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Fig. 41 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 41. Principal component analysis of species according to their relative abundance in the different main habitat types.
Fig. 20. a in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 20. a, Eluma caelata; b, Cylisticus convexus; c, Porcellio monticola; d, Porcellio scaber; e, Porcellio spinicornis; f, Porcellionides pruinosus; g, Porcellium conspersum; h, Trachelipus rathkii.
Fig. 19. a in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 19. a, Oniscus asellus; b, Philoscia affinis; c, Philoscia muscorum; d, Platyarthrus hoffmannseggii; e, Armadillidium album; f, Armadillidium nasatum; g, Armadillidium opacum; h, Armadillidium pulchellum.
Fig. 16 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 16. Corrected number of observations per two-month period for Trichoniscus provisorius (N = 157).
Fig. 29 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 29. Corrected number of observations per two-month period for Armadillidium pulchellum (N = 54).
Fig. 15 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 15. Corrected number of observations per two-month period for Trichoniscus alemannicus (N = 7).
Fig. 13 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 13. Corrected number of observations per two-month period for Trichoniscoides helveticus (N = 32).
Fig. 12 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 12. Corrected number of observations per two-month period for Trichoniscoides albidus (N = 97).
Fig. 10 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 10. Corrected number of observations per two-month period for Metatrichoniscoides leydigii (N = 16).
Fig. 11. a in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 11. a, Ligidium hypnorum; b, Androniscus dentiger; c, Haplophthalmus mengii; d, Hyloniscus riparius; e, Metatrichoniscoides leydigii; f, Trichoniscoides albidus; g, Trichoniscoides helveticus; h, Trichoniscus provisorius.
Fig. 8 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 8. Corrected number of observations per two-month period for Haplophthalmus montivagus (N = 157).
Fig. 24 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 24. Corrected number of observations per two-month period for Platyarthrus hoffmannseggii (N = 163).
Fig. 1 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 1. Different habitats in Belgium well suited for terrestrial isopods. a, old forest in Parike, Belgium; b, disused quarry in Reuland, Belgium; c, stream side (dyke) of the Dyle river in Rijmenam, Belgium; d, old cemetery in Rahier, Belgium; e, old stable in a meadow near Saint-Saveur, Belgium.
Fig. 2. a in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 2. a, Ligia oceanica; b, Haplophthalmus danicus; c, Miktoniscus patience; d, Trichoniscus pygmaeus; e, Armadillidium pictum; f, Armadillidium vulgare; g, Porcellio dilatatus; h, Porcellio laevis.
Fig. 1 in Comparative analysis of morphospace of Neotropical Sericini (Coleoptera: Scarabaeidae): disparity in the light of species diversity and activity patterns
Fig. 1 Measured traits and specimen habitus (examples). Schematic drawings of a Sericini beetle (from Ahrens, 2004): A dorsal view; D partial lateral aspect; B head, dorsal view, C head lateral view; E leg, ventrolateral view; F Maladera cardoni; G Neoserica sp.; H Anomioserica sp.; I Oxyserica sp.; J Symmela mutabilis; K Astanea producta. EL maximal elytra length, EW maximal body width, MEL maximal length of metepisternum, ED maximal eye diameter, IOD minimal interocular distance, MCL maximal length of metacoxa, MTL maximal length of metatibia, MTW maximal width of metatibia
Fig. 5 in Comparative analysis of morphospace of Neotropical Sericini (Coleoptera: Scarabaeidae): disparity in the light of species diversity and activity patterns
Fig. 5 Patterns of disparity derived from discrete morphological data: plots of axis 1 and 2 from principal coordinate analysis. Color coding of Neotropical genera corresponds to that of Fig. 4
Fig. 3 in Comparative analysis of morphospace of Neotropical Sericini (Coleoptera: Scarabaeidae): disparity in the light of species diversity and activity patterns
Fig. 3 Boxplots for selected genera of the total body length (in mm), of the ratio maximal body width/ maximal elytra length (EL), of the ratio metatibial length/maximal metatibial width, of the ratio maxi-
Fig. 4 in Comparative analysis of morphospace of Neotropical Sericini (Coleoptera: Scarabaeidae): disparity in the light of species diversity and activity patterns
Fig. 4 Patterns of disparity derived from morphospace: plots of PC 1 and 2 A raw data (all); B raw data (BL excluded), C log-normalized data (all); D log-normalized data (BL excluded)
Fig. 2 in Comparative analysis of morphospace of Neotropical Sericini (Coleoptera: Scarabaeidae): disparity in the light of species diversity and activity patterns
Fig. 2 Illustration of potential trait correlation: A elytral length vs total body length, B maximum body width vs. vs total body length, C maximum body width vs. elytral length, D size of eyes (i.e., maximum ratio ocular diameter/minimum interocular distance) vs maxi-
Fig. 1 in Polybia fasticiosuscula (Hymenoptera: Vespidae) foraging activity patterns
Fig. 1. Typical Polybia fastidiosuscula foraging patterns. Means with the same letter at each evaluation time do not differ at 95% probability by the Tukey's test. Vertical bars represent the standard error of the mean (n = 7).
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
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DANDI Archive for NWB datasets
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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.