of Chironomini; A—Glyptotendipes glaucus: mentum, ventromental plate and maxilla (accord. to Kalugina 1963); B—Chironomus anthracinus: maxilla (accord. to Mozley 1970), description of figure in Saether (1980); C—Dicrotendipes californicus (according to Sublette 1979); D—Glyptotendipes (G.) pallens syn. G. (G.) polytomus (accord. to Kraatz 1911), description Romaniszyn (1958); E—Glyptotendipes glaucus current research.
FIGURE 6 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 6. Glyptotendipes glaucus larvae (SEM); A—Head capsule, side view (75x); B—General view of anterior parapods (100x); C—Claws (150x). a. hook claws, b. sicle claws, c. straight shape claws; D—Fold claws (1000x); E—Fold claws (1500x); F—Sicle claws (1500x); G—Sicle claws (3500x); H—Straight shape claws (2000x); I—Straight shape claws (3500x). Abbreviations: A.P. —anterior parapods.
FIGURE 5 in Larva of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Chironomidae, Diptera) — morphology by Scanning Electron Microscope (SEM), karyotype, and biology in laboratory conditions
FIGURE 5. Ventromental plate; A, A1—Microtendipes pedullus inner surface of ventromental place (accord. Webb 1980); B—F Glyptotendipes glaucus larvae; B—Head capsule, ventral view, right side (SEM 200x); C—Anterior margin of ventromental plate (SEM 500x); D—Anterior margin of ventromental plate (SEM 5000x); E—Anterior margin of ventromental plate (SEM 15000x); F—Ventromental plate (light microscope). Abbreviations: L—labrum; lp—ling plate; Mmentum; MP—maxillary palp; VmP—ventromental plate.
FIGURE 8 in Morphology of the adult male and pupal exuviae of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Diptera, Chironomidae) using scanning electron microscope (SEM)
FIGURE 8. Glyptotendipes glaucus—pupal exuviae; a―Anal lobe (75x); b―Segment VIII and anal segment (light microscope); c―comb of segment VIII (light microscope); d―Comb of dorsal view (SEM, 3500x); e―Comb of ventral view (SEM, 1000x); f―Comb of ventral view (SEM, 2000x). Abbreviations: AC―anal comb; Fr―anal fringe of filament; LS―lateral seta.
FIGURE 5 in Morphology of the adult male and pupal exuviae of Glyptotendipes (Glyptotendipes) glaucus (Meigen 1818) (Diptera, Chironomidae) using scanning electron microscope (SEM)
FIGURE 5. Glyptotendipes glaucus male—hypopygium; a―Hypopygium, dorsal view (SEM, 150x); b―Hypopygium, ventral view (SEM, 150x); c―Hypopygium, lateral view (SEM, 150x); d―Anal point, lateral view (SEM, 1000x); e―Hypopygium (light microscope); f―superior volsella (light microscope). Abbreviations: AnP―anal point; Gc―gonocoxite; Gs―gonostylus; IVo―interior volsella; SVo―superior volsella.
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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)
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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.