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789 results for “Psocoptera”
Figures 15–27 in Phylogeny and higher classification of suborder Psocomorpha (Insecta: Psocodea: 'Psocoptera')
Figures 15–27. (15–16) prothorax of Psococerastis nubila (15) and Ectopsocus sp. (16), lateral view; (17) thorax of P. nubila, lateral view; (18) metapleuron of Hemipsocus chloroticus, lateral view; (19–21) mesothoracic dorso-ventral flight muscle of Paramphientomum sp. (19), Stenopsocus sp. (20) and Parachipsocus pacificus (21); (22–23) mesothoracic precoxal bridge and trochantin of Psococerastis nubila (22) and S. sp. (23); (24–25) apex of hind tibia of S. sp. (24) and Psocus sp. (25); distal tarsomere and claws of Psocus sp. (26) and S. sp. (27). Abbreviations: aes = anepisternum; cx = coxa; em = epimeron; es = episternum; kes = katepisternum; pb = precoxal bridge; pes = preepisternum; tr = trochantin.
Figure 3 in Molecular systematics of the suborder Trogiomorpha (Insecta: Psocodea: 'Psocoptera')
Figure 3. ML tree estimated from the data set including taxa with missing data constraining the monophyly of Prionoglarididae. Unconstrained ML analysis does not recover monophyly of Prionoglarididae (indicated by the dotted line). Branch lengths are proportional to ML estimated branch lengths. Support values for the nodes (Bayesian posterior probability/ML bootstrap/ML bootstrap, respectively) are from an unconstrained analysis.
Figure 2 in Molecular systematics of the suborder Trogiomorpha (Insecta: Psocodea: 'Psocoptera')
Figure 2. ML tree estimated from the data set excluding taxa with missing data. Branch lengths are proportional to ML estimated branch lengths. Numbers above the nodes are Bayesian posterior probabilities and ML and MP bootstrap support values, respectively. The numbers below the nodes indicate partitioned Bremer supports of the 18S/Histone 3/16S genes, respectively.
Figure 48 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 48. Phylogenetic relationships among speciesgroups of Trichadenotecnum. Thick nodes indicate New World distribution and thick broken nodes indicate Holoarctic distribution.
Figure 47 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 47. Preferred cladogram of Trichadenotecnum and most parsimonious reconstruction of character states. Character 41 is highlighted (see text).
Figure 46 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 46. Male terminalia structures of Trichadenotecnum cintalapense, showing terminalia in lateral view (A), clunial arm in posterolateral view (B), epiproct in posterior view (C), hypandrium in ventral view (D) and phallosome in ventral (E) and lateral views (F).
Figure 44 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 44. Male terminalia structures of Trichadenotecnum obrienorum, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral (D) and lateral views (E).
Figure 42 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 42. Male terminalia structures of Trichadenotecnum miffy, showing clunial arm in lateral view (A), epiproct in posterior view (B), paraproct in lateral view (C), hypandrium in ventral view (D) and phallosome in ventral (E).
Figure 45 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 45. Female genitalia of Trichadenotecnum obrienorum, showing subgenital plate (A), gonapophyses (B) and internal plate (C) in ventral view.
Figure 43 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 43. Male terminalia structures of Trichadenotecnum decui, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral view (D).
Figure 41 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 41. Male terminalia structures of Trichadenotecnum denticulatum, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral (D) and lateral views (E); everted endophallus is not illustrated in D or E.
Figure 38 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 38. Male terminalia structures of Trichadenotecnum slossonae, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral (D) and lateral views (E).
Figure 36 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 36. Forewings of Trichadenotecnum aconcinnum (A), T. guttatum (B), T. slossonae (C), T. barrerai (D), T. denticulatum (E), T. miffy (F), T. decui (G), T. obrienorum (H) and T. cintalapense (I).
Figure 37 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 37. Male terminalia structures of Trichadenotecnum aconcinnum (A–D) and T. guttatum (E–H), showing terminalia in lateral view (A), epiproct in posterior view (B, E), epiproct in lateral view (F), hypandrium in ventral view (C, G) and phallosome in ventral view (D, H).
Figure 33 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 33. Female genitalia of Trichadenotecnum concinnum, showing subgenital plate (A), gonapophyses (B) and internal plate (C) in ventral view.
Figure 32 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 32. Male terminalia structures of Trichadenotecnum concinnum, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral view (D).
Figure 31 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 31. Male terminalia structures of Trichadenotecnum brevicornum, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral view (D).
Figure 27 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 27. Male terminalia structures of Trichadenotecnum neoleonense, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral view (D); everted endophallus is not illustrated in D.
Figure 29 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 29. Male terminalia structures of Trichadenotecnum ericium, showing terminalia in lateral view (A), epiproct in posterior view (B), hypandrium in ventral view (C) and phallosome in ventral view (D).
Figure 30 in Systematics and biogeography of the New World species of Trichadenotecnum Enderlein (Insecta: Psocodea: 'Psocoptera': Psocidae)
Figure 30. Female genitalia of Trichadenotecnum ericium, showing subgenital plate (A), gonapophyses (B) and internal plate (C) in ventral view.
ScienceDex guides
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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.