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632 results for “Microhylidae”
Figure 2 in Diversity among New World microhylid frogs (Anura: Microhylidae): morphological and osteological comparisons between Nelsonophryne (Günther 1901) and a new genus from Peru
Figure 2. Body shapes of Nelsonophryne and Melanophryne in dorsal aspect. A, Nelsonophryne aequatorialis (KU 178289). B, N. aterrima (KU 30775). C, Melanophryne barbatula (MTD 45944). D, M. carpish (MHNSM 20699).
Figure 7 in Diversity among New World microhylid frogs (Anura: Microhylidae): morphological and osteological comparisons between Nelsonophryne (Günther 1901) and a new genus from Peru
Figure 7. Ventral views of hand (A) and foot (B) of Melanophryne barbatula (MHNSM 19005). omt, outer metatarsal tubercle.
Figure 8 in Diversity among New World microhylid frogs (Anura: Microhylidae): morphological and osteological comparisons between Nelsonophryne (Günther 1901) and a new genus from Peru
Figure 8. Dorsal views of hand of (A) male Melanophryne barbatula (MHNSM 19904) and (B) female M. barbatula (MTD 45944).
Figure 1. A in Diversity among New World microhylid frogs (Anura: Microhylidae): morphological and osteological comparisons between Nelsonophryne (Günther 1901) and a new genus from Peru
Figure 1. A, Nelsonophryne aequatorialis (KU 121056, SVL 36.5 mm), photo by J. D. Lynch. B, N. aterrima, photo by K.-H. Jungfer. C, Melanophryne carpish (MTD 45614, SVL 33.7 mm), photo by E. Lehr.
Fig. 6 in Distribution pattern of the Microhyla heymonsi group (Anura, Microhylidae) with descriptions of two new species from Vietnam
Fig. 6. Microhyla xodangorum sp. nov., ♀, holotype (IEBR A.4913 (KP-MĐ-2018-21)). A. Dorsolateral view in life. B. Ventral view in life. C. Underside of right hand. D. Underside of right foot. Scale bars = 1 mm.
Fig. 5 in Distribution pattern of the Microhyla heymonsi group (Anura, Microhylidae) with descriptions of two new species from Vietnam
Fig. 5. Map showing the distribution pattern of the Microhyla heymonsi group based on available molecular and morphological data collected from East and Southeast Asia (red area: M. heymonsi s. str. Vogt, 1911 and M. cf. heymonsi; yellow area: Microhyla sp1; blue area: Microhyla sp2; green area: M. ninhthuanensis Hoang et al., 2021; pink area: Microhyla hmongorum sp. nov.).
Fig. 3 in Distribution pattern of the Microhyla heymonsi group (Anura, Microhylidae) with descriptions of two new species from Vietnam
Fig. 3. Bayesian inference matrilineal genealogy of the Microhyla heymonsi group derived from the analysis of 16S rRNA mtDNA sequences. Numbers above and under branches are Bayesian posterior probabilities and ML bootstrap values; the scale bar represents 0.5 nucleotide substitutions per site.
Fig. 7. A in Distribution pattern of the Microhyla heymonsi group (Anura, Microhylidae) with descriptions of two new species from Vietnam
Fig. 7. A. Habitat of Microhyla hmongorum sp. nov. in Tam Duong District, Lai Chau Province, Vietnam. B. Habitat of Microhyla xodangorum sp. nov. in Kon Plong District, Kon Tum Province, Vietnam. Photos by C.V. Hoang.
Fig. 4 in Distribution pattern of the Microhyla heymonsi group (Anura, Microhylidae) with descriptions of two new species from Vietnam
Fig. 4. Microhyla hmongorum sp. nov., ♂, holotype (IEBR A.4905 (TD-LC2020.121)). A. Dorsolateral view in life. B. Ventral view in life. C. Underside of left hand. D. Underside of right foot. E. Lateral view of the head. Scale bars = 1 mm.
Fig. 1 in Distribution pattern of the Microhyla heymonsi group (Anura, Microhylidae) with descriptions of two new species from Vietnam
Fig. 1. Plots of the first principal component (PC1) versus the second (PC2) for the males and the females of Microhyla hmongorum sp. nov. (green), Microhyla xodangorum sp. nov. (pink), M. ninhthuanensis Hoang et al., 2021 (red), M. daklakensis Hoang et al., 2021 (blue), and M. cf. heymonsi Vogt, 1911 (black).
