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71 results for “systematic key”
Dataset underpinning "Understanding health behaviours in context: A systematic review and meta-analysis of Ecological Momentary Assessment studies of five key health behaviours"
<p>This is the dataset underpinning the article "Understanding health behaviours in context: A systematic review and meta-analysis of Ecological Momentary Assessment studies of five key health behaviours": https://pubmed.ncbi.nlm.nih.gov/35975950/</p>
Figs 55–63 in Illustrated key and systematics of male South African Atherigona s. str. (Diptera: Muscidae)
Figs 55–63. Atherigona spp.: trifoliate process and hypopygial prominence of (55) A. nesshurstensis sp. n.; (56) A. vernoni sp. n.; (57) A. convexa sp. n.; (58) A. rimapicis sp. n.; (59) A. falkei Deeming; (60) A. danielssoni sp. n.; (61) A. tigris sp. n.; (62) A. stuckenbergi sp. n.; (63) A. steeleae van Emden. Not to scale.
Figs 19–27 in Illustrated key and systematics of male South African Atherigona s. str. (Diptera: Muscidae)
Figs 19–27. Atherigona spp.: trifoliate process and hypopygial prominence of (19) A. marginifolia van Emden; (20) A. erectisetula sp. n.; (21) A. humeralis (Wiedemann); (22) A. bundongoana van Emden; (23) A. falcata (Thomson); (24) A. ndumoensis sp. n.; (25) A. decempilosa Dike; (26) A. binubila van Emden; (27) A. piscatoris sp. n. Not to scale.
Figs 10–18 in Illustrated key and systematics of male South African Atherigona s. str. (Diptera: Muscidae)
Figs 10–18. Atherigona spp.: trifoliate process and hypopygial prominence of (10) A. nigrapicalis Deeming; (11) A. longifolia van Emden; (12) A. aurifacies van Emden; (13) A. griseiventris van Emden; (14) A. capitulata sp. n.; (15) A. umbonata sp. n.; (16) A. flavifinis sp. n.; (17) A. heteropalpata sp. n., also palpus; (18) A. aster van Emden. Not to scale.
Figs 1–9 in Illustrated key and systematics of male South African Atherigona s. str. (Diptera: Muscidae)
Figs 1–9. Atherigona spp.: trifoliate process and hypopygial prominence of (1) A. divergens Stein; (2) A. tetrastigma Paterson; (3) A. parviclivis sp. n.; (4) A. parvihumilata sp. n.; (5) A. angulata Deeming; (6) A. pulla (Wiedemann); (7) A. laevigata (Loew); (8) A. bimaculata Stein; (9) A. univitatta Deeming & Overman. Not to scale.
Figs 28–36 in Illustrated key and systematics of male South African Atherigona s. str. (Diptera: Muscidae)
Figs 28–36. Atherigona spp.: trifoliate process and hypopygial prominence of (28) A. oblonga sp. n.; (29) A. libertensis sp. n.; (30) A. angustiloba van Emden; (31) A. albicornis sp. n.; (32) A. occidentalis Deeming; (33) A. kirkspriggsi sp. n.; (34) A. perfida Stein; (35) A. chirinda Dike; (36) A. cinarina Séguy. Not to scale.
Figs 64–68 in Illustrated key and systematics of male South African Atherigona s. str. (Diptera: Muscidae)
Figs 64–68. Atherigona spp.: trifoliate process and hypopygial prominence of (64) A. matilei Deeming; (65) A. gilvifolia van Emden; (66) A. trapezia van Emden; (67) A. valida (Adams); (68) A. zulu sp. n. Not to scale.
Genetic barcoding systematically comparing haploinsufficiency of key genes in del(5q) MDS reveals a central role for CSNK1A1 in clonal expansion
<p>R object with pre-processed single cell data of the manuscript "<strong>Genetic barcoding systematically comparing haploinsufficiency of key genes in del(5q) MDS reveals a central role for </strong><em>CSNK1A1</em><strong> in clonal expansion"</strong></p>
FIGURES 5–6 in Thulinius saltursus comb. nov.: a new systematic position for Isohypsibius saltursus Schuster, Toftner & Grigarick, 1978 (Eutardigrada: Hypsibiidae) and a key for the genus Thulinius
FIGURES 5–6. Thulinius saltursus comb. nov. (holotype). 5–6. III pair of legs; 7. IV pair of legs. Black arrows show the knob on the main branches of claws.
FIGURES 3–4 in Thulinius saltursus comb. nov.: a new systematic position for Isohypsibius saltursus Schuster, Toftner & Grigarick, 1978 (Eutardigrada: Hypsibiidae) and a key for the genus Thulinius
FIGURES 3–4. Thulinius saltursus comb. nov. (holotype). 3. Oral cavity armature; 4. Buccal-pharyngeal apparatus.
