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FIGURE 4 in A new potentially endangered limestone-associated Bent-toed Gecko of the Cyrtodactylus pulchellus (Squamata: Gekkonidae) complex from northern Peninsular Malaysia
FIGURE 4. PCA (left) with convex hull polygons and DAPC (right) illustrating the morphospatial relationships of C. evanquahi sp. nov., C. macrotuberculatus, and Cyrtodactylus pulchellus.
FIGURE 5 in A new potentially endangered limestone-associated Bent-toed Gecko of the Cyrtodactylus pulchellus (Squamata: Gekkonidae) complex from northern Peninsular Malaysia
FIGURE 5. Type series of C. evanquahi sp. nov. in life, from Gunung Baling, Kedah, Malaysia. (A) adult male holotype (BYU 53435): (B), adult female paratype (BYU 53436), and (C) juvenile female paratype (BYU 53437).
FIGURE 1 in A new potentially endangered limestone-associated Bent-toed Gecko of the Cyrtodactylus pulchellus (Squamata: Gekkonidae) complex from northern Peninsular Malaysia
FIGURE 1. Taxon sampling for the Cyrtodactylus pulchellus complex used in this study (excludes C. lekaguli Grismer, Wood, Quah, Anuar, Muin, Sumontha, Ahmad, Bauer, Wangkulangkul, Grismer & Pauwels from the map).
FIGURE 2 in A new potentially endangered limestone-associated Bent-toed Gecko of the Cyrtodactylus pulchellus (Squamata: Gekkonidae) complex from northern Peninsular Malaysia
FIGURE 2. Reconstructed phylogenetic relationships of the Cyrtodactylus pulchellus complex based 1437 bp of ND2 and flanking tRNAs. The phylogenetic tree is a ML tree with ultrafast bootstrap support values and Bayesian posterior probabilities respectively. All new genetic samples are presented in bold.
FIGURE 3 in A new potentially endangered limestone-associated Bent-toed Gecko of the Cyrtodactylus pulchellus (Squamata: Gekkonidae) complex from northern Peninsular Malaysia
FIGURE 3. Box and whisker plots highlighting the uncorrected pairwise sequence divergences in the Cyrtodactylus pulchellus complex compared to C. evanquahi sp. nov. The comparison of C. evanquahi sp. nov. is the within species uncorrected pairwise divergences.
FIGURE 6 in The purportedly Indo-Australian gecko species Cnemaspis timoriensis (Duméril & Bibron, 1836) is actually the first named species of the neotropical genus Gonatodes Fitzinger, 1843 (Squamata: Gekkonidae)
FIGURE 6. Dorsal (A) and ventral (B) views of the head of the holotype of Gymnodactylus timoriensis Duméril & Bibron, 1836, specimen number MNHN 0810. The close-up of the right eye (C) is shown to illustrate the pattern of ciliary scales and the notable absence of any spines from the scales. Figure created by Mark O'Shea from photos by Hinrich Kaiser.
FIGURE 5 in The purportedly Indo-Australian gecko species Cnemaspis timoriensis (Duméril & Bibron, 1836) is actually the first named species of the neotropical genus Gonatodes Fitzinger, 1843 (Squamata: Gekkonidae)
FIGURE 5. Lateral head views (A: left; B: right) of the holotype of Gymnodactylus timoriensis Duméril & Bibron, 1836, specimen number MNHN 0810. Figure created by Mark O'Shea from photos by Lee Grismer.
FIGURE 8 in The purportedly Indo-Australian gecko species Cnemaspis timoriensis (Duméril & Bibron, 1836) is actually the first named species of the neotropical genus Gonatodes Fitzinger, 1843 (Squamata: Gekkonidae)
FIGURE 8. Scale patterns on the body of Gymnodactylus timoriensis Duméril & Bibron, 1836, specimen number MNHN 0810. (A) Dorsal view of the right forearm. (B) Dorsal view of the right hind limb. (C) Ventral view of the groin, illustrating pholidosis of the precloacal area and on the ventral portions of the hind limbs. Figure created by Mark O'Shea from photos by Hinrich Kaiser
FIGURE 7 in The purportedly Indo-Australian gecko species Cnemaspis timoriensis (Duméril & Bibron, 1836) is actually the first named species of the neotropical genus Gonatodes Fitzinger, 1843 (Squamata: Gekkonidae)
FIGURE 7. Ventral views of the hands and feet of Gymnodactylus timoriensis Duméril & Bibron, 1836, specimen number MNHN 0810, including the right hand (A), left hand (B), right foot (C), and left foot (D). Figure created by Mark O'Shea from photos by Hinrich Kaiser.
