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Fig.7 in Redefinição Do Grupo De Phyllomedusa Hypochondrialis, Com Redescrição De P. Megacephala (Miranda-Ribeiro, 1926), Revalidação De P. Azurea Cope, 1862 E Descrição De Uma Nova Espécie (Amphibia, Anura, Hylidae)
Fig.7- Phyllomedusa megacephala (MNRJ 11308, CRC 39,0mm, coletado na Serra do Cipó, Jaboticatubas, MG).
Phyllomedusa azurea (MNRJ 17864): fig.2- vista dorsal da cabeça; fig.3- vista lateral da cabeça; fig.4- palma da mão; fig.5- planta do pé. Escala = 5mm. in Redefinição Do Grupo De Phyllomedusa Hypochondrialis, Com Redescrição De P. Megacephala (Miranda-Ribeiro, 1926), Revalidação De P. Azurea Cope, 1862 E Descrição De Uma Nova Espécie (Amphibia, Anura, Hylidae)
Phyllomedusa azurea (MNRJ 17864): fig.2- vista dorsal da cabeça; fig.3- vista lateral da cabeça; fig.4- palma da mão; fig.5- planta do pé. Escala = 5mm.
Fig.6 in Redefinição Do Grupo De Phyllomedusa Hypochondrialis, Com Redescrição De P. Megacephala (Miranda-Ribeiro, 1926), Revalidação De P. Azurea Cope, 1862 E Descrição De Uma Nova Espécie (Amphibia, Anura, Hylidae)
Fig.6- Distribuição geográfica de Phyllomedusa azurea (D), P. megacephala (A) e P. nordestina sp.nov. (O).
FIGURE 5. Principal components analysis depicting morphometric variables distinguishing northern subspecies, H. l in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 5. Principal components analysis depicting morphometric variables distinguishing northern subspecies, H. l. lacerata (green), from southern subspecies, H. l. subcaudalis (purple).
FIGURE 9 in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 9. Dorsal (top) and ventral (bottom) views of Tamaulipan Spot-tailed Earless Lizard (Holbrookia subcaudalis) holotype specimen collected by Ralph W. Axtell on 6 June 1955 and housed at Texas Natural History Collection, University of Texas (TNHC 20000).
FIGURE 1 in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 1. The shaded portion of the map depicts the historical distribution of Holbrookia lacerata (IUCN). The green and red triangles are localities for the historically divided northern (H. l. lacerata) and southern (H. l. subcaudalis) subspecies, respectively. The samples collected for this study are depicted as red or green circles. The orange line represents the Balcones Escarpment. The photograph outlined in red is a male Holbrookia subcaudalis from Jim Wells County, Texas and the photograph outlined in green is a male H. lacerata from Schleicher County, Texas. Photographs by Toby J. Hibbitts.
FIGURE 8 in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 8. Dorsal (top) and ventral (bottom) views of Plateau Spot-tailed Earless Lizard (Holbrookia lacerata) lectotype specimen collected by G.W. Marnock in May 1879 and housed at Smithsonian (USNM 10160).
FIGURE 7. Histograms showing D in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 7. Histograms showing D statistic from randomization tests for niche equivalency (A) and background similarity (B). Red diamond pointer shows D statistic position along x-axis.
FIGURE 3 in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 3. The map depicts the locations of tissue samples used in the analysis. In all cases the northern species (Holbrookia lacerata) is green. The southwestern population of the southern species (Holbrookia subcaudalis) is red and the southeastern population of the southern species is blue. Median-joining network (left) of the observed 38 haplotypes for ND2 mtDNA gene sequences of 66 spot-tailed earless lizard individuals. Circle sizes are proportional to frequencies of haplotypes. Black circles indicate missing intermediates (unsampled). Cross-hatches represent mutational steps with all greater than four denoted by the number of steps. Bayesian analysis of the mtDNA ND2 gene (right). Numbers at the nodes are posterior probability values. Asterisks indicate values = 1.
FIGURE 6 in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 6. Projections for Maxent models into geographic space. The southwestern border between Texas and Mexico is shown as a black segmented line. The color gradient in each panel is identical, ranges from 0 to 0.8, and shows the raw Maxent values (higher values indicate higher suitability for each population). A) Projection of the Maxent model for Holbrookia lacerata lacerata shows there is no suitable habitat where H. l. subcaudalis occur. Holbrookia l. subcaudalis are indicated with the black plus sign. B) Projection of the Maxent model for the H. l. subcaudalis shows there is little suitable habitat where H. l. lacerata occur. Holbrookia l. lacerata are indicated with the black plus sign.
FIGURE 4 in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 4. Median-joining network (left) of the observed 36 haplotypes for RAG-1 nuclear DNA gene of 66 spottailed earless lizard individuals. Black circles indicate missing intermediates (unsampled). Cross-hatches represent mutational steps with all greater than four denoted by the number of steps. Bayesian analysis of the nuclear DNA RAG-1 gene (right). Numbers at the nodes are posterior probability values. Asterisks indicate values = 1.
FIGURE 2 in Phylogenetic structure of Holbrookia lacerata (Cope 1880) (Squamata: Phrynosomatidae): one species or two?
FIGURE 2. Morphological characters used to distinguish northern and southern subspecies from one another. The two images on the left are from a single northern (H. l. lacerata) male (dorsal and ventral view). The two images on the right are from a single southern (H. l. subcaudalis) female (dorsal and ventral view).
