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319 results for “Malay Peninsula”
FIGURE 10 in Solving the taxonomic identity of Hipposideros cineraceus sensu lato (Chiroptera: Hipposideridae) in the Thai-Malay Peninsula, with the description of a new species
FIGURE 10. Biplot between forearm length (FA) and echolocation frequency (FmaxE) of H. kingstonae sp. nov. (dots), H. einnaythu (black squares), H. cf. cineraceus (open circles), H. kunzi (diamonds), H. bicolor (squares) and H. cf. gentilis (triangles).
FIGURE 4 in Solving the taxonomic identity of Hipposideros cineraceus sensu lato (Chiroptera: Hipposideridae) in the Thai-Malay Peninsula, with the description of a new species
FIGURE 4. Comparison of the baculum between (a) H. kingstonae sp. nov., ♁PSUZC-MM2014.164 (holotype), from Narathiwat, Thailand; (b) H. einnaythu, ♁PS200120.18, from Phetchaburi, Thailand; (c) H. cf. cineraceus, ♁PS200108.13, from Songkhla, Thailand; (d) H. cf. gentilis, ♁PSUZC-MM2007.231, from Phetchaburi, Thailand (redrawn from Douangboubpha et al., 2010). Scale=1 mm. Drawing by PW.
FIGURE 5 in Solving the taxonomic identity of Hipposideros cineraceus sensu lato (Chiroptera: Hipposideridae) in the Thai-Malay Peninsula, with the description of a new species
FIGURE 5. Lateral views of skull and mandible (left) and dorsal view (right) of the skull of (a) H. kingstonae sp. nov., ♁PSUZC-MM2014.164 (holotype), from Narathiwat, Thailand; (b) H. einnaythu, ♀HZM.5.35011 (holotype), from Rakhine, Myanmar; (c) H. cf. saevus, ♁BMNH.99.12.4.11 (holotype), from Kei Island, Indonesia; (d) H. cf. cineraceus, ♁PSUZCMM2006.126, from Songkhla, Thailand; (e) H. kunzi, ♁PSUZC-MM2005.75, from Narathiwat, Thailand; and (f) H. bicolor, ♁PSUZC-MM2005.82, from Narathiwat, Thailand. Scale=10 mm.
FIGURE 9 in Solving the taxonomic identity of Hipposideros cineraceus sensu lato (Chiroptera: Hipposideridae) in the Thai-Malay Peninsula, with the description of a new species
FIGURE 9. Comparison of noseleaf between (a) H. kingstonae sp. nov., ♁PSUZC-MM2014.164 (holotype), from Narathiwat, Thailand; (b) H. einnaythu, ♁PS150305.11, from Tanintharyi, Myanmar; (c) H. cf. saevus, from West Java, Indonesia; (d) H. cf. cineraceus, ♁PS180409.3, from Songkhla, Thailand; (e) H. kunzi, ♀PS180613.4, from Narathiwat, Thailand; and (f) H. bicolor, ♀PS180613.8, from Narathiwat, Thailand. Photographs by PS.
FIGURE 6 in Solving the taxonomic identity of Hipposideros cineraceus sensu lato (Chiroptera: Hipposideridae) in the Thai-Malay Peninsula, with the description of a new species
FIGURE 6. Occlusal view of skull and mandible of (a) Hipposideros kingstonae sp. nov. ♁PSUZC-MM2014.164 (holotype), from Narathiwat, Thailand; (b) H. einnaythu, ♀HZM.5.35011 (holotype), from Rakhine, Myanmar; (c) H. cf. saevus, ♁BMNH.99.12.4.11 (holotype), from Kei Island, Indonesia; (d) H. cf. cineraceus, ♁PSUZC-MM2006.126, from Songkhla, Thailand; (e) H. kunzi, ♁PSUZC-MM2005.75, from Narathiwat, Thailand; (f) H. bicolor, ♁PSUZC-MM2005.82, from Narathiwat, Thailand. Scale=10 mm.
