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Text-fig. 4. Hindlimb bones of Panthera fossilis (REICHENAU, 1906) from Za Hájovnou Cave (Moravia, the Czech Republic), Middle Pleistocene. a – left patella (Narozeninová chodba, layer 5,> MIS 9), anterior view; b – fragment of left fibula (Narozeninová chodba, layer 5,> MIS 9), anterior view; c – right calcaneus (Narozeninová chodba, layer 5,> MIS 9), dorsal view; d – right astragalus (Chodba naděje, layer 4, ≤ MIS 9), distal end view; e – left Mt IV (Narozeninová chodba, layer 5,> MIS 9), medial view; f – proximal phalanx of the first digit (Narozeninová chodba, layer 5,> MIS 9), dorsal view; g – proximal phalanx with gnaw marks (Narozeninová chodba, layer 5,> MIS 9), plantar view. in Panthera Fossilis (Reichenau, 1906) (Felidae, Carnivora) From Za Hájovnou Cave (Moravia, The Czech Republic): A Fossil Record From 1987-2007
Text-fig. 4. Hindlimb bones of Panthera fossilis (REICHENAU, 1906) from Za Hájovnou Cave (Moravia, the Czech Republic), Middle Pleistocene. a – left patella (Narozeninová chodba, layer 5,> MIS 9), anterior view; b – fragment of left fibula (Narozeninová chodba, layer 5,> MIS 9), anterior view; c – right calcaneus (Narozeninová chodba, layer 5,> MIS 9), dorsal view; d – right astragalus (Chodba naděje, layer 4, ≤ MIS 9), distal end view; e – left Mt IV (Narozeninová chodba, layer 5,> MIS 9), medial view; f – proximal phalanx of the first digit (Narozeninová chodba, layer 5,> MIS 9), dorsal view; g – proximal phalanx with gnaw marks (Narozeninová chodba, layer 5,> MIS 9), plantar view.
Figure 3 in Rediscovery of pearly tree frog, Nyctixalus margaritifer Boulenger, 1882 (Amphibia: Rhacophoridae) from Mt. Wilis after 135 years
Figure 3. Discovery site of Nictyxalus margaritifer (a). The only one individual is attached on the ventral side of the coffee leaf. (b). A collapsed coffee tree as its microhabitat (Photographer: Richo Firmansyah).
Figure 2 in Rediscovery of pearly tree frog, Nyctixalus margaritifer Boulenger, 1882 (Amphibia: Rhacophoridae) from Mt. Wilis after 135 years
Figure 2. Habitat topography of Gunung Sigogor Nature Reserve. (a). High lands consist of hills and slopes. (b). A streamline flowing at the edge and inside the conservation area (Photographer: Richo Firmansyah).
Figure 1 in Rediscovery of pearly tree frog, Nyctixalus margaritifer Boulenger, 1882 (Amphibia: Rhacophoridae) from Mt. Wilis after 135 years
Figure 1. Sampling and discovery site (white circle) on Gunung Sigogor Nature Reserve, Ponorogo, East Java.
Figure 5 in Rediscovery of pearly tree frog, Nyctixalus margaritifer Boulenger, 1882 (Amphibia: Rhacophoridae) from Mt. Wilis after 135 years
Figure 5. Morphology views on dorsal, ventral, left finger, left toe, and lateral body of Nyctixalus margaritifer (Photographed by Ahmad Muammar Kadafi, designed by Bagus Priambodo).
Figure 4 in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 4. Association Pseudofumarietum leiospermae on western slopes of Bjelašnica Mt. (Photo: D. Kulijer).
Figure 3 in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 3. Cluster dendrogram of columns (associations) in the synoptic table. A. Drypidi—Silenetum; B. Drypido spinosae—Seslerietum wettsteinii; C. Drypidi—Heracleetum orsinii; D. Drypetum linneanae; E. Pseudofumarietum leiospermae; F. Pseudofumarietum leiospermae helictochloetosum; G. Dryopteridetum villarii; H. Festuco xanthinae—Valerianetum montanae; I. Cerastietum dinaricae.
