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Fig. 3 in How many taxa? Spatiotemporal evolution and taxonomy of Amphoricarpos (Asteraceae, Carduoideae) on the Balkan Peninsula
Fig. 3 Relationships of Amphoricarpos from the Balkan Peninsula inferred from phylogenetic analyses of plastid rps16–trnK sequences. a, Bayesian consensus phylogram; numbers above branches are bootstrap values>50 %, those below branches PP values>0.50. b, Statistical parsimony network. Small black dots represent unsampled haplotypes, numbers are population identifiers as in Fig. 1 and Table 1
Fig. 1 in Allopolyploid origin of the Balkan endemic Ranunculus wettsteinii (Ranunculaceae) inferred from nuclear and plastid DNA sequences
Fig. 1 Phylogenetic tree for Ranunculus species based on internal transcribed spacer (ITS) sequences. a Consensus tree inferred from the six most parsimonious trees (CI=0.72; RI=0.93). Numbers above branches show bootstrap values (3,000 replicates). b Majority-rule consensus of
Fig. 8 in Evolutionary body shape diversification of the endemic Cyprinoidei fishes from the Balkan's Dinaric karst
Fig. 8 Mapping BI phylogeny onto a plot of the first two principal components of A the covariance matrix among species means (uncorrected shape data) and B the covariance matrix of residuals from the regression of independent contrast of shape to independent contrasts of CS (size-corrected shape data). Deformation grids represent body shape changes from the reconstructed ancestral body shape at the root for Aulopyge huegelii, Delminichthys ghetaldii, Phoxinellus alepidotus, Phoxinus karsticus, Phoxinus sp. 1 clade 2 sensu Palandačić et al. (2017), Squalius svallize, Telestes dabar and Telestes metohiensis. The magnitude of the variability explained by PCs axes is given in parentheses. The tips of the terminal branches indicate the location of the mean taxon shape in the morphospace. The position of the internal nodes was reconstructed by applying the criterion of squared change parsimony
Fig. 7 in Evolutionary body shape diversification of the endemic Cyprinoidei fishes from the Balkan's Dinaric karst
Fig. 7 UPGMA phenogram based on matrix of A Procrustes distances and B Mahalanobis distances of Aulopyge huegelii, Delminichthys ghetaldii, Phoxinellus alepidotus, Phoxinus karsticus, Phoxinus
Fig. 6 in Evolutionary body shape diversification of the endemic Cyprinoidei fishes from the Balkan's Dinaric karst
Fig. 6 Allometry of the body shape of eight fish species expressed as multivariate regression scores against centroid size. The deformation grids represent predicted body shape change from the smallest A to the largest B centroid size value
Fig. 2 in Evolutionary body shape diversification of the endemic Cyprinoidei fishes from the Balkan's Dinaric karst
Fig. 2 The positions of landmarks used for morphometric analysis: (1) snout tip; (2) most anterior point of the eye outline; (3) most posterior point of the eye outline; (4) posterio-ventral corner of the preopercular; (5) dorsal insertion of pectoral fin; (6) posterior most edge of operculum; (7) anterior insertion of pelvic fin; (8) anterior point of anal fin; (9) ventral origin of caudal fin; (10) posterior point of lateral line; (11) dorsal origin of caudal fin; (12) posterior inserion of dorsal fin; (13) anterior insertion of dorsal fin
FIGURES 7–11 in Description of Mesophylax isly sp. nov. (Trichoptera, Limnephilidae) from Morocco, and new genus records from the Balkans
FIGURES 7–11. Photos of genitalia of Mesophylax aspersus aspersus Rambur 1842, Mesophylax impunctatus aduncus Navás 1923 and Mesophylax isly sp. nov. 7, M. a. aspersus from Guenfouda, Morocco, male, left lateral; 8, M. i. aduncus from Ballgjaj, Albania, male, left lateral; 9, M. isly sp. nov., male, left lateral; 10, M. isly sp. nov., female, left lateral; 11, Parameres (paired) and aedeagus of M. isly sp. nov., left lateral. Scale bar = 1 mm.
FIGURE 1 in Description of Mesophylax isly sp. nov. (Trichoptera, Limnephilidae) from Morocco, and new genus records from the Balkans
FIGURE 1. Location of the Northeastern region in Morocco with type locality and habitat of Mesophylax isly sp. nov.
FIGURES 2–6 in Description of Mesophylax isly sp. nov. (Trichoptera, Limnephilidae) from Morocco, and new genus records from the Balkans
FIGURES 2–6. Male and female genitalia of Mesophylax isly sp. nov. 2–4, male genitalia: 2, left lateral; 3, ventrocaudal; 4, dorsal; 5, 6, female genitalia: 5, left lateral; 6, ventral. Scale bar = 1 mm. ae = aedeagus; af = axillary fossa (paired); ia = intermediate appendage (paired); ifa = inferior appendage (paired); il-ifa = inner lobe of an inferior appendage; ll = lateral lobe (paired) of vulvar scale; lsh = lateral shoulder of segment IX (paired); ml = mesal lobe of vulvar scale; pa = paramere (paired); sa = superior appendage (paired); sIX = segment IX; sp = supragenital plate; sVIII = segment VIII; sX = segment X; vs = vulvar scale.
