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Fig. 13 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 13. Bennelongia cuensis sensu lato, all from unnamed pool near Kilcowera Station, QLD, Ƌ (W40052). A. Right prehensile palp. B. Left prehensile palp. C. Hemipenis. D. Outline of other hemipenis. Scales: A-B = 89.3 μm, C-D = 104.2 μm.
Fig. 9 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 9. Bennelongia pinpi De Deckker, 1981, all from Salt Lake, north of Hughenden, QLD. A. ♀, LVi (W40028). B. ♀, RVi (W40028). C. Ƌ, LVi (W40027). D. Ƌ, RVi (W40027). E. ♀, Cp dorsal (W40030). F. ♀, Cp ventral (W40031). G. Ƌ, Cp ventral (W40032). H. Ƌ, Cp dorsal (W40034). I. Ƌ, RVi detail anteriorly (W40027). J. Ƌ, RVi detail anteriorly (W40027). K. Ƌ, CpRl (W40033). L. ♀, CpRl (W40029). Scales: A-H, K-L = 1000 μm, J-I = 100 μm.
Fig. 3 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 3. Parsimonious network constructed at the 95% probability limit with COI sequences from Bennelongia specimens. For each haplotype, sequence names are given. Squares indicate ancestral haplotypes, small circles missing haplotypes and dotted lines connection boundaries. Only seven of the 12 unconnected networks are shown here, the remaining five were clearly separated from the sequences investigated here and corresponded to the published networks in Martens et al. (2012). Six of the unconnected networks shown here are congruent with the newly described species. One network with previously published sequences (B. cuensis Martens et al., 2012) was included to illustrate its separation to the cryptic species B. cuensis sensu lato.
Fig. 6 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 6. Bennelongia mckenziei sp. nov., all from Horseshoe Lagoon, QLD (Type locality). A. Holotype ♀, LVi (W40071). B. Holotype ♀, RVi (W40071). C. ♀, Cp dorsal (W40072). D. ♀, CpRl (W40073). E. Holotype ♀, Cp ventral (W40071). F. Holotype ♀, RVi detail anteriorly (W40071). G. Holotype ♀, RVi detail anteriorly (W40071). Scales: A-E = 500 μm, F-G = 100 μm.
Fig. 1 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 1. Map of localities of Bennelongia species from eastern Australia recorded in the present study.
Fig. 5 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 5. Bennelongia dedeckkeri sp. nov. (A = W40017 & B-D = W40016 Ƌ). A. Right prehensile palp. B. Left prehensile palp. C. Hemipenis showing inner anatomy. D. Outline of other hemipenis. Scales: A-B = 30.9 μm, C-D = 89.3 μm.
Fig. 4 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 4. Bennelongia dedeckkeri sp. nov., all from Lake Galilee, QLD (Type locality). A. ♀, LVi (W40020). B. ♀, RVi (W40019). C. Ƌ, LVi (W40016). D. Holotype Ƌ, RVi (W40075). E. ♀, Cp dorsal (W40025). F. ♀, Cp ventral (W40026). G. Ƌ, Cp (ventral W40023). H. Ƌ, Cp dorsal (W40022). I. Holotype Ƌ, RVi detail anteriorly (W40075). J. Ƌ, RVi detail anteriorly (W40019). K. Ƌ, CpRl (W40021). L. ♀, CpRl (W40024). Scales: A-H, K-L = 500 μm, I-J = 100 μm.
Fig. 8 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 8. Bennelongia regina sp. nov. (all from holotype Ƌ = W40060). A. Right prehensile palp. B. Left prehensile palp. C. Hemipenis. D. Outline of other hemipenis. Scales: A-B = 89.3 μm, C-D = 104.2 μm.
Fig. 11 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 11. Bennelongia harpago De Deckker & Mckenzie, 1981, all from Lake Powlathanga, QLD. A. ♀, LVi (W40014). B. ♀, RVi (W40014). C. ♀, CpRl (W40015). D. ♀, Cp dorsal (RS35). E. ♀, RVi detail anteriorly (W40014). Scales: A-D = 500 μm, E = 100 μm.
Fig. 7 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 7. Bennelongia regina sp. nov., all from Horseshoe Lagoon, QLD (Type locality). A. ♀, LVi (W40061). B. ♀, RVi (W40061). C. Holotype Ƌ, LVi (W40060). D. Holotype Ƌ, RVi (W40060). E. ♀, Cp dorsal (W40067). F. ♀, Cp ventral (W40066). G. Ƌ, Cp ventral (W40063). H. Ƌ, Cp dorsal (W40062). I. Holotype Ƌ, RVi detail anteriorly (W40060). J. Holotype Ƌ, RVi detail anteriorly (W40060). K. Ƌ, CpRl (W40064). L. Allotype ♀, CpRl (W40074). Scales: A-H, K-L = 1000 μm, J = 200 μm, I = 100 μm.
