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FIGURE 15. Francapseudes uniarticulatus. Female DBUA0002012.01a. A, cheliped. B, pereopod 1. C, pereopod 2. D, pereopod 3. E, pereopod 4. F, pereopod 5. G in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 15. Francapseudes uniarticulatus. Female DBUA0002012.01a. A, cheliped. B, pereopod 1. C, pereopod 2. D, pereopod 3. E, pereopod 4. F, pereopod 5. G, pleopod.
FIGURE 14. Francapseudes uniarticulatus. Female DBUA0002012.01a. A, right mandible. B, left mandible. C, maxillule outer endite. D, maxillule inner endite. E, maxillule palp. F, maxilla. G, maxilliped palp. H in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 14. Francapseudes uniarticulatus. Female DBUA0002012.01a. A, right mandible. B, left mandible. C, maxillule outer endite. D, maxillule inner endite. E, maxillule palp. F, maxilla. G, maxilliped palp. H, maxilliped endite.
FIGURE 13. Francapseudes uniarticulatus. Female DBUA0002012.01a. A in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 13. Francapseudes uniarticulatus. Female DBUA0002012.01a. A, habitus (dorsal view). B, habitus (lateral view). C, antennule. D, antenna.
FIGURE 11. Leviapseudes segonzaci. Male DBUA0002010.06. A in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 11. Leviapseudes segonzaci. Male DBUA0002010.06. A, habitus (lateral view). B, antennule. C, labrum. D, left mandible. E, right mandible. F, pereopod 4. G, pleopod.
FIGURE 9. Leviapseudes segonzaci. Female DBUA0002010.01a. A, cheliped. B, pereopod1. C, pereopod 2. D, pereopod 3. E, pereopod 4 in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 9. Leviapseudes segonzaci. Female DBUA0002010.01a. A, cheliped. B, pereopod1. C, pereopod 2. D, pereopod 3. E, pereopod 4.
FIGURE 8. Leviapseudes segonzaci. Female DBUA0002010.01a. A, labrum. B, left mandible. C in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 8. Leviapseudes segonzaci. Female DBUA0002010.01a. A, labrum. B, left mandible. C, incisor and setal row of right mandible. D, labium. E, maxillule inner endite. F; maxillule outer endite. G, maxillule palp. H, maxilla. I, maxilliped palp. J, maxilliped endite. K, epignath.
FIGURE 7. Leviapseudes segonzaci. Female DBUA0002010.01a. A in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 7. Leviapseudes segonzaci. Female DBUA0002010.01a. A, habitus (dorsal view). B, habitus (lateral view). C, detail of pleonite 1 (lateral view). D, detail of pleotelson and uropod (lateral view). E, antennule. F, antenna (lateral view).
FIGURE 6 in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 6. Atlantapseudes curvatus sp. nov. Male paratype DBUA0002004.01. A, cheliped. B, pereopod 1. C, pereopod 2. D, pereopod 3. E, Pereopod 4. F, pereopod 5. G, pereopod 6.
FIGURE 5 in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 5. Atlantapseudes curvatus sp. nov. Female paratype DBUA0002002.01. A, pereopod 4. B, pereopod 5. C, pereopod 6.
FIGURE 4 in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 4. Atlantapseudes curvatus sp. nov. Female paratype DBUA0002002.01. A, cheliped. B, pereopod 1. C, pereopod 2. D, pereopod 3.
FIGURE 3 in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 3. Atlantapseudes curvatus sp. nov. Female paratype DBUA0002002.01. A, labrum. B, left mandible. C, detail of left mandible. D, detail of right mandible. E, right mandible palp. F, right mandible molar. G, labium. H, maxillule endites. I, maxillule palp. J, maxilla. K, maxilliped palp. L, maxilliped endite. M, epignath.
FIGURE 2 in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 2. Atlantapseudes curvatus sp. nov. Female paratype DBUA0002002.01. A, habitus. B, antennule. C, antenna.
FIGURE 1 in The Apseudomorpha (Crustacea: Tanaidacea) of the Gulf of Cadiz and Horseshoe Continental Rise (NE Atlantic): A taxonomic review with new records, species, and ecological data
FIGURE 1. Map of the Gulf of Cadiz and Horseshoe abyssal plain showing the structures mentioned in this study. Triangles: Mud volcanoes. Circles: Carbonate mounds.
Supplementary material 1 from: Niemi M, Matala J, Melin M, Eronen V, Järvenpää H (2015) Traffic mortality of four ungulate species in southern Finland. In: Seiler A, Helldin J-O (Eds) Proceedings of IENE 2014 International Conference on Ecology and Transportation, Malmö, Sweden. Nature Conservation 11: 13–28. https://doi.org/10.3897/natureconservation.11.4416
Annual trends in population size and collisions: Explanation note: Annual trends in population size, harvest, and collisions.
