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Fig. 3 in A sylvatic lifecycle of Echinococcus equinus in the Etosha National Park, Namibia
Fig. 3. Phylogenetic tree of the genus Echinococcus obtained by maximum likelihood analysis. Phylogram inferred from the concatenated nucleotide sequences of the mitochondrial cox1 and nad1 genes. The scale bar represents the estimated number of nucleotide substitutions per nucleotide site. Nam = Namibia, Ita = Italy, Ger = Germany, UK = United Kingdom. For haplotype letters (A–F) see Table 2. For accession numbers of sequences used for species other than E. equinus see text.
Figs 1-2 in List of beetles (Coleoptera) associated with the oyster mushroom, Pleurotus ostreatus Fr., in the Onon-Balj National Park of Mongolia
Figs 1-2. Pleurotus ostreatus in the Birch Forest of Onon-Balj National Park. 1. Pleurotus ostreatus. 2. Birch Forest.
Figs. 3-6 in List of beetles (Coleoptera) associated with the oyster mushroom, Pleurotus ostreatus Fr., in the Onon-Balj National Park of Mongolia
Figs. 3-6. Fungivorous beetles associated with Pleurotus ostreatus in the Birch Forest of Onon-Balj National Park. 3. Mycetophagus antennatus, Mycetophagidae. 4. Litargus japonicus, Mycetophagidae. 5. Pseudamblyopus similis, Erotylidae. 6. Dacne bipustulata, Erotylidae.
gellum black. Femora all black or forefemur ferruginous in apicoventral half; foretibia brown or ferruginous, midtibia brown ferruginous, hindtibia brown; tarsi varying from brown to ferruginous. ♂.– Unknown. GEOGRAPHIC DISTRIBUTION.– Known only from higher elevations (1020-1130 m above sea level) of Ranomafana National Park, Madagascar. RECORDS (Fig. 29).— All specimens were collected in Ranomafana National Park, Fianarantsoa Province. Holotype: ♀, Belle Vue at Talatakely at 21º15.99'S 47º25.21'E, alt. 1020 m, 14-21 Jan 2002, M. Irwin and R. Harin 'Hala (CAS). Paratypes: Radio tower at forest edge at 21º15.05'S 47º24.43'E, alt. 1130 m, 23 Aug – 7 Sept 2006 and 1-11 Nov 2006, M. Irwin and R. Harin 'Hala (2 ♀, CAS); same data as holotype except 22-28 Nov 2001 and R. Harin 'Hala alone (1 ♀, CAS); Vohiparara at 21º13.57'S 47º22.19'E, alt. 1110 m, 22-28 Nov 2001, R. Harin 'Hala (1 ♀, CAS). FIGURE 29. Collecting localities of Tachytes melanogaster sp. nov. in A Review of the Wasp Genus Tachytes Panzer, 1806 of Madagascar (Hymenoptera: Crabronidae)
gellum black. Femora all black or forefemur ferruginous in apicoventral half; foretibia brown or ferruginous, midtibia brown ferruginous, hindtibia brown; tarsi varying from brown to ferruginous. ♂.– Unknown. GEOGRAPHIC DISTRIBUTION.– Known only from higher elevations (1020-1130 m above sea level) of Ranomafana National Park, Madagascar. RECORDS (Fig. 29).— All specimens were collected in Ranomafana National Park, Fianarantsoa Province. Holotype: ♀, Belle Vue at Talatakely at 21º15.99'S 47º25.21'E, alt. 1020 m, 14-21 Jan 2002, M. Irwin and R. Harin 'Hala (CAS). Paratypes: Radio tower at forest edge at 21º15.05'S 47º24.43'E, alt. 1130 m, 23 Aug – 7 Sept 2006 and 1-11 Nov 2006, M. Irwin and R. Harin 'Hala (2 ♀, CAS); same data as holotype except 22-28 Nov 2001 and R. Harin 'Hala alone (1 ♀, CAS); Vohiparara at 21º13.57'S 47º22.19'E, alt. 1110 m, 22-28 Nov 2001, R. Harin 'Hala (1 ♀, CAS). FIGURE 29. Collecting localities of Tachytes melanogaster sp. nov.
