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Figure 8 in Two new endemic species of Chrysopodes (Neosuarius) (Neuroptera, Chrysopidae) from the Galapagos Islands
Figure 8. Male abdomen, lateral view. Chrysopodes (Neosuarius) nigripilosus. Note pair of eversible pouches at terminus of S8+9.
Figure 6. Abdomen, ventral view. a in Two new endemic species of Chrysopodes (Neosuarius) (Neuroptera, Chrysopidae) from the Galapagos Islands
Figure 6. Abdomen, ventral view. a Chrysopodes (Neosuarius) nigripilosus male b Chrysopodes (Neosuarius) nigripilosus female c C. (N.) nigricubitus female d C. (N.) pecki female. The scale applies to all images.
Figure 5 in Two new endemic species of Chrysopodes (Neosuarius) (Neuroptera, Chrysopidae) from the Galapagos Islands
Figure 5. Base of forewing. a Chrysopodes (Neosuarius) nigripilosus b C. (N.) nigricubitus c C. (N.) pecki. icux2, second intracubital crossvein; ma, median arculus.
Fig. 8 in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 8. ML phylogram inferred from the combined LSU-rbcL data by PhyML. Supports at nodes indicate bootstrap values (from PhyML and RaxML) and posterior probabilities inferred from Bayesian analysis. Generitype species are indicated in bold; concatenate sequences obtained from different samples for LSU and rbcL are indicated by "*".
Fig. 2. Analine-blue stained vegetative features. A. A in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 2. Analine-blue stained vegetative features. A. A transapical longitudinal section indicative of its multiaxial structure. B. The anticlinal orientation of pseudo-dichotomous cortical filaments. C. Mostly paired cortical cells in surface view. D. Longitudinally aligned, peripherally inverwoven medullary filaments. Scale bars: A, D = 20 μm; B–C = 10 μm.
Fig. 1. A–B in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 1. A–B. Herbarium sheets MS35027-1 and MS35027-14, respectively, both from Sicily. C–D. Herbarium sheets PC0152091 (LLG0393) and PC0152089 (LLG0394), respectively, both from Vis Island, Croatia. Scale bars: A–B = 2 cm; C–D = 1 cm.
Fig. 5. A in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 5. A. Detail of front page of Meneghini's 1841 manuscript "Alghe Dalmate, Enumerate ed Illustrate dal Professor Giuseppe Meneghini". B. Detail of protologue page of Chondrus? vidovichii (Menegh.) Zanardini.
Fig. 4 in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 4. Recorded sites of Acrodiscus vidovichii (Menegh.) Zanardini along the shores of the Mediterranean Sea.
Fig. 6 in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 6. Plate and caption of Chondrus? vidovichii (Menegh.) Zanardini from Meneghini's manuscript "Alghe Dalmate, Enumerate ed Illustrate dal Professor Giuseppe Meneghini".
Fig. 7 in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 7. Two fragments (B–C, arrows) of the specimen (A) of Chondrus? vidovichii (Menegh.) Zanardini illustrated in Meneghini's protologue manuscript. The sheets are currently filed in folder 742.4, labelled "Euhymenia dichotoma Kg." at the Herbarium Orti Botanici Pisani (PI). Scale bars = 1 cm.
Fig. 3. A in An assessment of the taxonomic status of the Mediterranean endemic genus Acrodiscus Zanardini (Halymeniales, Rhodophyta)
Fig. 3. A. Elliptical outline of a subapical nemathecial sorus. B. Lugol-stained l.s. of a tetrasporangial nemathecium. C. Schematic drawing of terminal tetrasporangia and jacketing nemathecial filaments. D. Horizontally aligned cruciate and decussate-cruciate tetrasporangia within the palisade of nemathecial filaments. Scale bars: A = 200 μm; B, D = 20 μm.
Fig. 12 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 12. Bistriopelma kiwicha sp. nov., paratype, ♀ (MUBI 41). A. Carapace, dorsal view. B. Carapace, lateral view. C. Abdomen, ventral view. D. Abdomen, dorsal view. E. Urticating setae patch. F. Sternum, labium and maxillae, ventral view. G. Labium and maxillae, ventral view. H. Eyes. Scale bars = 1 mm.
Fig. 10 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 10. Palpal bulb of Bistriopelma kiwicha sp. nov., holotype, ♂ (MUBI 12). A. Prolateral view. B. Retrolateral view. Scale bars = 1 mm.
Fig. 8 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 8. Bistriopelma kiwicha sp. nov., holotype, ♂ (MUBI 12). A. Carapace, dorsal view. B. Abdomen, dorsal view. C. Abdomen, ventral view. D. Urticating setae patch. E. Sternum, labium and maxillae, ventral view. F. Labium and maxillae, ventral view. G. Eyes. Scale bars: A–C = 5 mm; D–G = 1 mm.
Fig. 9 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 9. Bistriopelma kiwicha sp. nov., holotype, ♂ (MUBI 12). A–B. Cymbium, tibia and patella. A. Prolateral view. B. Retrolateral view. – C–E.Tibial apophysis. D. Retrolateral view (detail of branches). D. Retrolateral view. E. Ventral view. Scale bars = 1 mm.
Fig. 7 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 7. Bistriopelma peyoi sp. nov., paratype, ♀ (MUBI 70); spermathecae, dorsal view. Scale bar = 1 mm.
Fig. 5 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 5. Bistriopelma peyoi sp. nov., paratype, ♀ (MUBI 70). A–B. Habitus. C. Habitat at type locality. Photos: Juan C. Chaparro.
Fig. 3 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 3. Bistriopelma peyoi sp. nov., holotype, ♂ (MUBI 73). A–B. Cymbium, tibia and patella. A. Retrolateral view. B. Prolateral view. – C–D. Tibial apophysis. C. Ventral view. D. Prolateral view. Scale bars = 1mm.
Fig. 2 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 2. Bistriopelma peyoi sp. nov., holotype, ♂ (MUBI 73). A. Carapace, dorsal view. B. Carapace, lateral view. C. Urticating setae patch. D. Abdomen, dorsal view. F. Abdomen, ventral view. F. Sternum, labium and maxillae, ventral view. G. Labium and maxillae, ventral view. H. Eyes. Scale bars: A–B, D–E = 5 mm; C, F–H = 1 mm.
Fig. 6 in Two new endemic species of Bistriopelma (Araneae: Theraphosidae) from Peru, including a new remarkable horned tarantula
Fig. 6. Bistriopelma peyoi sp. nov., paratype, ♀ (MUBI 70). A. Carapace, dorsal view. B. Carapace, lateral view. C. Urticating setae patch. D. Sternum, labium and maxillae, ventral view, white arrows indicate the dark pubescence in the basal maxillae. E. Labium and maxillae, ventral view (the yellow arrow indicates the basal tubercle with cuspules well developed and the white arrow indicates the dark pubescence in the basal maxillae). F. Eyes. Scale bars: A–B = 5 mm; C–F = 1 mm.
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.