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FIGURE 3 in Polystoma floridana n. sp. (Monogenea: Polystomatidae) a parasite in the green tree frog, Hyla cinerea (Schneider), of North America
FIGURE 3: Scatter diagram of a x b plotted against a x c for P. floridana n. sp. and P. nearcticum. Measurements for oncomiracidia of P. nearcticum were obtained from specimens in the collection of Prof. R.C. Tinsley and the US National Parasite Collection in Beltsville, Maryland, USA.
FIGURES 4–7 in Acanthocephalans of Amphibians and Reptiles (Anura and Squamata) from Ecuador, with the description of Pandosentis napoensis n. sp. (Neoechinorhynchidae) from Hyla fasciata
FIGURES 4–7. Micrographs of Pandosentis napoensis n. sp. 4. Proboscis, specimen 1. 5. Proboscis, specimen 2. 6. Specimen 1 ventral view. &. Lacuna system showing irregular diagonal lacunae connecting with circular canals. Scale bars: 4 = 20Μm; 5 & 7 = 40µm; 6 = 200Μm.
FIGURES 1–3. Pandosentis napoensis n in Acanthocephalans of Amphibians and Reptiles (Anura and Squamata) from Ecuador, with the description of Pandosentis napoensis n. sp. (Neoechinorhynchidae) from Hyla fasciata
FIGURES 1–3. Pandosentis napoensis n. sp. 1. Adult male, ventral view. 2. Proboscis armature, lateral view. 3. Longitudinal row of hooks, lateral view. Scale bars: 1 = 60µm; 2 = 25µm; 3 = 10µm.
FIGURE 3 in On the identity of Hyla strigilata Spix, 1824 (Anura: Hylidae): redescription and neotype designation for a " ghost " taxon
FIGURE 3. Scinax strigilatus, neotype, MNRJ 38098. Dorsal and lateral views of head; ventral views of hand and foot; scale bars represent 5 mm.
FIGURE 4 in On the identity of Hyla strigilata Spix, 1824 (Anura: Hylidae): redescription and neotype designation for a " ghost " taxon
FIGURE 4. Scinax strigilatus in life, male specimen from the type locality, Fazenda Pedra Formosa, Municipality of Ibirapitanga, State of Bahia, Brazil.
FIGURE 1 in On the identity of Hyla strigilata Spix, 1824 (Anura: Hylidae): redescription and neotype designation for a " ghost " taxon
FIGURE 1. (A) Illustration of the type specimen of Hyla strigilata, Plate X, Fig. 3 of Spix (1824); (B) specimen referred to as H. strigilata illustrated on Plate VII, Fig. 2 of Miranda-Ribeiro (1926).
FIGURE 5 in On the identity of Hyla strigilata Spix, 1824 (Anura: Hylidae): redescription and neotype designation for a " ghost " taxon
FIGURE 5. Localities visited by Spix (triangles) and distribution of Scinax strigilatus in Southern Bahia, Brazil (dots). (BA) State of Bahia; (MG) State of Minas Gerais.
FIGURES 1–10 in Description of the male of Culicoides (Hoffmania) baniwa Felippe-Bauer of the hylas species group (Diptera: Ceratopogonidae)
FIGURES 1–10. Culicoides baniwa Felippe-Bauer, male. 1. Head, anterior view. 2. Mouth part showing palpi. 3. Wing. 4. Foreleg. 5. Midleg. 6. Hind leg. 7. Terminalia of Peruvian specimen, dorsal view. 8. Terminalia of Brazilian specimen, dorsal view. 9. Part of genitalia with parameres removed, part of tergite 9 not completed drawn, dorsal view. 10. Parameres.
FIGURE 1 in The generic allocation of " Hyla " antoniiochoai De la Riva & Chaparro, 2005 (Anura), with description of its advertisement call and ecology
FIGURE 1. Upper row: Live adult male Gastrotheca antoniiochoai (MUSM 27944, SVL 27.0 mm) in lateral (A), and (B) ventral views; middle row: live adult female Gastrotheca antoniiochoai (MUSM 27949, SVL 32.5 mm) in lateral (C), and ventral (D) views; lower row: juvenile Gastrotheca antoniiochoai (MUSM 27947, SVL 13.4 mm) in lateral (E), and ventral (F) views. Photos by A. Catenazzi.
FIGURE 2 in The generic allocation of " Hyla " antoniiochoai De la Riva & Chaparro, 2005 (Anura), with description of its advertisement call and ecology
FIGURE 2. Spectrogram and oscillogram of the advertisement call of Gastrotheca antoniiochoai (MUSM 27948, SVL 26.0 mm) from the Wayqecha Research Station, Paucartambo, Región Cusco. Recorded on 16 February 2009 at 9h30, air temperature 20.0ºC.
