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3,507 results for “Species identification”
Figure 1 in A new species of Sisyra Burmeister, 1839 (Neuroptera: Sisyridae) from Peru, with identification key to the Neotropical species of the genus
Figure 1 Tambopata National Reserve (TNR) map, with geographic coordinates, highlighted from Peru, which is located in South America. Sisyra tambopatensis sp. nov. was collected at Tambopata River.
Figs. 43–44 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 43–44. Cyclocephala melanocephala, third instar larva; 43, raster; 44, setae detail; a, pali; b, hamate setae; c, short setae; d, long setae. Scale, Fig. 43 = 1 mm; Fig. 44 = 0.5 mm.
Figs. 26–42 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 26–42. Cyclocephala melanocephala, third instar larva; 26–28, right legs and pleurites (anterior, medial, posterior); 29–31, right pro-, meso- and metapretarsus, dorsal; 32–33, detail of perforations of mesothoracic spiracle (dorsal arm, medial area); 34–42, mesothoracic spiracle and abdominal spiracles I–VIII. Scale, Fig. 26 = 0.3 mm; Figs. 29, 34 = 0.1 mm; Fig. 32 = 0.05 mm.
Figs. 23–25 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 23–25. Cyclocephala melanocephala, third instar larva; 23, maxilla, internal; 24, maxilla, hypopharynx, ligula, dorsal; 25, maxilla, labium, ventral. ppa, posterior preoral area. Scale = 0.5 mm.
Figs. 7–12 in Mating behavior and description of immature stages of Cyclocephala melanocephala (Fabricius, 1775) (Coleoptera: Scarabaeidae: Dynastinae), identification key and remarks on known immatures of Cyclocephalini species
Figs. 7–12. Cyclocephala melanocephala, third instar larva; 7, cranium and clypeus, dorsal; 8, labrum, dorsal (epipharyngeal ventral setae omitted); 9–12, left antenna (dorsal, internal, external, ventral; external and internal sides with apex detail; some sensilla numbered to easily the correspondence; sensillum h can be absent). Chaetotaxy (italic) on the text. Scale = 0.5 mm (antennal details with magnification four times bigger than antennae).
Fig. 12 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 12. Spermathecae. (A) Oxysarcodexia paulistanensis, lateral view; scale: 0.05 mm; (B) Oxysarcodexia riograndensis, lateral view; scale: 0.05 mm; (C) Peckia (Pattonella) intermutans, lateral view; scale: 0.05 mm; (D) Peckia (Pattonella) resona, lateral view; scale: 0.05 mm; (E) Peckia (Euboettcheria) australis, lateral view; scale: 0.05 mm; (F) Peckia (Euboettcheria) florencioi, ventral view; scale: 0.05 mm; (G) Peckia (Sarcodexia) lambens, ventral view; scale: 0.05 mm; (H) Microcerella halli, lateral view; scale: 0.1 mm; (I) Sarcophaga (Bercaea) africa, lateral view; scale: 0.05 mm.
Fig. 10 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 10. External female morphology of Sarcophaga (Bercaea) africa. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view; scale: 1 mm.
Fig. 7 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 7. External female morphology of Peckia (Euboettcheria) florencioi. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 1 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view, scale: 1 mm.
Fig. 5 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 5. External female morphology of Peckia (Pattonella) resona. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 1 mm; (D) abdomen, ventral view; scale: 2 mm.
Fig. 4 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 4. External female morphology of Peckia (Pattonella) intermutans. (A) Habitus, lateral view; scale: 1 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 1 mm; (D) abdomen, ventral view; scale: 2 mm.
Fig. 9 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 9. External female morphology of Microcerella halli. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 1 mm; (D) abdomen, ventral view; scale: 1 mm.
Figure 2 in An emended description of Sminthurinus lawrencei Gisin 1963, with notes on the identification of black Sminthurinus species
Figure 2. Dental chaetotaxy of Sminthurinus sp. (A) S. lawrencei (material from Belgium), (B) S. lawrencei ventral view (material from Belgium), (C) S. niger (material from th Netherlands), (D) S. niger ventral view (the netherlands), (E) S. aureus (The Netherlands), (F) S. trinotatus (Belgium), (G) S. trinotatus (ventral view) (Belgium). All images were made using an Olympus CHC microscope at 400x magnification, on specimens cleared in NaOH. In B, D and G, asterisk represent positions of missing setae.
