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56 results for “Pelophylax”
Figure 4 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye
Figure 4. Annual fluctuation in population size for Gölcük population of Pelophylax bedriagae caralitanus.
Figure 3 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye
Figure 3. The dorsal pattern of Pelophylax bedriagae caralitanus that captured in different trapping occasions. Arrows of different colours indicate matches of dorsal patterns of the same individual.
Fig. 2 in Black-spotted pond frog Pelophylax nigromaculatus as a new host for the renal coccidian genus Hyaloklossia (Alveolata: Apicomplexa)
Fig. 2. Phylogenetic tree of based on cox1 sequences of Hyaloklossia and related species belonging to Toxoplasmatinae (Toxoplasma, Neospora, Hammondia, Heydornia), Cystososporinae (Cystoisospora) and Eumonosporinae (Eumonospora) constructed using the neighbor joining method. The nodes are labeled using support from the bootstrap values obtained for the neighbor joining (left) and maximum likelihood (right) methods. Pn: Pelophylax nigromaculatus.
Fig. 1 in Black-spotted pond frog Pelophylax nigromaculatus as a new host for the renal coccidian genus Hyaloklossia (Alveolata: Apicomplexa)
Fig. 1. Light microscopy of Hyaloklossia oocysts in the kidney of Pelophylax nigromaculatus. A. Immature oocyst showing the sporont with granular cytoplasm that does not fill the space inside the oocyst completely. B. An immature oocyst showing the sporoblast with very thin wall. C. An immature oocyst (left) and mature sporocyst (right). D. A mature oocyst with two sporocysts. Arrowhead and arrows indicate oocyst wall and sporocyst residuum, respectively. Scale bar = 5 μm.
Figure 2 in Sexual size dimorphism in Rana (Pelophylax) ridibunda ridibunda Pallas, 1771 from a population in Darre-Shahr Township, Ilam Province, western Iran
Figure 2. The presence of vocal pouches (a) and digital pads (b) in male Rana (Pelophylax) ridibunda ridibunda distinguishes them from females.
Figure 3 in Sexual size dimorphism in Rana (Pelophylax) ridibunda ridibunda Pallas, 1771 from a population in Darre-Shahr Township, Ilam Province, western Iran
Figure 3. Ordination of the individual males and females of Rana (Pelophylax) ridibunda ridibunda on the first two principal components. Note the relative degree of isolation between males and females, which is mainly attributed to SVL, LHL, LFL, HL, and HW in the PC1 and EEL and ELW in the PC2.
Text-fig. 5. Amphibians: a, b – Latonia sp. from Nasrettinhoca 2: a – left ilium in lateral (a1) and medial (a2) views, and junctura ilioischiadica (a3), EUNHM PV-13223; b – left ilium in lateral (b1) and medial (b2) views, EUNHM PV-13224; c – right angular of Palaeobatrachus sp. from Mercan 1, in medial (c1) and dorsal (c2) views, EUNHM PV-13225; d – left ilium of Pelobates sp. from Nasrettinhoca 2 in lateral (d1) and medial (d2) views, EUNHM PV-13226; e – right ilium of Bufotes viridis s. l. from Nasrettinhoca 2, in lateral (e1) and medial (e2) views, EUNHM PV-13227; f – left angular of Pelophylax sp. from Mercan 1, in dorsal view, EUNHM PV-13228; g – right ilium of Pelophylax sp. from Mercan 1, in lateral (g1) and medial (g2) views, EUNHM PV-13229; h – right ilium of Pelophylax sp. from Hoyhoytepe 1, in lateral (h1) and medial (h2) views, EUNHM PV-13234; i – left angular of Ranidae indet. from Hamamkarahisar A, in dorsal view, EUNHM PV-13237. Scale equals 1 mm. in Plio-Pleistocene Amphibians And Reptiles From Central Turkey: New Faunas And Faunal Records With Comments On Their Biochronological Position Based On Small Mammals
Text-fig. 5. Amphibians: a, b – Latonia sp. from Nasrettinhoca 2: a – left ilium in lateral (a1) and medial (a2) views, and junctura ilioischiadica (a3), EUNHM PV-13223; b – left ilium in lateral (b1) and medial (b2) views, EUNHM PV-13224; c – right angular of Palaeobatrachus sp. from Mercan 1, in medial (c1) and dorsal (c2) views, EUNHM PV-13225; d – left ilium of Pelobates sp. from Nasrettinhoca 2 in lateral (d1) and medial (d2) views, EUNHM PV-13226; e – right ilium of Bufotes viridis s. l. from Nasrettinhoca 2, in lateral (e1) and medial (e2) views, EUNHM PV-13227; f – left angular of Pelophylax sp. from Mercan 1, in dorsal view, EUNHM PV-13228; g – right ilium of Pelophylax sp. from Mercan 1, in lateral (g1) and medial (g2) views, EUNHM PV-13229; h – right ilium of Pelophylax sp. from Hoyhoytepe 1, in lateral (h1) and medial (h2) views, EUNHM PV-13234; i – left angular of Ranidae indet. from Hamamkarahisar A, in dorsal view, EUNHM PV-13237. Scale equals 1 mm.
