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99 results for “frog calls”
FIGURE 2 in Unveiling species diversity in collared frogs through morphological and bioacoustic evidence: a new Mannophryne (Amphibia, Aromobatidae) from Sierra de Aroa, northwestern Venezuela, and an amended definition and call description of M. herminae (Boettger, 1893)
FIGURE 2. Detailed photos of the head (a, b, c), left hand (d) and foot (e) of the holotype (MHNLS 21355) of Mannophryne molinai sp. nov. Scale bars represent 2 mm. Photos: A. Jaramillo.
FIGURE 1 in Unveiling species diversity in collared frogs through morphological and bioacoustic evidence: a new Mannophryne (Amphibia, Aromobatidae) from Sierra de Aroa, northwestern Venezuela, and an amended definition and call description of M. herminae (Boettger, 1893)
FIGURE 1. Male holotype (MHNLS 21355) of Mannophryne molinai sp. nov. in dorsal (a), ventral (b), and lateral (c) views. Scale bar represents 10 mm. Photos: F.J.M. Rojas-Runjaic
FIGURE 6 in Unveiling species diversity in collared frogs through morphological and bioacoustic evidence: a new Mannophryne (Amphibia, Aromobatidae) from Sierra de Aroa, northwestern Venezuela, and an amended definition and call description of M. herminae (Boettger, 1893)
FIGURE 6. Advertisement call of Mannophryne molinai sp. nov. Oscillogram (a) and spectrogram (b) of a 5 s fragment of the call. Detailed view of the oscillogram (c) and spectrogram (d) of a 1 s section of the same recording.
FIGURE 4 in Unveiling species diversity in collared frogs through morphological and bioacoustic evidence: a new Mannophryne (Amphibia, Aromobatidae) from Sierra de Aroa, northwestern Venezuela, and an amended definition and call description of M. herminae (Boettger, 1893)
FIGURE 4. Female and male paratype specimens of Mannophryne molinai sp. nov. in life. (a) Dorsolateral and (b) ventral views of the paratype female MHNLS 21337; (c) dorsolateral and (d) ventral views of the paratype male MCP 13924 (ex- MHNLS 21336). Photos: F.J.M. Rojas-Runjaic
FIGURE 9 in Unveiling species diversity in collared frogs through morphological and bioacoustic evidence: a new Mannophryne (Amphibia, Aromobatidae) from Sierra de Aroa, northwestern Venezuela, and an amended definition and call description of M. herminae (Boettger, 1893)
FIGURE 9. Lectotype male (SMF 7286) of Mannophryne herminae. Dorsal (a), ventral (b), and lateral (c) views; (d) label with catalog information of the lectotype. Scale bars represent 10 mm. Photos: S. Lotzkat.
Fig. 5 Calls. a in Unraveling unique island colonization events in Elachistocleis frogs: phylogeography, cryptic divergence, and taxonomical implications
Fig. 5 Calls. a Elachistocleis nigrogularis without Orthoptera calls at 7000 Hz (bandpass filter: 6800–7200 Hz). b Elachistocleis sp. (undescribed species) after removing the calls of the other amphibians to be able to count pulses. The beginning of the call is clearly visible despite a second individual calling on the background and two harmonics are visible for this call from this individual. Pictures of frogs by the spectrograms are actual male individuals recorded calling
Figure 2 in What do frog calls tell us about males? The advertisement call of Physalaemus albifrons (Amphibia: Leptodactylidae) in the Brazilian semiarid region does not reflect either gonadal investment or energy storage
Figure 2. On the left, testis (solid arrow) and fat bodies (dashed arrow) of Physalaemus albifrons (CHSA. A 140). On the right, spectrogram (top) and oscillogram (bottom) of the typical harmonic note of the advertisement call of Physalaemus albifrons (CASA 241).
Figure 1 in What do frog calls tell us about males? The advertisement call of Physalaemus albifrons (Amphibia: Leptodactylidae) in the Brazilian semiarid region does not reflect either gonadal investment or energy storage
Figure 1. Male of Physalaemus albifrons calling in a temporary pond in the Brazilian semiarid region. Photograph: Milena Wachlevski.
