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473 results for “Araceae,”
FIGURE 1 in Taxonomic studies of Araceae in Myanmar II: Typhonium edule, a remarkable new aroid species from Monywa District, Sagaing Region
FIGURE 1. Typhonium edule (K.Z. Hein 030) A. Tuber B. Leaf C. Inflorescence D. Spathe tube longitudinally cut open showing the spadix. Drawn by: Zin Min Htay.
FIGURE 2 in Taxonomic studies of Araceae in Myanmar II: Typhonium edule, a remarkable new aroid species from Monywa District, Sagaing Region
FIGURE 2. Typhonium edule (K.Z. Hein 030). A. Habit B. Leaf C. Tuber D. Spathe tube longitudinally cut open showing the spadix E. Lower portion of the spadix F. Inflorescence. Photos by: K.Z. Hein.
FIGURE 5. Monstera gentryi from Panama. A. Adult plant. B. Mature infructescence, most stylar plates detached. C in A reexamination of Monstera oreophila (Araceae: Monsteroideae) and description of two new pinkish-spathed species of Monstera from Costa Rica and Panama
FIGURE 5. Monstera gentryi from Panama. A. Adult plant. B. Mature infructescence, most stylar plates detached. C. Longitudinal cut of the inflorescence in female anthesis with Scarabaeidae beetles inside. D. Inflorescence with herbivory.
FIGURE 3 in A reexamination of Monstera oreophila (Araceae: Monsteroideae) and description of two new pinkish-spathed species of Monstera from Costa Rica and Panama
FIGURE 3. Monstera oreophila from Panama (A–D) and from Costa Rica (E–G). A. Adult plant with smooth petioles. B. Inflorescence with pendent spathe (torn at base) showing the internal (adaxial) surface and the spadix with herbivore damage. C. Adult plant with pendent spathe showing the internal (adaxial) surface. D. Petiole with tiny white warts. E. Adult plant with erect spathe (not torn at base yet). F. Inflorescence with pendent spathe (torn at base) showing the internal (adaxial) surface. G. Petiole with tiny white warts.
FIGURE 6. Monstera mittermeieri from Costa Rica. A. Developing inflorescence. B in A reexamination of Monstera oreophila (Araceae: Monsteroideae) and description of two new pinkish-spathed species of Monstera from Costa Rica and Panama
FIGURE 6. Monstera mittermeieri from Costa Rica. A. Developing inflorescence. B. Front and back views of open inflorescence. C. Mature infructescence, stylar plates detached from the middle portion. D. Fertile flower, in lateral view (left), and longitudinal section (right). E. Stylar plate, top view (left), and individual stamen (right). F. Sterile flower in lateral view (left) and in longitudinal section (right). G. Seeds. H. Portion of juvenile shoot. I. Portion of adult shoot with spathe turning whitish after anthesis. (Based on M. Cedeño et al. 1013).
FIGURE 4. Monstera gentryi from Panama. A in A reexamination of Monstera oreophila (Araceae: Monsteroideae) and description of two new pinkish-spathed species of Monstera from Costa Rica and Panama
FIGURE 4. Monstera gentryi from Panama. A. Mature infructescence, stylar plates detached in the middle part. B. A longitudinal cut of the inflorescence in female anthesis, showing adaxial (internal) surface of spathe. C. Developing inflorescence. D. Fertile flower, in lateral view (left), and longitudinal section (right). E. Seeds. F. Portion of juvenile shoot. G. Sterile flower in lateral view (left) and in longitudinal section (right). H. Portion of adult shoot. I. Stylar plate, top view (left), and individual stamen (right). (Based on Ortiz et al. 3756).
FIGURE 2. Monstera oreophila from Costa Rica. A. Developing inflorescence. B in A reexamination of Monstera oreophila (Araceae: Monsteroideae) and description of two new pinkish-spathed species of Monstera from Costa Rica and Panama
FIGURE 2. Monstera oreophila from Costa Rica. A. Developing inflorescence. B. Front and back views of open inflorescence with pendent spathe (torn at base). C. Mature infructescence. D. Fertile flower, in lateral view (left), and in longitudinal section (right). E. Stylar plate, top view (left), and individual stamen (right). F. Sterile flower in lateral view (left) and in longitudinal section (right). G. Seeds. H. Portion of juvenile shoot. I. Portion of adult shoot. J. seedling. (Based on M. Cedeño et al. 1272).
FIGURE 1. Anthurium gallardoae. A in Anthurium gallardoae and Xanthosoma isabellanum (Araceae), two new species from coastal Ecuador
FIGURE 1. Anthurium gallardoae. A. Spadix, spathe and adaxial view of leaf blades (bottom). B. Leaf blade beneath. C. A persistent brown cataphyll and base of petioles. D. Cultivated plant.
FIGURE 2. Xanthosoma isabellanum. A. Cultivated plant. B. Inflorescence and two leaves. C in Anthurium gallardoae and Xanthosoma isabellanum (Araceae), two new species from coastal Ecuador
FIGURE 2. Xanthosoma isabellanum. A. Cultivated plant. B. Inflorescence and two leaves. C. Inflorescence at anthesis. D. Longitudinally sectioned inflorescence displaying the purple interior of lower spathe, pistillate flowers, and sterile portion fully covered by staminodia.