Fig. 8 in Macrochelid mites (Acari: Mesostigmata) associated with dung beetles in Mount Gede-Pangrango National Park, West Java, Indonesia
Fig. 8. Sternal shield of A. Macrocheles gedeensis with l.o.p. connected to l.m.t. and B. of M. persimilis which is disjunct to l.m.t.
with Hemidactylus brookii angulatus Hallowell, 1852. The species was recently recorded from Quiçama National Park in Luanda Province (M. Marques, L. Ceríaco, A. Bauer and D. Blackburn pers. obs. 2015, 2016). MAP 130. Distribution of Hemidactylus bayonii in Angola. in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
with Hemidactylus brookii angulatus Hallowell, 1852. The species was recently recorded from Quiçama National Park in Luanda Province (M. Marques, L. Ceríaco, A. Bauer and D. Blackburn pers. obs. 2015, 2016). MAP 130. Distribution of Hemidactylus bayonii in Angola.
Fig. 7 in Five new species of the Drosophila tripunctata group (Diptera: Drosophilidae) from Podocarpus National Park, Ecuador
Fig. 7. Drosophila ayauma sp. nov. Holotype, ♂ (QCAZ-I 3336). A. Abdomen. B. Epandrium, cerci, surstylus, decasternum. C. Hypandrium, gonopods and paraphyses in ventral view. D–F. Aedeagus in ventral, lateral and dorsal view, respectively.
Fig. 6 in Five new species of the Drosophila tripunctata group (Diptera: Drosophilidae) from Podocarpus National Park, Ecuador
Fig. 6. Drosophila saraguru sp. nov. Holotype, ♂ (QCAZ-I 3358). A. Abdomen. B. Epandrium, cerci, surstylus, decasternum. C. Hypandrium, gonopods and paraphyses in ventral view. D–F. Aedeagus in ventral, lateral and dorsal view, respectively.
Fig. 5 in Five new species of the Drosophila tripunctata group (Diptera: Drosophilidae) from Podocarpus National Park, Ecuador
Fig. 5. Drosophila chichu sp. nov. Holotype, ♂ (QCAZ-I 3356). A. Abdomen. B. Epandrium, cerci, surstylus, decasternum. C. Hypandrium, gonopods and paraphyses in ventral view. D–F. Aedeagus in ventral, lateral and dorsal view, respectively.
Fig. 4 in Five new species of the Drosophila tripunctata group (Diptera: Drosophilidae) from Podocarpus National Park, Ecuador
Fig. 4. Drosophila kurillakta sp. nov. Holotype, ♂ (QCAZ-I 3355). A. Epandrium, cerci, surstylus, decasternum. B. Hypandrium, gonopods and paraphyses in ventral view. C–E. Aedeagus in ventral, lateral and dorsal view, respectively.
Fig. 3 in Five new species of the Drosophila tripunctata group (Diptera: Drosophilidae) from Podocarpus National Park, Ecuador
Fig. 3. Drosophila warmi sp. nov. A–C. Allotype, ♂ (QCAZ-I 3345), aedeagus in ventro-lateral to lateral view, respectively; arrows show the two lateral sclerotized projections. D. Holotype, ♀ (QCAZ-I 3344), spermatheca; arrow shows the centrodistal spines. E. Paratype, ♀ (QCAZ-I 33XX), spermatheca; arrow shows the centrodistal spines.
Fig. 2 in Five new species of the Drosophila tripunctata group (Diptera: Drosophilidae) from Podocarpus National Park, Ecuador
Fig. 2. Drosophila warmi sp. nov. Allotype, ♂ (QCAZ-I 3345). A. Abdomen, dorsal view. B. Epandrium, cerci, surstylus, decasternum. C. Hypandrium, gonopods and paraphyses in ventral view. D–F. Aedeagus in ventral, lateral and dorsal view, respectively.
Fig. 1 in Five new species of the Drosophila tripunctata group (Diptera: Drosophilidae) from Podocarpus National Park, Ecuador
Fig. 1. Drosophila warmi sp. nov. Holotype, ♀ (QCAZ-I 3344). A. Abdomen and wing, dorsal view. B. Ovipositor. C. Spermatheca.
Yearly Estimation of Ecological Functional Attributes of vegetation from 2005-2010 over the Peneda Geres National Park
<p>Yearly Estimation of Ecological Functional Attributes of vegetation using MSAVI index based on Landsat data from 2005-2010 over the Peneda Geres National Park</p>
Fig. 4 in The Trichoptera diversity of Nyungwe National Park, Rwanda, with description of a new species in the family Pisuliidae
Fig. 4. Silvatares laetae Ngirinshuti & Johanson sp. nov., ♂, holotype. A. Right forewing. B. Right hind wing. C. Right forewing, underside, showing long golden hairs. Scale bar = 1 mm.
