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FIGURE 7. Stenocephalum megapotamicum. A. Plant. B. Capitula. C–D. Outer phyllaries. E. Middle phyllary. F–G. Inner phyllaries. H. Floret. I in Taxonomic revision of the genus Stenocephalum (Vernonieae, Asteraceae)
FIGURE 7. Stenocephalum megapotamicum. A. Plant. B. Capitula. C–D. Outer phyllaries. E. Middle phyllary. F–G. Inner phyllaries. H. Floret. I. Cypsela.
FIGURE 6. Stenocephalum jucundum. A. Plant. B. Leaf blade apex, higher surface. C. Leaf blade apex, lower face. D. Capitula. E–F. Outer phyllaries. G–H. Middle phyllaries. I–J. Inner phyllaries. K. Cypsela. L. Floret. M in Taxonomic revision of the genus Stenocephalum (Vernonieae, Asteraceae)
FIGURE 6. Stenocephalum jucundum. A. Plant. B. Leaf blade apex, higher surface. C. Leaf blade apex, lower face. D. Capitula. E–F. Outer phyllaries. G–H. Middle phyllaries. I–J. Inner phyllaries. K. Cypsela. L. Floret. M. Corolla lobe apex.
FIGURE 3. Stenocephalum apiculatum. A. Plant. B. Leaf blade, lower face. C. Leaf blade, superior face. D. Capitula. E–F. Outer phyllaries. G–H. Middle phyllaries. I. Inner phyllary. J. Floret. K in Taxonomic revision of the genus Stenocephalum (Vernonieae, Asteraceae)
FIGURE 3. Stenocephalum apiculatum. A. Plant. B. Leaf blade, lower face. C. Leaf blade, superior face. D. Capitula. E–F. Outer phyllaries. G–H. Middle phyllaries. I. Inner phyllary. J. Floret. K. Cypsela.
FIGURE 9. Stenocephalum niveum. A. Plant. B. Rhizome. C. Capitula. D–E. Outer phyllaries. F. Middle phyllary. G–H. Inner phyllaries. I. Cypsela. J in Taxonomic revision of the genus Stenocephalum (Vernonieae, Asteraceae)
FIGURE 9. Stenocephalum niveum. A. Plant. B. Rhizome. C. Capitula. D–E. Outer phyllaries. F. Middle phyllary. G–H. Inner phyllaries. I. Cypsela. J. Floret.
FIGURE 5. Stenocephalum hystrix. A. Plant. B. Capitula. C. Outer phyllary. D. Middle phyllary. E. Inner phyllary. F. Cypsela. G in Taxonomic revision of the genus Stenocephalum (Vernonieae, Asteraceae)
FIGURE 5. Stenocephalum hystrix. A. Plant. B. Capitula. C. Outer phyllary. D. Middle phyllary. E. Inner phyllary. F. Cypsela. G. Floret.
FIGURE 4. Stenocephalum hexanthum. A. Plant. B. Leaf blade. C. Capitula. D–E. Outer phyllaries. F. Middle phyllary. G. Inner phyllary. H. Floret. I in Taxonomic revision of the genus Stenocephalum (Vernonieae, Asteraceae)
FIGURE 4. Stenocephalum hexanthum. A. Plant. B. Leaf blade. C. Capitula. D–E. Outer phyllaries. F. Middle phyllary. G. Inner phyllary. H. Floret. I. Cypsela.
FIGURE 2. Anthurium atrovinosum. A–B. Leaves showing adaxially engraved veins and abaxially prominent veins. C. Young leaf. D–E. Habit. F–G. Pre-anthesis inflorescence. H in Two new species of Anthurium Schott (Araceae) from the Atlantic Forest in Minas Gerais, Brazil
FIGURE 2. Anthurium atrovinosum. A–B. Leaves showing adaxially engraved veins and abaxially prominent veins. C. Young leaf. D–E. Habit. F–G. Pre-anthesis inflorescence. H. Inflorescence at anthesis, with pollen grains. I. Berries. J. Inflorescence with immature fruits.
