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Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d in Uncovering the hidden diversity of the Neotropical butterfly genus Yphthimoides Forster (Nymphalidae: Satyrinae): description of three new species based on morphological and molecular data
Fig. 6 Yphthimoides bella, male genitalia. a Lateral view. b Dorsal view. c Ventral view. d Edeagus (dorsal view). e Edeagus (lateral view)
Fig. 7 in Cryptic diversity in the Mediterranean Temnothorax lichtensteini species complex (Hymenoptera:Formicidae)
Fig. 7 Dorsal view of Temnothorax laconicus sp.n. paratype worker (Profitis-Ilias-20110501-342 / CAS San Francisco / CASENT0906682)
Fig. 3 in Cryptic diversity in the Mediterranean Temnothorax lichtensteini species complex (Hymenoptera:Formicidae)
Fig. 3 Scatterplot of discriminant scores for T. laconicus sp.n. (red circles), T. lichtensteini "East Mediterranean cluster " (green diamonds), T. lichtensteini "West Mediterranean cluster " (blue rectangles) and T. lichtensteini type material (purple rectangle) is illustrated. Ellipses of 95 % range are given for each group
Fig. 4 in Community structure and species diversity of Harpacticoida (Crustacea: Copepoda) at two sites in the deep sea of the Angola Basin (Southeast Atlantic)
Fig. 4 Two-dimensional nonmetrical multidimensional scaling (nMDS) ordination plot of replicates based on all 682 collected harpacticoid species (green: Station 325, replicates 2– 8; red: Station 346, replicates 1– 8). Similarity index: Cosine Similarity (no data transformation, stress: 0.15). Blue line Minimum spanning tree, dotted line sole connection between the two stations
Fig. 7 in Community structure and species diversity of Harpacticoida (Crustacea: Copepoda) at two sites in the deep sea of the Angola Basin (Southeast Atlantic)
Fig. 7 Harpacticoid abundance (N) at core level (Station 325, green dots; Station 346, red dots) plotted against corresponding species numbers (S)
Fig. 6 in Cryptic diversity in the Mediterranean Temnothorax lichtensteini species complex (Hymenoptera:Formicidae)
Fig. 6 Lateral view of Temnothorax laconicus sp.n. paratype worker (Profitis-Ilias-20110501-342 / CAS San Francisco / CASENT0906682)
Fig. 2 in Cryptic diversity in the Mediterranean Temnothorax lichtensteini species complex (Hymenoptera:Formicidae)
Fig. 2 Dendrogram of NC-Ward clustering of three cryptic lineages T. lichtensteini with two subsets ("East Mediterranean cluster " and "West Mediterranean cluster ") and T. laconicus sp.n. ("Peloponnese cluster "). Sequence of information in the string designating the samples: abbreviation of geographic cluster hypothesis inferred from the three exploratory data analyses (EDA methods)—country— locality—date—sample number. Asterisk Position of the T. lichtensteini type series
Fig. 4 in Cryptic diversity in the Mediterranean Temnothorax lichtensteini species complex (Hymenoptera:Formicidae)
Fig. 4 Sampling sites of Temnothorax lichtensteini species-complex. Separate lineages are illustrated as follows: T. laconicus sp.n. (red circles), T. lichtensteini "East Mediterranean cluster " (green diamonds),
Fig. 2 Harpacticoid families collected from Stations 325 and 346 in Community structure and species diversity of Harpacticoida (Crustacea: Copepoda) at two sites in the deep sea of the Angola Basin (Southeast Atlantic)
Fig. 2 Harpacticoid families collected from Stations 325 and 346 (Angola Basin). Families are sorted according to the total number of collected individuals N (columns) and dominance (pie charts). "Others" refer to the following families (in decreasing order from left to right): Station 325 = Paramesochridae, Huntemanniidae, Ancorabolidae, Cletodidae, Aegisthidae, Miraciidae, Rhizotrichidae, Canuellidae; Station 346 = Neobradyidae, Paramesochridae, Zosimeidae, Canthocamptidae, Idyanthidae, Miraciidae, Huntemanniidae, Cletodidae, Aegisthidae, Ancorabolidae, Tisbidae, Canuellidae, Rometidae, Dactylopusiidae
Fig. 5 a –d Diversity measures calculated for the replicates from Stations 325 and 346. a S Total species numbers, N abundance, Z in Community structure and species diversity of Harpacticoida (Crustacea: Copepoda) at two sites in the deep sea of the Angola Basin (Southeast Atlantic)
Fig. 5 a –d Diversity measures calculated for the replicates from Stations 325 and 346. a S Total species numbers, N abundance, Z Median, Min. minimum, Max. maximum, Q 1 quartile 1 (25 % of all measured data
Fig. 1 in Community structure and species diversity of Harpacticoida (Crustacea: Copepoda) at two sites in the deep sea of the Angola Basin (Southeast Atlantic)
Fig. 1 Black stars Location of Stations 325 and 346 in the Angola Basin off Namibia (Africa) sampled by Multicorer. Black squares Sampling localities according to (A) Dinet (1973) and (B) Soltwedel (1997)
