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693 results for “vocalizations”
Figure 3 in Vocalization and territorial behaviour of Phyllomedusa nordestina Caramaschi, 2006 (Anura: Hylidae) from southern Bahia, Brazil
Figure 3. Oscillogram and sonogram of the advertisement call of Phyllomedusa nordestina from the Ecological Reserve of Michelin, Igrapiúna, Bahia. Recorded on 16 October 2007.
Figure 5 in Vocalization and territorial behaviour of Phyllomedusa nordestina Caramaschi, 2006 (Anura: Hylidae) from southern Bahia, Brazil
Figure 5. Oscillogram and sonogram of four territorial calls of type II of Phyllomedusa nordestina. Recorded on 20 November 2007 at the Ecological Reserve of Michelin, Igrapiúna, Bahia.
Figure 4 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 4. Oscillogram and sound spectrogram of the encounter call of Oreobates barituensis from Arroyo La Loza, Jujuy province, Argentina. Recorded on 29 November 2008; air temperature during recording was 18.0◦C.
Figure 2 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 2. Oscillogram and sound spectrogram of the encounter call of Oreobates discoidalis from Jaire, Jujuy province, Argentina. Recorded on 14 November 2009; air temperature during recording was 17.4◦C.
Figure 1 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 1. Oscillogram and sound spectrogram of the advertisement call and territorial call of Oreobates discoidalis from Jaire, Jujuy province, Argentina. Recorded on 8 November 2009; air temperature during recording was 13.6◦C.
Figure 3 in Vocal repertoire of two species of Oreobates Jiménez de la Espada, 1872 (Anura: Strabomantidae) of the Yungas Andean Forest, NW Argentina
Figure 3. Oscillogram and sound spectrogram of the advertisement call and territorial call of Oreobates barituensis from Río Yerba Buena, Jujuy province, Argentina. Recorded on 1 December 2009; air temperature during recording was 21.1◦C.
Figure 3 in Vocal communication in the striped field mouse, Apodemus agrarius, in dyadic encounters and intraspecific cage groups
Figure 3. Examples of the calls resembling clucks: (A) shorter and more rapidly modulated and (B) longer and slightly modulated.
Figure 2 in Vocal communication in the striped field mouse, Apodemus agrarius, in dyadic encounters and intraspecific cage groups
Figure 2. Harsh calls produced by Apodemus agrarius at (A) threatening postures and (B) harsh calls (the second, third and fifth signals) alternated by calls, resembling clucks (the first and fourth signals).
Figure 1 in Vocal communication in the striped field mouse, Apodemus agrarius, in dyadic encounters and intraspecific cage groups
Figure 1. Examples of the vocal sounds produced by Apodemus agrarius in response to (A) opponent approach and (B) during attacks and fights.
FIGURE 7 in A new species of Gracixalus (Anura: Rhacophoridae) with a hyperextended vocal repertoire from Vietnam
FIGURE 7. Maximum-likelihood (ML) tree based on 16S ribosomal RNA mitochondrial gene sequences for species currently assigned to Gracixalus (Frost 2011) and for outgroups (Philautus aurifasciatus (type species of Philautus), Kurixalus eiffingeri (type species of Kurixalus) and K. odontotarsus). Bayesian inference (BI) produced near-identical topology. Numbers on branches are ML bootstrap values and Bayesian posterior probabilities. Species names in bold represent sequences from specimens collected at or in close proximity to type locality. Species names for previously published sequences remain as in original publications. Frog images represent approximate relative male body sizes for each species/group, and approximate primary dorsal colour (dull greenish/bright green/brownish or greyish).
FIGURE 3 in A new species of Gracixalus (Anura: Rhacophoridae) with a hyperextended vocal repertoire from Vietnam
FIGURE 3. Dorsum (A), venter (B), and lateral view of head (C) of preserved male Gracixalus gracilipes (AMNH A193894), Gracixalus supercornutus (AMS R 173395), and Gracixalus quangi sp. nov. (holotype AMS R 173410).
FIGURE 2 in A new species of Gracixalus (Anura: Rhacophoridae) with a hyperextended vocal repertoire from Vietnam
FIGURE 2. Dorsal (A), ventral (B), lateral (C) and dorsolateral (D) views of male holotype of Gracixalus quangi sp. nov. (AMS R 173410) in life.
FIGURE 5 in A new species of Gracixalus (Anura: Rhacophoridae) with a hyperextended vocal repertoire from Vietnam
FIGURE 5. (A) General habitat of Gracixalus quangi sp. nov. in Pu Hoat Proposed Nature Reserve, (B) breeding site of Gracixalus quangi sp. nov., with shallow puddle/seep on rocky forest floor, (C) close-up of same breeding site, with yellow arrows pointing towards egg masses deposited on the tips of leaves, (D) Gracixalus quangi sp. nov. clutch of eleven tadpoles from same breeding site (AMS R 173425), with egg mass visible on leaf in background.