Figure 4 in An emended description of Sminthurinus lawrencei Gisin 1963, with notes on the identification of black Sminthurinus species
Figure 4. Distribution of localities of verified records of Sminthurinus lawrencei in Western Europe. The Canadian record is not shown. Circles represent records supported by collection material. The diamond indicates the location of the type locality (Gisin, 1963; United Kingdom). The squares represent literature records.
Figure 3 in An emended description of Sminthurinus lawrencei Gisin 1963, with notes on the identification of black Sminthurinus species
Figure 3. Morphological features of Sminthurinus lawrencei. (A) Habitus of adult Sminthurinus lawrencei ♀ (NL), (B) enlargement of the ocular field of the same specimen. (C) Third antennal segment basal papillae (right antennae), from top; material from the Netherlands, Belgium, and Great Britain, (D) retinaculum (from left; Belgium and the Netherlands), (E) left trichobothrium D on the sixth abdominal segment (material from Belgium). (F) female subanal appendages (from left; the Netherlands, Belgium, United Kingdom, and Belgium). (G) claw of the third leg, right hind leg (the Netherlands), All drawings were derived from images made using an Olympus CHC microscope at 400x magnification, on specimens cleared in 10 % NaOH. All drawings by James McCulloch (in Inkscape), all images by Jan van Leeuwen.
Figure 5 in An emended description of Sminthurinus lawrencei Gisin 1963, with notes on the identification of black Sminthurinus species
Figure 5. Habitus features of dark Sminthurinus-species fixed in ethanol. (A) S. lawrencei (material from Belgium), inter-ocular vesicle (i.e. 'eye brow') small, distance> 2x eyepatch diameter, (B) S. niger (material from the Netherlands) inter-ocular vesicle circumventing the ocular field, distance inter-ocular vesicle smaller than ocular field (C) S. concolor (material from Yersey Island), inter-ocular vesicle large, with a single indentation, distance <than two 2x inter-ocular vesicle diameter. Images show representative specimens from various locations, collected in 70 % ethanol. Arrows point to the inter-ocular vesicular patches.
Figure 3 in First report of two species of the genus Minous Cuvier, 1829 (Scorpaeniformes: Synanceiidae) from Indian coast, with a key for the identification of Indian species
Figure 3. Pattern of inner surface of pectoral fin in different species of Genus Minous from Indian waters. A. Minus monodactylus (Bleeker, 1855); B. Minous trachycephalus (Bleeker, 1855); C. Minous dempsterae Eschmeyer, Hallacher & Rama-Rao, 1979; D. Minous pictus Gunther, 1880; E. Minous coccineus Alcock, 1890; F: Minous inermis Alcock, 1884.
Fig. 1 in Aulacocyclus yorkensis a new species of Passalidae (Coleoptera: Scarabaeoidea) from Australia, with a key to the identification of Australian species of the genus
Fig. 1. Aulacocyclus yorkensis sp. nov. (1) Head and anterior part of pronotum. (2) Aedeagus ventral view. (3) Aedeagus dorsal view. Scale bars: 1 mm.
Figure 3 in A new epigean pseudoscorpion species (Pseudoscorpiones: Neobisiidae) from northeast of Iran, with an identification key to the species of the family Neobisiidae from Iran
Figure 3. Pedipalpal femur proportions of R. viti Mahnert, 1974 from northern Iran and R. khorasanicus sp. n. from north eastern Iran.
Figure 2. R in A new epigean pseudoscorpion species (Pseudoscorpiones: Neobisiidae) from northeast of Iran, with an identification key to the species of the family Neobisiidae from Iran
Figure 2. R. khorasanicus sp. n., holotype ♂: A) carapace, dorsal view; B) Coxae IV and sternites II–III, ventral view; C) internal genitalia, in part, ventral view; D) right chelicera, dorsal view (serrulae omitted); E) left pedipalp, dorsal view; F) right chela, retrolateral view; G) left coxa, ventral view; H) distal portion of tarsus IV (showing claws, arolia, and sub-terminal seta), retrolateral view.
Fig. 3 in Species-level identification of trypanosomes infecting Australian wildlife by High-Resolution Melting - Real Time Quantitative Polymerase Chain Reaction (HRM-qPCR)
Fig. 3. Phylogenetic tree of seven Trypanosome species and subsequent genotypes constructed with sequences of the amplicons generated by the HRMqPCR primers.
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.