FIGURE 5 in Morphological variation of Jovibarba heuffelii (Crassulaceae) in the central Balkan Peninsula-The impact of geological, orographical and bioclimatic factors on the differentiation of populations
FIGURE 5. Cluster analysis of 11 populations of J. heuffelii from open grassland communities based on (A) 34 morphological characters, and (B) 19 bioclimatic parameters (C1 and C2 climate type, for details see Table 5.). The asterisk indicates the position of the morphologically most specific populations on both cluster diagrams, while the triangle indicates the position of the bioclimatically most specific populations on both cluster diagrams.
FIGURE 2 in Morphological variation of Jovibarba heuffelii (Crassulaceae) in the central Balkan Peninsula-The impact of geological, orographical and bioclimatic factors on the differentiation of populations
FIGURE 2. Results of the principal component analysis (PCA) for 34 quantitative morphological characters.
FIGURE 3 in Morphological variation of Jovibarba heuffelii (Crassulaceae) in the central Balkan Peninsula-The impact of geological, orographical and bioclimatic factors on the differentiation of populations
FIGURE 3. Results of the canonical discriminant analysis (CDA) based on 34 quantitative morphological characters of 299 individuals of J. heuffelii analyzed: (A) Canonical scores for each individual on the first and second DA axis; (B) Cluster analysis (UPGMA) for populations of J. heuffelii based on Mahalanobis distances. Full triangle, 8-SR: Radan; full square, 2-SR: Gradac; full circle, 5-SR: Nebeske stolice; full rhombus, 3-SR: Suvaja; gray triangle, 4-SR: Studenica; gray square, 6- SR: Treska; black-white circle, 11-SR: Stara planina; gray rhombus, 13-MA: Treskavec; empty triangle, 14-MA: Mavrovo; empty square, 12-BU: Trojanski prolaz; empty rhombus, 7-SR: Basarski kamik; plus, 9-SR: Pljačkovica; star, 10-SR: Besna Kobila; empty circle, 1-RO: Domogled.
FIGURE 4 in Morphological variation of Jovibarba heuffelii (Crassulaceae) in the central Balkan Peninsula-The impact of geological, orographical and bioclimatic factors on the differentiation of populations
FIGURE 4. Results of multiple correspondence analysis (MCA) of qualitative characters based on Mahalanobis distance between the populations of J. heuffelii analyzed.
FIGURE 1 in Morphological variation of Jovibarba heuffelii (Crassulaceae) in the central Balkan Peninsula-The impact of geological, orographical and bioclimatic factors on the differentiation of populations
FIGURE 1. Distribution of the population of J. heuffelii in Serbia, Macedonia, Bulgaria and Romania studied here. (see Table 1 for details.).
FIGURE 6 in Morphological variation of Jovibarba heuffelii (Crassulaceae) in the central Balkan Peninsula-The impact of geological, orographical and bioclimatic factors on the differentiation of populations
FIGURE 6. Results of canonical discriminant analysis (CDA) based on 34 quantitative morphological characters where the type of substrate was used as a categorical variable.
FIGURE 6 in Allium urusakiorum (Amaryllidaceae), a new member of the Balkan clade of the section Oreiprason from European Turkey
FIGURE 6. Allium urusakiorum: fruiting umbel (A), flowering umbel (B), bulb-like bases of stems (C).
FIGURE 2 in Allium urusakiorum (Amaryllidaceae), a new member of the Balkan clade of the section Oreiprason from European Turkey
FIGURE 2. Plastid DNA Bayesian consensus tree of the European species of Allium sect. Oreiprason from trnL–trnF and rpl32–trnL (UAG). Numbers by nodes represent bootstrap support (100 replicates) and Bayesian probabilities. Bayesian probabilities over 0.98 and bootstrap support over 95% are indicated with a black dot.
FIGURE 1 in Allium urusakiorum (Amaryllidaceae), a new member of the Balkan clade of the section Oreiprason from European Turkey
FIGURE 1. ITS Bayesian consensus tree of the European species of Allium sect. Oreiprason. Numbers by nodes represent bootstrap support (100 replicates) and Bayesian probabilities. Bayesian probabilities over 0.98 and bootstrap support over 95% are indicated with a black dot.
Assessing Digital Infrastructure in Internet Use: A Comparative Study of Southeast Asia and Balkan Region
<p>Data used for assessing digital infrastructure in internet use - comnparison of South East Asia and Balkan Region. Data on mobile cellular, fixed broadband, GDP, Key global ICT indicators. Data collected and processed as part of the ODDEA (Overcoming Digital Divide Between Europe and Southeast Asia) EU research project (<em>Project ID: HORIZON MSCA-SE 101086381). </em></p>
FIGURE 6 in Variability of leaf blade anatomical traits in the Sesleria juncifolia complex (Poaceae) on the Balkan Peninsula
FIGURE 6. Canonical Discriminant Analysis of S. juncifolia complex based on leaf blade anatomical characters. The three defined groups are three species—Sesleria interrupta, S. juncifolia and S. ujhelyii—recognized by Strgar (1981) and Kuzmanović et al. (2017) for the territory of the Balkan Peninsula where populations were sampled.
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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.