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52 results for “Applied systematics”
Systematic DFT Modeling van der Waals Heterostructures from a Complete Configurational Basis Applied to γ-PC/WS2
<p>See the paper:</p> <p> </p> <p>Celis, J.; Cao, W. <em>J. Chem. Theory Comput.</em> <strong>2024</strong>, 20, 6, 2377-2389</p>
FIGURE 7 in Reconstruction Of Stem Species Pattern As A Strategy Towards Integrated Phylogenetic Systematics And Taxonomy, Applied To Early-Derivative Poronota (Oribatida)
FIGURE 7: Cladogram with selected characters and species of Oribatellidae. – Explanations see figure 4.
FIGURE 6 in Reconstruction Of Stem Species Pattern As A Strategy Towards Integrated Phylogenetic Systematics And Taxonomy, Applied To Early-Derivative Poronota (Oribatida)
FIGURE 6: Cladogram with selected characters and species of Achipteriidae. – Explanations see figure 4.
FIGURE 4 in Reconstruction Of Stem Species Pattern As A Strategy Towards Integrated Phylogenetic Systematics And Taxonomy, Applied To Early-Derivative Poronota (Oribatida)
FIGURE 4: Cladogram with stem species (I-X) and their characteristic apomorphies, plesiomorphies and regressive plesiomorphies of the families of early derivative Poronota. – Explanation of codes in table 1; – 'div.': diverse more plesiomorphies listed in table 2.
FIGURE 5 in Reconstruction Of Stem Species Pattern As A Strategy Towards Integrated Phylogenetic Systematics And Taxonomy, Applied To Early-Derivative Poronota (Oribatida)
FIGURE 5: Cladogram with selected characters and species of Eupelops and Peloptulus. – Explanations see figure 4.
FIGURE 3 in Reconstruction Of Stem Species Pattern As A Strategy Towards Integrated Phylogenetic Systematics And Taxonomy, Applied To Early-Derivative Poronota (Oribatida)
FIGURE 3: Notogastral characters of Poronota. (a) – sacculus in transection and dorsal aspect, schematic; (b) – porose area in transection and dorsal aspect, schematic; (c) – setation pattern of the unideficient type (15 pairs); (d) – setation pattern of the multideficient type (10 pairs); (e) – porose areas (Aa, A1-A3) of the octotaxic system on a multideficient notogaster; (f) – pattern of porose areas and setae of the Eupelops type.
FIGURE 1 in Reconstruction Of Stem Species Pattern As A Strategy Towards Integrated Phylogenetic Systematics And Taxonomy, Applied To Early-Derivative Poronota (Oribatida)
FIGURE 1: Illustration on the stem lineage concept. A, B, C: related taxa; – y, z: hypothetical stem species; C1: plesiomorphic state of character 1; – C1a: apomorphic state of character 1.
FIGURE 2 in Reconstruction Of Stem Species Pattern As A Strategy Towards Integrated Phylogenetic Systematics And Taxonomy, Applied To Early-Derivative Poronota (Oribatida)
FIGURE 2: (a) – Habitus of an achipteriid nymph with plicate integument; (b-o) – different types of the lamellar complex: (b) – short basal type of a lamellar complex of Poronota, schematic; (c) – enlarged type, schematic; (d) – basal type in Austrachipteria, A. grandis; (e) – Achipteria type; (f) – Cerachipteria type; (g) – Oribatella reticulata, with translamella; (h) – Oribatella quadricornuta, with median dens; (i) – Anachipteria sacculifera; (k) – Unduloribates undulatus; (l) – Propelops canadensis; (m) – Peloptulus type; (n) – Eupelops type; (o) – Tegoribates type. (a: after Seniczak 1977; d: after Hammer 1967; i: after Root et al. 2008; l: after Norton and Behan-Pelletier 1986; f-h, k, m-o: after Weigmann 2006)
FIGURE 34. Metasoma, A lateral view, B in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 34. Metasoma, A lateral view, B dorsal view; C–D ventral view. A, D. Pristocera ♂; B. Dissomphalus ♂; C. Zimankos ♂.
FIGURE 22. Metanotum. A in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 22. Metanotum. A. Pristocera ♂; B. Pseudisobrachium ♂; C. Sclerodermus ♀; D. Chlorepyris ♂. (dorsal view).
FIGURE 19 in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 19. Mesopectum,: metapleuron, lateral view. A–B. Pristocera ♂; C. Anisepyris ♀; D. Dissomphalus ♂; E. Pseudisobrachium ♂; F. Epyris ♀.
FIGURE 33. Metasoma, A–B lateral view, C in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 33. Metasoma, A–B lateral view, C dorsal view; D ventral view. A, C–D. Pristocera ♂; B. Pseudisobrachium ♀.
FIGURE 10. Pronotum, A–E dorsal view, F ventral view. A in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 10. Pronotum, A–E dorsal view, F ventral view. A. Pristocera ♂; B. Anisepyris ♂; C. Eupsenella ♂; D. Bakeriella ♀; E. Zimankos ♂; F. Zimankos ♂.
FIGURE 24 in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 24. Metapectal-propodeal complex, dorsal view. A. Eupsenella ♂; B. Prosierola ♀; C. Calobrachium ♂; D. Bakeriella ♀; E. Pseudisobrachium sp. 3 ♂; F. Pristocera ♂; G. Sclerodermus ♀.
FIGURE 6. Head, A–B ventral view, C–F lateral view. A, F in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 6. Head, A–B ventral view, C–F lateral view. A, F. Zimankos ♂; B. Pristocera ♂; B. Pristocera ♂; D. Proplastanoxus ♀; E. Anisepyris ♂.
FIGURE 2. General characters. A–G in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 2. General characters. A–G. linear structures; F. marginal and submarginal edges; G. flange (e = external; i = internal).
Analysis: Systematic literature review PRISMA model results about extended, virtual and augmented reality applied to Science Communication
<div> <p>The results of the analysis made after the PRISMA process of the systematic literature review carried out about results about extended, virtual and augmented reality applied to Science Communication.</p> </div>
FIGURE 41 in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 41. Metasoma: ♀ genitalia of Epyris ♀, A-D lateral view, E-H dorsal view.
FIGURE 37 in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 37. Metasoma: ♂ genitalia of Pristocera ♂, A–B dorsal view, C–D ventral view.
FIGURE 39 in Revisited morphology applied for Systematics of flat wasps (Hymenoptera, Bethylidae)
FIGURE 39. Metasoma: ♂ genitalia of Pseudisobrachium ♂, A–C ventral view, D–F lateral view).
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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.