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172 results for “Intraspecific variability”
Data from: Understanding the genomic basis of adaptive response to variable osmotic niches in freshwater prawns: a comparative intraspecific RNA-Seq analysis of Macrobrachium australiense
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Data from: Nitrogen enrichment and warming shift community functional composition via distinct mechanisms: the role of intraspecific trait variability and species turnover
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Data from: Resource composition mediates the effects of intraspecific variability in nutrient recycling on ecosystem processes
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Figure 7 from: Menzel L (2011) First descriptions of copepodid stages, sexual dimorphism and intraspecific variability of Mesocletodes Sars, 1909 (Copepoda, Harpacticoida, Argestidae), including the description of a new species with broad abyssal distribution. ZooKeys 96: 39-80. https://doi.org/10.3897/zookeys.96.1496
Figure 7 - Mesocletodes elmari sp. n., adult female, holotype. A P3 B P4. Scale bar: 50 µm
FIGURE 8 in Taxonomic revision of Cypridopsis silvestrii comb. nov. (Ostracoda, Crustacea) from Patagonia, Argentina with morphometric analysis of their intraspecific shape variability and sexual dimorphism
FIGURE 8. Point graph of length and height of females, males from ET lake and specimens recovered from ET core, measured on LV.
FIGURE 3. Cypridopsis silvestrii comb. nov. A in Taxonomic revision of Cypridopsis silvestrii comb. nov. (Ostracoda, Crustacea) from Patagonia, Argentina with morphometric analysis of their intraspecific shape variability and sexual dimorphism
FIGURE 3. Cypridopsis silvestrii comb. nov. A ET female Cp in left view. B ET male RV (UNC-PMIC 160).C ET male LV (UNC-PMIC 160). D ETC LV. E ET female RV (UNC-PMIC 156). F ET female LV (UNC-PMIC 157). G ES female Cp in left view. H ES female RV (UNC-PMIC 151). I ES female LV (UNC-PMIC 151). Scale bar= 100 µm.
FIGURE 4. Cypridopsis silvestrii comb. nov. A. A1 in Taxonomic revision of Cypridopsis silvestrii comb. nov. (Ostracoda, Crustacea) from Patagonia, Argentina with morphometric analysis of their intraspecific shape variability and sexual dimorphism
FIGURE 4. Cypridopsis silvestrii comb. nov. A. A1 (UNC-PMIC 153 ES female). B. A2 (UNC-PMIC 155 ES female). C. A2 (UNC-PMIC 160 ET male). D. Md (UNC-PMIC 153 ES female). E. Md Palp (UNC-PMIC 153 ES female). Scale bar: 100 µm.
Fig. 5 Gynoecial architecture and intraspecific variability. A–C, F, G, C in Flower and fruit anatomy of Cordia nodosa Lam. and Varronia bonplandii Desv. (Cordiaceae, Boraginales) with phylogenetic implications
Fig. 5 Gynoecial architecture and intraspecific variability. A–C, F, G, C. nodosa (blue frames). D, E, H–K, V. bonplandii (yellow frames). A, LS of carpel with two hemianatropous ovules. B, LS of stigma with pollen. C, LS of gynoecium. D, LS of hemianatropous ovule. E, F, LS of egg apparatus (white arrow indicates stalk under chalazal haustorium). G, TS of gynoecium with four locules and only two fertile ovules (i.e., one ovule per carpel). H, flower at anthesis with two styles, ten stamens and ten petals (arrow indicates dehiscence line of thecae). J, flower after
Figure 5 in New specimens of Allodaposuchus precedens from France: intraspecific variability and the diversity of European Late Cretaceous eusuchians
Figure 5. Posterior views of adult (A, MMS/VBN-12-10A; B, associated line drawing) and juvenile (C, MMS/VBN- 12-42) specimens of Allodaposuchus precedens Nopcsa, 1928 from the Campanian of Velaux-La Bastide Neuve, France. Abbreviations: boc, basioccipital; cqg, cranioquadrate groove; exo, exoccipital; fm, foramen magnum; fv, foramen vagus; meu, median Eustachian foramen; oc, occipital condyle; p, parietal; pt, pterygoid; q, quadrate; qj, quadratojugal; soc, supraoccipital; socs, supraoccipital spine; sq, squamosal; XII, foramen for cranial nerve XII. Oblique hatching denotes sediment.
Figure 7 in New specimens of Allodaposuchus precedens from France: intraspecific variability and the diversity of European Late Cretaceous eusuchians
Figure 7. The skull table of a juvenile Allodaposuchus precedens Nopcsa, 1928 (MMS/VBN-12-10D) in A, dorsal view and details of the left supratemporal fenestra in anterior view (B) with interpretive line drawing (C) of the sutures around the orbitotemporal foramen. Abbreviations: otf, orbitotemporal foramen; p, parietal; q, quadrate; sq, squamosal. Arrows indicate the position of the frontoparietal suture.
FIGURE 1 in The intraspecific morphological variability of Styloperla Wu, 1935 (Plecoptera: Styloperlidae)
FIGURE 1. Styloperla inae from Fujian, male and female habitus.
FIGURE 4 in The intraspecific morphological variability of Styloperla Wu, 1935 (Plecoptera: Styloperlidae)
FIGURE 4. Published illustrations of terminalia of Styloperla obtusispina (from Wu, 1973).
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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.