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549 results for “Rhacophoridae”
FIGURE 2 in Tadpole of the Vietnamese jelly-nest tree frog, Feihyla palpebralis (Anura: Rhacophoridae): external morphology and chondrocranium
FIGURE 2. Larval skull and hyobranchium in Feihyla palpebralis (Stage 36, TL 30.3 mm, SVL 12.9 mm): (A) chondrocranium, dorsal view; (B) rostral region, frontal view; (C) lower jaw, frontal view; and (D) hyobranchial apparatus, ventral view. Abbreviations: alp anterolateral process of the ceratohyal; ap anterior process of the ceratohyal; appq ascending process of the palatoquadrate, bb basibranchial, cbr ceratobranchials, chy ceratohyal, hbp hypobranchial plate, irc infrarostral cartilage, lop larval otic process; Mc Meckel's cartilage, mp muscular process of the palatoquadrate, oc otic capsule, pp posterior process of the ceratohyal, pq palatoquadrate, qcc quadratocranial commissure, sb subocular bar, sp spicule; src suprarostral cartilage, th trabecular horns, ts tectum synoticum, ubp urobranchial process. Scale bar = 1 mm.
FIGURE 1 in Tadpole of the Vietnamese jelly-nest tree frog, Feihyla palpebralis (Anura: Rhacophoridae): external morphology and chondrocranium
FIGURE 1. (A) A typical breeding site of Feihyla palpebralis in Bidoup–Niu Ba National Park, Vietnam; (B) developing egg clutch; external morphology of a tadpole at Stage 35 in (C) dorsal and (D) lateral view; (E) oral disc; (F) young metamorph (Stage 44, TL 27.8 mm, SVL 17.1 mm).
Figure 1 from: Al-Razi H, Maria M, Muzaffar SB (2020) A new species of cryptic Bush frog (Anura, Rhacophoridae, Raorchestes) from northeastern Bangladesh. ZooKeys 927: 127-151. https://doi.org/10.3897/zookeys.927.48733
Figure 1 Map showing the type location of Raorchestes rezakhani sp. nov. in northeastern Bangladesh as well as adjoining areas.
Figure 7 from: Al-Razi H, Maria M, Muzaffar SB (2020) A new species of cryptic Bush frog (Anura, Rhacophoridae, Raorchestes) from northeastern Bangladesh. ZooKeys 927: 127-151. https://doi.org/10.3897/zookeys.927.48733
Figure 7 Plot showing individual loadings of each morphometric variable in relation to PC1, which accounted for over 91% of the variation in the data.
Figure 4 from: Al-Razi H, Maria M, Muzaffar SB (2020) A new species of cryptic Bush frog (Anura, Rhacophoridae, Raorchestes) from northeastern Bangladesh. ZooKeys 927: 127-151. https://doi.org/10.3897/zookeys.927.48733
Figure 4 Color variation in R. rezakhani sp. nov. A holotype, showing single transparent vocal sac during advertisement call (B holotype with brown dorsum and ")-(" mark; C dorsolateral view of paratype (JnUZool- A0519) D ventral view of paratype (JnUZool- A0519), showing small dark brown spots.
Figure 3 from: Al-Razi H, Maria M, Muzaffar SB (2020) A new species of cryptic Bush frog (Anura, Rhacophoridae, Raorchestes) from northeastern Bangladesh. ZooKeys 927: 127-151. https://doi.org/10.3897/zookeys.927.48733
Figure 3 Advertisement call of Raorchestes rezakhani sp. nov. showing 25 notes that vary in amplitude A waveform of 25 notes B shows variation in frequency C shows waveform of first six notes of the call; and D shows a spectrogram of the six notes E shows a pulse of fourth note and F shows the spectrogram of pulse of fourth note.
Figure 6 from: Al-Razi H, Maria M, Muzaffar SB (2020) A new species of cryptic Bush frog (Anura, Rhacophoridae, Raorchestes) from northeastern Bangladesh. ZooKeys 927: 127-151. https://doi.org/10.3897/zookeys.927.48733
Figure 6 A Scatterplot of principle component axes 1 and 2 and B principle component axes 2 and 3. R. tuberohumerus (light blue), R. gryllus (green), R. longchuanensis (black), and R. rezakhani sp. nov. (purple).
Figure 5 from: Al-Razi H, Maria M, Muzaffar SB (2020) A new species of cryptic Bush frog (Anura, Rhacophoridae, Raorchestes) from northeastern Bangladesh. ZooKeys 927: 127-151. https://doi.org/10.3897/zookeys.927.48733
Figure 5 Holotype of R. rezakhani sp. nov. A dorsal view B ventral view C ventral view of right hand D ventral view of right foot E web pattern in foot.
