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FIGURE 7 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 7. Results of discriminant analysis of T. arabicus (diamonds), Trigonodactylus persicus sp. nov. (circles), and T. sharqiyahensis (squares) based on 16 morphometric characters (SVL, TailL, HeadL, HeadW, HeadH, SynEye, OrbD, EarL, EyeEar, TrunkL, LS, ForeaL, FemurL, CrusL, LD4A, LD4P) (a—males; b—females; c—both sexes analyzed together).
FIGURE 2 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 2. ML-tree of studied Stenodactylus and Trigonodactylus species based on the analyses of 602 bp COI mtDNA gene fragment. Node colour indicates support values: black for well-supported and sufficiently supported nodes, grey for moderately or poorly supported nodes. Node support values are shown above or below tree nodes for ML BS/MP BS/BI PP analyses respectively.
FIGURE 5 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 5. Members of the genus Trigonodactylus in situ: a—Trigonodactylus persicus sp. nov.; b—T. sharqiyahensis (Metallinou & Carranza, 2013); c—T. arabicus Hass, 1957.
FIGURE 9 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 9. Dorsal view of skulls of representatives of the genera Stenodactylus, Pseudoceramodactylus and Trigonodactylus; (A–H)—photos; (a–h)—schematic drawing showing the shape of skull roof. (A, a)—S. affinis; (B, b)—S. doriae; (C, c)—S. grandiceps; (D, d)—S. leptocosymbotes; (E, e)—S. petrii; (F, f)—S. sthenodactylus; (G, g)—P. khobarensis; (H, h)— Trigonodactylus persicus sp.nov. Colours denote the following bones: frontal—light grey; parietal—dark grey; postorbitofrontal—yellow; prefrontal—orange; nasal—brown; intermaxillary—grey.
FIGURE 4 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 4. Dorsal (upper row), lateral (median row) and mental (lower row) views of heads of all members of the genus Trigonodactylus: T. arabicus holotype CAS 84321 (a; f; k); T. arabicus ZMMU R-14666-1 (b; e; l); Trigonodactylus persicus sp. nov. ZMMUR-14669 (c; h; m); T. sharqiyahensis ZMMU R-14667-1 (d; i; n); T. pulcher holotype BMNH 1946.8.23.38. (e; j; o).
FIGURE 3 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 3. Holotype of Trigonodactylus persicus sp. nov.: (a) specimen in situ; (b) ventral view sowing roundish and keeled ventral scales; (c) thenar surface of fingers showing fringes and few median lamellae on distal edge of digits.
FIGURE 6 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 6. Thenar views of fore- (upper row) and hindlimbs (lower row) of the genus Trigonodactylus representatives: (a; b)—T. arabicus with well-developed webbing between fingers and toes; (c; d)—Trigonodactylus persicus sp. nov. and (e; f)— T. sharqiyahensis without webbing on fingers and toes.
FIGURE 1 in A new species of short-fingered geckos Stenodactylus (Squamata, Geckonidae) from South Iran with taxonomic notes on validity of the genus Trigonodactylus Hass, 1957
FIGURE 1. Distribution of the genus Trigonodactylus: circle—Trigonodactylus persicus sp. nov., squares—T. arabicus, diamonds—T. sharqiyahensis, triangles—T. pulcher; red colour denotes type localities of abovementioned species; blue colour—records from previously published data; green colour—our findings.
FIGURE 1 in Description of a new diminutive, rupicolous species of day-gecko (Squamata: Gekkonidae: Cnemaspis) from southern Sri Lanka
FIGURE 1. Holotype of Cnemaspis ingerorum sp. nov., from Sandagala, Tissamaharama: A, dorsolateral view; B, ventral view; C, dorsolateral view of Cnemaspis kumarasinghei, not preserved, from Buttala; and D, dorsal view of Cnemaspis silvula, not preserved, from Kanneliya Forest Reserve.
FIGURE 2 in Description of a new diminutive, rupicolous species of day-gecko (Squamata: Gekkonidae: Cnemaspis) from southern Sri Lanka
FIGURE 2. Maximum likelihood phylogeny of the kandiana clade of South Asian Cnemaspis. Numbers at nodes depict bootstrap support, values <50 and outgroups not shown.
FIGURE 3 in Description of a new diminutive, rupicolous species of day-gecko (Squamata: Gekkonidae: Cnemaspis) from southern Sri Lanka
FIGURE 3. Distribution of Cnemaspis ingerorum sp. nov. (circle), C. silvula (squares) and C. kumarasinghei (triangles); type localities in white, other locations in black.
