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.
13,310
datasets available to search
ShareScore release 0.7.1
Dataset results
13,310 results for “female”
Data for: Weak, but not strong, ties support coalition formation among wild female chimpanzees
<div> <div> <div> <div> <p>In social species, individuals may be able to overcome competitive constraints on cooperation by leveraging relationships with familiar, tolerant partners. While strong social ties have been linked to cooperation in several social mammals, it is unclear the extent to which weak social ties can support cooperation, particularly among non-kin. We tested the hypothesis that weakly affiliative social relationships support cooperative coalition formation using 10 years of behavioural data on wild female chimpanzees. Female chimpanzees typically disperse and reside with non-kin as adults. Their social relationships are differentiated but often relatively weak, with few dyads sharing strong bonds. Females occasionally form aggressive coalitions together. Three measures of relationship quality - party association, five-meter proximity, and whether a dyad groomed - positively predicted coalitions, indicating that relationship quality influenced coalition partnerships. However, dyads that groomed frequently did not form more coalitions than dyads that groomed occasionally, and kin did not cooperate more than expected given their relationship quality. Thus, strong bonds and kinship did not bolster cooperation. We conclude that cooperative coalitions among female chimpanzees depend on social tolerance but do not require strong bonds. Our findings highlight social tolerance as a distinct pathway through which females can cultivate cooperative relationships.</p> </div> </div> </div> </div>
Data From: Females alter their mate preferences depending on hybridization risk
<p><span>Mating with another species is often maladaptive because it generally results in no or low-fitness offspring. When hybridization is sufficiently costly, individuals should avoid mating with heterospecifics even if it reduces their ability to mate with high-quality conspecifics that resemble heterospecifics. Here, we used spadefoot toads, <em>Spea multiplicata</em>, to evaluate whether females alter their preferences for conspecific male sexual signals (call rate) depending on heterospecific presence. When presented with conspecific signals against a background including both conspecific and heterospecific signals, females preferred male traits that were most dissimilar to heterospecifics—even though these signals are potentially associated with lower-quality mates. However, when these same females were presented with a background that included only conspecific signals, some females switched their preferences, choosing conspecific signals that were exaggerated and indicative of high-quality conspecific mates. Because only some females switched their preferences between these two chorus treatments, there was no population-level preference for exaggerated male signals in the absence of heterospecifics. Thus, hybridization risk can impact mate choice and thereby alter patterns of sexual selection. These results also emphasize that reproductive barriers between species (such as mate choice) can be context-dependent, with important implications for the origins and maintenance of species boundaries.</span></p>
Fig. 100. Female Phrurolithus ulopatulisus n in Family Clubionidae Wagner- Genera Alaeho, Castianeira, Agroeca, Phrurolithus & Scotinella
Fig. 100. Female Phrurolithus ulopatulisus n. sp. (a); cheliceral teeth (b); sternum, labium, and maxillae (c); chelicera (d); leg I (e); pedipalp (f); and dorsal (g) and ventral (hi) views of epigynum.
Fig. 99. FeMale Agroeca kltina n in Family Clubionidae Wagner- Genera Alaeho, Castianeira, Agroeca, Phrurolithus & Scotinella
Fig. 99. FeMale Agroeca kltina n. sp. (a); epigynuM (b); sternuM, labiuM, and Maxillae (c); cheliceral teeth (d);and ventral tibia I (e).
Gleditsia triacanthos (Fabaceae) - inflorescence - whole - female
Image of Gleditsia triacanthos (Fabaceae) - inflorescence - whole - female
Gleditsia triacanthos (Fabaceae) - inflorescence - whole - female
Image of Gleditsia triacanthos (Fabaceae) - inflorescence - whole - female
Gleditsia triacanthos (Fabaceae) - inflorescence - whole - female
Image of Gleditsia triacanthos (Fabaceae) - inflorescence - whole - female
Pinus albicaulis (Pinaceae) - cone - female - closed
Image of Pinus albicaulis (Pinaceae) - cone - female - closed
Pinus albicaulis (Pinaceae) - cone - female - closed
Image of Pinus albicaulis (Pinaceae) - cone - female - closed
Picea engelmannii (Pinaceae) - cone - female - mature open
Image of Picea engelmannii (Pinaceae) - cone - female - mature open
Picea engelmannii (Pinaceae) - cone - female - mature open
Image of Picea engelmannii (Pinaceae) - cone - female - mature open
Picea engelmannii (Pinaceae) - cone - female - mature open
Image of Picea engelmannii (Pinaceae) - cone - female - mature open
Picea engelmannii (Pinaceae) - cone - female - mature open
Image of Picea engelmannii (Pinaceae) - cone - female - mature open
Pinus flexilis (Pinaceae) - cone - female - closed
Image of Pinus flexilis (Pinaceae) - cone - female - closed
Picea engelmannii (Pinaceae) - cone - female - mature open
Image of Picea engelmannii (Pinaceae) - cone - female - mature open
Picea engelmannii (Pinaceae) - cone - female - mature open
Image of Picea engelmannii (Pinaceae) - cone - female - mature open
Pinus albicaulis (Pinaceae) - cone - female - closed
Image of Pinus albicaulis (Pinaceae) - cone - female - closed
Pinus flexilis (Pinaceae) - cone - female - closed
Image of Pinus flexilis (Pinaceae) - cone - female - closed
Pinus albicaulis (Pinaceae) - cone - female - closed
Image of Pinus albicaulis (Pinaceae) - cone - female - closed
Pinus albicaulis (Pinaceae) - cone - female - closed
Image of Pinus albicaulis (Pinaceae) - cone - female - closed
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.