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Fig. 5 in A new species of Pseudopaludicola (Anura, Leptodactylidae, Leiuperinae) from the state of Minas Gerais, Brazil
Fig. 5. First and second dimensions of the Multidimensional scaling on the proximity scores from the Random Forest analysis considering morphometric (A) and acoustic (C) traits of adult males of Pseudopaludicola matuta sp. nov. (blue dots) and P. mineira Lobo, 1994 (red dots). Dotcharts of variable importance score considering morphometric (B) and acoustic (D) traits as indicated by the Random Forest analysis. Each dot represents an adult male.
Fig. 6 in A new tardigrade species of the genus Neostygarctus Grimaldi de Zio et al., 1982 (Tardigrada, Arthrotardigrada) from the Great Meteor Seamount, Northeast Atlantic
Fig. 6. Neostygarctus grossmeteori sp. nov., details, SEM. A. Female, entire body, ventral view. B. Right secondary clava and outer cirrus on the head, ventral view. C. Ventral conical spikes on the basal part of the lateral body process. D. Right lateral body processes. E. Lateral fan of spines with membrane on the posteriormost body segment. F. Toes with claws of the leg IV ventrally, dorsal tendon detached in some toes. G. Inner and outer claws, dorsal view. H. Accordion-like joint of the cirrus E. Scale bars: A = 30 μm; B, D, F = 10 μm; C, E, G–H = 3 μm.
Fig. 4 in Richness of Dendrocephalus (Branchiopoda, Anostraca) in Brazil with the description of two new species
Fig. 4. Morphological variation in the frontal appendage of Dendrocephalus carajaensis Rogers, Gomes & Vieira, 2012, Ƌ. A–B. Branch 2A from two specimens. C–F. Sub-branch III of branch 2D from different specimens. Scale bars: 0.5 mm.
Fig. 2. Labidostomis damavandensis Rapilly, 1984. A–D in Contribution to the knowledge of the Clytrini of the Eastern Mediterranean, the Near East and the Arabian Peninsula, with descriptions of four new species (Coleoptera: Chrysomelidae: Cryptocephalinae)
Fig. 2. Labidostomis damavandensis Rapilly, 1984. A–D. Holotype, ♂, 6.5 mm (MNHN). A. Dorsal view. B. Head. C. Labels. D. Aedeagus in dorsal, lateral and ventral views. E–G. ♀, 5.6 mm (NMPC). E. Dorsal view. F. Head. G. Spermatheca.
Fig. 1 in Contribution to the knowledge of the Clytrini of the Eastern Mediterranean, the Near East and the Arabian Peninsula, with descriptions of four new species (Coleoptera: Chrysomelidae: Cryptocephalinae)
Fig. 1. Labidostomis bcharrensis Bezděk sp. nov., holotype, ♂, 5.6 mm (HNHM). A. Dorsal view. B. Head. C. Labels. D. Aedeagus in dorsal and lateral views. E. Habitat (photo by Tamász Németh).
Fig. 4. A in A new species of Pseudopaludicola (Anura, Leptodactylidae, Leiuperinae) from the state of Minas Gerais, Brazil
Fig. 4. A. Oscillogram of the entire advertisement call with the introductory notes and three series of two-pulsed notes of Pseudopaludicola matuta sp. nov. B. Audiospectrogram (above) and corresponding oscillogram (below) detailing three two-pulsed notes of the holotype (ZUEC 24302). The holotype was recorded on 29 Nov. 2017 at 19:19 h; air temperature 25.2°C (recording_label: Pseudop_ matutaCurveloMG10iIAH_AAGmt). C. Oscillogram of the entire advertisement call with a single series of two-pulsed notes of P. mineira Lobo, 1994. D. Audiospectrogram (above) and corresponding oscillogram (below) detailing three two-pulsed notes of a topotypical male (ZUEC 24330; GenBank voucher). The topotype was recorded on 4 Dec. 2017 at 19:28 h; air temperature 21.0°C (recording_ label: Psedop_mineiraSantanadoRiachoMG2aIAH_AAGm661MK2). Note the remarkable difference in the time spent emitting the same three two-pulsed notes between these two sister species, P. mineira spends about twice as much time than P. matuta sp. nov.