Fig. 10 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 10. Bennelongia pinpi De Deckker, 1981. (A-D = W40043 from Pelican Lake QLD, E = W40035 from Lake Louisa QLD). A-B. Outlines of hemipenes. C. Left prehensile palp. D. Right prehensile palp. E. Left prehensile palp. Scales: A-B = 156.3 μm, C-D = 89.3 μm, E = 42.6 μm.
Fig. 2. Phylogenetic tree constructed with 57 in A review of Bennelongia De Deckker & McKenzie, 1981 (Crustacea, Ostracoda) species from eastern Australia with the description of three new species
Fig. 2. Phylogenetic tree constructed with 57 novel COI sequences of Bennelongia, 26 published Bennelongia sequences and one Heterocypris spec. as outgroup (sequence names are given in brackets at the end of species names). This tree represents two trees of identical topology inferred by ML and BI. Bootstrap values (for 1000 bootstrap replicates) from ML analyses and Bayesian posterior probabilities (ranging from 0 to 1) are shown for each node (in the format: 'Bootstrap Support/Posterior Probability'). Branch lengths are proportional to the genetic distance scale at the bottom left. Clades with published sequences have been collapsed; the number of sequences in these clades is included in brackets after the species name. Nodes with less than 50% bootstrap support and a posterior probability of less than 0.5 have been collapsed. The tree shows six strongly supported clades that correspond to the species presented in this study.
Fig. 3 in Review of Campsicnemus species from the Atlantic Ocean Islands (Diptera: Dolichopodidae)
Fig. 3. Campsicnemus flavissimus sp. nov., ♂ holotype and ♀ paratype. A. ♀ head. B. ♂ wing. C. ♂ mid tibia and tarsus. D. ♂ mid tibia, basal part. E. ♂ mid femur.
Fig. 1 in Review of Campsicnemus species from the Atlantic Ocean Islands (Diptera: Dolichopodidae)
Fig. 1. Campsicnemus meridionalis sp. nov., ♂ holotype. A. habitus. B. head. C. wing. D. mid femur. E. mid tibia and tarsus. F. hind femora.
Fig. 2 in Review of Campsicnemus species from the Atlantic Ocean Islands (Diptera: Dolichopodidae)
Fig. 2. Campsicnemus sanctaehelenae sp. nov., ♂ holotype. A. antenna. B. wing. C. mid femur. D. hind femur and tibia. E. mid tibia and tarsus.
Fig. 5 in Review of world genera of Ceinae, with the description of two new Palaearctic species of Spalangiopelta Masi (Hymenoptera, Chalcidoidea, Pteromalidae)
Fig. 5. Diparisca ferrierei: A. ♀, paratype, habitus in lateral view. B. ♀ (Brazil), habitus in dorsal view. C. ♀ (Brazil), mesosoma in dorsal view. D. ♀ (Brazil), head and left antenna in lateral view.
Fig. 4 in Review of world genera of Ceinae, with the description of two new Palaearctic species of Spalangiopelta Masi (Hymenoptera, Chalcidoidea, Pteromalidae)
Fig. 4. Spalangiopelta viridis sp. nov. A. ♀, holotype, habitus in lateral view. B. ♀, holotype, habitus in dorsal view. C. ♀, holotype, head and antennae in lateral view. D. ♀, holotype, wings. E. ♂, allotype, habitus in lateral view. F. ♂, allotype, head and antennae in lateral view. G. ♀, holotype, mesosoma and petiole in dorsal view.
Fig. 3 in Review of world genera of Ceinae, with the description of two new Palaearctic species of Spalangiopelta Masi (Hymenoptera, Chalcidoidea, Pteromalidae)
Fig. 3. Spalangiopelta rameli sp. nov. A. ♀, holotype, habitus in lateral view. B. ♀, holotype, habitus in dorsal view. C. ♀, holotype, head and anterior part of mesosoma in lateral view. D. ♀, holotype, wings. E. ♀, paratype, mesosoma in dorsal view (MICO).
Data Review Handphone Toko Online XYZ Market Place XYZ
<p>Data set review Handphone di toko online di market place yang dipergunakan untuk natural language processing. </p>
Factors affecting altmetrics attention to scholarly publication in peer-reviewed journals published in Iran and Turkey
<p>The goal of this study was to trace the altmetric measures of peer-reviewed journals in two non-English speaking countries na,ely Iran and Turkey, in order to understand their correlation with some website structure and design determinants, as well as the subject and the full-text language of the journals.</p> <p> </p>
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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.