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FIGURE 4 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 4. Type series of Cyrtodactylus gunungsenyumensis sp. nov. from Gunung Senyum, Hutan Lipur Gunung Senyum, Pahang, Peninsular Malaysia.
FIGURE 2 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 2. Inferred phylogenetic relationships within the sworderi complex. The phylogram is a Maximum Likelihood topology with Bayesian posterior probabilities and Maximum Likelihood bootstrap values, respectively. The green circles indicate instances of independent evolution of karst ecosystem ecology.
FIGURE 1 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 1. Distribution of Cyrtodactylus gunungsenyumensis sp. nov., C. tebuensis, C. guakanthanensis, and C. sworderi of the sworderi complex. Stars indicate type localities.
FIGURE 3 in A new species of karst forest Bent-toed Gecko (genus Cyrtodactylus Gray) not yet threatened by foreign cement companies and a summary of Peninsular Malaysia's endemic karst forest herpetofauna and the need for its conservation
FIGURE 3. Left: Cyrtodactylus gunungsenyumensis sp. nov. Upper left: LSUHC 12200 subadult female; middle left: 12201 juvenile; lower left; LSUHC 12209 adult female. Right: Microhabitat of C. gunungsenyumensis sp. nov. at Gunung Senyum, Hutan Lipur Gunung Senyum, Pahang, Peninsular Malaysia.
FIGURE 5 in Another new and threatened species of lancehead genus Bothrops (Serpentes, Viperidae) from Ilha dos Franceses, Southeastern Brazil
FIGURE 5. Sulcate (left) and asulcate (right) views of the hemipenis of B. sazimai (MBML 3319 paratype). Scale bar = 5 mm.
FIGURE 1 in Another new and threatened species of lancehead genus Bothrops (Serpentes, Viperidae) from Ilha dos Franceses, Southeastern Brazil
FIGURE 1. Canonical analysis of females (A) and males (B) of Bothrops jararaca species group. Limits of variation in head shape were defined by 95% confidence ellipses and computed by parametric bootstrap. Blue = population from Ilha dos Franceses; Red = population of B. jararaca from mainland portions of the state of Espírito Santo; Green = other mainland populations of B. jararaca, from the states of São Paulo, Paraná, Santa Catarina, and Rio Grande do Sul.
FIGURE 6 in Another new and threatened species of lancehead genus Bothrops (Serpentes, Viperidae) from Ilha dos Franceses, Southeastern Brazil
FIGURE 6. Coastal region of the state of Espírito Santo (above), with the Ilha dos Franceses (below), the type locality of Bothrops sazimai. Legend of states: Bahia (BA); Espírito Santo (ES), Minas Gerais (MG), and Rio de Janeiro (RJ).
FIGURE 4 in Another new and threatened species of lancehead genus Bothrops (Serpentes, Viperidae) from Ilha dos Franceses, Southeastern Brazil
FIGURE 4. Active specimens of Bothrops sazimai at night in different macrohabitats on the island. Over fallen trunks and twigs (A); coiled over trees (B) (MZUSP 22230); two individuals close to one another and moving on the ground (C); on the rocks near the sea (D); coiled on the ground (MZUSP 22232) (E). Photographs by R. Sawaya (A, E), R. Zorzal (B), F. Barbo (C), and T. Portillo (D).
FIGURE 3 in Another new and threatened species of lancehead genus Bothrops (Serpentes, Viperidae) from Ilha dos Franceses, Southeastern Brazil
FIGURE 3. Dorsal (above) and ventral (below) views of the holotype of Bothrops sazimai (MZUSP 22228). Scale bar = 20 mm.
FIGURE 2 in Another new and threatened species of lancehead genus Bothrops (Serpentes, Viperidae) from Ilha dos Franceses, Southeastern Brazil
FIGURE 2. Dorsal (A), lateral (B), and ventral (C) views of head of the holotype of Bothrops sazimai (MZUSP 22228). Scale bar = 10 mm.
FIGURE 7 in Another new and threatened species of lancehead genus Bothrops (Serpentes, Viperidae) from Ilha dos Franceses, Southeastern Brazil
FIGURE 7. Aerial view of Ilha dos Franceses (A); forest remnants in the light-house area (B); vegetation on rocks of the tide zone (C); dense vegetation predominant in island (D); view of Ilha dos Franceses from Itaoca Beach (E). Photographs by Google Earth Pro (A), F. Barbo (B, C, D), and R. Sawaya (E).
