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.
92
datasets available to search
ShareScore release 0.9.0
Dataset results
92 results for “behavioural interaction”
Beneath the Antarctic sea-ice: Fine-scale analysis of Weddell seal (Leptonychotes weddellii) behaviour and predator-prey interactions, using micro-sonar data in Terre Adélie
<p>In this study, we tried to assess:<br>i) whether and how female Weddell seals feed (frequency, depth, duration) during lactation,<br>ii) what is their utilization of a limited foraging area (benthic or pelagic dives) as they are spatially constrained by the presence of their pup, and<br>iii) how can we characterize their foraging dives and the approach/catching phases using new tools providing a more detailed description of their behaviour.<br>Sonar tags were deployed on three breeding female Weddell seals in Terre Adélie (East Antarctica) in November 2019, to study animals' movements and dives at high resolution (3D acceleration, magnetometry, time and depth and GPS location), as well as information on prey and predator-prey interactions using acoustic data.</p>
Figure 8 in Complex display behaviour during the intraspecific interactions of myrmecomorphic jumping spiders (Araneae, Salticidae)
Figure 8. Myrmarachne assimilis male (on right) watching and following decamping M. assimilis female.
Figure 6 in Complex display behaviour during the intraspecific interactions of myrmecomorphic jumping spiders (Araneae, Salticidae)
Figure 6. Myrmarachne assimilis male (upper right) beginning to premount tap female. Male's legs I semi-erect in Position 1. Female: palps spread apart.
Figure 4 in Complex display behaviour during the intraspecific interactions of myrmecomorphic jumping spiders (Araneae, Salticidae)
Figure 4. Myrmarachne assimilis male (on right) with semi-erect legs in Position 1, with his body arched up and while peering over toward conspecific female. Female facing the male while waving palps.
Figure 1 in Complex display behaviour during the intraspecific interactions of myrmecomorphic jumping spiders (Araneae, Salticidae)
Figure 1. Myrmarachne bakeri female (facing right and slightly up in photograph) in a normal body posture and with palps and chelicerae also held in a normal posture. Erect legs in Position 3.
Figure 3 in Complex display behaviour during the intraspecific interactions of myrmecomorphic jumping spiders (Araneae, Salticidae)
Figure 3. Myrmarachne assimilis female (on right) with cephalothorax lowered. Male beginning to mount the female.
Figure 2 in Complex display behaviour during the intraspecific interactions of myrmecomorphic jumping spiders (Araneae, Salticidae)
Figure 2. Myrmarachne assimilis male (facing forward and down in photograph) with his abdomen flexed up and to the side while posturing with erect legs in Position 2.
Fig. 6 in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 6. Male (right) creeps toward female, tapping female's legs I with own legs I, male with extended legs I and extended palps (position 2).
Fig. 11. Male O in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 11. Male O. ichneumon with raised body and slightly flexed up abdomen (ca. 30°), palps in position 1.
Fig. 3 in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 3. Male Orsima ichneumon in resting position: (a) with legs I stretched out, abdomen lowered to substrate and palps slightly extended in position 2; (b) with hunched legs I, palps held in front of the cephalothorax.
Fig. 2 in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 2. (a) Typical forest edge habitat for Orsima ichneumon; (b) Orsima ichneumon are also found on Clerodendrum villosum, a roadside and forest-edge shrub covered in extra-floral nectaries.
Fig. 10. Two male O in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 10. Two male O. ichneumon engaged in rapid extension and retraction of legs I simultaneously. Male (right) is the process of 'rearing' up with legs (a) still held in front of its face (b) above head, at maximum rearing height.
Fig. 1 in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 1. (a) An adult male Orsima ichneumon; (b) an adult female O. ichneumon; (c) a juvenile O. ichneumon.
Fig. 9 in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 9. Mount behaviour and copulation (a) Male uses legs I and II to tap female's legs I and II, female assumes hunched legs and lowers cephalothorax to substrate with abdomen tilted higher than cephalothorax, allowing male to walk over her cephalothorax; (b) Male moves to left or right of female's abdomen; (c) Female's abdomen is rotated 30–60° for male to insert palp and copulation occurs.
Fig. 4 in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 4 Abdomen positions (a) Male O. ichneumon with extended palps (position 2); opened chelicerae (position 1) and flexed up abdomen (ca. 60°) on edge of leaf in response to a female nearby; (b) Female O. ichneumon with arched legs and flexed abdomen; (c) Male O. ichneumon with abdomen bent right of the sagittal plane, palps (position 1) and chelicerae held closed; (d) Male O. ichneumon displaying during male-male interaction, legs I elevated (position 2) with abdomen flexed up and bent to the left of the sagittal plane.
Fig. 8 in Courtship and male-male interaction behaviour of Orsima ichneumon (Simon, 1901), an ant-mimicking jumper spider (Arachnida: Salticidae)
Fig. 8. Leg positions. (a) Male O. ichneumon with lowered body to the substrate and extended legs I almost parallel to substrate, palps in position 2; (b) Male O. ichneumon with legs hunched and abdomen almost parallel to the substrate.
Fig. 2 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 2. Proportion of behaviours exhibited by the individual dolphins before and after the SWD programme. *P<0.05; **P<0.01; ***P<0.001.
Fig. 1 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 1. Diagram of the dolphin lagoon consisting of the main pool (Length: 37 m, Width: 20 m, Depth: 3.5 m) alongside three holding pools. Locations that were utilised during scan sampling are marked out (1–3).
Fig. 3 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 3. Proportion of behaviours exhibited by the individual dolphins before and after the MWD programme. *P<0.05; **P<0.01; ***P<0.001.
Data for: Intergenerational genotypic interactions drive collective behavioural cycles in a social insect
<p>Many social animals display collective activity cycles based on synchronous behavioural oscillations across group members. A classic example is the colony cycle of army ants, where thousands of individuals undergo stereotypical biphasic behavioural cycles of about one month. Cycle phases coincide with brood developmental stages, but the regulation of this cycle is otherwise poorly understood. Here, we probe the regulation of cycle duration through interactions between brood and workers in an experimentally amenable army ant relative, the clonal raider ant. We first establish that cycle length varies across clonal lineages using long-term monitoring data. We then investigate the putative sources and impacts of this variation in a cross-fostering experiment with four lineages combining developmental, morphological, and automated behavioural tracking analyses. We show that cycle length variation stems from variation in the duration of the larval developmental stage, and that this stage can be prolonged not only by the clonal lineage of brood (direct genetic effects), but also of the workers (indirect genetic effects). We find similar indirect effects of worker line on brood adult size and, conversely but more surprisingly, indirect genetic effects of the brood on worker behaviour (walking speed and time spent in the nest).</p>
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.