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.
358
datasets available to search
ShareScore release 0.9.0
Dataset results
358 results for “advertising”
FIGURE 1 in The advertisement call of Physalaemus ephippifer (Anura: Leiuperidae) from Brazilian Amazonia
FIGURE 1. Oscillogram and spectrogram of (A) a sequence of five calls and of (B) a representative call of Physalaemus ephippifer from Brazil. The vertical dashed line represents the beginning of the pulsed portion of the call.
FIGURE 1 in The complex advertisement calls of Allobates myersi (Pyburn, 1981) (Anura: Aromobatidae) from São Gabriel da Cachoeira, Brazil
FIGURE 1. (A), (B) and (C) Segments of advertisement call bouts of three Allobates myersi males (voucher numbers INPA-H 26369, 26370, 26372, respectively) recorded in São Gabriel da Cachoeira, Amazonas, Brazil. Call variation in number and arrangement of notes is observed within each call bout, and between call bouts of different individuals. In segment A, six calls with three distinct arrangements are observed. In segment B, five calls with two distinct arrangements are observed. In segment C, seven calls are shown, with four distinct arrangements. (D) Detailed view of a single call formed by a fast trill of four notes, followed by a second component formed by two notes, representing the most frequent call pattern observed in the study population (E) Dorsal and ventral view, in life, of a male A. myersi (INPA-H 26371). The relatively large snout-to-vent length (28.1±1.5mm in average between individuals analyzed), the brown to light-brown dorsum, and the bright red flash mark with diffuse edges on dorsal surface of thighs are diagnostic characters used to distinguish A. myersi from other congeneric species.
FIGURE 1 in Advertisement call of Dendropsophus oliveirai (Anura, Hylidae)
FIGURE 1. Dendropsophus oliveirai: (A) oscillogram, (B) audiospectrogram and (C) power spectrum of the advertisement call from Mamamguape (air temperature = 24.2ºC); (D) oscillogram, (E) audiospectrogram and (F) power spectrum of the advertisement call from Macaíba (air temperature = 23.4ºC); and (G) an adult male in life from Macaíba (unvouchered species) (photo by D. J. Santana).
FIGURE 1. A in The advertisement call of Proceratophrys renalis (Miranda-Ribeiro, 1920) (Amphibia: Anura: Cycloramphidae)
FIGURE 1. A) Proceratophrys renalis photographed in Cruz do Espírito Santo municipality (Photo by D.J. Santana); B) Proceratophrys renalis advertisement call: B) oscillogram, C) audiospectrogram and D) power spectrum of a single call (air temperature = 25ºC).
Figure 10 in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 10. Alternative hypothetical reconstruction of characters considering the presence a) and absence b) of the gap in the lower lip in tadpoles of A. dorisswasonae (unknown at present), and considering two alternative phylogenetic placement of A. daleswansoni, as sister to A. dorisswasonae c), and as sister to all species of the A. bombetes species group d). Note that under a, c, and d the presence of the gap would optimise as a synapomorphy for the A. bombetes species group.
Figure 9. Images showing a in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 9. Images showing a sequence of the agonistic interaction between two males of Andinobates daleswansoni. Note that one of the males is calling (a) and males exhibit different body positions (b, c and d) through the interaction. See video in supplementary material.
Figure 8 in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 8. Habitat and breeding microhabitat of Andinobates daleswansoni. Images of an abandoned pine plantation shows (arrow) a plant of Xanthosoma robustum (Araceae), which is used for parents as microhabitat for the metamorphosis of tadpoles (a); adult male transporting a tadpole on the back observed in the leaf of a X. robustum (b); tadpole in a phytothelmata in the axis of X. robustum (c). Pictures B and C by Andres Felipe Cardona.
Figure 5 in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 5. The tadpole of Andinobates daleswansoni (Gosner Stage 26) in lateral (a), dorsal (b), and ventral (c) views. Scale bar = 5.0 mm. Voucher at the Colección de Anfibios y Reptiles of the Biology programme at the Universidad del Quindío, Armenia, Colombia: ARUQ-977.
Figure 7 in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 7. Most parsimonious ancestral character-state reconstruction of the presence/absence of the papillation gap in the lower lip of Andinobates species onto the phylogenetic hypothesis of Grant et al. (2017); trimmed in the figure to show only Andinobates and Ranitomeya. Note that the presence of the gap optimises ambiguously.
Figure 4 in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 4. Oscillogram, spectrogram, and power spectrum for the advertisement call of Andinobates daleswansoni. Male body size: 23.7 mm, temperature of calling male: 17.1°C, voucher at the Colección de Anfibios y Reptiles of the Biology programme at the Universidad del Quindío, Armenia, Colombia: ARUQ-768. Voucher at Colección de Sonidos Ambientales of the Instituto Alexander von Humboldt, Villa de Leyva, Boyacá, Colombia IAvH–CSA-18535. Ilustration by Dina Lucía Rivera-Robles.