Fig. 1 in Genetic differentiation of the African dwarf crocodile Osteolaemus tetraspis Cope, 1861 (Crocodylia: Crocodylidae) and consequences for European zoos
Fig. 1 Distribution map of African dwarf crocodiles according to the results of Eaton et al. (2009a) and this study. The three divergent evolutionary lineages are shaded (Western Africa, Ogooué Basin,
Psychological inflexibility, avoidance coping, psychological trauma, and adherence to COVID-19 preventive measures
<p>The data focuses on the effects of psychological inflexibility, avoidance coping and psychological trauma on perceptions of threat of COVID-19 and adherence to preventive measures among refugees. The data refers to refugees in Uganda, collected during the COVID-19 pandemic.</p>
FIGURE 6 in The nomenclatural status of "Anoplophallus maculatus" Cope, 1895, its consequences on the systematics of Lycodon subcinctus auctorum, and the description of a new species (Squamata: Colubridae)
FIGURE 6. Lycodon neomaculatus sp. nov. in preservative—specimen CAS 235846 (paratype, adult male) A—General dorsal view; B—General ventral view; C—dorsal view of the head; D—Ventral view of the head; E—Lateral view of the head, right side; F—Ventral view of the tail with the everted hemipenes. Photos by J.L. Lee.
FIGURE 3 in The nomenclatural status of "Anoplophallus maculatus" Cope, 1895, its consequences on the systematics of Lycodon subcinctus auctorum, and the description of a new species (Squamata: Colubridae)
FIGURE 3. Bayesian phylogenetic tree of Lycodon inferred from the mitochondrial cytb sequences. Numbers before slashes indicate Bayesian posterior probabilities and numbers after slashes indicate ML bootstrap supports. Nodes filled in with a black circle indicate strong support by both the ML and BI analyses, whereas nodes filled in with a white circle indicate strong support only in the BI analysis. Inset photo of Lycodon neomaculatus sp. nov. taken by A.M. Bragin.
FIGURE 2 in The nomenclatural status of "Anoplophallus maculatus" Cope, 1895, its consequences on the systematics of Lycodon subcinctus auctorum, and the description of a new species (Squamata: Colubridae)
FIGURE 2. Photographs of Lycodon subcinctus in preservative. A, B—General dorsal and ventral views of MNHN 1884.120 (Syntype of Elapsoides annulatus, subadult female); C, D—General dorsal and ventral views of MNHN 1884.121 (syntype of Elapsoides annulatus, subadult female); E, F—General dorsal and ventral views of RBINS 2610 (neotype of Lycodon suratensis, adult female). Images not to scale. Photos by G. Vogel (A–D) and O.S.G. Pauwels (E–F).
FIGURE 10 in The nomenclatural status of "Anoplophallus maculatus" Cope, 1895, its consequences on the systematics of Lycodon subcinctus auctorum, and the description of a new species (Squamata: Colubridae)
FIGURE 10. Lycodon sealei in life (not collected, sex not determined): A—Puerto Princesca, Palawan, Philippines (adult); B—Taytay, Palawan, Philippines (subadult); C—Balabac, Palawan, Philippines (adult); D—Ranau, Sabah, Malaysia (subadult); E—Marudi, Sarawak, Malaysia (subadult); F—Sandakan, Sabah, Malaysia (subadult); G—Kuching, Sarawak, Malaysia (adult); H—Petra Jaya, Kuching, Sarawak, Malaysia (adult); I—West Kotawaringin, Central Kalimantan, Indonesia (adult). Photos by: R. Grassby-Lewis (A); A. Sonlee (B); C. Supsup (C); R. Monday (D); C.C. Lee (E, H); S. Lee (F); L. Platania (G); H. Kurniawan (I).
FIGURE 9 in The nomenclatural status of "Anoplophallus maculatus" Cope, 1895, its consequences on the systematics of Lycodon subcinctus auctorum, and the description of a new species (Squamata: Colubridae)
FIGURE 9. Lycodon subcinctus in life (not collected, sex not determined): A—Kathu, Phuket, Thailand (adult); B—Hala Bala WS, Narathiwat, Thailand (subadult); C—Khao Phanom Bencha NP, Krabi, Thailand (subadult); D—Khao Sok NP, Surat Thani, Thailand (adult); E—Baling, Kedah, Malaysia (adult); F—Fraser's Hill, Pahang, Malaysia (subadult); G—West Malaysia (adult); H—Upper Seletar Reservoir, Singapore (adult); I—Padang, West Sumatra, Indonesia (adult); J—Bekasi, Java, Indonesia (adult); K—Jembrana, Bali, Indonesia (adult); L—Alor, East Nusa Tenggara, Indonesia (subadult). Photos by: A. Tomaszek (A, K); R. Grassby-Lewis (B); R. Jaihan (C, D), P. Pawangkhanant (E, I); G. Vogel (G), R. Kittrell (F); R. Tann (H); A.R. Mudzakir (J); C. Trainor (L).
FIGURE 5 in The nomenclatural status of "Anoplophallus maculatus" Cope, 1895, its consequences on the systematics of Lycodon subcinctus auctorum, and the description of a new species (Squamata: Colubridae)
FIGURE 5. Lycodon neomaculatus sp. nov. in preservative—MCZ R-175968 (holotype, adult male) A—General dorsal view; B—General ventral view; C—Lateral view of the head, right side; D—Lateral view of the head, left side; E—Dorsal view of the head; F—Ventral view of the tail with the everted hemipenes. Images not to scale. Photos by M. Gage and J. Martinez.
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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.