Fig. 7 in Richness of Dendrocephalus (Branchiopoda, Anostraca) in Brazil with the description of two new species
Fig. 7. Photographs of different temporary pools inhabited by Dendrocephalus Daday, 1908 in Brazil. A. Dendrocephalus brasiliensis Pesta, 1921 from Ceará. B. D. carajaensis Rogers, Gomes & Vieira, 2012 from Serra dos Carajás, Pará. C. D. goiasensis Rabet & Thiéry, 1996 from Iaciara, Goiás. D. D. orientalis Rabet & Thiéry, 1996 from Jequié, Bahia. E. D. orientalis from Palmas de Monte Alto, Bahia. F–G. D. thieryi Rabet, 2006 from Buritizeiro, Minas Gerais. H. Locus typicus of D. aranai Rabet & Lacau sp. nov. from Jequitinhonha, Minas Gerais. I. Locus typicus of D. xikrini Rabet & Bozelli sp. nov. from Serra dos Carajás, Pará.
Fig. 1 in New species of Rhizomyces (Ascomycota, Laboulbeniales) parasitic on African stalk-eyed flies (Diptera, Diopsidae)
Fig. 1. Photomicrographs of the new species of Rhizomyces Thaxt.: A. R. forcipatus W.Rossi & Feijen sp. nov. (FI 4100a). B. Thallus of R. forcipatus sp. nov. from the wing of Teloglabrus sp. (FI 4125). C. Immature thallus of R. forcipatus sp. nov. showing the trichogyne and the basal cell holding firmly a piece of the exoskeleton of the host insect (FI 4099). D. R. tschirnhausii W.Rossi & Feijen sp. nov. (FI 4091). E. Upper portion of the perithecium of R. tschirnhausii sp. nov. (FI 4090). F. R. ramosus W.Rossi & Feijen sp. nov. (FI 4201a), amid the four mature perithecia, near the base of the stalk cells, it can be seen a fifth very immature perithecium bearing the trichogyne. G. R. ramosus sp. nov. (FI 4201a), the pyriform haustorium with remains of the host integument and cell I showing two primordia of new branches. Scale bars: 50 µm.
Figs 9–10 in First record of the genus Genaemirum (Hymenoptera, Ichneumonidae, Ichneumoninae) from West Africa, with the description of a new species from Guinea
Figs 9–10. Lateral view of mesopleuron. 9. Genaemirum rhinoceros Heinrich, 1967. 10. Genaemirum filipazzii sp. nov.
Fig. 3–4 in First record of the genus Genaemirum (Hymenoptera, Ichneumonidae, Ichneumoninae) from West Africa, with the description of a new species from Guinea
Fig. 3–4. Frontal view of the face. 3. Genaemirum filipazzii sp. nov., holotype, ♀ (NHMD). 4. Genaemirum rhinoceros Heinrich, 1967, holotype, ♀ (ZSMC).
Fig. 7. 2D in Notes on Afonsoconus Tucker & Tenorio, 2013 (Gastropoda, Conidae), with description of a new species from the Southwestern Indian Ocean
Fig. 7. 2D Scatter plot of the discriminant function analysis (DFA) for the species A. kinoshitai (Kuroda, 1956), A. bruuni (Powell, 1958) and A. crosnieri sp. nov. The analysis was performed using shell length (SL) and the shell morphometric parameters MD, HMD and SH as variables, and species hypotheses as factor. Both DF1 and DF2 are statistically significant at the 95% probability level (DF1: 69.9 % relative percent, Wilks lambda = 0.0449, χ2 = 138.085, df = 8, p = 0.0000; DF2: 30.1 % relative percent, Wilks lambda = 0.2946, χ2 = 54.38, df = 3, p = 0.0000).
Fig. 6 in Notes on Afonsoconus Tucker & Tenorio, 2013 (Gastropoda, Conidae), with description of a new species from the Southwestern Indian Ocean
Fig. 6. Distribution map for Afonsoconus crosnieri sp. nov. Red circles indicate the points where the species has been collected.
Fig. 3 in Notes on Afonsoconus Tucker & Tenorio, 2013 (Gastropoda, Conidae), with description of a new species from the Southwestern Indian Ocean
Fig. 3. Bayesian phylogenetic tree. Posterior probabilities (above 0.95) are indicated for each node. Sequences are labelled with the MNHN registration number or the GenBank accession number, and the species name.