FIG. 2 in Predators Induce Morphological Changes in Tadpoles of Hyla andersonii
FIG. 2. Representative photos of tadpoles of H. andersonii reared without predators (top) and with predators (bottom) and their corresponding ImageJ pixel color histograms. Lower values indicate darker pixels, and higher values indicate lighter pixels in the image. The y-axis of the histograms indicates the frequency of pixels for each darkness score.
FIG. 6 in Predators Induce Morphological Changes in Tadpoles of Hyla andersonii
FIG. 6. Principal component analysis of the tail morphological traits total tadpole length (TTL), tail color (col1), and standardized body length (sBL), standardized tail muscle depth (sTMD), standardized tail length (sTL), and standardized tail fin depth (sTFD) sampled on Day 32.
FIG. 1 in Predators Induce Morphological Changes in Tadpoles of Hyla andersonii
FIG. 1. Photograph of H. andersonii depicting the locations of tail measurements. BL ¼ Body length, TL ¼ tail length, TMD ¼ tail muscle depth, TFD ¼ tail fin depth. Body length was measured from tadpole snout to start of tail muscle. Tail length was measured along the tail muscle from start of tail muscle to tail tip. Tail muscle depth was measured at the base of the tail, and tail fin depth was measured from fin top to bottom at the deepest location along tail length. Total tadpole length (TTL) was determined by adding TL to BL.
FIG. 3 in Predators Induce Morphological Changes in Tadpoles of Hyla andersonii
FIG. 3. Tadpole tail color (mean gray value) was significantly lower (¼darker tails) in predator treatments compared to non-predator controls (LMM: v2 ¼ 16.2, df ¼ 1, P 0.001). Sampling date had no, effect on tail color (v2 ¼ 2.34, df ¼ 2, P ¼ 0.31).
Figure 2 in Effect of body size, age and timing of breeding on clutch and egg size of female Eastern Gray Treefrogs, Hyla versicolor
Figure 2. Determinants of clutch size (# eggs) in female Hyla versicolor. (A) Relationship between female body length and clutch size; (B) relationship between body condition and clutch size; (C) relationship between age and clutch size; (D) relationship between breeding season date and clutch size. Second and third clutches of repeat-breeding females are indicated as red symbols. Significant relationships are indicated by trendlines (see also Table 2).
Figure 1 in Effect of body size, age and timing of breeding on clutch and egg size of female Eastern Gray Treefrogs, Hyla versicolor
Figure 1. Lifespan, age and between-year growth of female Hyla versicolor. (A) Age distribution of females in the study population, and the relationship between age and body length. (B) Change in body length of the 7 females that were recaptured in consecutive years. Gray lines indicate averages.
FIGURE 16. Phylladiorhynchus hylas n in Revision of the squat lobsters of the genus Phylladiorhynchus Baba, 1969 (Crustacea, Decapoda, Galatheidae) with the description of 41 new species
FIGURE 16. Phylladiorhynchus hylas n. sp., holotype male 1.9 mm (MNHN-IU-2016-496): A, carapace and pleon, dorsal view. B, thoracic sternites 3 and 4. C, left cephalic region, showing antennular and antennal peduncles, ventral view. D, right Mxp3, lateral view. E, left P1, dorsal view. F, left P2, lateral view. G, left P3, lateral view. H, right P4, lateral view. I, dactylus of left P2, lateral view. Scale bar: A, E–H = 1.0 mm; B–D, I = 0.6 mm.
FIGURE 2 in The nomenclatural status of Rana gaimardii Bory de Saint-Vincent, 1828, and Hyla quoyi Bory de Saint-Vincent, 1828 (Anura, Hylidae)
FIGURE 2. Rana quoyi Bory de Saint-Vincent, 1828. Original plate published in Bory de Saint-Vincent (1828, 1831).
FIGURE 1 in The nomenclatural status of Rana gaimardii Bory de Saint-Vincent, 1828, and Hyla quoyi Bory de Saint-Vincent, 1828 (Anura, Hylidae)
FIGURE 1. Rana gaimardii Bory de Saint-Vincent, 1828. Original plate published in Bory de Saint-Vincent (1828, 1831).
FIG. 1 in Out with the Old, in with the New: Oviposition Preference Matches Larval Success in Cope's Gray Treefrog, Hyla chrysoscelis
FIG. 1. Total number of eggs per treatment (gray = New, black = Old) for each night oviposition occurred, and mean (± SE) number of eggs per New (dark gray) and Old (black) pools over the duration of the experiment.
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International Brain Laboratory public data
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OpenNeuro
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