FIGURE 3. A–C,F,H–L,O–P Stevekenia nothocestri, D–E,G,M–N,Q Stevekenia aiea. A in A new endemic psyllid genus, Stevekenia gen. nov. (Hemiptera: Psylloidea, Triozidae), from the Hawaiian Islands with two new and rare species on threatened host plants in the endemic genus Nothocestrum (Solanaceae)
FIGURE 3. A–C,F,H–L,O–P Stevekenia nothocestri, D–E,G,M–N,Q Stevekenia aiea. A—male terminalia; B—sperm pump with comparative size of paramere; C—aedeagus; D—male terminalia; E—aedeagus; F,G—paramere (external surface); H—female terminalia; I—female subgenital plate (ventral view); J—female proctiger (dorsal view); K detail of dorsum of female proctiger indicating position of raised pores flanking anal ring; L female abdomen (with eggs) indicating long setae on sternites; M—female terminalia (with egg) indicating position of raised pore flanking anal ring, inset illustration of anal ring shape and circumanal pores; N—ovipositor; O–Q—eggs indicating pedicel, tail, plug-like structure, and surface cellular outgrowths (illustrated).
FIGURE 2. A–H, N, P–Q Stevekenia nothocestri, I–M,O,R Stevekenia aiea. A in A new endemic psyllid genus, Stevekenia gen. nov. (Hemiptera: Psylloidea, Triozidae), from the Hawaiian Islands with two new and rare species on threatened host plants in the endemic genus Nothocestrum (Solanaceae)
FIGURE 2. A–H, N, P–Q Stevekenia nothocestri, I–M,O,R Stevekenia aiea. A—head (dorsal view above, ventral view below) indicating position of posterior eye rim extensions (outlined), lateral ocelli, and anterior vertex extensions (in dorsal view) and position of medial ocellus below vertex extensions (in ventral view); B—head (dorso-anterior view) indicating short vertex with anterior vertex extensions; C—head (ventro-anterior view); D—head (lateral view) indicating position of posterior eye rim extension; E—single disk rhinarium on antennal segment 6 (illustration inset); F—multiple disk rhinaria on antennal segment 4; G—head and antenna; H—proboscis; I—head (dorsal view above, ventral view below) indicating position of posterior eye rim extensions, lateral ocelli, and anterior vertex extensions (in dorsal view) and position of medial ocellus below vertex extensions (in ventral view); J—detail of diverging anterior vertex extensions; K—head and antenna; L—proboscis; M,N—hind leg; O,P—genual spine at base of hind tibia; Q—apical tibial spurs and tarsi; R—detail of pair of apical tibial spurs not conjoined basally; S—detail of hind tarsal claws and arolium.
FIGURE 1. A–G Stevekenia nothocestri, H–L Stevekenia aiea. A in A new endemic psyllid genus, Stevekenia gen. nov. (Hemiptera: Psylloidea, Triozidae), from the Hawaiian Islands with two new and rare species on threatened host plants in the endemic genus Nothocestrum (Solanaceae)
FIGURE 1. A–G Stevekenia nothocestri, H–L Stevekenia aiea. A—fore wing; B—hind wing; C—detail of fore wing cell m2 indicating position of two clusters of marginal radular spines, inset illustrates disbursed distribution of spines; D—detail of long setae on fore wing ventral margin and veins; E—dorsum of thorax; F—female habitus (cluster of eggs in abdomen); Ghead and thorax; H—fore wing (male); I—fore wing (female); J—hind wing (female); K—detail of fore wing cells m1 and m2 indicating position of single clusters of marginal radular spines towards posterior in each cell, inset illustrates narrow distribution of spines; L—detail of long setae on fore wing ventral margin and veins.
FIGURES 1–13 in Threatened butterflies: a new subspecies of Neptis manasa Moore, 1858 from Hainan Island (Lepidoptera, Nymphalidae)
FIGURES 1–13. Butterflies of Neptis manasa. 1, Neptis manasa manasa Moore, type (N. India), dorsal; 2, ibidem, ventral; 3, ibidem, labels; 4, N. m. narcissina Oberthür, type (Lou-tse-Kiang), dorsal; 5, ibidem, ventral; 6, ibidem, labels; 7, N. m. antigone Leech, type (Ichang), dorsal; 8, ibidem, ventral; 9, ibidem, labels © Natural History Museum; 10, N. m. hainana subsp. nov., holotype ♂ (Hainan Island), dorsal; 11, ibidem, ventral; 12, N. m. hainana subsp. nov., paratype ♀ (Hainan Island), dorsal; 13, ibidem, ventral. Scale bar = 10 mm.