Fig. 2. A in Notes on Afonsoconus Tucker & Tenorio, 2013 (Gastropoda, Conidae), with description of a new species from the Southwestern Indian Ocean
Fig. 2. A. Pionoconus fulmen (Reeve, 1843), specimen from Kii Peninsula, Wakayama prefecture, Japan, 51.9 mm (INHS 44603). B. Textilia bullatus (Linnaeus, 1758), specimen from Ua Huka, Baie Kuiapaku, Marquesas Archipelago, 58.1 mm (MNHN IM-2012-20656). C–D. Textilia dusaveli (H. Adams, 1872). C. Specimen from off Balut Island, Mindanao, Philippines, 260 m, 82.1 mm (INHS 44868). D. Radular tooth, specimen from New Caledonia, SL 67.0 mm (MJT). Scale bars = 10 mm, unless otherwise stated.
Fig. 6. A–D in Unexpected discovery of six new species of Aphyosemion (Cyprinodontiformes, Aplocheilidae) in the Wonga-Wongué Presidential Reserve in Gabon
Fig. 6. A–D. Aphyosemion aurantiacum Chirio, Legros & Agnèse sp. nov. A. Adult, ♁, from locality 12, not preserved. Photo O. Buisson. B. Adult, ♀, from locality 12, not preserved. Photo O. Buisson. C. Holotype, adult, ♁, from Wézé Spring (MRAC 2016-019-P-64). D. Paratype, adult, ♀, from Wézé Spring (MRAC 2016-019-P-65-73). E–H. A. rubrogaster Chirio, Legros & Agnèse sp. nov. E. Adult, ♁, from locality 16, not preserved. Photo O. Buisson. F. Adult, ♀, from locality 16, not preserved. Photo O. Buisson. G. Holotype, adult, ♁, from the Niengé River (MRAC 2016-019-P-93). H. Paratype, adult, ♀, from the Niengé River (MRAC 2016-019-P-94-108).
Fig. 5. A–D in Unexpected discovery of six new species of Aphyosemion (Cyprinodontiformes, Aplocheilidae) in the Wonga-Wongué Presidential Reserve in Gabon
Fig. 5. A–D. Aphyosemion barakoniense Chirio, Legros & Agnèse sp. nov. A. Adult, ♁, from locality 7, not preserved. B. Adult, ♀ from locality 7, not preserved. C. Holotype, adult, ♁, from the lower Barakonié River (MRAC 2016-019-P-19). D. Paratype, adult, ♀, from the lower Barakonié River (MRAC 2016-019-P-20-36). E–F. A. pusillum Chirio, Legros & Agnèse sp. nov. E. Adult, ♁, from locality 10, not preserved. F. Holotype, adult, ♁, from the Okoyo River (MRAC 2016-019-P-57).
Fig. 4. A–D in Unexpected discovery of six new species of Aphyosemion (Cyprinodontiformes, Aplocheilidae) in the Wonga-Wongué Presidential Reserve in Gabon
Fig. 4. A–D. Aphyosemion cyanoflavum Chirio, Legros & Agnèse sp. nov. A. Adult, ♁, from locality 9, not preserved. Photo by O. Buisson. B. Adult, ♀, from locality 9, not preserved. Photo by O. Buisson. C. Holotype, adult, ♁, from Lake Ndaminzé (MRAC 2016-019-P-1). D. Paratype, adult, ♀, from Lake Ndaminzé (MRAC 2016-019-P-2-10). E–H. A. flammulatum Chirio, Legros & Agnèse sp. nov. E. Adult, ♁, from locality 4, not preserved. F. Adult, ♀, from locality 4, not preserved. G. Holotype, adult, ♁, from the lower Aloumbé River (MRAC 2016-019-P-11). H. Paratype, adult, ♀, from the lower Aloumbé River (MRAC 2016-019-P-12-18).
Fig. 15 in First record of the genus Genaemirum (Hymenoptera, Ichneumonidae, Ichneumoninae) from West Africa, with the description of a new species from Guinea
Fig. 15. Distribution of species of Genaemirum Heinrich, 1936: known species (squares) and the new species (star).
Figs 1–2 in First record of the genus Genaemirum (Hymenoptera, Ichneumonidae, Ichneumoninae) from West Africa, with the description of a new species from Guinea
Figs 1–2. Genaemirum filipazzii sp. nov., holotype, ♀, habitus (NHMD). 1. Dorsal view. 2. Lateral view.
Fig. 2 in Unexpected discovery of six new species of Aphyosemion (Cyprinodontiformes, Aplocheilidae) in the Wonga-Wongué Presidential Reserve in Gabon
Fig. 2. Consensus tree based on Maximum Likelihood, Distance and Minimum Evolution. Numbers above the branches are percentages of bootstrap values based on 2000 replicates for each method. Numbers correspond to sample location (Fig. 1 and Table 1). Scale refers to Kimura 2 distance.
ScienceDex guides
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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.