Figure 3 in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 3. Oscillogram showing temporal call features calculated in this study for the description of the advertisement call of the poison frog A. daleswansoni.
Figure 1 in Advertisement call, tadpole morphology, and other natural history aspects of the threatened poison frog Andinobates daleswansoni (Dendrobatidae)
Figure 1. Image of a calling male of Andinobates dalewansoni in the study area. Individual not collected.
Figure 1 in The advertisement call and tadpole of the Ambangulu Puddle Frog (Phrynobatrachus ambanguluensis) (Anura: Phrynobatrachidae) from Tanzania
Figure 1. Left – Male Phrynobatrachus ambanguluensis to show yellow throat. Right – Irrigation ditch where adults and tadpoles were collected, Mazumbai Forest Reserve.
FIGURE 4 in Third time's a charm: reviewing the advertisement call of Gabohyla pauloalvini (Anura: Hylidae: Scinaxinae), an endemic species from Brazil' Atlantic Forest
FIGURE 4. Advertisement calls of Sphaenorhynchus prasinus (FNJV0011200) and Boana atlantica (FNJV0030920): Oscilograms and spectrograms showing a single call of S. prasinus (A) and B. atlantica (B). Filter bandwidth (Hz): 135 (A and B).
FIGURE 2 in Third time's a charm: reviewing the advertisement call of Gabohyla pauloalvini (Anura: Hylidae: Scinaxinae), an endemic species from Brazil' Atlantic Forest
FIGURE 2. Advertisement call of Gabohyla pauloalvini from the Estação Biologia Marinha Augusto Ruschi, municipality of Aracruz, state of Espírito Santo, southeastern Brazil. Oscilogram and spectrogram showing three notes emitted in sequence (A). Oscilogram (B), spectrogram (C) and power spectrum (D) of a single note, indicating five visible harmonics numbered I to V.
Data from: Visual attention and perception of road safety advertisements with different level of explicitness in Peruvian millennials and centennials
<p>In the face of the massiveness of content, social advertisements must explore the potential of other dimensions to improve their designs. This paper examines the effect of different levels of graphic explicitness on the attention and perception of road safety ads. An eye-tracking experiment was conducted to assess the visual attention of 60 young millennials and centennials on three ads with images of different levels of explicitness. Participants were agrouped into two groups where they watched two road safety ads with negative valence, but with different levels of explicitness in the second ad seen. For the image and text of each ad, metrics of number of fixations, time to first fixation and total fixation time spent were compared. A survey provided qualitative information about the perception and effectiveness of the ads. Significant effects were found when using negative emotional appeals through explicitness to enhance visual attention and audience perception. But, although the image has prominence, textual design should not be neglected to focus the emotional appeal of the ad.</p>
FIG. 6 in Differences in Advertisement Calls and Vocal Behavior in HIJpsiboas atlanticus (Anura: Hylidae) among Microhabitats
FIG. 6.—Mean values (±1 SD) for abundance of calling Hŋpsiboas atlanticus (A) and temperature in each microhabitat (B) as a function of the hourly intervals during the sampled nights for July 2010–August 2011.
FIG. 4 in Differences in Advertisement Calls and Vocal Behavior in HIJpsiboas atlanticus (Anura: Hylidae) among Microhabitats
FIG. 4.—Response of male Hŋpsiboas atlanticus in each of two microhabitats (perch or water) to playback stimuli having different acoustic parameters. Dots represent means with their respective standard deviations. Absent, parameter before males be stimulated by playback; Present, parameter during playback stimulus.
FIG. 5 in Differences in Advertisement Calls and Vocal Behavior in HIJpsiboas atlanticus (Anura: Hylidae) among Microhabitats
FIG. 5.—Call sequence of a male of Hŋpsiboas atlanticus stimulated by water playback (call interval edited). The male calls on water surface and during the playback changes its microhabitat and call type. W = advertisement call from water, T = territorial call, P = advertisement call from perch; shading in upper panel corresponds to amplitude legend used in Fig. 1. Water temperature 26.1°C. A color version of this figure is available on-line.
FIG. 2 in Differences in Advertisement Calls and Vocal Behavior in HIJpsiboas atlanticus (Anura: Hylidae) among Microhabitats
FIG. 2.—Acoustic parameters of the Hŋpsiboas atlanticus advertisement call considering the influence of the microhabitat temperature (A–F) and male̕s snout–vent length (G). Black squares represent males calling on perches, and gray dots represent males calling with their body partially submerged in water.
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.