FIGURE 2 in Finaritra! A splendid new leaf-tailed gecko (Uroplatus) species from Marojejy National Park in north-eastern Madagascar
FIGURE 2. Holotype of Uroplatus finaritra sp. nov. (UADBA-R 70489, APR 12522) in dorsal view (left) and a paratype (UADBA-R 70491, APR 12589) in ventral view (right) view. Scale bar indicates 10 mm.
FIGURE 4 in Finaritra! A splendid new leaf-tailed gecko (Uroplatus) species from Marojejy National Park in north-eastern Madagascar
FIGURE 4. Subadult female specimens of Uroplatus finaritra sp. nov. (a–b) ZSM 458/2016 (MSZC 0271) and (c–d) UADBA-R 70501 (MSZC 0253) in (a, d) dorsolateral and (b–c) dorsal view.
FIGURE 3 in Finaritra! A splendid new leaf-tailed gecko (Uroplatus) species from Marojejy National Park in north-eastern Madagascar
FIGURE 3. Variation among specimens of Uroplatus finaritra sp. nov. from Marojejy National Park. (a) photo probably showing paratype UADBA-R 70494 (APR 12692), (b) paratype UADBA-R 70491 (APR 12589), (c) paratype UADBA-R 70490 (APR 12590), (d) holotype UADBA-R 70489 (APR 12522), (e) paratype UADBA-R 70501 (MSZC 0253), (f) paratype ZSM 458/2016 (MSZC 0271). All specimens shown except (c) are females; note the differences in tail notching between this specimen and the others, and the presence of hemipenial bulges.
FIGURE 5 in Finaritra! A splendid new leaf-tailed gecko (Uroplatus) species from Marojejy National Park in north-eastern Madagascar
FIGURE 5. Oral mucosa colouration differences between (a–c) Uroplatus finaritra sp. nov. from Marojejy and (d–f) U. phantasticus from (d) Fierenana, (e) Ranomafana, and (f) Kianjavato.
FIGURE 6 in A new species of Phyllurus leaf-tailed gecko (Lacertilia: Carphodactylidae) from The Pinnacles, north-east Australia
FIGURE 6. Photos of habitat of P. pinnaclensis sp. nov., showing (A) angular rock scree at the type locality (photo: Anders Zimny) and (B) piled granite boulder habitat at another site (photo: Lorenzo Bertola). The white arrow on B points to a gecko foraging in a typical position on a vertical rock surface at night.
FIGURE 1 in A new species of Phyllurus leaf-tailed gecko (Lacertilia: Carphodactylidae) from The Pinnacles, north-east Australia
FIGURE 1. Left panel: A consensus tree of 1,041 base pairs of ND2 mtDNA produced using MrBayes. Nodes with Bayesian inference posterior probability of 1.0 are noted by an asterisk (*). Locality abbreviations are: HA, Mt. Halifax; BW, Bluewater Range; NP, North Patterson Gorge; SP, South Patterson Gorge; HR, Hervey Range; PI, The Pinnacles. The average uncorrected p-distance between The Pinnacles sequences and all sequences of P. gulbaru is 6.4%. Right panel: Map showing the known populations of the two species (symbols and abbreviations), topography (background shading), and the Species Distribution Model (SDM) (both species modelled together). Coloured pixels show predicted probability of presence as indicated by the legend. See Bertola et al. (2018) for further details of phylogenetics and SDM.
FIGURE 5 in A new species of Phyllurus leaf-tailed gecko (Lacertilia: Carphodactylidae) from The Pinnacles, north-east Australia
FIGURE 5. Traced outline of internasal scales of holotypes of (A) P. pinnaclensis sp. nov. (QMJ96418) and P. gulbaru (QMJ75778) (photo: Conrad Hoskin).
FIGURE 2 in A new species of Phyllurus leaf-tailed gecko (Lacertilia: Carphodactylidae) from The Pinnacles, north-east Australia
FIGURE 2. (A) Holotype of P. pinnaclensis sp. nov. in life (photo: Conrad Hoskin). (B) P. pinnaclensis sp. nov. with regenerated tail (photo: Lorenzo Bertola).
FIGURE 3. A in A new species of Bent-toed Gecko (Squamata, Gekkonidae, Cyrtodactylus) from the Shan Plateau in eastern Myanmar (Burma)
FIGURE 3. A. Plot of the principal component analysis (PCA) ordinated along the first two principal components. B. Plot of the discriminant analysis of principal components (DAPC). C. Boxplots of characters bearing significantly different mean values determined by TukeyHSD tests. Species pairs above individual plots are those that bear significant mean differences. Boxes represent the 50% quartiles, the horizontal black bars the medians, and the blue circles the means. Character abbreviations are in the Materials and Methods.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.