Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
166
datasets available to search
ShareScore release 0.7.1
Dataset results
166 results for “sexual size dimorphism”
Figure 2 in Sexual size dimorphism and sex determination by external measurements in the Redshank Tringa totanus
Figure 2. Distribution of the discriminant score D calculated for males and females sexed molecularly. Gray and white bars are for correct and incorrect classifications. Dashed lines show D border values of –0.96 and 1.17, which allowed for 95% of correct classifications of males and females.
Figure 1 in Sexual size dimorphism and sex determination by external measurements in the Redshank Tringa totanus
Figure 1. Wing length distribution of male (black bars) and female (gray bars) Redshanks caught in southern Belarus.
Fig. 3 in Size-At-Age Variability And Sexual Dimorphism Of Morphometric Characteristics In The Late Ontogenesis Of The Marsh Frog, Pelophylax Ridibundus (Anura, Ranidae), From Terrytory Of Crimea
Fig. 3. The differentiation of males (А) and females (B) of the marsh frog according to the absolute values of the body measurements.
Fig. 2 in Size-At-Age Variability And Sexual Dimorphism Of Morphometric Characteristics In The Late Ontogenesis Of The Marsh Frog, Pelophylax Ridibundus (Anura, Ranidae), From Terrytory Of Crimea
Fig. 2. Micrographs of cross- sections through the middle part of the diaphysis of the fifth phalange of the fourth toe of frogs: a, b, c, d, e — the arrow indicates the lines that correspond wintering 1–5.
Fig. 3 in Sexual Size Dimorphism in Ground Beetle Carabus cumanus Fischer von Waldheim, 1823 (Coleoptera, Carabidae) and its Variation in Different Traits
Fig. 3. Results of RMA regression in C. cumanus traits: a - elytra length, b - elytra width, c - pronotum length, d - pronotum width, e - head length, f - distance between eyes (1 - steppe biotope, 2 - forest biotope. Circles and triangles denote individuals measured in forest and steppe biotopes respectively. Black dotted line denotes isometry)
Fig. 4 in Sexual Size Dimorphism in Ground Beetle Carabus cumanus Fischer von Waldheim, 1823 (Coleoptera, Carabidae) and its Variation in Different Traits
Fig. 4. Values of SSD in different traits in C. cumanus. Significant values of SSD (due to Fig. 3, where deviation from isometric curve were significant) are marked by asterisks (A - elytra length, B - elytra width, V - pronotum length, G - pronotum width, D - head length, E - distance between eyes)
Fig 2 in Sexual Size Dimorphism In Free-Living Populations Of Mus Musculus: Are Male House Mice Bigger?
Fig 2. Variation in SSD during the first five weeks of postnatal development in five mice populations. SSD is expressed as Lowich-Gibbons ratios of mean body weight (see under Material and Methods)
Fig. 1 in Sexual Size Dimorphism In Free-Living Populations Of Mus Musculus: Are Male House Mice Bigger?
Fig. 1. Map of the studied localities: 1 = Czech Republic, 2 = The Balkans, 3 = Iran, 4 = Jordan, 5 = hybrids. See Material and Methods for coordinates of the localities
Fig. 2 in Pupal size distribution and sexual dimorphism in wild and laboratory populations of two species of Anastrepha (Diptera: Tephritidae) fruit flies
Fig. 2. Canonical analysis for pupae size parameters of males and females of laboratory and wild populations in Anastrepha ludens. The canonical analysis is represented on the first canonical axis (can 1), where the boxplots indicate the populations (laboratory and wild) and sexes (males and females) (lef). The variables of pupae size: length (mm), width (mm), and weight (mg) are indicated by vectors (right).
Fig. 1 in Pupal size distribution and sexual dimorphism in wild and laboratory populations of two species of Anastrepha (Diptera: Tephritidae) fruit flies
Fig. 1. Size distribution of laboratory and wild Anastrepha ludens and Anastrepha obliqua male and female pupae. The proportion of male and female pupae is shown in 10 pupal size classes (pupal diam mm) on the x-axis.
Fig. 3 in Pupal size distribution and sexual dimorphism in wild and laboratory populations of two species of Anastrepha (Diptera: Tephritidae) fruit flies
Fig. 3. Canonical analysis for pupae size parameters of males and females of laboratory and wild populations in Anastrepha obliqua. The canonical analysis is represented on the first canonical axis (can 1), where the boxplots indicate the populations (laboratory and wild) and sexes (males and females) (lef). The variables of pupae size: length (mm), width (mm), and weight (mg) are indicated by vectors (right).
Figure 2 in Sexual size dimorphism in Rana (Pelophylax) ridibunda ridibunda Pallas, 1771 from a population in Darre-Shahr Township, Ilam Province, western Iran
Figure 2. The presence of vocal pouches (a) and digital pads (b) in male Rana (Pelophylax) ridibunda ridibunda distinguishes them from females.
Figure 3 in Sexual size dimorphism in Rana (Pelophylax) ridibunda ridibunda Pallas, 1771 from a population in Darre-Shahr Township, Ilam Province, western Iran
Figure 3. Ordination of the individual males and females of Rana (Pelophylax) ridibunda ridibunda on the first two principal components. Note the relative degree of isolation between males and females, which is mainly attributed to SVL, LHL, LFL, HL, and HW in the PC1 and EEL and ELW in the PC2.
Figure 2 in Geographical sexual size dimorphism in an ant-eating spider, Zodarion rubidum (Araneae: Zodariidae)
Figure 2. Relationship between female prosoma size and male prosoma size (both on the log scale). Linear model was estimated using reduced major axis regression (RMA).
Figure 4 in Geographical sexual size dimorphism in an ant-eating spider, Zodarion rubidum (Araneae: Zodariidae)
Figure 4. Geographical variation of female/male prosoma size ratio in respect to the annual average temperature.
Figure 1 in Geographical sexual size dimorphism in an ant-eating spider, Zodarion rubidum (Araneae: Zodariidae)
Figure 1. Map of studied Zodarion rubidum populations. Austria: Graz; Czech Republic: Bransouze, Nepomuk, Prague; France: Perpignan, Montpellier, Les Sables; Germany: Berlin, Frankfurt am Main, Mainz, Cologne; Slovakia: Humenne´, Nováky, Sered'; Spain: Playa d'Aro.
Figure 3 in Geographical sexual size dimorphism in an ant-eating spider, Zodarion rubidum (Araneae: Zodariidae)
Figure 3. Geographical variation in the prosoma size (mean¡SE) of female and male spiders in respect to annual average temperature.
Figure 1 in Impact of climatic factors on sexual size dimorphism in ground beetle Pterostichus melanarius (Illiger, 1798) (Coleoptera, Carabidae)
Figure 1. Elytra length variation in P. melanarius from different habitats (a – females, b – males). Habitats are designated as follows: 1 – meadow, 2 – birch-forest, 3 – elm, 4 – oak-wood, 6 – pine forest, 7 – willow, 8 – shrubs, 9 – lawn, 10 – fir-forest, 11 – garden, 12 – rape field.
Sexually dimorphic eye-size in Dragonfishes, a response to a bioluminescent signaling gap
Open the record for dataset details and reuse information.
Data from: The effect of miniaturization on the evolution of sexual size dimorphism in geckos
Open the record for dataset details and reuse information.
ScienceDex guides
Understand access before you commit
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.