Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
473
datasets available to search
ShareScore release 0.9.0
Dataset results
473 results for “Araceae”
Arisaema dracontium (Araceae) - whole plant - juvenile
Image of Arisaema dracontium (Araceae) - whole plant - juvenile
Arisaema dracontium (Araceae) - leaf - basal or on lower stem
Image of Arisaema dracontium (Araceae) - leaf - basal or on lower stem
Arisaema dracontium (Araceae) - inflorescence - whole - unspecified
Image of Arisaema dracontium (Araceae) - inflorescence - whole - unspecified
Arisaema dracontium (Araceae) - leaf - margin of upper + lower surface
Image of Arisaema dracontium (Araceae) - leaf - margin of upper + lower surface
Arisaema dracontium (Araceae) - inflorescence - frontal view of flower
Image of Arisaema dracontium (Araceae) - inflorescence - frontal view of flower
Arisaema dracontium (Araceae) - whole plant - juvenile
Image of Arisaema dracontium (Araceae) - whole plant - juvenile
FIGURE 2 in Two new species of Monstera (Araceae: Monsteroideae) from the Pacific slope of the Andes in Colombia
FIGURE 2. Distribution map for Monstera momoi. (circles) and Monstera kikiae. (triangles). National Natural Parks are shown in green from top to bottom Las Orquídeas, Tatamá and Farallones de Cali.
FIGURE 3 in Two new species of Monstera (Araceae: Monsteroideae) from the Pacific slope of the Andes in Colombia
FIGURE 3. Comparison of Monstera momoi, Monstera kikiae and similar species. A-B, Monstera momoi. C-D, M. dissecta. E-F, M. kikiae. G-H, M. oreophila. A, Leaf blade. B, Petiole apex showing the sheath and geniculum. C, Petiole apex showing the sheath and geniculum. D, Leaf blade. E, Leaf blade. F, Inflorescence in post-anthesis. G, Inflorescence in anthesis. H, Leaf blade. Photographs A-D by Marco Cedeño; F-H by Alejandro Zuluaga.
FIGURE 4 in Two new species of Monstera (Araceae: Monsteroideae) from the Pacific slope of the Andes in Colombia
FIGURE 4. Monstera momoi sp. nov. A, Undeveloped inflorescence. B, Partially-opened inflorescence, frontal view. C, Part-opened inflorescence, dorsal view. D, Infructescence. E, Fertile flower in lateral view (left) and in longitudinal section (right). F, Sterile flower in lateral view (left) and in longitudinal section (right). G, Adult plant. H, Stylar cap, dorsal view (left), and individual stamen (right). Photographs by Marco Cedeño.
FIGURE 3. Typhonium khonkaenensis. A in A new species and a new record of Typhonium (Araceae) from southern Vietnam
FIGURE 3. Typhonium khonkaenensis. A. The species in habitat. B. Whole plant. C. Different forms of leaf blade. D. Inflorescence. E. Spathe. F. Part of spadix showing male, sterile and female zones. G. Spathe, inside. H. Stamens. I. Female flowers. J. Fruits. K. Seeds.
FIGURE 1. Typhonium vietnamense. A in A new species and a new record of Typhonium (Araceae) from southern Vietnam
FIGURE 1. Typhonium vietnamense. A. The species in habitat. B. Whole plant. C. Different forms of leaf blade. D & E. Spathe. F. Longitudinal section of inflorescence. G. Male zone. H. Female zone and staminodes. I. Ovaries. J. Stigmas. K. Stamens. L. Fruits. M. Seeds.
FIGURE 3 in Lagenandra wayambae (Araceae), a new endemic species from a freshwater swamp forest of Sri Lanka
FIGURE 3. Lagenandra wayambae; A. Spathe showing the opening in the limb of the spathe giving access to the reproductive organs. B. Spathe. Note the twist from the rear side. C. Spathe dissected and opened. D. Spadix. E. Infructescence. F. Seeds.
FIGURE 1 in Lagenandra wayambae (Araceae), a new endemic species from a freshwater swamp forest of Sri Lanka
FIGURE 1. Map of Sri Lanka indicating the location of Lagenandra wayambae, the freshwater swamp forest in Walauwewaththa Wathurana, Bulathsinghala, Sri Lanka.
FIGURE 4 in Amorphophallus calcicolus (Thomsonieae, Araceae), a new species from the Bohol island, Central Visayas, Philippines
FIGURE 4. Photo comparison of Amorphophallus calcicolus vs. A. longispathaceus. A. A. calcicolus inflorescence details; B. A. longispathaceus inflorescence details; C. A. calcicolus leaves; D. A. longispathaceus leaves. Photos A & C by M. Sumalinog, Jr., B & D by J.M. Agcaoili.
FIGURE 1 in Amorphophallus calcicolus (Thomsonieae, Araceae), a new species from the Bohol island, Central Visayas, Philippines
FIGURE 1. Map of the type locality. Central Visayas, Bohol island (province), Municipality of Bilar, Loboc Watershed Forest Reserve (LWFR) (denoted by a red dot). Map created by T.D. Reyes, Jr.
FIGURE 2. Anthurium tacotalpense. A in Anthurium tacotalpense (Araceae), a new species from Mexico
FIGURE 2. Anthurium tacotalpense. A. Cultivated adult plant showing upper surface, lobes and margins of the blades; B. Inflorescence in the male phase with its yellow stamens; C. Portion of spadix in male phase showing the flowers, tepals and pistils with black stigmas (not receptive); D. Infructescence with mature (orange) and immature (green) fruits. Scale bars: A = 10 cm; B = 2 cm; C = 1 mm; D = 2 cm. Photos: A–D: Pedro Díaz Jiménez.
