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3,249 results for “Identification Key”
FIGURE 5 in New deep-sea free-living marine nematodes from the Sea of Japan: the genera Siphonolaimus and Halichoanolaimus (Nematoda: Chromadorea) with keys to species identifications
FIGURE 5. Halichoanolaimus brandtae sp. n. A. Holotype male. Total body. B. Allotype female. Total body. C. Head with amphid, denticles, and mandibles. D. Tail region with spicule, gubernaculum, and supplements. Scale bars: A, B–150 µm; C–25 µm; D–50 µm.
FIGURE 4 in New deep-sea free-living marine nematodes from the Sea of Japan: the genera Siphonolaimus and Halichoanolaimus (Nematoda: Chromadorea) with keys to species identifications
FIGURE 4. Siphonolaimus japonicus sp. n. SEM. A. Head, dorso-lateral view. B. Head, apical view. a–amphid, hs–cephalic setae, m–mouth opening, ols–outer labial sensilla, scs–subcephalic setae. Scale bars: 10 µm.
FIGURE 3 in New deep-sea free-living marine nematodes from the Sea of Japan: the genera Siphonolaimus and Halichoanolaimus (Nematoda: Chromadorea) with keys to species identifications
FIGURE 3. Siphonolaimis japonicus sp. n. DIC. A. Male head with siphon. Lateral view. B. Male head with amphid. Lateral view. C. Spicule and gubernaculum. D. Tail region. Scale bars: 20 µm.
FIGURE 1 in New deep-sea free-living marine nematodes from the Sea of Japan: the genera Siphonolaimus and Halichoanolaimus (Nematoda: Chromadorea) with keys to species identifications
FIGURE 1. Study area showing sampling stations. Circle represents site where new species were found.
FIGURE 2 in New deep-sea free-living marine nematodes from the Sea of Japan: the genera Siphonolaimus and Halichoanolaimus (Nematoda: Chromadorea) with keys to species identifications
FIGURE 2. Siphonolaimus japonicus sp. n. A. Holotype male. Total body. B: Allotype female. Total body. C: Holotype male. Anterior end with amphid, siphon, and pharynx. D: Holotype male. Tail with spicule, gubernaculum, and caudal glands. Scale bars: A, B–200 µm, C–25 µm, D–100 µm.
FIGURES 1–4 in A new species of Decaphora Franganillo, 1931 (Araneae, Sparassidae, Sparianthinae) from Colombia, with an identification key for all known species of the genus
FIGURES 1–4. Decaphora planada sp. nov. 1–3 Male, left palp (1 prolateral, 2 ventral, 3 retrolateral); 4 Embolus, ventral view, detail of tip. C—conductor; dRTA—dorsal lobe of RTA; E—embolus; MA—median apophysis; mRTA—median lobe of RTA; PTPparaembolic tegular apophysis; TBC—tegular projection at the base of the conductor; TBE—tegular projection at the base of the embolus; vRTA—ventral lobe of RTA. Scale lines: 1mm.
FIGURE 17. Croton serpyllifolius. A. Habit. B. Staminate flower. C. Pistillate flower. D in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 17. Croton serpyllifolius. A. Habit. B. Staminate flower. C. Pistillate flower. D. Detail of twice bifid styles. E. Capsule. C. serratifolius. F. Young branch. G. Stipules with multiple glandular colleters. H. Inflorescence. I. Pistillate flower. J. Young capsule showing the stalked green colleters along the margins of the sepals. C. splendidus. K. Habit. L. Pistillate flower. M. Capsule. Photos: A.P.N. Pereira.
FIGURE 18 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 18. Map showing the known geographic distributions of Croton splendidus, C. subvillosus, C. thermarum, and C. tricolor in Paraná state.
FIGURE 15. Croton myrianthus. A. Branches with silvery leaves. B. Capsules. C. pycnocephalus. C. Inflorescence. D. Habit. C. sanctaecrucis. E. Inflorescence. F. Leaf with sessile nectary gland. G. Staminate flowers. H. Pistillate flowers with bifid styles. I. Capsules. C. salutaris. J in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 15. Croton myrianthus. A. Branches with silvery leaves. B. Capsules. C. pycnocephalus. C. Inflorescence. D. Habit. C. sanctaecrucis. E. Inflorescence. F. Leaf with sessile nectary gland. G. Staminate flowers. H. Pistillate flowers with bifid styles. I. Capsules. C. salutaris. J. Cut in the bark showing red latex. K. Leaf with stipitate nectary glands. L. Urceolate pistillate flowers. Photos: A–I: A.P.N. Pereira, J, L: R. Riina, K: O.L.M. Silva.
