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FIGURE 10 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 10. Three of the syntypes of Lygosoma Meyeri Doria 1874. A. BMNH 76.7.18.2 – 3 (SVL = 88, 93 mm respectively) and B. ZMB 9739 (SVL = 93 mm).
FIGURE 7 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 7. Dorsal, lateral and ventral views of head of lectotype of Lygosoma Kühnei (NMBA 5514). Scale bar = 2 mm.
FIGURE 4. A. Dorsal and B in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 4. A. Dorsal and B. lateral views of the lectotype of Lygosoma florense Weber 1891 (ZMA 11060; SVL = 68 mm).
FIGURE 6. A. Dorsal and B in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 6. A. Dorsal and B. ventral views of the lectotype of Lygosoma Kühnei Roux 1910 (NMBA 5514; SVL = 66 mm).
FIGURE 1. A. Dorsal and B in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 1. A. Dorsal and B. ventral views of the lectotype of Lygosoma melanopogon Duméril and Bibron 1839 (MNHN 1245; SVL = 60 mm), and C. the conspecific paralectotype (MNHN 7110; SVL = 64 mm). Photographs taken with specimens under water to reveal color pattern elements on faded specimens.
FIGURE 9 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 9. Distribution of Sphenomorphus melanopogon. Ad = Adonara, Al = Alor, Ba = Babar, Be = Banda Besar, Da = Damar, De = Deli and Tinjil, F = Flores, Ke = Kei, Ko = Komodo, Padar, Rinca and Besar, Se = Semau, Su = Sumba, Sw = Sumbawa, Te = Teun, Ti = Timor, W = Wetar. Open symbols represent literature records.
FIGURE 14 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 14. Distribution of Sphenomorphus meyeri. Open symbols represent type localities for L. meyeri (M) and H. papuensis (P).
FIGURE 2 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 2. Dorsal, lateral and ventral views of head of lectotype of Lygosoma melanopogon (MNHN 1245). Scale bar = 2 mm.
FIGURE 5 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 5. Dorsal, lateral and ventral views of head of lectotype of Lygosoma florense (ZMA 11060). Scale bar = 2 mm.
FIGURE 8 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 8. Holotypes of A. Sphenomorphus florensis nitidus Dunn 1927 (AMNH 32068; SVL = 72 mm) and B. Sphenomorphus florensis barbouri Dunn 1927 (AMNH 32203; SVL = 63 mm).
FIGURE 13 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 13. Dorsal, lateral and ventral views of head of holotype of Hinulia papuensis (AM R 31847). Scale bar = 2 mm.
FIGURE 15 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 15. The ventral surface of the pes in two species of Sphenomorphus, showing a difference in squamation within the genus: A. S. jobiensis (AM R 115431) in which the scales of the dorsal and ventral surface of the pes show a distinct line of demarcation along the posterior edge of the pes, and B. S. melanopogon (MNHN 1245) in which the scales of the dorsal surface extend onto the ventral surface with loss of contrast between the two scale fields. Scale bars = 1 mm.
FIGURE 11 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 11. Dorsal, lateral and ventral views of the head shields of one of the syntypes of Lygosoma Meyeri (BMNH 76.7.18.2). Scale bar = 2 mm.
FIGURE 4 in A new Gehyra (Gekkonidae: Reptilia) from New Guinea with unique caudal scalation
FIGURE 4. Map of western New Guinea showing the location of the township of Fakfak on the Onin Peninsula (black circle) and locality for uncollected specimen photographed by Dimitry Telnov (black star).
FIGURE 2 in A new Gehyra (Gekkonidae: Reptilia) from New Guinea with unique caudal scalation
FIGURE 2. Details of holotype of Gehyra serraticauda sp. nov. (MCZ R7314); A) subdigital lamellae manus, scale = 5 mm, B) subdigital lamellae pes, scale = 5 mm, C) rostral configuration, scale = 5 mm, D) mental scale configuration, scale = 6 mm, E) acuminate lateral caudal scales, scale = 10 mm, F) pore arrangement, scale = 5 mm.
FIGURE 3 in A new Gehyra (Gekkonidae: Reptilia) from New Guinea with unique caudal scalation
FIGURE 3. Uncollected specimen of Gehyra serraticauda sp. nov. from near Kamaka Village, 45 km SSE of Kaimana, Triton Bay, (3°46'14"S, 134°10'14"E), West Papua Province, Indonesia, 150–160 m, collected, photographed and released by Dmitry Telnov, 10 September 2010; A) close up of head, B) whole body shortly after capture, C) whole body shortly before release. Note significant colour change.
FIGURE 12 in On the identity of the type species of Sphenomorphus (Squamata: Scincidae): Lygosoma melanopogon Duméril and Bibron 1839, with a note on a new scalation character of the pes in Sphenomorphus
FIGURE 12. Holotype of Hinulia papuensis Macleay 1877 (AM R 31847; SVL = 107 mm).
Figure 8 in The evolution of the scalation pattern in temnospondyl amphibians
Figure 8. Ontogeny of gastral scales in Sclerocephalus haeuseri, and interpretation of the gastral scale morphologies of other temnospondyls and the stem-tetrapod Greererpeton burkemorani as 'larval', 'juvenile', and 'adult', respectively. Except for Sclerocephalus, the ontogenetically most advanced stages of gastral scales are shown in each case. Acerastea redrawn after Warren & Hutchinson (1987), Australerpeton redrawn after Dias & Richter (2002), Balanerpeton redrawn after Milner & Sequeira (1994), Branchierpeton redrawn after Werneburg (1991), Gerrothorax redrawn after Nilsson (1946), Greererpeton based on CMNH 11073, Mahavisaurus redrawn after Janvier (1992), Onchiodon redrawn after Credner (1893), Platyoposaurus based on PIN 164/1–9, Sclerocephalus based on MB.Am.1302, MB.Am.1233, and SMNS 90507, Uranocentrodon redrawn after Findlay (1968).
FIGURE 1 in A new Gehyra (Gekkonidae: Reptilia) from New Guinea with unique caudal scalation
FIGURE 1. Holotype of Gehyra serraticauda sp. nov. (MCZ R7314); A) dorsal view and B) ventral view.
De-scalation or swItch of Treatment According to Circulating tuMOr DNA Variation After 2 Cycles of Doublet Chemotherapy Plus Targeted Agent in Metastatic Unresectable Colorectal Cancer
ClinicalTrials.gov study NCT06446557. IPD Sharing: NO. Countries: 0. Publications: 0.
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