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3,249 results for “Identification Key”
FIGURE 12. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 12. a Phenes raptor, Hw (modified from Garrison et al. 2006); b Phenes raptor, labium, posterior view (modified from Garrison et al. 2006); c Phenes raptor, male terminalia, lateral view (modified from Garrison et al. 2006); d Phenes raptor, female terminalia, lateral view (modified from Matushkina & Klass 2011).
FIGURE 43. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 43. a Phyllopetalia apollo, prementum, anterior portion (modified from Pessacq & Brand, 2009); b Phyllopetalia apollo, head and detail of clypeus, dorsal view (modified from Pessacq & Brand 2009); c Hypopetalia pestilens, prementum, anterior portion (modified from Pessacq & Brand 2009); d Hypopetalia pestilens, head and detail of clypeus, dorsal view (modified from Pessacq & Brand 2009).
FIGURE 9. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 9. a Antiagrion blanchardi, posterior lobe of prothorax of female, dorsal view; b Antiagrion gayi, male terminalia, dorsolateral view; c Antiagrion gayi, posterior lobe of prothorax of female, dorsal view; d Antiagrion grinbergsi, male cercus, inner view.
FIGURE 11. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 11. a Neogomphus bidens, Hw (modified from Garrison et al. 2006); b Progomphus joergenseni, labium, posterior view; c Progomphus joergenseni, male terminalia, lateral view (modified from von Ellenrieder & Garrison, 2007); d Progomphus joergenseni, female terminalia, lateral view.
FIGURE 10. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 10. a Antiagrion grinbergsi, lateral apophysis of posterior lobe of prothorax of female, dorsolateral view; b Antiagrion grinbergsi, female head, dorsal view; c Antiagrion gayi, lateral apophysis of posterior lobe of prothorax of female, dorsolateral view; d Antiagrion gayi, female head, dorsal view.
FIGURE 3. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 3. a Phenes raptor, head, dorsal view (modified from Garrison et al. 2006); b Neopetalia punctata, head, dorsal view (modified from Garrison et al. 2006); c Rialla villosa, head, dorsal view (modified from Garrison et al. 2006); d Erythrodiplax atroterminata, wings (modified from von Ellenrieder & Garrison, 2007); e Rhionaeschna diffinis, male terminalia, dorsal view (modified from von Ellenrieder, 2003).
FIGURE 2. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 2. a Antiagrion grinbergsi, head, dorsal view; b Coenagrionidae, wings; c Lestes undulatus, male terminalia, lateral view; d Cyanallagma interruptum, female terminalia, lateral view.
FIGURE 7. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 7. a Cyanallagma interruptum, male terminalia, lateral view; b Cyanallagma interruptum, female terminalia, lateral view; c Antiagrion antigone, male terminalia, lateral view; d Antiagrion antigone, female terminalia, lateral view.
FIGURE 6. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 6. a Antiagrion blanchardi, female thorax, dorsal view; b Ischnura fluviatilis, male terminalia, lateral view; c Ischnura fluviatilis, female thorax, dorsal view.
FIGURE 5. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 5. a Antiagrion antigone, male terminalia, lateral view; b Ischnura fluviatilis, female thorax, dorsal view; c Oxyagrion rubidum, male terminalia, lateral view; d Oxyagrion rubidum, female thorax, dorsal view.
FIGURE 8. a in The Odonata (Insecta) of Patagonia: A synopsis of their current status with illustrated keys for their identification
FIGURE 8. a Antiagrion antigone, posterior lobe of prothorax of female, dorsal view; b Antiagrion grinbergsi, male terminalia, lateral view; c Antiagrion grinbergsi, posterior lobe of prothorax of female, dorsal view.
FIGURE 1 in A new species of Parapinnanema (Nematoda, Chromadoridae) from Dr Theodor Mortensen's Pacific Expedition 1914 – 16 with an identification key to the genus
FIGURE 1. Parapinnanema hawaiiensis sp. nov. A) holotype habitus; B) detail of the buccal cavity of the holotype; C) detail of the cuticular ornamentation in the cervical region of a male paratype; D) cuticular ornamentation in the middle body of the holotype; E) caudal region of the holotype; F) detail of the copulatory apparatus of the holotype; G) pattern of the cuticular ornamentation in the cloacal region of a male paratype. Scale bars: A, 100µm; B, C, E, F, G 10 µm; D, 50 µm.
