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358 results for “advertising”
FIGURE 2 in The tadpoles and advertisement calls of Pleurodema bibroni Tschudi and Pleurodema kriegi (Müller), with notes on their geographic distribution and conservation status (Amphibia, Anura, Leiuperidae)
FIGURE 2. Tadpole of Pleurodema bibroni (stage 35) from Barra de Valizas, Department of Rocha, Uruguay (MNHN 7167), in lateral (A) and dorsal (B) views, and tadpole of Pleurodema kriegi (stage 36) from Parador El Cóndor, Pampa de Achala, Province of Córdoba, Argentina (MLP DB 5059), in lateral (C) and dorsal (D) views. Scale bars = 5 mm.
FIGURE 1 in The advertisement calls of Quasipaa shini (Ahl, 1930) (Anura: Dicroglossidae)
FIGURE 1. (A) Oscillogram, (B) audiospectrogram and (C) power spectrum of the advertisement call of Quasipaa shini proceeding from Longsheng, Guangxi, China. (D) Oscillogram, (E) audiospectrogram and (F) power spectrum of the advertisement call of Quasipaa shini proceeding from Lushan, Jiangxi, China.
FIGURE 1 in The advertisement call and geographic distribution of Proceratophrys dibernardoi Brandão, Caramaschi, Vaz-Silva & Campos 2013 (Anura, Odontophrynidae)
FIGURE 1. (A) Distribution of Proceratophrys dibernadoi. Yellow star: new record, municipality of Campo Grande, State of Mato Grosso do Sul, Brazil; black circles: records from literature (Brandão et al. 2013): State of Mato Grosso: 1 = Barra do Garças, 2 = Santa Rita do Araguaia, 3 = Alto Taquari; State of Goiás: 4 = Mineiros (type locality), 5 = Jataí, 6 = Rio Verde, 7 = Aporé. (C) Power spectrum (top), audiospectrogram (middle) and oscilogram (bottom) of the advertisement call of P. diberbardoi (air temperature 24.2°C) from the municipality of Jataí, Goiás, Brazil.
FIGURE 1 in The advertisement call of Stumpffia be Köhler, Vences, D'Cruze & Glaw, 2010 (Anura: Microhylidae: Cophylinae)
FIGURE 1. Calling specimen of Stumpffia be in (a) lateral and (b) dorsal view, with arrows indicating the diagnostic orangish-red colour on the hidden portions of the leg; Spectrograms of (c) a single call and (d) the full recorded call series; Waveforms (e) of a single call and (f) of the full recorded call; (g) Frequency spectrum of one call (FFT size 1024, Hanning window). (c), (e), and (g) refer to the same call (third in the series).
FIGURE 3 in A new species of Pseudopaludicola Miranda-Ribeiro (Leiuperinae: Leptodactylidae: Anura) from the Cerrado of southeastern Brazil with a distinctive advertisement call pattern
FIGURE 3. Pseudopaludicola giarettai sp. nov., adult male, holotype (AAG-UFU 0312). Dorsal (A) and lateral (B) views of head; ventral view of hand (C), and foot (D). Scale bar = 5 mm.
FIGURE 1 in A new species of Pseudopaludicola Miranda-Ribeiro (Leiuperinae: Leptodactylidae: Anura) from the Cerrado of southeastern Brazil with a distinctive advertisement call pattern
FIGURE 1. Adult male paratopotype (AAG-UFU 0311) of Pseudopaludicola giarettai sp. nov. in life from the Municipality of Curvelo, State of Minas Gerais, Brazil.
FIGURE 2 in A new species of Pseudopaludicola Miranda-Ribeiro (Leiuperinae: Leptodactylidae: Anura) from the Cerrado of southeastern Brazil with a distinctive advertisement call pattern
FIGURE 2. Pseudopaludicola giarettai sp. nov., adult male, holotype (AAG-UFU 0312). Dorsal (A) and ventral (B) views of body. SVL = 17.1 mm.
FIGURE 3 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 3. Distribution of 60 calls of five species of Euparkerella (males) along the first and second axes of a Principal Component Analysis (PCA) generated from six acoustical variables. Note the five distinct clusters corresponding to five recognized species.
FIGURE 2 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 2. Distribution of 84 specimens of five species of Euparkerella (males and females) along the first and second axes of a Principal Component Analysis (PCA) generated from six morphometric variables.
FIGURE 9 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 9. Euparkerella robusta from Mimoso do Sul, ES, Brazil. (A) Oscillogram and (B) audiospectrogram of an advertisement call (ASEC 17693) without frequency modulation. (C) Oscillogram of two pulses of an advertisement call (ASEC 17687) which presents the second amplitude peak and de periodic amplitude modulation at the end of the pulses. (D) Oscillogram, (E) audiospectrogram and (F) power spectrum of an advertisement call (ASEC 17684) which illustrates frequency modulation at the end of the pulses. Note the low number of pulses and their long duration. Audiospectrograms and power spectrums with Window function Hann, amplitude logarithmic, window size 512 samples, overlap 99%.
FIGURE 8 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 8. Distribution of the species of Euparkerella. Euparkerella brasiliensis (circle); E. cryptica sp. nov. (white star); E. cochranae (triangle); E. robusta (pentagon); E. tridactyla (square). White symbols represent type localities; black symbols indicate the provenances of the specimens examined from zoological collections; symbols marked with a cross indicate the provenances of the acoustically recorded specimens. The type locality of E. brasiliensis is not precisely known (Izecksohn 1988) and therefore, not shown.