FIGURE 3 in The purportedly Indo-Australian gecko species Cnemaspis timoriensis (Duméril & Bibron, 1836) is actually the first named species of the neotropical genus Gonatodes Fitzinger, 1843 (Squamata: Gekkonidae)
FIGURE 3. Map of the journey made by Charles Gaudichaud-Beaupré from 1817–1820 aboard the vessels L'Uranie and La Physicienne. The following locations are listed with superscripted integers referring to numbers on the main map and on two inset maps, one for two Indian Ocean stops (A) and one for seven stops in the biogeographic region known as Wallacea (B). L'Uranie left 1Toulon on the Mediterranean coast of France on 17 September 1817 and stopped in 2Rio de Janeiro [Brazil] from 6 Oct 1817–30 Jan 1818; 3Cape Town [South Africa] from 7 Feb–7 Apr 1818; 4Île de France [Mauritius] from 5 May–16 Jul 1818; 5Île Bourbon [Réunion] from 19–28 Jul 1818; 6Baie des Chiens-Marins [Shark Bay, Western Australia] from 19–26 Sep 1818; 7Coupang [Kupang, West Timor, Indonesia] from 9–23 Oct 1818; 8Ombai [Alor, Indonesia] on 2 Nov 1818; 9Dill [Dili, Timor-Leste] on 17 Nov 1818; 10Gorongo [Pulau Joronga, Indonesia] on 5 Dec 1818; 11Pisang and Guéb, Dutch East Indies [Pulau Pisang and Pulau Gebe, Indonesia] on 7–12 Dec 1818; 12Manouaran [Pulau Manuran, Raja Ampat Islands, Indonesia] on 15 Dec 1818; 13Rawak [Pulau Lawak, also known as Rauki, Raja Ampat Islands, Indonesia] from 16 Dec 1818–6 Jan 1819; 14Gwam and Iles Mariannes [Guam and the Mariana Islands] from 17 Mar–6 Jun 1819; 15Iles Sandwich [Hawaiian Islands] from 5–30 Aug 1919; 16Port-Jackson [Sydney, Australia] from 18 Nov–26 Dec 1819; 17Cape Hoorn [Chile] on 8 Feb 1820; 18L'Uranie ran aground in the Falkland Islands on 13 Dec 1820; 19Freycinet purchases the Mercury in Montevideo, Uruguay, where the expedition stayed from 8 Mar–7 Jun 1820; 2second stay in Rio de Janeiro from 19 Jun–13 Sep 1820, after which the expedition returned to France on the Mercury renamed La Physicienne. The journey ended on 13 Nov 1820 in Le Havre. Map created by Mark O'Shea with information compiled by Hinrich Kaiser from Freycinet's reports.
FIGURE 4. A in A new endemic insular Bent-toed Gecko (Squamata: Gekkonidae: Cyrtodctylus) from Quang Nam Province, Central Vietnam
FIGURE 4. A: Ventral view of tail of Cyrtodactylus culaochamensis sp. nov., ITBCZ 2494, showing light-colored, subcaudal rings and very slightly enlarged subcaudals; B: Precloacal region of C. culaochamensis sp. nov ITBCZ 2494, showing seven precloacal cloacal pores in a chevron pattern.
FIGURE 4 in Description of three new velvet geckos (Diplodactylidae: Oedura) from inland eastern Australia, and redescription of Oedura monilis De Vis
FIGURE 4. Variation in O. tryoni: Erringibba National Park (A), Carnarvon Gorge area (B), Ipswich area (C), Kroombit Tops (D), and Sarina (E, F). Photos: Steve Wilson (A); Conrad Hoskin (B, C); Harry Hines (D); Stephen Zozaya (E, F).
FIGURE 5 in Description of three new velvet geckos (Diplodactylidae: Oedura) from inland eastern Australia, and redescription of Oedura monilis De Vis
FIGURE 5. Comparison of typical-looking O. monilis (A), O. elegans sp. nov. (B), O. picta sp. nov. (C), and O. lineata sp. nov. (D). Photos: Conrad Hoskin.