FIGURE 3 in A new species of Parapinnanema (Nematoda, Chromadoridae) from Dr Theodor Mortensen's Pacific Expedition 1914 – 16 with an identification key to the genus
FIGURE 3. Light micrographs of Parapinnanema hawaiiensis sp. nov. A) buccal cavity of the holotype; B) detail of the precloacal modification of the cuticle of a male paratype; C) and D) details of the copulatory apparatus of the holotype. Scale bars: A, B, C, D, 10 µm.
FIGURE 2 in A new species of Parapinnanema (Nematoda, Chromadoridae) from Dr Theodor Mortensen's Pacific Expedition 1914 – 16 with an identification key to the genus
FIGURE 2. Parapinnanema hawaiiensis sp. nov., female paratype A) buccal cavity; B) detail of the change of direction (indicated by the arrows) of the epicuticle sculpture in the vulvar region; C) detail of the ovaries, eggs and vulva. Scale bars: A, 10 µm; B, 50 µm; C, 100 µm.
FIGURES 1–12 in Description of Cyclocephala distincta Burmeister (Coleoptera: Scarabaeidae: Dynastinae: Cyclocephalini) immatures and identification key for third instars of some Cyclocephala species
FIGURES 1–12. Male adult Cyclocephala distincta (1); third instar, lateral view (2); head capsule (3); labrum (4); antennal sensory spots (5); left mandible, dorsal view (6); left mandible, ventral view (7); right mandible, dorsal view (8); right mandible, ventral view (9); maxilla, ventral view (10); hypopharynx, ventral view (11); epipharynx (12).
FIGURES 16–18 in Description of Cyclocephala distincta Burmeister (Coleoptera: Scarabaeidae: Dynastinae: Cyclocephalini) immatures and identification key for third instars of some Cyclocephala species
FIGURES 16–18. Pupa of Cyclocephala distincta: body dorsal view (16); body ventral view (17); ventral apex of last abdominal sternite (18).
FIGURES 13–15 in Description of Cyclocephala distincta Burmeister (Coleoptera: Scarabaeidae: Dynastinae: Cyclocephalini) immatures and identification key for third instars of some Cyclocephala species
FIGURES 13–15. Third instar of Cyclocephala distincta: tarsal claw of medium leg (13); raster (14); abdominal spiracle (15).
FIGURE 9. Naushonia draconis Anker, 2014 in Additional records of the laomediid mud-shrimp genus Naushonia Kingsley, 1897 (Crustacea: Decapoda: Gebiidea), with a revised identification key
FIGURE 9. Naushonia draconis Anker, 2014, male (A–H; pocl 5.1 mm) and female (I, J; pocl 5.6 mm) from Isla de la Juventud, Cuba (MZUSP 33201), A, pleon, mid-dorsal crests of first to sixth pleomeres, lateral view; B, same, ventral margins of pleomeres, lateral view; C, right mandible, lateral view; D, same, mesial view; E, right maxillule, lateral view; F, right maxilla, lateral view; G, right first maxilliped, lateral view; H, epipod complex of right third pereopod, lateral view; I, pleon, mid-dorsal crests of first to fourth pleomeres, lateral view; J, left cheliped, chela and distal portion of carpus, ventral view. Scale bars: 1 mm for A, B, E-G, I, J; 0.5 mm for C, D.
FIGURE 8 in Additional records of the laomediid mud-shrimp genus Naushonia Kingsley, 1897 (Crustacea: Decapoda: Gebiidea), with a revised identification key
FIGURE 8. Naushonia serratipalma Komai & Anker, 2010, female (pocl 3.0 mm) from Al Lith, Red Sea coast of Saudi Arabia, FLMNH UF Crustacea 35970, living individual in dorsal and lateral views.
FIGURE 7 in Additional records of the laomediid mud-shrimp genus Naushonia Kingsley, 1897 (Crustacea: Decapoda: Gebiidea), with a revised identification key
FIGURE 7. Naushonia serratipalma Komai & Anker, 2010, female (pocl 3.0 mm) from Al Lith, Red Sea coast of Saudi Arabia, FLMNH UF Crustacea 35970. A, anterior part of carapace and cephalic appendages, dorsal view; B, right cheliped, dorsal view (damaged on mesial side); C, same, ventral view; D, telson, dorsal view (setae omitted). Scale bars: 0.5 mm.
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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.