Spatial partial identity model for spatial capture-recapture analysis of large carnivores in Kasungu National Park, Malawi
<p>Overview:</p> <p>Decline in global carnivore populations has led to increased demand for assessment of carnivore densities in understudied habitats. Spatial capture-recapture is used increasingly to estimate species densities, where individuals are often identified from their unique pelage patterns. However, uncertainty in bilateral individual identification can lead to the omission of capture data and reduce the precision of results. The recent development of the two-flank spatial partial identity model (SPIM), offers a cost-effective approach which can reduce uncertainty in individual identity assignment and provide robust density estimates. We conducted camera trap surveys annually between 2016 and 2018 in Kasungu National Park, Malawi, a primary miombo woodland and a habitat lacking baseline data on carnivore densities. We used SPIM to estimate density for leopard (<em>Panthera pardus</em>) and spotted hyaena (<em>Crocuta crocuta</em>), and report on the status of other large carnivores.</p> <p>Usage notes:</p> <p>These data are to estimate density for leopard and spotted hyaena in KNP, Malawi. They are provided as an example for using the spatial partial identity model for spatial capture-recapture analysis in populations where individuals are partially identified.</p> <p>Methods:</p> <p>Individual leopards and spotted hyaena were identified from photographs using their unique pelage patterns (Henschel & Ray, 2003). A database was maintained of identified individuals, with partial (single flank) or complete (two flank) identities, to build capture histories for SCR analysis. We identified individuals from left flank captures for both species, due to higher numbers of identified left flank individuals recorded during preliminary surveys. Complete identities were added where flanks were certain to come from the same individual (from baited stations outside of survey time, live captures, dual camera trap stations and multiple passes of a single camera trap). Leopards were sexed by visual determination of external genitalia, presence of the dewlap, frontal bossing and overall body size (Henschel & Ray, 2003; Devens <em>et al</em>. 2018). Sexing was not possible for spotted hyaena due to difficulties in determining sex from external genitalia and body size. Capture histories were developed for spatial captures and trap effort, with each day (24 hours) treated as a separate sampling occasion (Goldberg <em>et al</em>. 2015). Trap effort was measured through a binary matrix of active-inactive days, to improve estimates of detection probability, and included the spatial location of each camera location.</p> <p>Density was modelled using the package <em>SPIM </em>(Augustine, 2018) in R v.3.5.2<em> </em>(R Development Core Team, 2018) to resolve the complete identity of individuals from single-flank samples probabilistically (see Augustine <em>et al</em>. 2018 for complete description of spatial partial identity model), and a Bernoulli observation model fitted, whereby an individual may be captured in each trap only once during each sampling occasion (Royle <em>et al</em>. 2013; Augustine <em>et al</em>. 2018). For Markov Chain Monte Carlo simulations, a single chain of 50,000 iterations per single session analysis was undertaken, with a burn-in of 500 iterations and data augmentation of 100-130 individuals for leopard and 125-250 for spotted hyaena. Analysis was conducted with an increasing buffer width from 10,000 to 25,000 metres (leopard) and 10,000 to 40,000 metres (spotted hyaena), using 5,000 metre increments, until density estimates stabilised (Chase-Grey <em>et al</em>. 2013; Devens <em>et al</em>. 2018).</p>
Cairngorm National Park snow cover duration 1960 - 2080
<p>Created for work commissioned by the Cairngorms National Park through ClimateXChange</p> <p>Contains Ordnance Survey data © Crown copyright and database right 2019.</p> <p>Contains Met Office UKCP09 and UKCP18 data licensed under the Open Government Licence v3.0.</p> <p>Downscaling and Correction copyright 2019 The James Hutton Institute.</p>
Figure 2 in A new species of Americabaetis (Ephemeroptera: Baetidae) from Itatiaia National Park, Brazil
Figure 2. Americabaetis itatiaia sp. nov., mouth parts of the holotype: (A) labrum, left ventral view, right dorsal view; (B) left mandible, ventral view; (C) right mandible, dorsal view; (D) hypopharynx, dorsal view; (E) maxilla, dorsal view; (F) labium, left dorsal view, right ventral view.
Figure 6 in A new species of Americabaetis (Ephemeroptera: Baetidae) from Itatiaia National Park, Brazil
Figure 6. General aspect of new species habitat: (A) Campo Belo spring, type locality; (B) Pedra do Camelo stream.
Figure 3 in A new species of Americabaetis (Ephemeroptera: Baetidae) from Itatiaia National Park, Brazil
Figure 3. Americabaetis itatiaia sp. nov., other structures of the holotype (A-D) and winged stages (E): (A) fore leg; (B) posterior margin of abdominal terga IV; (C) gill IV with margin detail; (D) paraproct; (E) fore wing, black line highlighting the bullae trajectory.
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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.