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4,028 results for “Behaviour”
Dataset used for upcoming paper: The effects of commercially-relevant disturbances on sleep behaviour in laying hens
<p>2 Excel .csv files for statistical analysis using R-Studio. The first is a constants file for temporal coding, the second is the raw data.</p>
Atlantic cod individual spatial behaviour and stable isotope associations in a no-take marine reserve
<ol> <li>Foraging is a behavioural process and, therefore, individual behaviour and diet are theorized to covary. However, few comparisons of individual behaviour type and diet exist in the wild.</li> <li>We tested whether behaviour type and diet covary in a protected population of Atlantic cod, <em>Gadus</em> <em>morhua</em>. </li> <li>Working in a no-take marine reserve, we could collect data on natural behavioural variation and diet choice with minimal anthropogenic disturbance. We inferred behaviour using acoustic telemetry and diet from stable isotope compositions (expressed as δ<sup>13</sup>C and δ<sup>15</sup>N values). We further investigated whether behaviour and diet could have survival costs.</li> <li>We found cod with shorter diel vertical migration distances fed at higher trophic levels. Cod δ<sup>13</sup>C and δ<sup>15</sup>N values scaled positively with body size. Neither behaviour nor diet predicted survival, indicating phenotypic diversity is maintained without survival costs for cod in a protected ecosystem.</li> <li>The links between diet and diel vertical migration highlight that future work is needed to understand whether the shifts in this behaviour during environmental change (e.g. fishing or climate), could lead to trophic cascades. </li> </ol>
Behaviour data rhino conspecific playbacks as a post-translocation management tool
<p>Raw data file for the publication "Assessing the potential of conspecific playbacks as a post-translocation management tool for white rhinoceros"</p>
CS4 Task 3 – The growth and behaviour of farmed Haliotis midae fed Gracilaria gracilis grown in a sea-based IMTA
<p>The growth and behaviour of farmed Haliotis midae fed Gracilaria gracilis (grown in a sea-based IMTA) at different levels as an ingredient in a formulated abalone feed.</p>
Figure 20 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 20. (a) Lacertilian on an open turret. (b) Perforations (p) following passage of Legion ants on an open turret after an episode of heavy rainfall; o: Opening in the shape of its clypeus practiced by the nymph in response to rainfall. (c) Perforations (p) following a passage of army ants on a turret that the nymph closed with a clay occlusion (clc) after the cessation of precipitation. (d) Bottom of a well after passage of ants; the remainder of the hook of the end of a front leg (fl) is visible. (e) Ant in the bottom of a well.
Figure 18 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 18. Relationship between Tachigali's trunk diameters and distances to G. chlorogena's edifices. (a) Plotting distances to all the buildings associated with a given tree. (b) Plotting the average distance to the buildings associated with a given tree.
Figure 16 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 16. (a) 6:59 a.m.: Opening resulting from the enlargement of a small perforation, such as that shown on Figure 15a. (b) 7:03 a.m.: Continuation of the enlargement; the nymph is discernible. (c) 8:44 a.m.: The enlargement is finished; the nymph appears, on can distinguish its eyes (ey) and its clypeus (cly). (d) 9:38 a.m.: The nymph, gripped at the opening, is equalising the edge by scratching with the hook-shaped end of its forelegs (fl); one distinguishes also an antenna (ant) and the clypeus (cly). (e) 10:05 a.m.: The equalisation of the edge is complete, the opening is perfectly circular and the nymph withdrew. (f) 6:08 p.m.: The nymph leaves its building. Observation on 01.09.2019.
Figure 12 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 12. (a) Circular orifice resulting from a slight pressure of the mass of soggy clay against the wall of the summit. (b) Orifice with imprint of clypeus (cly) and pronotum (pro) covered with soggy clay. (c–f) occlusion of the orifice shown in Figure 12a after end of rainfall, by injection of soggy clay (captured images with the automatic camera Brinno timelapseTLC200 Pro).
Figure 14 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 14. (a) Exuvia attesting for the moulting of a nymph on its own building (photos Vanessa Gama). The white line represents the trip of the nymph between the opening at the top of the turret and the place where the moult took place. Note the rotation made by the nymph at the bottom of its turret. (b) imago from another nymph drying its wings after moulting on its own building. (c) Migration of a nymph from its turret to the branch where it has moulted. o: Opened turret.
Figure 11 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 11. (a) Spontaneous reconstruction of a new turret. (b) Diagram of deviation by the nymph of the outlet of the well: obt: Filling with clay of the old outlet, dfl: Deviation made for a new outlet, ft: Former turret, nt: New turret.
Figure 13 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 13. Correlation between intense rainfalls (////) and temporary and simultaneous opening of 35 turrets, during 3 episodes, between July 19 and 23, 2016.
Figure 15 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 15. Four stages of opening a turret. (a) Beginning of the draft work (6:21 a.m.). (b) draft in progress (9:58 a.m.). (c) Draft completed (10:43 a.m.). (d) Equalisation of the border completed (11:35 a.m.). Observation on 19.08.2019.
Figure 10 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 10. Spontaneous reduction in the height of the turret by construction of an internal top and drying out of the old one. The white line represents the old wall of the upper part of the turret.
Figure 7 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 7. Occlusion in progress by the nymph with clay mixed with its urine (mcl) after its turret has been severed.
Figure 5 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 5. (a) concrete moulding inside an 88 cm deep well, 26 cm of which have been excavated. The curvature (circle), just below the ground level, is clearly visible. The turret is traced (tur). (b) oblique galleries (gal) at the base of the well, oblique as well, up to a curvature at 15 cm from the bottom; cem: Cement moulding.
Figure 4 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 4. Manaus and the Adolfo Ducke Reserve. Google Maps https://www.google.ch/maps/place/Reserva+Florestal+ Adolpho+Ducke/@-2.8580657,-60.0242213,71,452 m/data =!3 m1!1e3!4 m5!3 m4!1s0x926c1ec4d40d48b7:0x897d 42e519777eb2!8 m2!3d-2.9633439!4d-59.9228331.
Figure 3 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 3. Endoscopic images of the nymph in its well; lbi: Labium, frl: Foreleg,mdl: Middle leg, hnl: Hind leg. Clay can be seen on the head of the nymph.
Figure 17 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 17. Six snapshots illustrating the nymph's rotations when equalising the edge of the opening with its forelegs. (a) 9:15 a.m. (b) 9:35 a.m. (c) 9:37 a.m. (d) 9:38 a.m. (e) 9:41 a.m. (f) 9:45 a.m.. Arrows represent the rotations from the previous snapshot; ant: Antenna, fl: Foreleg, cly: Clypeus. Observation on 01.09.2019.
Figure 6. A in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 6. A pile of stems and leaves became an obstacle during the construction of this turret; the nymph avoided it by raising the turret obliquely, but it reestablished the verticality as soon as the obstacle was passed.
Figure 1 in The Nymph Architect of the Cicada Guyalna chlorogena: Behaviours and Ecosystem
Figure 1. (a) View of a turret. (b) Turret removed. (c) Entrance to the well. (d) Inner surface of the summit.
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.