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1,650 results for “Gecko”
FIGURE 2 in Gekko lauhachindai sp. nov., a new cave-dwelling gecko (Reptilia: Gekkonidae) from central Thailand
FIGURE 2. Cloacal region of the holotype of Gekko lauhachindai sp. nov. illustrating the series of precloacal pores (positions indicated by black dots). Photo by Montri Sumontha.
FIGURE 1 in Gekko lauhachindai sp. nov., a new cave-dwelling gecko (Reptilia: Gekkonidae) from central Thailand
FIGURE 1. Dorsal view of the holotype (THNHM 15903) of Gekko lauhachindai sp. nov. in life from Sub Cha-om Cave, Chalermphrakiat District, Saraburi Province. Photo by Montri Sumontha.
FIGURE 3 in A new biogeographically disjunct giant gecko (Gehyra: Gekkonidae: Reptilia) from the East Melanesian Islands
FIGURE 3. Details of holotype of Gehyra rohan sp. nov. (RBINS 2684): A) rostral configuration, scale = 5 mm; B) mental configuration, scale = 5mm; C) subdigital lamellae hand, scale = 10 mm; and D) subdigital lamellae feet, scale = 10 mm.
FIGURE 6 in A new biogeographically disjunct giant gecko (Gehyra: Gekkonidae: Reptilia) from the East Melanesian Islands
FIGURE 6. Lowland Tropical Rainforest around the Yeri River in north-west Manus Island. A single specimen of Gehyra rohan sp. nov. was observed, but not collected on the trunk of a large tree partially obscured by vegetation on the left hand side of this photo. Photograph S. Richards.
FIGURE 1. A in A new biogeographically disjunct giant gecko (Gehyra: Gekkonidae: Reptilia) from the East Melanesian Islands
FIGURE 1. A) Phylogeny and timescale for diversification for Gehyra species estimated from first and second sites of the ND2 gene using BEAST (timescale in millions of years). Bayesian Posterior support values are given at nodes. Large bodied taxa from the Pacific and Melanesia are highlighted. B) Known distribution of four species of giant Gehyra in the south-west Pacific and Melanesian region.
FIGURE 2 in A new biogeographically disjunct giant gecko (Gehyra: Gekkonidae: Reptilia) from the East Melanesian Islands
FIGURE 2. Preserved holotype of Gehyra rohan sp. nov. (RBINS 2684): A) dorsal view; and B) ventral view. Scale bar = 20 mm. Note diagnostic skin folds on the fore and hindlimbs, and widened subcudal scale row.
FIGURE 5 in A new biogeographically disjunct giant gecko (Gehyra: Gekkonidae: Reptilia) from the East Melanesian Islands
FIGURE 5. Gehyra rohan sp. nov. in life: A) holotype, RBINS 2684, near Lorengau Village, Manus Island, Papua New Guinea; and B) SAMA R69881 (SJR15105) near Nae, Mussau Island, Papua New Guinea. Photographs by M. M. T. Jocque and S. Venter.
FIGURE 4 in A new biogeographically disjunct giant gecko (Gehyra: Gekkonidae: Reptilia) from the East Melanesian Islands
FIGURE 4. Details of coloration on holotype Gehyra rohan sp. nov. (RBINS 2684): A) dorsum; B) venter; C) lateral view of head at time of capture; and D) lateral view of head after capture. All photographs by M. M. T. Jocque.
FIGURE 3 in Gekko canaensis sp. nov. (Squamata: Gekkonidae), a new gecko from Southern Vietnam
FIGURE 3. Gekko canaensis sp. nov., Holotype UNS 0538 A: Rostral with small internasal; B: Mental with three enlarged postmental scales; C: Dorsum with 7 smooth enlarged tubercle rows on middorsum at midbody; D: Subimbricate ventral scales; E: 16 precloacal pores; F: lamellar scales beneath the toes of the right foot; G: tail dorsum segmented smooth tubercles on the first three segments; H: median enlarged subcaudal scales.