FIGURE 2 in Notes on the distribution of Anadendrum latifolium (Araceae) in India and its lectotypification
FIGURE 2. Lectotype of Anadendrum latifolium (B. Scortechini, 577b, K000401076) © The Board of Trustees of the Royal Botanic Gardens, Kew. Reproduced with the consent of the Royal Botanic Gardens, Kew.
FIGURE 1. Anadendrum latifolium. Fruiting twig, from P. Chakraborty 5614 in Notes on the distribution of Anadendrum latifolium (Araceae) in India and its lectotypification
FIGURE 1. Anadendrum latifolium. Fruiting twig, from P. Chakraborty 5614. Drawn by Dineshwar Kumar Sah.
FIGURE 5. Philodendron edmundoi. A. Habit. B. Inflorescence. Philodendron propinquum. C. Habit. D in Araceae from Serra do Brigadeiro State Park, Minas Gerais, Brazil
FIGURE 5. Philodendron edmundoi. A. Habit. B. Inflorescence. Philodendron propinquum. C. Habit. D. Berries.
FIGURE 4. Philodendron appendiculatum. A. Habit. B. Leaf shape. C. Inflorescence detail. D. Berries. E–J Philodendron cordatum. E. Habit. F in Araceae from Serra do Brigadeiro State Park, Minas Gerais, Brazil
FIGURE 4. Philodendron appendiculatum. A. Habit. B. Leaf shape. C. Inflorescence detail. D. Berries. E–J Philodendron cordatum. E. Habit. F. Leaf shape, detailed inflorescence, berries. G. Stem. H. Inflorescence. I. Spathe detail. J. Berries.
FIGURE 7. Anthurium scandens subsp. scandens. A. Habit and leaf detail. Philodendron appendiculatum. B. Inflorescence. C. Habit. Philodendron cordatum. D. Habit. E. Inflorescence. Philodendron propinquum. F in Araceae from Serra do Brigadeiro State Park, Minas Gerais, Brazil
FIGURE 7. Anthurium scandens subsp. scandens. A. Habit and leaf detail. Philodendron appendiculatum. B. Inflorescence. C. Habit. Philodendron cordatum. D. Habit. E. Inflorescence. Philodendron propinquum. F. Habit and inflorescence. Illustrations by Thaís Marcon
FIGURE 3. Anthurium longifolium. A. Habit. B. Inflorescence before anthesis. C. Berries. Anthurium lucioi. D. Habit. E in Araceae from Serra do Brigadeiro State Park, Minas Gerais, Brazil
FIGURE 3. Anthurium longifolium. A. Habit. B. Inflorescence before anthesis. C. Berries. Anthurium lucioi. D. Habit. E. Leaf shape and inflorescence in anthesis. F. Inflorescence after anthesis. Asterostigma lombardii. G. Habit. H. Leaf shape. I. Inflorescence.
FIGURE 6. Anthurium atrovinosum. A. Habit. B-D. Inflorescence details. Anthurium brigadeiroense. E. Habit. F-H. Inflorescence details. Anthurium comtum. I. Habit. J. Inflorescence. Anthurium lucioi. K. Habit. L in Araceae from Serra do Brigadeiro State Park, Minas Gerais, Brazil
FIGURE 6. Anthurium atrovinosum. A. Habit. B-D. Inflorescence details. Anthurium brigadeiroense. E. Habit. F-H. Inflorescence details. Anthurium comtum. I. Habit. J. Inflorescence. Anthurium lucioi. K. Habit. L. Inflorescence. Illustrations by Thaís Marcon.
FIGURE 2. Anthurium atrovinosum. A. Habit. B. Inflorescence before anthesis. C. Berries. Anthurium brigadeiroense. D. Inflorescence after anthesis. E. Berries. Anthurium fontellanum. F. Population. G. Habit. H. Leaf shape. I in Araceae from Serra do Brigadeiro State Park, Minas Gerais, Brazil
FIGURE 2. Anthurium atrovinosum. A. Habit. B. Inflorescence before anthesis. C. Berries. Anthurium brigadeiroense. D. Inflorescence after anthesis. E. Berries. Anthurium fontellanum. F. Population. G. Habit. H. Leaf shape. I. Inflorescence in anthesis. Anthurium gladiifolium J. Inflorescence in anthesis. Anthurium scandens subsp. scandens K. Habit and berries.
FIGURE 3. Typhonium phuocbinhense. D in Typhonium phuocbinhense sp. nov. (Araceae: Areae), a new species from central Vietnam
FIGURE 3. Typhonium phuocbinhense. D. Different styles of leaf blade; E. Plant tubers; F. Inflorescence cut out front part of spathe; G. Female and staminode portion in close view; H. Male portion in close view.
FIGURE 2. Typhonium phuocbinhense. A in Typhonium phuocbinhense sp. nov. (Araceae: Areae), a new species from central Vietnam
FIGURE 2. Typhonium phuocbinhense. A. Plants bearing young inflorescences; B. Plants bearing opening inflorescence; C. Inflorescences.
FIGURE 1. Typhonium phuocbinhense. A in Typhonium phuocbinhense sp. nov. (Araceae: Areae), a new species from central Vietnam
FIGURE 1. Typhonium phuocbinhense. A. Plant in flowering; B. View of female and staminode portions inside spathe tube cut out; C. Ovary; D. Stamens.
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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.