Fig. 2 in Distribution pattern of the Microhyla heymonsi group (Anura, Microhylidae) with descriptions of two new species from Vietnam
Fig. 2. Bayesian inference matrilineal genealogy of the Microhyla heymonsi group derived from the analysis of 12S rRNA–16S rRNA mtDNA sequences. Numbers above and under branches are Bayesian posterior probabilities and ML bootstrap values. The scale bar represents 0.1 nucleotide substitutions per site.
Shared response to changes in drainage basin: Phylogeography of the Yunnan Small Narrow-mouthed Frog, Glyphoglossus yunnanensis (Anura: Microhylidae)
<p><span><b>Aim: </b>With the late Cenozoic uplift of the Qinghai-Tibetan Plateau (QTP), drainage of the southeastern edge of the QTP changed significantly. However, the impact of this dramatic change on the geographical distribution and genetic diversity of endemic organisms is still poorly understood. Here, we examined the geographical patterns of genetic variation in the Yunnan small narrow-mouthed frog, <i>Glyphoglossus yunnanensis </i>(Microhylidae), and two alternative hypotheses were tested: that is, the geographical distribution of genetic variation was determined by either the contemporary drainage basin or by historical drainage basins. </span></p> <p><span><b>Location: </b>the Mountains of Southwest China.</span></p> <p><span><b>Materials and methods:</b> Analyses were based on 417 specimens collected from across the distribution of the species. We reconstructed the genealogy (Bayesian and maximum parsimony methods) and assessed demographic history based on DNA sequencing data from mitochondrial and nuclear markers. We also mapped the genetic diversity and estimated the divergence times by a relaxed clock model. </span></p> <p><span><b>Results: </b>The species has maintained a relatively stable population size without recent population expansion. Four major maternal lineages were identified with good support, one representing a possible cryptic species and the other three showing further subdivision. The distribution of these deeply differentiated lineages/sublineages corresponded well to geographical regions. The secondary contact zones and phylogeographic breaks in distinct lineages of <i>G. yunnanensis </i>were almost concordant with those of <i>Nanorana yunnanensis</i>. </span></p> <p><b>Main conclusions: </b>Lineage division conformed to the hypothesis of drainage system evolution, that is, the phylogeographic pattern of <i>G. yunnanensis </i>was shaped by historical drainage patterns. Concordance in phylogeographic patterns<i> </i>may suggest a shared response to common hydrogeological history, and also might indicate that there was more contribution of the drainage history than ecological or life history traits in structuring genetic variation between these two disparate codistributed taxa <i>G. yunnanensis </i>and <i>N. yunnanensis</i>.</p>
Fig. 1 in A New Species Of Kalophrynus (Anura: Microhylidae) From The Highlands Of North-Central Borneo
Fig. 1. Lateral view of holotype of Kalophrynus eok, new species (SBC A.00310), in life.
Fig. 1 in A New Species Of Calluella Stoliczka, 1872 (Anura: Microhylidae) From Taman Negara, Pahang State, Peninsular Malaysia
Fig. 1. Dorsolateral view of holotype of Calluella minuta, new species (ZRC A.10888) in life.
Figure 5 in Morphology and ecology of Microhyla rubra (Anura: Microhylidae) tadpoles from Sri Lanka
Figure 5. Profile of the whole bodY of the Microhyla rubra tadpole (Stage 35). Scale bar, 1 mm.
Figure 2 in Morphology and ecology of Microhyla rubra (Anura: Microhylidae) tadpoles from Sri Lanka
Figure 2. Outline of Microhyla rubra tadpoles showing the measurements that were taken.
Figure 7 in Morphology and ecology of Microhyla rubra (Anura: Microhylidae) tadpoles from Sri Lanka
Figure 7. Dorsal buccal morphology of a Microhyla rubra tadpole (Stage 35). Scale bar, 1 mm.
Figure 9 in Morphology and ecology of Microhyla rubra (Anura: Microhylidae) tadpoles from Sri Lanka
Figure 9. Newly emerged froglet of Microhyla rubra (SVL: 8.31mm.
Figure 6 in Morphology and ecology of Microhyla rubra (Anura: Microhylidae) tadpoles from Sri Lanka
Figure 6. Ventral buccal morphology of the Microhyla rubra tadpole (Stage 35). Scale bar, 1 mm.
Fig. 43 in Phylogeny, Taxonomic Revision, And Character Evolution Of The Genera Chiasmocleis And Syncope (Anura, Microhylidae) In Amazonia, With Descriptions Of Three New Species
Fig. 43. Variation of ventral color pattern in Chiasmocleis haddadi. (A) FL 454; (B) FL 513; (C) FL
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
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)
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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.