Figure 2 from: Al-Razi H, Maria M, Muzaffar SB (2020) A new species of cryptic Bush frog (Anura, Rhacophoridae, Raorchestes) from northeastern Bangladesh. ZooKeys 927: 127-151. https://doi.org/10.3897/zookeys.927.48733
Figure 2 Bayesian Inference and Maximum Likelihood phylogenies, showing the placement of Raorchestes rezakhani sp. nov. in relation to other congeneric species. The Bayesian Posterior Probabilities (BPP) > 0.75 and the bootstrap supports for Maximum Likelihood analysis (ML) > 60 were retained.
Fig. 2. A–B. Dorsal and lateral views. C in A New Species of the Genus Zhangixalus (Amphibia: Rhacophoridae) from Vietnam
Fig. 2. A–B. Dorsal and lateral views. C. Drawing of ventral view of left hand and right foot of the adult male holotype (VNMN 011682) of Zhangixalus franki sp. nov. from Quan Ba District, Ha Giang Province, northern Vietnam.
Target-capture phylogenomics provide insights on gene and species tree discordances in Old World Treefrogs (Anura: Rhacophoridae)
<p>Genome-scale data have greatly facilitated the resolution of recalcitrant nodes that Sanger-based datasets have been unable to resolve. However, phylogenomic studies continue to utilize traditional methods such as bootstrapping to estimate branch support; and high bootstrap values are still interpreted as providing strong support for the correct topology. Furthermore, relatively little attention is given to assessing discordances between gene and species trees, and the underlying processes that produce phylogenetic conflict. We generated novel genomic datasets to characterize and determine the causes of discordance in Old World Treefrogs (Family: Rhacophoridae)—a group that is fraught with conflicting and poorly supported topologies among major clades. We showed that incomplete lineage sorting was present at all nodes that exhibited high levels of discordance, which was caused by extremely short internal branches. We also clearly demonstrate that bootstrap values do not reflect uncertainty or confidence for the correct topology, and hence, should not be used as a measure of branch support in phylogenomic datasets. Overall, we showed that species tree inference can be improved using a total-evidence and multi-faceted approach that utilizes the most amount of data and considers results from different analytical methods and datasets.</p>
FIGURE 1 in A new species of the genus Theloderma Tschudi, 1838 (Anura: Rhacophoridae) from Northwestern Vietnam
FIGURE 1. Collection locality in Vietnam: Van Ban District, Nam Tha Commune, Lao Cai Province, (1).
FIGURE 2 in A new species of the genus Theloderma Tschudi, 1838 (Anura: Rhacophoridae) from Northwestern Vietnam
FIGURE 2. Holotype male (AMNH 168757/IEBR A. 0860) of Theloderma lateriticum sp. nov.
FIGURE 8 in Two new species of shrub frogs (Rhacophoridae: Philautus) from the lowlands of Sri Lanka
FIGURE 8. Philautus tanu (WHT 6342), in life, Beraliya Forest Reserve, Pituwela.
FIGURE 4 in Two new species of shrub frogs (Rhacophoridae: Philautus) from the lowlands of Sri Lanka
FIGURE 4. Philautus singu (WHT 6340), in life, Kottawa Forest Reserve, Galle.
FIGURE 1 in A new tree frog of the genus Rhacophorus (Anura: Rhacophoridae) from southern Vietnam
FIGURE 1. Collection site of Rhacophorus vampyrus sp. nov.
FIGURE 4 in Two new species of shrub frogs (Rhacophoridae: Pseudophilautus) from Sri Lanka
FIGURE 4. Pseudophilautus schneideri (WHT 6127), in life, Sinharaja World Heritage Site.
FIGURE 8 in Two new species of shrub frogs (Rhacophoridae: Pseudophilautus) from Sri Lanka
FIGURE 8. Pseudophilautus hankeni (WHT 6295), in life, Bambarella.
FIGURE 4 in Mitochondrial DNA reveals a new species of parachuting frog (Rhacophoridae: Rhacophorus) from Sumatra
FIGURE 4. Head shape of Rhacophorus bengkuluensis (female holotype, MZB.Amph.21194).
FIGURE 8 in Larval morphology and complex vocal repertoire of Rhacophorus helenae (Anura: Rhacophoridae), a rare flying frog from Vietnam
FIGURE 8. Waveform (A) and spectrogram (B) of a natural call series of Rhacophorus helenae.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.