FIGURE 2. Didymoplexiella laosensis. A. Inflorescence. B. Tuber and roots. C. Fused dorsal sepal and petals. D. Fused lateral sepals. E. Labellum. F. Gynostemium with ovary and pedicel. G in Didymoplexiella laosensis (Orchidaceae: Epidendroideae: Gastrodieae), a new holomycotrophic orchid from Lao PDR
FIGURE 2. Didymoplexiella laosensis. A. Inflorescence. B. Tuber and roots. C. Fused dorsal sepal and petals. D. Fused lateral sepals. E. Labellum. F. Gynostemium with ovary and pedicel. G. Front view of column. H. Side view of column. I. Oblique view of column. J. Operculum. K. Pollinarium. (Drawn by Pankaj Kumar from specimen HNL-KFBG 0007.)
FIGURE 1. Dichocarpum yongshanense. A. Habit. B. Flower. C. Sepal. D. Petal. E. Stamen. F. Pistils. G in A new species of Dichocarpum (Ranunculaceae) from northeastern Yunnan, China
FIGURE 1. Dichocarpum yongshanense. A. Habit. B. Flower. C. Sepal. D. Petal. E. Stamen. F. Pistils. G. Follicles. Drawn by Ling Wang from the holotype.
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H in The species of Tigrideae (Iridaceae) in the Sierra of Nanchititla, State of México, Mexico, and description of the new species Tigridia nanchititlensis
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H. Fruits. Illustrated by Ericka Belén Cortez Castro based on type material (A. Rodríguez et al. 6049).
FIGURE 2. Werauhia maculata. A—Habit. B—Flower. C—Floral bract. D—Sepals. E—Petals. F—Anther. G in A new Werauhia (Tillandsioideae, Bromeliaceae) from Mexico with observations about its reproductive biology
FIGURE 2. Werauhia maculata. A—Habit. B—Flower. C—Floral bract. D—Sepals. E—Petals. F—Anther. G—Detail of the stigma. Based on a cultivated individual. Drawings by Zuemy Vallado Negroe.
FIGURE 2. Paepalanthus atratus. A. Capitulum detail. B. Leaf blade detail. C, D. Leaf apex detail. E. Scape detail. F. Spathe and scape detail. G. Spathe apex detail. H. Involucral bract, abaxial surface. I. Involucral bract, adaxial surface. J. Floral bract, abaxial surface. K. Floral bract, adaxial surface with deciduous cilia. L in Notes on an overlooked Paepalanthus (Eriocaulaceae) from central Brazil: identity, taxonomic placement, and morphological details
FIGURE 2. Paepalanthus atratus. A. Capitulum detail. B. Leaf blade detail. C, D. Leaf apex detail. E. Scape detail. F. Spathe and scape detail. G. Spathe apex detail. H. Involucral bract, abaxial surface. I. Involucral bract, adaxial surface. J. Floral bract, abaxial surface. K. Floral bract, adaxial surface with deciduous cilia. L. Staminate flower (pre-anthesis). M. Staminate flower (pre-anthesis) with sepals removed. N. Staminate flower (pre-anthesis) with sepals and petals removed. O. Pistillate flower with sepals and petals opened and lacking the stigmatic branches. P. Pistillate flower with sepals opened. Q. Pistillate flower with sepals removed and lacking the stigmatic branches. R. Gynoecium with bifid early developing stigmatic branches.
FIGURE 3. Pluteus keselakii a–e holotype BRNM 817402 basidiocarps, f pleurocystidia holotype, g pileipellis LIP Mycologie 0401385, h–i Basidiocarps. LIP Mycologie 0401385, j caulocystidia holotype BRNM 817402 in Pluteus keselakii (Pluteaceae, Agaricales), a new species in section Celluloderma
FIGURE 3. Pluteus keselakii a–e holotype BRNM 817402 basidiocarps, f pleurocystidia holotype, g pileipellis LIP Mycologie 0401385, h–i Basidiocarps. LIP Mycologie 0401385, j caulocystidia holotype BRNM 817402. Scale bar: a–e, h–i = 1 cm, f–g and j = 10 μm. Photos: a–e Pavol Kešeľák, f–g and j Hana Ševčíková, h–i Pierre-Arthur Moreau.