FIGURE 5. Timonius denigricans. A. Habit, leafy branch with a flower bud and a fruit. B. Young twig and lower leaf surface. C in Two new species of Timonius (Rubiaceae: Guettardeae) from the Malay Peninsula
FIGURE 5. Timonius denigricans. A. Habit, leafy branch with a flower bud and a fruit. B. Young twig and lower leaf surface. C. Stipules in transverse section showing aestivation. D. Staminate inflorescence with 3 flower buds. E. Pistillate flower bud. F. Strongly 4-lobed fruit. G. Fruit, in transverse section. A, E: Md. Shah, Ahmad & Mahmud MS 3317; B–C, G: Hoo & Vuthy HPK 78; D: Loh FRI 13500; F: Damahuri & Khairuddin FRI 35982. Drawing by Violette Chye Lay Choon.
FIGURE 4. Timonius megalocalyx. A. Habit, leafy branch with fruits. B in Two new species of Timonius (Rubiaceae: Guettardeae) from the Malay Peninsula
FIGURE 4. Timonius megalocalyx. A. Habit, leafy branch with fruits. B. Young twig showing stipules at shoot apex. C. Close-up of lower leaf surface. D. Stipules in transverse section showing aestivation. E. Staminate inflorescence. F. Staminate corolla bud, in transverse section showing imbricate aestivation. G. Fruit. H. Fruit, in transverse section. A–C, G–H: Wong FRI 32472; D: Hoo HPK 86; E–F: Chan FRI 23816. Drawing by Violette Chye Lay Choon.
FIGURE 1 in Two new species of Timonius (Rubiaceae: Guettardeae) from the Malay Peninsula
FIGURE 1. Comparisons of Timonius wrayi (left) and T. megalocalyx (right), showing young twigs, petioles and stipules in A and B, lower leaf surfaces in C and D as well as fruits in E and F. A & C: Hoo HPK 23 (KLU); B & D: Hoo HPK 86 (KLU); E: Wong FRI 31883 (KEP); F: Kochummen FRI 2368 (KEP). Photos by P.K. Hoo.
FIGURE 3. A in Two new species of Timonius (Rubiaceae: Guettardeae) from the Malay Peninsula
FIGURE 3. A. Pale brown bark of Timonius flavescens, as in many other Malay Peninsula Timonius species. B. Black bark of T. denigricans. Photos A by R.C.J. Lim and B by P.K. Hoo.
FIGURE 1. A in A new species of Cyrtodactylus Gray, 1827 (Squamata: Gekkonidae) from the Thai-Malay Peninsula and the independent evolution of cave ecomorphology on opposite sides of the Gulf of Thailand
FIGURE 1. A. Distribution of the species of the Cyrtodactylus intermedius group after Murdoch et al. (2019). B. Location of Cyrtodactylus disjunctus sp. nov. (star) at the type locality of Meung Satun, Satun Province, Thailand.
FIGURE 4. A in A new species of Cyrtodactylus Gray, 1827 (Squamata: Gekkonidae) from the Thai-Malay Peninsula and the independent evolution of cave ecomorphology on opposite sides of the Gulf of Thailand
FIGURE 4. A MFA of the species of the Cyrtodactylus intermedius group. B Percent contributions of each data type to the inertia of dimensions 1–4 of the MFA. Percentage values on the bar graphs are the amounts of inertia for the respective dimensions. The red line represents the value if all contributions were equal. C The percent contribution of each character to dimensions 1–3. The red line represents the value if all contributions were equal.
FIGURE 9 in A new species of Cyrtodactylus Gray, 1827 (Squamata: Gekkonidae) from the Thai-Malay Peninsula and the independent evolution of cave ecomorphology on opposite sides of the Gulf of Thailand
FIGURE 9. Forest habitat at the type locality of Cyrotactylus disjunctus sp. nov. ISS 130 from Meung Satun, Satun Province, Thailand. Photograph by Parinya Pawangkhanan.