Are Intercultural Competencies the Key for International Collaboration?: A Systematic Review
<p>Database used for the SLR: Are Intercultural Competencies the Key for International Collaboration?</p>
Supplementary material 1 from: Bellot S, Renner S (2014) The systematics of the worldwide endoparasite family Apodanthaceae (Cucurbitales), with a key, a map, and color photos of most species. PhytoKeys 36: 41-57. https://doi.org/10.3897/phytokeys.36.7385
List of accessions used in this study with author names for each species, herbarium vouchers, and GenBank accession numbers:
FIGURE 1 in Lobithelphusa mexicana Rodriguez, 1982 (Decapoda: Pseudothelphusidae): a reassessment of key characters and systematics
FIGURE 1. Lobithelphusa mexicana, male holotype, NHMUK 1860.23. Carapace: dorsal surface, a; frontal portion, b; lateroventral surface, c; ventral surface, d. Larger chela: internal surface, e; external surface, f.
FIGURE 8 in A revised dichotomous key to the snakes of Italy (Reptilia, Squamata, Serpentes), according to recent systematic updates: SUPPLEMENTARY FILE
FIGURE 8. Snakes of Italy, table 4 (Colubridae Natricinae). For each taxon are showed examples of dorsal pattern, head portrait and dorsal scales: Natrix helvetica cetti (A); N. helvetica ssp. (B); N. natrix ssp. (C); N. maura (D); N. tessellata (E). Photo credits: Di Nicola M. R.
FIGURE 7 in A revised dichotomous key to the snakes of Italy (Reptilia, Squamata, Serpentes), according to recent systematic updates: SUPPLEMENTARY FILE
FIGURE 7. Snakes of Italy, table 3 (Colubridae Colubrinae and Lamprophiidae). For each taxon are showed examples of dorsal pattern, head portrait and dorsal scales (for Zamenis lineatus both smooth and keeled dorsals are showed): Macroprotodon cucullatus textilis (A); Malpolon insignitus insignitus (B); M. monspessulanus monspessulanus (C); Telescopus fallax fallax (D); Zamenis lineatus (E); Z. longissimus (F); Z. situla (G). Photo credits: Di Nicola M. R.
FIGURE 2 in A revised dichotomous key to the snakes of Italy (Reptilia, Squamata, Serpentes), according to recent systematic updates: SUPPLEMENTARY FILE
FIGURE 2. Nomenclature of belly and tail scales in Eryx jaculus (A) and Vipera berus (B). Photo credits: Di Nicola M. R.
FIGURE 23. A in Taxonomic updates on Pachyserica Brenske, 1898 and Serica MacLeay, 1819 reveal 38 new species and new challenges of Sericini systematics regarding DNA barcodes and genus-level diagnostic key characters (Coleoptera: Scarabaeidae: Sericinae)
FIGURE 23. A: S. inaequalis; B: Serica fulvopubens; C: S. shaanxiensis; D: S. kingdoni; A–C: head + prothorax, lateral view; D: prothorax, ventral view; images not to scale (hymr—hypomeron; car—carina; bare white arrows indicate missing carina in Figure sections B–D).
FIGURE 22 in Taxonomic updates on Pachyserica Brenske, 1898 and Serica MacLeay, 1819 reveal 38 new species and new challenges of Sericini systematics regarding DNA barcodes and genus-level diagnostic key characters (Coleoptera: Scarabaeidae: Sericinae)
FIGURE 22. Maximum likelihood tree depicting available COI barcode data of some of the newly described species (ultrafast bootstrap values are denoted on the nodes).
FIGURE 17. A–F in Taxonomic updates on Pachyserica Brenske, 1898 and Serica MacLeay, 1819 reveal 38 new species and new challenges of Sericini systematics regarding DNA barcodes and genus-level diagnostic key characters (Coleoptera: Scarabaeidae: Sericinae)
FIGURE 17. A–F: Pachyserica natmatoung new species (holotype); G–N: P. hoabinhensis new species (holotype); A, I: aedeagus, left side lateral view; D, N: aedeagus, right side lateral view; C, K: parameres, dorsal view; B, J: aedeagus, dorsal view; L: left paramere, 90° dorsal view; M: right paramere, 90° dorsal view; E, H: habitus, dorsal view; F, G: habitus, lateral view. Scale bar: 0.5 mm. Habitus images not to scale.
FIGURE 18. A–F in Taxonomic updates on Pachyserica Brenske, 1898 and Serica MacLeay, 1819 reveal 38 new species and new challenges of Sericini systematics regarding DNA barcodes and genus-level diagnostic key characters (Coleoptera: Scarabaeidae: Sericinae)
FIGURE 18. A–F: Pachyserica dieuthuyae new species (holotype); G–K: P. chenchangchini new species (holotype); A, I: aedeagus, left side lateral view; D, K: aedeagus, right side lateral view; C, J: parameres, dorsal view; B: aedeagus, dorsal view; E, G: habitus, dorsal view; F, H: habitus, lateral view. Scale bar: 0.5 mm. Habitus images not to scale.
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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)
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.