FIGURE 7 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 7. (A–C) Euparkerella cryptica sp. nov. from Silva Jardim, RJ, Brazil. (A) Oscillogram, (B) audiospectrogram (C) and power spectrum of an advertisement call (ASEC 17678). Note the long duration and the presence of pulse clusters. (D–F) Euparkerella tridactyla from Santa Maria de Jetibá, ES, Brazil. (D) Oscillogram, (E) audiospectrogram (F) and power spectrum of an advertisement call (ASEC 17704). Note the long duration and high number of pulses. Audiospectrograms and power spectrums with window function Hann, amplitude logarithmic, window size 256 (B, C) and 512 (E, F) samples, overlap 99%.
FIGURE 1 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 1. Graphical illustration of terms used in the structural and temporal description of advertisement calls.
FIGURE 5 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 5. Euparkerella cryptica sp. nov. from Silva Jardim, RJ, Brazil, holotype (ZUFRJ 13281). Dorsal (A) and lateral (B) views of the head. Ventral views of the right hand (C) and foot (D).
FIGURE 4 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 4. Euparkerella cryptica sp. nov. from Silva Jardim, RJ, Brazil, holotype (ZUFRJ 13281, adult male, SVL 14.30 mm), in life. Frontal (A) and (B) dorsal views.
FIGURE 6 in A fifth species of the genus Euparkerella (Griffths, 1959), the advertisement calls of E. robusta Izecksohn, 1988 and E. tridactyla Izecksohn, 1988, and a key for the Euparkerella species (Anura: Brachycephaloidea: Craugastoridae)
FIGURE 6. (A–E) Euparkerella cryptica sp. nov. from Silva Jardim, RJ, Brazil. (A) Ventral view of the left hand, holotype (ZUFRJ 13281). The arrow indicates the presence of digital pad and partially overlapped subarticular tubercle. (B) Ventral view of the left hand (MNRJ 85756). The arrow indicates the presence of a single digital pad. (C) Ventral view right hand (ZUFRJ 12851). The arrow indicates the presence of a digital pad and a subarticular tubercle. (D) Ventral view of the left foot (ZUFRJ 12645). The arrow and dashed line indicate the tip of the Toe V reaching near the middle of proximal subarticular tubercle of the Toe IV. (E) Ventral view of the right foot (ZUFRJ 12852). The arrow and dashed line indicate the tip of the Toe V extending beyond the proximal subarticular tubercle of the Toe IV. (F) Euparkerella tridactyla from Santa Teresa, ES, Brazil. Ventral view of the left hand (ZUFRJ 1928). Hand greatly reduced, with triangular fingers; Finger IV vestigial; digital tubercles and pads weakly developed and planar.
FIGURE 1 in The advertisement call of Stumpffia be Köhler, Vences, D'Cruze & Glaw, 2010 (Anura: Microhylidae: Cophylinae)
FIGURE 1. Calling specimen of Stumpffia be in (a) lateral and (b) dorsal view, with arrows indicating the diagnostic orangish-red colour on the hidden portions of the leg; Spectrograms of (c) a single call and (d) the full recorded call series; Waveforms (e) of a single call and (f) of the full recorded call; (g) Frequency spectrum of one call (FFT size 1024, Hanning window). (c), (e), and (g) refer to the same call (third in the series).
FIGURE 1 in The advertisement call of Bokermannohyla flavopicta Leite, Pezzuti & Garcia, 2012 (Anura: Hylidae) from the mountains of Chapada Diamantina, Bahia, Brazil
FIGURE 1. Spectrogram (A) and oscillogram (B) views of the advertisement call (CBUFMG 388) of Bokermannohyla flavopicta (UFMG 4985, paratype; recorded on 13 January 2010, 22h15, 20°C). C) Relationship between the note interval (NI) and the relative note position in the advertisement call of four males of Bokermannohyla flavopicta (n = 2475 notes; 8 calls) (RNP: from 0 to 1, representing the beginning and the end of the call, respectively).
FIGURE 1 in The advertisement and aggressive calls of Rhinella abei (Baldissera, Caramaschi, and Haddad, 2004) (Anura: Bufonidae) from Campo Largo, Paraná, Brazil
FIGURE 1. Advertisement (A) and aggressive (B) calls of a male Rhinella abei from Campo Largo, State of Paraná, Brazil. Upper graphs: Audiospectrograms. Lower graphs: oscillograms. Air temperature at time of recording = 17.6°C. Water temperature = 18.9°C. Male´s SVL = 69.87 mm. Voucher specimen: ZUFG 9884. Voucher recording: FUFG 1508.
FIGURE 1 in The advertisement call of Ameerega pulchripecta (Silverstone, 1976) (Anura, Dendrobatidae)
FIGURE 1. Oscillogram (lower graphs, amplitude in relative units) and spectrogram (upper graphs) of the advertisement call of Ameerega pulchripecta, recorded in Serra do Navio, Amapá, Brazil. Inset: one of the recorded individuals. Left: part of a call series of single notes; right: detail of a single note. We further overlaid the power spectrum (white line, amplitude in X axis as relative units) of a single note to better visualize the distribution of sound energy. Body size of the recorded male and air temperature were 21.4 mm and 26.6 ºC, respectively.
ScienceDex guides
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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.