FIGURE 3 in A new species of Cyrtodactylus Gray, 1827 (Squamata: Gekkonidae) from the Thai-Malay Peninsula and the independent evolution of cave ecomorphology on opposite sides of the Gulf of Thailand
FIGURE 3. PCAs and DAPCs, respectively of A and D meristic, B and D morphometric, and C and E meristic-morphometric datasets. F Statistically significant variation based the permutation and bootstrap analyses conducted in the PCAtest. F PC 1of the meristic data set. G PCs 1 and 2 of the morphometric dataset. H PCs 1 and 2 of the meristic-morphometric dataset.
FIGURE 7 in A new species of Cyrtodactylus Gray, 1827 (Squamata: Gekkonidae) from the Thai-Malay Peninsula and the independent evolution of cave ecomorphology on opposite sides of the Gulf of Thailand
FIGURE 7. Holotype of Cyrtodactylus disjunctus sp. nov. ISS 130 ZMMU re-17674 from Meung Satun, Satun Province, Thailand. A Dorsal view of head. B right lateral view of head. C Gular region. D Ventral view of hand. E Ventral view of foot. F Ventral view of femora and precloacal region. G Subcaudal region. Photographs by Parinya Pawangkhanan.
FIGURE 2 in A new species of Cyrtodactylus Gray, 1827 (Squamata: Gekkonidae) from the Thai-Malay Peninsula and the independent evolution of cave ecomorphology on opposite sides of the Gulf of Thailand
FIGURE 2. Maximum clade credibility BEAST phylogeny of the Cyrtodactylus intermedius group highlighting the new species described herein. Bayesian posterior probabilities (BPP) are listed at the nodes. Photograph by Parinya Pawangkhanan.
FIGURE 6. A in A new species of Cyrtodactylus Gray, 1827 (Squamata: Gekkonidae) from the Thai-Malay Peninsula and the independent evolution of cave ecomorphology on opposite sides of the Gulf of Thailand
FIGURE 6. A Dorsal and ventral views of the holotype of Cyrtodactylus disjunctus sp. nov. ISS 130 ZMMU re-17674 from Meung Satun, Satun Province, Thailand. B Photo of the holotype in life. Photographs by Parinya Pawangkhanan.
Figure 4 from: Balke M, Ribera I (2020) A subterranean species of Exocelina diving beetle from the Malay Peninsula filling a 4,000 km distribution gap between Melanesia and southern China. Subterranean Biology 34: 25-37. https://doi.org/10.3897/subtbiol.34.50148
Figure 4 Exocelina sugayai sp. nov. male, ventral side A prosternal process and mesocoxal area B metacoxa and metacoxal processes C metaventrite and metaxoca DExocelina abdita, metacoxa and metacoxal processes. Lines in B and D inserted to highlight outline of metacoxal processes.
Figure 5 from: Balke M, Ribera I (2020) A subterranean species of Exocelina diving beetle from the Malay Peninsula filling a 4,000 km distribution gap between Melanesia and southern China. Subterranean Biology 34: 25-37. https://doi.org/10.3897/subtbiol.34.50148
Figure 5 Exocelina sugayai sp. nov. male genital, A median lobe of aedeagus in lateral view B paramere lateral inner view.
Figure 6 from: Balke M, Ribera I (2020) A subterranean species of Exocelina diving beetle from the Malay Peninsula filling a 4,000 km distribution gap between Melanesia and southern China. Subterranean Biology 34: 25-37. https://doi.org/10.3897/subtbiol.34.50148
Figure 6 Habitat of Exocelina sugayai sp. nov. A overview B detailed, with a beetle crawling about in the center of the image.
Figure 1 from: Balke M, Ribera I (2020) A subterranean species of Exocelina diving beetle from the Malay Peninsula filling a 4,000 km distribution gap between Melanesia and southern China. Subterranean Biology 34: 25-37. https://doi.org/10.3897/subtbiol.34.50148
Figure 1 Exocelina sugayai sp. nov. A habitus dorsal of male B same of female C foretarsus of male, arrow pointing at expanded anterior ventral angle of tarsomere IV D surface sculpture on male elytral disc, cropped from A. Length of left beetle: 2.7 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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