FIGURE 14. Heleioporus a. flavopunctatus subsp. nov. aggressive call and distress call. A in Taxonomic revision of south-eastern Australian giant burrowing frogs (Anura: Limnodynastidae: Heleioporus Gray)
FIGURE 14. Heleioporus a. flavopunctatus subsp. nov. aggressive call and distress call. A) Distress call from Broadwater State Forest NSW, and B) Aggressive call from Broadwater State Forest, NSW.
FIGURE 1 in The tadpole of the hylodid frog Hylodes ornatus (Bokermann, 1967), including chondrocranium description, and advertisement call
FIGURE 1. Tadpole of Hylodes ornatus, stage 37 of Gosner (1960) form Parque Nacional do Itatiaia, municipality of Itamonte, Minas Gerais, Brazil: (A) lateral (B) ventral and (C) dorsal views (scale 10 mm); (D) oral disc (scale 1 mm); (E) buccal floor and (F) roof (scale 1 mm). Chondrocranium of Hylodes ornatus tadpoles (G) dorsal, (H) ventral and (I) lateral views, (J) ventral view of hyobranchial apparatus; adc, adrostral cartilage; cb I-IV, ceratobranchials I-IV; ch, ceratohyal; cop, copula posterior; cqa, commissura quadratocranialis anterior; ct, cornua trabeculae; fah, facies articularis hyalis; fb, fenestra basicranialis; fcp, foramen caroticum primarium; fo, foramen opticum; foc, foramen oculomotorium; fpi, foramen perilymphaticum inferior; fov, fenestra ovalis; hp, hypobranchial plate; i, infrarostral cartilage; lcp, larval crista parotica; mc, Meckel's cartilage; oc, otic capsule; pab, processus anterior branchialis pah, processus anterior hyalis; pat processus anterolateralis hyalis; pas, processus ascendens; paq, pars articularis quadrati; pm, processus muscularis quadrati; pph, processus posterior hyalis; pq, palatoquadrate; pra, processus retroarticularis; pr, pars reuniens; pu, processus urobranchialis; sa, suprarostral ala; sc, suprarostral corpus; ttm, taenia tecti marginalis. Scale 1.0 mm.
F in Advertisement calls of Neotropical poison frogs (Amphibia: Dendrobatidae) of the genera Colostethus, Dendrobates and Epipedobates, with notes on dendrobatid call classification
F. 5. Oscillogram and audiospectrogram of advertisement call of Epipedobates cf. boulengeri from Ecuador.
F in Advertisement calls of Neotropical poison frogs (Amphibia: Dendrobatidae) of the genera Colostethus, Dendrobates and Epipedobates, with notes on dendrobatid call classification
F. 2. Oscillogram and audiospectrogram of the advertisement call of Dendrobates imitator yurimaguensis.
F in Advertisement calls of Neotropical poison frogs (Amphibia: Dendrobatidae) of the genera Colostethus, Dendrobates and Epipedobates, with notes on dendrobatid call classification
F. 4. Oscillogram and audiospectrogram of the advertisement call of Epipedobates cf. boulengeri from Colombia.
F in Advertisement calls of Neotropical poison frogs (Amphibia: Dendrobatidae) of the genera Colostethus, Dendrobates and Epipedobates, with notes on dendrobatid call classification
F. 3. Oscillogram and audiospectrogram of a section of the advertisement call of Dendrobates leucomelas.
FIGURE 1. A in The advertisement call and clutch size of the Golden-capped Boulder-frog Cophixalus pakayakulangun (Anura: Microhylidae)
FIGURE 1. A single call of: (A) C. pakayakulangun and (B) C. kulakula. Top row shows waveform, displaying amplitude (y-axis) against time (x-axis, seconds). Bottom row shows spectrogram, displaying call frequency (y-axis) and intensity (degree of shading) against time (x-axis, seconds). Air temperature for both recordings was 28°C.
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.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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
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