FIGURE 14 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 14. Map showing the known geographic distributions of Croton myrianthus, C. polygonoides, C. pycnocephalus, and C. reitzii in Paraná state.
FIGURE 12 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 12. Map showing the known geographic distributions of Croton longicarpus, C. lundianus, C. macrobothrys, and C. muellerianus in Paraná state.
FIGURE 11. Croton heterodoxus. A. Habit. B. Glandular stipules. C in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 11. Croton heterodoxus. A. Habit. B. Glandular stipules. C. Densely congested inflorescence, with staminate flowers beginning to open. D. Inflorescence with open pistillate flowers. E. Staminate flower at anthesis, visited by beetles. C. ichthygaster. F. Habit. G. Leaves showing a sessile basilaminar nectary glands being visited by antes. H. Inflorescence. I. Pistillate flowers. J. Capsules. C. lanatus. K. Sessile basilaminar nectary glands. L. Pistillate flowers. M. Pistillate flower and capsule; arrow points toa nectary gland associated with a bract. Photos: A.P.N. Pereira.
FIGURE 8 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 8. Map showing the known geographic distributions of Croton fuscus, C. glandulosus, C. glechomifolius, and C. gracilipes in Paraná state.
FIGURE 10 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 10. Map showing the known geographic distributions of Croton grandivelus, C. heterodoxus, C. ichthygaster, and C. lanatus in Paraná state.
FIGURE 20 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 20. Map showing the known geographic distributions of Croton trinitatis, C. triqueter, C. urucurana, C. uruguayensis, and C. vulnerarius in Paraná state.
FIGURE 16 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 16. Map showing the known geographic distributions of Croton salutaris, C. sanctae-crucis, C. serpyllifolius, and C. serratifolius in Paraná state.
FIGURE 6 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 6. Map showing the known geographic distributions of Croton didrichsenii, C. eichleri, C. floribundus and C. fulvus in Paraná state.
FIGURE 5. Croton chaetophorus. A. Habit. B in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 5. Croton chaetophorus. A. Habit. B. Inflorescence with pistillate flowers at the base. C. Staminate flowers. D. Pistillate flowers, note the sepals with green glands (colleters). E. Young capsules. F. Mature capsule, with conspicuous dried colleters on the sepals. C. didrichsenii. G. Habit. H. Congested inflorescence. I. Xylopodium. C. eichleri. J. Habit. K. Stipules. L. Cylindrical acropetiolar nectary glands. M. Reduplicate-valvate sepals of a pistillate flower bud. N. Pistillate flower with tetrafid styles. O. Muricate capsules. Photos: A–N: A.P.N. Pereira, O: R.F. Santos.
FIGURE 7. Croton floribundus. A. Clear latex. B. Stipules. C. Inflorescences. D. Pistillate flowers with multifid styles. E. Muricate capsule. C. fuscus. F. Habit. G. Infloresence with unisexual lower cymules. H. Pistillate flower with tetrafid styles. I in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 7. Croton floribundus. A. Clear latex. B. Stipules. C. Inflorescences. D. Pistillate flowers with multifid styles. E. Muricate capsule. C. fuscus. F. Habit. G. Infloresence with unisexual lower cymules. H. Pistillate flower with tetrafid styles. I. Fruits showing stipitate glands (colleters) on the persistent sepals. C. glandulosus. J. Staminate flowers. K. Pistillate flowers. L. Capsules. Photos: A.P.N. Pereira, E: O.L.M. Silva.
FIGURE 4 in Croton (Euphorbiaceae) of the Brazilian state of Paraná: an annotated checklist, species distribution, and identification key
FIGURE 4. Map showing the known geographic distributions of Croton ceanothifolius, C. celtidifolius, C. chaetophorus, and C. chamaepitis in Paraná state.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.