Topotype (Pelophylax "Rana" pueyoi)
**Topotype:** MGUV-39152 **Ejemplar:** .*Rana (Pelophylax) pueyoi* Navás, 1922 **Edad:** 10 Ma. Tortoniense (Mioceno Superior) **Localidad:** Libros (Teruel, España) **Descripción:** Ejemplar completo y articulado con preservación excepcional de los tejidos blandos y contenido estomacal. Ejemplar incluido en escayola y enmarcado entre 1922 y 1938 **Origen del ejemplar:** Donación del colegio Jesuitas de valencia a la Universidad de Valencia, orden reliagiosa a la que perteneció Longinos Navás quien describió la especie. **Dimensión ejemplar:** cm. **Sigla museo, colección y entidad:** MGUV-24447, donación del colegio Jesuitas de valencia al Museo Universidad de Valencia de Historia Natural **Técnica digitalización / modelo:** fotogrametría, Pentax K-1 Mark II **Software y parámetros:** Metashape, 283 fotografias, calidad alta **Autor fotografías y procesado:** Jose A Villena **Referencia bibliográfica**: Navás, L. 1922. Algunos fósiles de Libros (Teruel). Boletín de la Sociedad Ibérica, 21-4 (3-4): 52-61. Source: Objaverse 1.0 / Sketchfab
Puzzle 4D Rana (Pelophylax) pueyoi
**Ejemplar:** .*Rana (Pelophylax) pueyoi* Navás, 1922 **Edad:** 10 Ma. Tortoniense (Mioceno Superior) **Localidad:** Libros (Teruel, España) **Descripción:** Ejemplar completo y articulado escaneado a partir de réplica de escayola del yacimiento original donde se localizó el holotipo. **Dimensión ejemplar:** 17 x11´3 x 1´7 cm. **Sigla museo, colección y entidad:** colección puzzles 4D Museo de la Universidad de Valencia de Historia Natural **Técnica digitalización**: escáner 3D Einscan Pro y software einscan v3.1.0.2 en modo fijo con plataforma giratoria , calidad media **Autor digitalización:** Jose A. Villena **Cita ejemplar:** Rana Pueyoi puzzles 4D MUVHN-Fecyt_2022 **Archivos STL: ** puzzle 4D de 12 piezas **Proyecto:** "Una ventana digital a la Historia Natural" subvención Fomento de la Cultura Científica, Tecnológica y de la Innovación Fecyt (Ministerio de Ciencia e Innovación). Download puzzle STL: **Download puzzle STL: **https://nasmuseo.uv.es/owncloud/index.php/s/XL6SVI4iC5ZJcHX Source: Objaverse 1.0 / Sketchfab
Fig. 1 in Macrophages And Pigment Cells In The Liver Of Pelophylax Ridibundus (Anura)
Fig. 1. Pigment cells on the smears of the frog lake liver. Coloring according to Pappenheim. x900.
Fig. 1 in Size-At-Age Variability And Sexual Dimorphism Of Morphometric Characteristics In The Late Ontogenesis Of The Marsh Frog, Pelophylax Ridibundus (Anura, Ranidae), From Terrytory Of Crimea
Fig. 1. Measurement system for tailess amphibians according to the standard methods.