Figure 1. A in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 1. A. Position of Bjelašnica Mt. in B&H (W. Balkan); B. Northern slopes of Bjelašnica Mt. with Observatory peak (2067 m) in the background; C. Treeline on western slopes of Bjelašnica Mt. (1800 m) (Photos: D. Kulijer)
Figure 2 in Vegetation of alpine screes on Bjelašnica Mt. - syntaxonomy and ecology
Figure 2. Cluster dendrogram of the raw data matrix (species x plot). A. Drypidi—Silenetum; B. Drypido spinosae— Seslerietum wettsteinii; C. Drypidi—Heracleetum orsinii; D. Drypetum linneanae; E. Pseudofumarietum leiospermae; F. Pseudofumarietum leiospermae helictochloetosum; G. Dryopteridetum villarii; H. Festuco xanthinae—Valerianetum montanae; I. Cerastietum dinaricae.
Fig. 1 in Prevalence of avian haemosporidians among understorey birds of Mt. Banahaw de Lucban, Philippines.
Fig. 1 Avian haemosporidian prevalence according to altitude. P=Plasmodium, L=Leucocytozoon, H=Haemoproteus.
Fig. 7 in Rediscovery of Ixodes confusus in Australia with the first description of the male from Australia, a redescription of the female and the mitochondrial (mt) genomes of five species of Ixodes
Fig. 7. Maximum likelihood (ML) phylogenetic tree from entire mt genomes (15,254 bp alignment). Tip-labels indicate NCBI accession numbers. Numbers above branches show Maximum Likelihood bootstrap support whereas numbers below branches show the Bayesian Posterior Probability support. Ixodes pavlovskyi Pomerantzev, 1946, one of the species of "other Ixodes" clade (sensu Barker et al., 2021), for which an entire mitochondrial (mt) genome was available in GenBank, was set as the outgroup. The scale bar indicates 0.07 nucleotide substitutions per nucleotide site for the 15,254 nucleotide sites in our alignment of theses entire mt genomes. So, for example, there were about 1067 nucleotide substitutions along the branch that leads to I. (Ceratixodes) uriae plus I. (Sternalixodes) holocyclus plus I. (Exopalpiger) fecialis, which is marked with an asterisk (i.e. 0.07 nucleotide substitutions per nucleotide site x 15,254 nucleotide sites (bps) = 1067 nucleotide substitutions). Ticks in bold were sequenced in the present study.
Fig. 6 in Rediscovery of Ixodes confusus in Australia with the first description of the male from Australia, a redescription of the female and the mitochondrial (mt) genomes of five species of Ixodes
Fig. 6. The mitochondrial genomes of Ixodes (Sternalixodes) confusus, I. (St.) myrmecobii, I. (St.) cornuatus, I. (St.) hirsti and I. (St.) trichosuri. Protein-coding genes are shown in green, tRNAs are in yellow, rRNAs are in red whereas the two control regions are in blue. Protein-coding genes are labelled by their fourcharacter abbreviations, tRNAs are labelled by their one-letter amino acid abbreviations whereas the two control regions are labelled as CR1 and CR2. Variation in the size of mitochondrial genome is indicated in parenthesis. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 5 in Rediscovery of Ixodes confusus in Australia with the first description of the male from Australia, a redescription of the female and the mitochondrial (mt) genomes of five species of Ixodes
Fig. 5. Ixodes confusus Roberts (1960), scanning electron micrographs of female. A, Idiosoma, dorsal view; B, Idiosoma showing posterior portion of scutum and alloscutum; C, Idiosoma, ventral view; D, Spiracular plate; E, Gnathosoma, dorsal view; F, Porose areas; G, Gnathosoma, ventral view; H, Coxae. Specimens: A-H, B5510 Etty Bay, Qld. Scale-bars: A, C, 1 mm; B, E, G, H, 0.5 mm; D, F, 0.2 mm.