Fig. 2 in Molecules and morphology suggest cryptic species diversity and an overall complex taxonomy of fish scale geckos, genus Geckolepis
Fig. 2 Left: Simplified ND4 tree of Geckolepis showing major clades and lineages referred to as OTUs as shown in Fig. 1 (relationships of G. polylepis are derived from analyses of the 12S gene sequences). Major diagnostic morphological differences of each (or combined) OTU are summarized at the right of each respective clade (considers only adult
Fig. 4 Species accumulation curves. a in Assessment of hidden diversity of crinoids and their symbionts in the Bay of Nhatrang, Vietnam
Fig. 4 Species accumulation curves. a Accumulation of crinoid species as a function of collecting effort (number of crinoid specimens collected). b Accumulation of symbiont species as a function of collecting effort (number of crinoid specimens collected)
Fig. 1 in Multilocus population analysis of Gavia immer (Aves: Gaviidae) mtDNA reveals low genetic diversity and lack of differentiation across the species breeding range
Fig. 1 Haplotype network constructed using the median joining method. Haplotype numbers are indicated. Circle patterns represent coastal sampling locations: GZ Galicia, Spain, MX Mexico, GE Germany, NJ New Jersey, US, MI Michigan, US, CA Canada, FL Florida, US. Circle surfaces are roughly proportional to the number of individuals with each haplotype (Table 3)
Fig. 13 in Distribution and diversity of the Opheliidae (Annelida, Polychaeta) on the continental shelf and slope of Iceland, with a review of the genus Ophelina in northeast Atlantic waters and description of two new species
Fig. 13 Ophelina bowitzi sp. nov. (IMNH 24324, BIOICE sample 2863). a Anterior end, lateral view. b Detail of nuchal organ. c Chaetiger 11. d Chaetiger 18. e Chaetiger 25; arrows mark positions of two ciliary bands. (f) Chaetiger 28; arrow marks position of lateral organ. Scale bars: (a) 1 mm; (b) 90 μm; (c, d, f) 100 μm; (e) 900 μm
Fig. 10 in Distribution and diversity of the Opheliidae (Annelida, Polychaeta) on the continental shelf and slope of Iceland, with a review of the genus Ophelina in northeast Atlantic waters and description of two new species
Fig. 10 Posterior body region in three North Atlantic-Arctic species of Ophelina not found in BIOICE samples. a O. groenlandica Støp-Bowitz, 1948 (holotype, SMNH T-7831). b O. norvegica Støp-Bowitz, 1945 (SMNH 11137). c O. nybelini Eliason, 1951 (syntype, GNHM Polych. 10999). Scale bars: (a) 0.5 mm; (b, c) 1 mm
Fig. 11 in Distribution and diversity of the Opheliidae (Annelida, Polychaeta) on the continental shelf and slope of Iceland, with a review of the genus Ophelina in northeast Atlantic waters and description of two new species
Fig. 11 Ophelina helgolandica Augener (IMNH 24329, BIO- ICE sample 2579). a Anterior end, lateral view. b Detail of nuchal organ. c First chaetiger. d Chaetigers 2–3. e Last branchiate chaetiger; arrow marks position of lateral organ. f Posterior body region, lateral view; arrow marks position of last branchiate chaetiger followed by three abranchiate chaetigers. Scale bars: (a, f) 1 mm; (b, c, e), 100 μm; (d) 200 μm
Fig. 9 in Distribution and diversity of the Opheliidae (Annelida, Polychaeta) on the continental shelf and slope of Iceland, with a review of the genus Ophelina in northeast Atlantic waters and description of two new species
Fig. 9 Posterior body region in some Atlantic Ophelina species (redrawn from originals). a O. abranchiata (from Støp-Bowitz 1948). b O. bowitzi sp. nov. (from Fauvel 1914, as A. arctica). c O. delapidans longicephala (from HartmannSchröder 1977). d O. groenlandica (from Støp-Bowitz 1948). e O. helgolandica (from Augener 1912). f O. norvegica (from Støp-Bowitz 1945). g O. nybelini (from Eliason 1951)
Fig. 8 in Distribution and diversity of the Opheliidae (Annelida, Polychaeta) on the continental shelf and slope of Iceland, with a review of the genus Ophelina in northeast Atlantic waters and description of two new species
Fig. 8 Ophelina basicirra sp. nov. (Paratypes, IMNH 24318, BIOICE sample 2303). a, b Posterior end with anal tube, lateral views. c, d Cirri of anal tube. e Anal tube, ventral view. f Detail of anal cirrus of anal tube. Scale bars: (a, b) 300 μm; (c) 90 μm; (d) 50 μm; (e) 200 μm; (f) 60 μm
Fig. 1 in Distribution and diversity of the Opheliidae (Annelida, Polychaeta) on the continental shelf and slope of Iceland, with a review of the genus Ophelina in northeast Atlantic waters and description of two new species
Fig. 1 Maps of the study area and collecting sites of samples including specimens of Opheliidae. a All samples combined. b Ammotrypanella cf. arctica McIntosh. c Ophelina basicirra sp. nov. d Ophelina bowitzi sp. nov
ScienceDex guides
Understand access before you commit
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.