Figure 2a in A procedure for taxon assessment based on morphological variation in European water frogs (Pelophylax esculentus complex)
Figure 2a. Correlations of each morphological character with the first 2 dimensions of the FAMD.
Fig. 1 in Climate change and the fate of endemic Beyşehir Frog, Pelophylax caralitanus
Fig. 1. Turkish Lake District and species presence data.
Figure 2 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye
Figure 2. The view of the habitat surrounding Gölcük Lake.
Figure 1 in Sexual size dimorphism in Rana (Pelophylax) ridibunda ridibunda Pallas, 1771 from a population in Darre-Shahr Township, Ilam Province, western Iran
Figure 1. Map showing the study area in Ilam province, western Iran.
Data from: Genetic diversity and distribution patterns of diploid and polyploid hybrid water frog populations (Pelophylax esculentus complex) across Europe
Polyploidization is a rare yet sometimes successful way for animals to rapidly create geno- and phenotypes that may colonize new habitats and quickly adapt to environmental changes. In this study, we use water frogs of the Pelophylax esculentus complex, comprising two species (Pelophylax lessonae, genotype LL; Pelophylax ridibundus, RR) and various diploid (LR) and triploid (LLR, LRR) hybrid forms, summarized as P. esculentus, as a model for studying recent hybridization and polyploidization in the context of speciation. Specifically, we compared the geographic distribution and genetic diversity of diploid and triploid hybrids across Europe to understand their origin, maintenance and potential role in hybrid speciation. We found that different hybrid and parental genotypes are not evenly distributed across Europe. Rather, their genetic diversity is structured by latitude and longitude and the presence/absence of parental species but not of triploids. Highest genetic diversity was observed in central and eastern Europe, the lowest in the northwestern parts of Europe. This gradient can be explained by the decrease in genetic diversity during postglacial expansion from southeastern glacial refuge areas. Genealogical relationships calculated on the basis of microsatellite data clearly indicate that hybrids are of multiple origin and include a huge variety of parental genomes. Water frogs in mixed-ploidy populations without any parental species (i.e. all-hybrid populations) can be viewed as evolutionary units that may be on their way towards hybrid speciation. Maintenance of such all-hybrid populations requires a continuous exchange of genomes between diploids and triploids, but scenarios for alternative evolutionary trajectories are discussed.
FIGURE 5 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)
FIGURE 5. Coloration of Pelophylax mongolicus comb. nov. (A) male CIB 118075, (B) male SYAU BAA000001, (C) female IVPP OV2729, (D) male SYAU BAA000021. Photographed by Jin-Long Ren and Shengbo Zhou.
FIGURE 2 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)
FIGURE 2. Plots of the first principal component (PC1) versus the second (PC2) Pelophylax mongolicus comb. nov. (red) and P. nigromaculatus (blue). A. Males, B. females.
FIGURE 1 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)
FIGURE 1. The collection localities of Pelophylax mongolicus comb. nov. (marked with the green circles) and P. nigromaculatus (marked with the blue circles) in this study. (1) Tumed Right Banner, Baotou, Inner mongolia (type locality of P. mongolicus comb. nov.); (2) Shapotou District, Zhongwei, Ningxia (type locality of "P. tenggerensis"); (3) Fenghuang Park, Yinchuan, Ningxia; (4) Liupan Mountain Nature Reserve, Guyuan, Ningxia; (5) Yongchenghu Park, Baoji, Shaanxi; (6) Gaotai Town, Hanzhong, Shaanxi; (7) Wuhou District, Chengdu, Sichuan; (8) Yuehu Park, Changsha, Hunan; (9) Hanxue Park, Shangrao, Jiangxi; (10) Santaishan Park, Suqian, Jiangsu; (11) Mashan Park, Qingdao, Shandong; (12) Dongling Park, Shenyang, Liaoning.
FIGURE 6 in Taxonomic status of Rana nigromaculata mongolia and the validity of Pelophylax tenggerensis (Anura, Ranidae)
FIGURE 6. Preservative coloration of specimen SYAU BAA000001 of Pelophylax mongolicus comb. nov. (A) Dorsal view, (B) ventral view, (C) lateral view, (D) ventral view of the hand, (E) ventral view of the foot.
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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.