FIGURE 1 in Gekko canaensis sp. nov. (Squamata: Gekkonidae), a new gecko from Southern Vietnam
FIGURE 1. Principle component scores for morphological data. Circles represent Gekko russeltraini; squares represent Gekko takouensis; and triangles represent Gekko canaensis sp. nov. Colored lines encompases the 95% confidence interval for each species.
FIGURE 5 in Gekko canaensis sp. nov. (Squamata: Gekkonidae), a new gecko from Southern Vietnam
FIGURE 5. Map of Southeast Asia indicating the type localities of all described members of the Gekko petricolus species group. The type locality of Gekko canaensis sp. nov., in Ninh Thuan province is indicated by a filled circle.
FIGURE 2 in Gekko canaensis sp. nov. (Squamata: Gekkonidae), a new gecko from Southern Vietnam
FIGURE 2. Gekko canaensis sp. nov. A: Holotype UNS 0538 in situ; B: paratype UNS 0539 showing a light color; C: paratype UNS 0541 shows a regenerated tail with dark stripes on its tail.
FIGURE 4 in A new bent-toed gecko of the genus Cyrtodactylus Gray, 1827 (Reptilia, Gekkonidae) from Mount Tompotika, eastern peninsula of Sulawesi, Indonesia
FIGURE 4. Side by side comparison between Cyrtodactylus batik (A) and C. jellesmae (B) of the same size to show the same basic colouration pattern Photo by D. T. Iskandar.
FIGURE 2 in A new bent-toed gecko of the genus Cyrtodactylus Gray, 1827 (Reptilia, Gekkonidae) from Mount Tompotika, eastern peninsula of Sulawesi, Indonesia
FIGURE 2. Distribution pattern of Sulawesian Cyrtodactylus with restricted range. Star, C. batik: circle, C. wallacei; diamond, C. spinosus; four sided star, C. cf. jellesmae (large); triangle, Cyrtodactylus sp.; spinous circle, C. fumosus; distribution of the widespread species, C. jellesmae complex is not shown. Map modified from Wikipedia.
FIGURE 1. A in A new bent-toed gecko of the genus Cyrtodactylus Gray, 1827 (Reptilia, Gekkonidae) from Mount Tompotika, eastern peninsula of Sulawesi, Indonesia
FIGURE 1. A. Cyrtodactylus batik (DTI 2805, holotype) climbing on a liana trunk, photographed at night. B. A paratype of Cyrtodactylus batik (DTI 2804) with regenerating tail, photographed at daylight showing the greenish pupil. Photos by Umilaela.
FIGURE 3 in A new bent-toed gecko of the genus Cyrtodactylus Gray, 1827 (Reptilia, Gekkonidae) from Mount Tompotika, eastern peninsula of Sulawesi, Indonesia
FIGURE 3. Comparison of anterior part between Cyrtodactylus batik (A) and C. wallacei (B) to show the distinctive tubercle coloration and dorsal bands. Photos by Umilaela (A) and R. M. Brown (B).
FIGURE 4 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 4. The hemipenis of a paratype (ZSM 1133/2003) of Uroplatus finiavana, (a) sulcal view, (b) parasulcal view.
FIGURE 7 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 7. Haplotype network reconstruction of a 400 bp fragment of the nuclear C-mos gene for the analysed lineages of the Uroplatus ebenaui group. Haplotypes were inferred using the PHASE algorithm. The haplotypes of U. finiavana are in yellow. In green, blue and red are those of U. phantasticus and U. ebenaui, U. malama, respectively. Grey is used for the candidate species U. sp. 1–3 from Tsaratanana.
FIGURE 1 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 1. Measurements taken from Uroplatus specimens listed in Table 1, (a) head; (b) body and tail.
FIGURE 3 in A new leaf tailed gecko species from northern Madagascar with a preliminary assessment of molecular and morphological variability in the Uroplatus ebenaui group
FIGURE 3. Uroplatus malama encountered in May 2010 at Andreoky (Andohahela area), south east of Madagascar around 600–700 m a. s. l. (a) photo of a male and (c) the ventral side of its tail; (b) a female.
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Allen Brain Atlas
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OpenNeuro
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