Supplementary material 2 from: Niemi M, Matala J, Melin M, Eronen V, Järvenpää H (2015) Traffic mortality of four ungulate species in southern Finland. In: Seiler A, Helldin J-O (Eds) Proceedings of IENE 2014 International Conference on Ecology and Transportation, Malmö, Sweden. Nature Conservation 11: 13–28. https://doi.org/10.3897/natureconservation.11.4416
Contingency tables used in the analysis of collision and traffic mortality rates: Explanation note: Contingency tables.
Figure S1 in Cutting the Gordian Knot: Phylogenetic and ecological diversification of the Mesalina brevirostris species complex (Squamata, Lacertidae)
Figure S1. Results of the BI analysis of concatenated mtDNA data and GMYC species delimitation analysis. (a) MCC tree from the mtDNA analysis with posterior probabilities ≥ 0.95 shown by nodes. Sample codes correspond to those in Table S1. Branches colored in red indicate putative species identified by the GMYC species delimitation analysis. (b) Likelihood values produced by GMYC to estimate the transition between cladogenesis and intraspecific coalescence. (c) Lineagethroughtime plot based on the depicted tree that shows the transition from interspecific to intraspecific branching events (red line). The time scale in (b) and (c) is relative.
Figure S2 in Cutting the Gordian Knot: Phylogenetic and ecological diversification of the Mesalina brevirostris species complex (Squamata, Lacertidae)
Figure S2.Environmental space of the background used for developing the SDMs (grey box) and its parts occupied byMesalina bernoullii,M. brevirostris,M. saudiarabica sp. n.,M. microlepis. Values for the nine noncorrelated environmental variables are shown (for abbreviations explanation see Material and methods). The species environmental space is based on their modelled distribution. Mean values (central line), standard deviation (box) and minimum and maximum values (whiskers) are shown.
F I G U R E 3 in Cutting the Gordian Knot: Phylogenetic and ecological diversification of the Mesalina brevirostris species complex (Squamata, Lacertidae)
F I G U R E 3 Results of 100 replicates of niche identity (above diagonal) and background tests (below diagonal). Observed niche overlap (Schoener's D) is given in the upper right corner of each graph and is also indicated by red bars. The identity tests show that the niches are significantly different from models based on pooled and randomly resampled records for all species pairs except M. bernoullii—M. microlepis. Scales of the x axis of all identity tests are 0–1. Background tests show two comparisons, one of the occurrences of the species in row against the background for the species in column (black bars and p values), the other of occurrences of the species in column compared with the background for the species in row (grey bars and p values). Note that the scale of the x axes differs in the background graphs. Asterisks by p values denote significant results. Names of taxa correspond to changes proposed in this study
F I G U R E 2 in Cutting the Gordian Knot: Phylogenetic and ecological diversification of the Mesalina brevirostris species complex (Squamata, Lacertidae)
F I G U R E 2 (a) Species-tree cloudogram (grey shading) superimposed with the MCC tree (black) inferred using three mtDNA and three nDNA gene fragments. White dots mark nodes with pp support ≥.95. Mean ages are indicated for supported nodes in white rectangles by nodes together with 95% HPD (also indicated as blue bars). Higher colour densities in the cloudogram represent higher levels of certainty that given clade exists. The depicted individuals are as follows: Mesalina microlepis from Hermel, Lebanon (voucher NMP 74214/2); M. saudiarabica sp. n. from Mahazat as-Sayd, Saudi Arabia (photovoucher NMP6F 29-30, not sampled); M. bernoullii from Chosrevi, Iran (unvouchered, sample I02), M. brevirostris from the Marawah Island, UAE (unvouchered, not sampled). Specimens are not to scale. (b) Allele networks of the three nDNA gene fragments analysed. Circle sizes are proportional to the number of alleles, lines represent mutational steps. Names of taxa correspond to changes proposed in this study
F I G U R E 1 in Cutting the Gordian Knot: Phylogenetic and ecological diversification of the Mesalina brevirostris species complex (Squamata, Lacertidae)
F I G U R E 1 (a) Map of the Arabian Peninsula showing localities of material examined in this study. Large circles indicate material used for the phylogenetic analyses; smaller paler circles indicate additional records used for the SDM. Dashed line delimits the background for developing the models. Potential distributions of Mesalina bernoullii, M. brevirostris, M. microlepis and M. saudiarabica sp. n. based on the MTSS threshold are shown in corresponding colours. The green and blue striped region shows the overlap of the potential distributions of M. bernoullii and M. microlepis. (b) Plot of the environmental space of the study background and its respective parts occupied by the four species as identified by the PCA. The first two principal components and their contributions to general variation are shown. The species environmental spaces are based on their modelled distributions. Names of taxa correspond to changes proposed in this study
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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.