FIGURE 4 in A new species of Gracixalus (Anura: Rhacophoridae) with a hyperextended vocal repertoire from Vietnam
FIGURE 4. Male advertisement call of Gracixalus quangi sp. nov. (A) waveform of relative amplitude (Rel. amp) over time of a call sequence for (i) holotype AMS R 173410 (ii) paratype AMS R 173413, and (iii) paratype AMS R 173414. (B) representative calls shown as waveforms above and corresponding spectrograms (frequency over time) below for (i–vi) holotype AMS R 173410, (vii–ix) paratype AMS R 173413 and (x–xvi) paratype AMS R 173414. All calls were recorded at an ambient air temperature of 24.1º C.
FIGURE 1 in A new species of Gracixalus (Anura: Rhacophoridae) with a hyperextended vocal repertoire from Vietnam
FIGURE 1. Type locality of Gracixalus quangi sp. nov. (yellow star), Gracixalus gracilipes (closed circle), Gracixalus supercornutus (closed square) and Gracixalus quyeti (open circle).
FIGURE 1 in Species limits in antbirds (Aves: Passeriformes: Thamnophilidae): an evaluation of Frederickena unduligera (Undulated Antshrike) based on vocalizations
FIGURE 1. Geographic ranges. Locations documented by specimens, vocal recordings, or published sight records are assigned to geographic sectors (Isler 1997) and are identified by open circles. Circles in sectors in which loudsong recordings were available are filled in solidly. Except where they follow rivers, dotted lines that separate taxa are symbolic because actual geographic limits are unknown. Circles numbered 1 through 4 are type localities. 1 = Frederickena u. unduligera. 2 = F. fulva. 3 = F. u. diversa. 4 = F. u. pallida. Circles numbered 5 identify sites south of the Río Marañón in which loudsongs having the characteristics of F. fulva were recorded (see text). Circles numbered 6 denote sites where populations remain to be identified by vocal recordings (see text). Nomenclature follows recommendations of this paper.
FIGURE 3 in Species limits in antbirds (Aves: Passeriformes: Thamnophilidae): an evaluation of Frederickena unduligera (Undulated Antshrike) based on vocalizations
FIGURE 3. Calls of Frederickena unduligera and F. fulva. (A) F. u. unduligera snarl. Parque Nacional de Jaú, Amazonas, Brazil (S. Borges ISL-AW.020:29). (B–D) F. u. pallida. (B) whistle. Tupana Lodge, Amazonas, Brazil (A. Whittaker ISL-AW.020:28). (C) short whistle. Igarapé Santa Maria, Amazonas, Brazil (B. Whitney ISL-BMW.184:55). (D) whistle-snarl. Tupana Lodge, Amazonas, Brazil (A. Whittaker ISL-AW.020:21). (E–H) F. u. diversa. (E) whistle. Parque Nacional da Serra do Divisor, Acre, Brazil (B. Whitney ISL-BMW. 126:07). (F) whistle-snarl. same recording. (G) snarl. same recording. (H) rattle. same location (B. Whitney ISL-BMW. 126:04). (I–K) F. fulva. (I) whistle. Kapawi Lodge, Pastaza, Peru (B. Whitney ISL-BMW.157:08). (J) whistle-snarl. same recording. (K) snarl. same location (B. Whitney ISL-BMW.153:08).
FIGURE 2 in Species limits in antbirds (Aves: Passeriformes: Thamnophilidae): an evaluation of Frederickena unduligera (Undulated Antshrike) based on vocalizations
FIGURE 2. Loudsongs of Frederickena unduligera and F. fulva. (A) F. u. unduligera São Gabriel da Cachoeira, Amazonas, Brazil (R. Parrini ISL-MISC.007:49). (B) F. u. pallida Tupana Lodge, Amazonas, Brazil (A. Whittaker ISL- AW.020:33). (C) F. u. diversa Reserva Natural Palmari, Amazonas, Brazil (B. Whitney ISL-BMW.209:38). (D) F. fulva Yuturi Lodge, Napo, Ecuador (N. Krabbe ISL-NK.006:06).
Human data - Functionally homologous representation of vocalizations in the auditory cortex ofhumans and macaques
<p>Human dataset used in the article Bodin et al., Functionally homologous representation of vocalizations in the auditory cortex of humans and macaques, Current Biology (2021), https://doi.org/10.1016/j.cub.2021.08.043</p>
Macaque data - Functionally homologous representation of vocalizations in the auditory cortex ofhumans and macaques
<p>Macaque dataset used in the article Bodin et al., Functionally homologous representation of vocalizations in the auditory cortex of humans and macaques, Current Biology (2021), https://doi.org/10.1016/j.cub.2021.08.043</p>
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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.