FIGURE 3 in Earning your stripes: a second species of striped gecko in the New Zealand gecko genus Toropuku (Gekkota: Diplodactylidae)
FIGURE 3. Photos of (A.) Toropuku inexpectatus sp. nov. (holotype, MONZ RE.006939) and (B.) T. stephensi (MONZ RE.5594) illustrating variation in scalation and head proportions. Images from left to right: right lateral aspect of head, dorsal aspect of head, and plantar view of right pes. Photographs by SVN.
FIGURE 9 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 9. Morphology of the fourth toe of the pes in three Woodworthia species; A, Woodworthia korowai sp. nov. holotype (AWMM LH2445, Te Oneone Rangatira/ Muriwai Beach, Auckland); B, W. korowai sp. nov., northern Te Korowai-o-Te-Tonga/ South Kaipara Peninsula; C, W. maculata (MONZ RE.006899, Haupiri Range, northwest Nelson); D, W. maculata (AWMM LH4024, Red Mercury Island, Coromandel); E, W. "Mt Arthur", Mt Arthur, northwest Nelson.
FIGURE 1 in On the sand and among the crowds: a new species of Woodworthia gecko (Reptilia Diplodactylidae) from Auckland, Aotearoa/ New Zealand
FIGURE 1. Inferred phylogenetic relationships of the genus Woodworthia, and distributions of the three Woodworthia congeners included in morphological analyses. Map of New Zealand shows the distributions of Woodworthia maculata (cyan blue), W. "Mt Arthur" (purple), and W. korowai sp. nov. (yellow). Yellow arrows in inset map show the locations of the Woodhill and Oaia Island samples. Light blue colour along the east coast in the inset map represents the presumed historical distribution of W. maculata on the mainland between Whangarei and Kawakawa Bay (i.e., there are no verified records from this area but the proximity of islands supporting W. maculata to the mainland suggests they may have once occurred there). Maximum likelihood tree reconstructed from the mitochondrial NADH dehydrogenase subunit 2 (ND2) dataset. Posterior probabilities (PP) and bootstrap support (BS) values resulting from the Bayesian Inference and Maximum Likelihood analyses respectively, are indicated with grey or black dots at the nodes as described in the legend. Clades with PP <0.95 or BS <0.8 are not presented. Zoomed-in tree shows relationships within the genus Woodworthia and the relationships among Woodworthia maculata (cyan blue), W. "Mt Arthur" (purple), and W. korowai sp. nov. (yellow).
FIGURE 11 in A new Four-clawed Gecko from limestone hills in Lopburi Province, central Thailand (Squamata, Gekkonidae: Gehyra)
FIGURE 11. Live adult Gehyra cf. fehlmanni from Sai Yok District, Kanchanaburi Province, western Thailand. Photograph by M. Sumontha.
FIGURE 4 in Resurrection of the African gecko genus Ancylodactylus Müller, 1907 (Squamata: Gekkonidae) and description of six new species from Kenya
FIGURE 4. Holotype of Ancylodactylus kituiensis sp. nov. (NMK-L2702/2). A) Dorsal view of the preserved specimen. Scale bar = 10 mm. B) Dorsal view of anterior trunk showing prominent rows of tubercles. C) Ventral view of left hind foot. D) Tail dorsum showing the enlarged tubercles. E) Subcaudal view showing irregular alternation of larger and paired smaller median scales at mid-venter of tail.
FIGURE 6 in Hiding in plain sight on Gunung Muria: A new species and first record of rock gecko (Cnemaspis Strauch, 1887; Squamata, Gekkonidae) from Java, Indonesia
FIGURE 6. Sexual dimorphism exhibited in ventral views of Cnemaspis muria sp. nov. A. Male, holotype (MZB.Lace.14571), showing the subcaudal coloration that changes from yellow to white at about the midpoint of the tail. B. Female, paratype (MZB. Lace.14564), showing the subcaudal surface with alternating white and black bands and a black apex of the tail. Bar = 10 mm. Photo A by A. Riyanto, B by A. I. S. Martamenggala.
FIGURE 3 in Hiding in plain sight on Gunung Muria: A new species and first record of rock gecko (Cnemaspis Strauch, 1887; Squamata, Gekkonidae) from Java, Indonesia
FIGURE 3. Close up of the head of Cnemaspis muria sp. nov. showing a pair of sharpe conical tubercles clustered on the occiput (yellow arrows) and nuchal loop bearing a bridge of warts in a curved line from the upper tympanum to the nape (red arrows). Photo by A. Riyanto.
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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)
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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.