Fig. 2 in The Impact of Upgrading Roads on the Conservation of the Threatened Flightless Dung Beetle,Circellum bacchus(F.) (Coleoptera: Scarabaeidae)
Fig. 2. Map of the Addo Elephant National Park study site and the mortality transect routes (darkest lines). The Hapoor Road is tar and the Hapoor – Rooidam Track is gravel. Areas of thicket vegetation are dotted.
Humans drive spatial variation in mortality risk for a threatened wolf population in a Canis hybrid zone
<ol> <li>Large carnivores often exhibit high survival rates in protected areas, whereas intentional and unintentional human-caused mortality may be greater in adjacent areas. These patterns can result in source-sink dynamics and limit population expansion beyond protected areas.</li> <li>We used telemetry data from 438 canids in 141 packs collected from 2002–2020 to evaluate mortality risk for wolves, coyotes, and admixed canids in a 3-species hybrid zone in and adjacent to a large protected area in Ontario, Canada. The hybrid zone is occupied by most of the remaining eastern wolves (<em>Canis lycaon</em>), a rare, threatened species that hybridizes with sympatric eastern coyotes (<em>C. latrans</em>) and Great Lakes gray wolves (<em>C. lupus</em>).</li> <li>Within Algonquin Provincial Park (APP), annual human-caused mortality from harvest and vehicles was low (0.06, 95% CI [0.03, 0.08]), whereas annual human-caused mortality was higher in adjacent areas (0.31, 95% CI [0.25, 0.37]). Smaller protected areas implemented to help protect eastern wolves did not significantly reduce mortality. Eastern wolves survived poorly relative to other canids and dispersing canids survived poorly relative to residents. Mortality risk was greater when canids were closer to roads. Mortality risk was also increased or reduced by the strength of individual-level selection or avoidance of roads relative to their availability, respectively.</li> <li>Our results provide a comprehensive evaluation of factors influencing spatial variation in mortality risk for canids to inform eastern wolf recovery efforts. Additionally, we developed a novel modeling approach for investigating the influence of resource selection on mortality risk, which highlighted that individual-level responses to risk can strongly influence population-level mortality patterns.</li> <li> <em>Synthesis and applications</em>. Despite being listed as 'threatened' under the Ontario Endangered Species Act, eastern wolves are still legally trapped and shot outside protected areas in central Ontario. Eastern wolves and dispersing canids survive poorly outside of APP, primarily from human-caused mortality. These results, along with the apparent inadequacy of the smaller protected areas, suggest that expanding the threatened eastern wolf population outside APP is unlikely under current management conditions. Protecting eastern wolves from human-caused mortality is complicated as it would require a harvest ban for all canids, including coyotes.</li> </ol>
Figure 5 in Green, charismatic, microendemic, and threatened: breeding biology of the leaf frog Pithecopus rusticus (Anura: Hylidae: Phyllomedusinae)
Figure 5. Relative frequency of the observations of calling males of Pithecopus rusticus regarding the air temperature from September 2015 to February 2016, in the municipality of Água Doce, Santa Catarina State, southern Brazil.
Figure 4 in Green, charismatic, microendemic, and threatened: breeding biology of the leaf frog Pithecopus rusticus (Anura: Hylidae: Phyllomedusinae)
Figure 4. Absolute abundance of Pithecopus rusticus recorded in two ponds and one marsh from September 2015 to February 2016, in the municipality of Água Doce, Santa Catarina State, southern Brazil.
Figure 3 in Green, charismatic, microendemic, and threatened: breeding biology of the leaf frog Pithecopus rusticus (Anura: Hylidae: Phyllomedusinae)
Figure 3. Rose diagram representing the circannual distribution of Pithecopus rusticus abundance recorded in two ponds and one marsh in the breeding seasons of 2015/16 (A) and 2017/18 (B), in the municipality of Água Doce, Santa Catarina State, southern Brazil. The angles represent the months (1 month = 30°), the mean angle and the circular standard deviation are shown in red, and the frequency of occurrence at each angle is represented in grey. Illustrative images of calling male, ovulating females and spawning are include in the diagram.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.