FIGURE 7. Holotype female Atopotrophos spiniger. A. Face. B. Head laterally. C. Head dorsally. D. Mesosoma laterally. E. Propodeum. F. Mandibles ventrally. G. T1 dorsally. H. T1 laterally. I in Review of Oriental species of the genus Atopotrophos (Hymenoptera: Ichneumonidae)
FIGURE 7. Holotype female Atopotrophos spiniger. A. Face. B. Head laterally. C. Head dorsally. D. Mesosoma laterally. E. Propodeum. F. Mandibles ventrally. G. T1 dorsally. H. T1 laterally. I. Wings.
FIGURE 7. Grantia arctica, spicules from the main body. A–A1. Cortical diactines small, lanceolated. B. Cortical diactines large. C. Trichoxea. D. Subatrial triactines. E–F. Tubar triactines. G–G1. Cortical triactines. H in On some Calcaronea (Porifera: Calcarea) from the Barents Sea and adjacent Polar Basin
FIGURE 7. Grantia arctica, spicules from the main body. A–A1. Cortical diactines small, lanceolated. B. Cortical diactines large. C. Trichoxea. D. Subatrial triactines. E–F. Tubar triactines. G–G1. Cortical triactines. H. Atrial tetractine.
FIGURE 23. Paraleptognathia benguela ZMH K40619 a. Maxillula, b. Epignath, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.1 in A revision of the genus Paraleptognathia Kudinova-Pasternak, 1981 (Crustacea: Tanaidacea) and description of four new species
FIGURE 23. Paraleptognathia benguela ZMH K40619 a. Maxillula, b. Epignath, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.1 mm.
FIGURE 19. Paraleptognathia weddellensis ZMH K40603 a. Maxillula, b. Epignath, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.1 in A revision of the genus Paraleptognathia Kudinova-Pasternak, 1981 (Crustacea: Tanaidacea) and description of four new species
FIGURE 19. Paraleptognathia weddellensis ZMH K40603 a. Maxillula, b. Epignath, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.1 mm.
FIGURE 10. Paraleptognathia gracilis ZMH K40589 a. Maxillula, b. Epignath, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.25 in A revision of the genus Paraleptognathia Kudinova-Pasternak, 1981 (Crustacea: Tanaidacea) and description of four new species
FIGURE 10. Paraleptognathia gracilis ZMH K40589 a. Maxillula, b. Epignath, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.25 mm for b and e for the rest scale bar 0.1 mm.
FIGURE 6. Paraleptognathia australis ZMH K40580 a. Epignath, b. Maxillula, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.1 in A revision of the genus Paraleptognathia Kudinova-Pasternak, 1981 (Crustacea: Tanaidacea) and description of four new species
FIGURE 6. Paraleptognathia australis ZMH K40580 a. Epignath, b. Maxillula, c. Mandibles, d. Labrum, e. Labium, f. Maxilla, g. Maxilliped. Scale bar 0.1 mm.
FIGURE 17. Paraleptoganthia multiserrata ZMUC CRU 7430 a. Cheliped. ZMB 27518 b. Mandibles, c. Maxillula, d. Maxilla, e. Epignath, f. Labium, g. Labrum, h. Maxilliped. Scale bar 0.25 in A revision of the genus Paraleptognathia Kudinova-Pasternak, 1981 (Crustacea: Tanaidacea) and description of four new species
FIGURE 17. Paraleptoganthia multiserrata ZMUC CRU 7430 a. Cheliped. ZMB 27518 b. Mandibles, c. Maxillula, d. Maxilla, e. Epignath, f. Labium, g. Labrum, h. Maxilliped. Scale bar 0.25 mm for a,d,e,f,g. Scale bar 0.1 mm for b,c,h.
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.