FIGURE. Fruiting heads and peduncles of C. spongifolia. A. Site WP260; two peduncles have lost heads (arrows 1 and 2), the upper part (male zone) of one spadix lies on ground (arrow 3), and six attached heads all touch ground. B–E. Site WP251; a single, detached immature head with bite marks in upper and lower ends, and torn surface at junction with peduncle (at left in D–E). Scale bars: 10 cm with 1 cm units (main image); 8 cm with 2 cm units (lower right); B–C enlarged, without scale. (Bach Ma NP, 2018). Photos: PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Fruiting heads and peduncles of C. spongifolia. A. Site WP260; two peduncles have lost heads (arrows 1 and 2), the upper part (male zone) of one spadix lies on ground (arrow 3), and six attached heads all touch ground. B–E. Site WP251; a single, detached immature head with bite marks in upper and lower ends, and torn surface at junction with peduncle (at left in D–E). Scale bars: 10 cm with 1 cm units (main image); 8 cm with 2 cm units (lower right); B–C enlarged, without scale. (Bach Ma NP, 2018). Photos: PJM.
FIGURE. Floral habit and structure of C. spongifolia. A. Type specimen in situ with open, spathe limb (apex is reflexed out of view), and green spathe tube (ca. 6 cm long). B. Adjacent plant with inflorescences and prophylls. C. Spadix showing from top: sterile appendix, staminate (male) zone, sterile interstice, and green pistillate (female) zone with tapered, conical form. D. Detail of female zone showing a few basal staminodes. E–G. Berries of the preserved type specimen. G. Dissected berry with orthotropous ovules (some outlined) attached by funicles to parietal placentae (arrows). H. Surface of male zone showing closely-packed synandria. I. Synandria separated to show fused anther sacs beneath apical pores (example in center has 8 pores, 8 anthers) J. Mature fruiting head, with single berry removed to show seed packing and 67 seeds extracted (scale bar units: 1 mm) (Bach Ma NP; type 2020; fruit and seeds 2018). Photos: NVD and PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Floral habit and structure of C. spongifolia. A. Type specimen in situ with open, spathe limb (apex is reflexed out of view), and green spathe tube (ca. 6 cm long). B. Adjacent plant with inflorescences and prophylls. C. Spadix showing from top: sterile appendix, staminate (male) zone, sterile interstice, and green pistillate (female) zone with tapered, conical form. D. Detail of female zone showing a few basal staminodes. E–G. Berries of the preserved type specimen. G. Dissected berry with orthotropous ovules (some outlined) attached by funicles to parietal placentae (arrows). H. Surface of male zone showing closely-packed synandria. I. Synandria separated to show fused anther sacs beneath apical pores (example in center has 8 pores, 8 anthers) J. Mature fruiting head, with single berry removed to show seed packing and 67 seeds extracted (scale bar units: 1 mm) (Bach Ma NP; type 2020; fruit and seeds 2018). Photos: NVD and PJM.
FIGURE. Stem, roots, and buds of C. spongifolia. A. Cross section of stem in B, showing clear, gummy exudate. B. Mature stem with decumbent part at left, erect part at right, roots and rootlets, brown leaf scars, and single adaxial buds (arrows). C. Young stem, with single, adaxial bud revealed. Scale bars = 2 cm (Bach Ma NP, 2018, 2021). Photos: NVD and PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Stem, roots, and buds of C. spongifolia. A. Cross section of stem in B, showing clear, gummy exudate. B. Mature stem with decumbent part at left, erect part at right, roots and rootlets, brown leaf scars, and single adaxial buds (arrows). C. Young stem, with single, adaxial bud revealed. Scale bars = 2 cm (Bach Ma NP, 2018, 2021). Photos: NVD and PJM.
FIGURE. Blades of C. spongifolia. A. Sub-marginal and marginal collective veins, with laminal tissue (2–4 mm) between. B. Marginal collective veins fused below shallow sinus. C. Underside with spongy appearance produced by "false pores"; and thick, rubbery texture indicated by axial wrinkles formed in crease. D. Underside showing primary vein and pinnate lateral veins surrounded by spongy tissue. E. Sub-stomatal cavities revealed by transmitted light (scale unit 0.25 mm), F. Sub-stomatal cavities revealed by removing lower epidermis (A–D: Mengla County, 2018. E–F: Bach Ma NP seedling, ex situ). Photos: PJM. in Colocasia spongifolia sp. nov. (Araceae) in southern China and central Vietnam
FIGURE. Blades of C. spongifolia. A. Sub-marginal and marginal collective veins, with laminal tissue (2–4 mm) between. B. Marginal collective veins fused below shallow sinus. C. Underside with spongy appearance produced by "false pores"; and thick, rubbery texture indicated by axial wrinkles formed in crease. D. Underside showing primary vein and pinnate lateral veins surrounded by spongy tissue. E. Sub-stomatal cavities revealed by transmitted light (scale unit 0.25 mm), F. Sub-stomatal cavities revealed by removing lower epidermis (A–D: Mengla County, 2018. E–F: Bach Ma NP seedling, ex situ). Photos: PJM.
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.