Fig. 3 in Rediscovery of Ixodes confusus in Australia with the first description of the male from Australia, a redescription of the female and the mitochondrial (mt) genomes of five species of Ixodes
Fig. 3. Holotype (male) of Ixodes confusus Roberts (1960) from Sogeri, Papua New Guinea (QM QM-G2456), horizontal scale bar 1 mm, vertical scale bar 2.7 mm.
Fig. 4 in Rediscovery of Ixodes confusus in Australia with the first description of the male from Australia, a redescription of the female and the mitochondrial (mt) genomes of five species of Ixodes
Fig. 4. Ixodes confusus Roberts (1960), scanning electron micrographs of male. A, Idiosoma, dorsal view; B, Idiosoma, ventral view; C, Anal plate; D, Spiracular plate; E, Gnathosoma, dorsal view; F, Gnathosoma, anteroventral view; G, Coxae. Specimens: A, B6697 Mt Molloy, Qld; B, C, D, F, G B5511 Etty Bay; E, B5537 Cardwell. Scale-bars: A, B, 1 mm; C, D, 0.4 mm; E, F, 0.2 mm; G, 0.5 mm.
Fig. 2 in Rediscovery of Ixodes confusus in Australia with the first description of the male from Australia, a redescription of the female and the mitochondrial (mt) genomes of five species of Ixodes
Fig. 2. Paratype (female) of Ixodes confusus Roberts (1960) from Etty Bay, Queensland Australia (ANIC 48–001875), horizontal scale bar 1 mm, vertical scale bar 3.3 mm.
Fig. 1 in Rediscovery of Ixodes confusus in Australia with the first description of the male from Australia, a redescription of the female and the mitochondrial (mt) genomes of five species of Ixodes
Fig. 1. The five known localities in Queensland (Qld) Australia of Ixodes confusus Roberts (1960), indicated by white-with-red dots. Note that there were two sites at Etty Bay: (i) near Etty Bay Caravan Park; and (ii) Etty Bay, in the vicinity of 195 Mourilyan Harbour Rd, Etty Bay. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Linked collectors and determiners for: A mountain of millipedes II: The genus Aquattuor Frederiksen, 2013 - five new species from the Udzungwa Mountains and one from Mt. Kilimanjaro, Tanzania (Diplopoda, Spirostreptida, Odontopygidae).
Natural history specimen data linked to collectors and determiners held within, "A mountain of millipedes II: The genus Aquattuor Frederiksen, 2013 - five new species from the Udzungwa Mountains and one from Mt. Kilimanjaro, Tanzania (Diplopoda, Spirostreptida, Odontopygidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/f492ad9b-a83d-4d8e-bdf9-20ef759b75c1">https://bionomia.net/dataset/f492ad9b-a83d-4d8e-bdf9-20ef759b75c1</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/f492ad9b-a83d-4d8e-bdf9-20ef759b75c1">https://gbif.org/dataset/f492ad9b-a83d-4d8e-bdf9-20ef759b75c1</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Marie-Victorin Herbarium (MT) - Bryophytes.
Natural history specimen data linked to collectors and determiners held within, "Marie-Victorin Herbarium (MT) - Bryophytes". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/f318309f-f9db-453d-9b93-39acd4a67227">https://bionomia.net/dataset/f318309f-f9db-453d-9b93-39acd4a67227</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/f318309f-f9db-453d-9b93-39acd4a67227">https://gbif.org/dataset/f318309f-f9db-453d-9b93-39acd4a67227</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: A new species of rock-dwelling gecko (Gekkonidae: Gehyra) from the Mt Surprise region of northern Queensland, Australia.
Natural history specimen data linked to collectors and determiners held within, "A new species of rock-dwelling gecko (Gekkonidae: Gehyra) from the Mt Surprise region of northern Queensland, Australia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/ba055cef-f55e-47dd-b1c9-00db492149ca">https://bionomia.net/dataset/ba055cef-f55e-47dd-b1c9-00db492149ca</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/ba055cef-f55e-47dd-b1c9-00db492149ca">https://gbif.org/dataset/ba055cef-f55e-47dd-b1c9-00db492149ca</a>. Formatted as a Frictionless Data package.
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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.