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4,937 results for “Endemic species”
FIGURE 5 in Pandanus martinianus (Pandanaceae), a new endemic species from northeastern India
FIGURE 5. Detail of syncarps. A. Pandanus urophyllus Hance; B. Pandanus tonkinensis Martelli ex B.C. Stone. A: Regalado & al. 1955; B: Regalado et al. 1861; photographs: C. Davidson.
FIGURE 3. Pandanus martinianus Nadaf & Zanan. A in Pandanus martinianus (Pandanaceae), a new endemic species from northeastern India
FIGURE 3. Pandanus martinianus Nadaf & Zanan. A. Habit; B. Syncarp with a focus on stigmas in frame. A, B: Zanan 65; photographs: R. Zanan.
FIGURE 1. A–E. Jacquemontia grisea. A in Two new species of Jacquemontia Choisy (Convolvulaceae) endemic to Bahia, Brazil
FIGURE 1. A–E. Jacquemontia grisea. A. habit; B. leaf; C. trichome; D. sepals, on left the outer one, on right the inner one; E. gynoecium (drawn from the holotype E. R. de Souza & M.N.S. Stapf 473); F–J. Jacquemontia staplesii. F. habit; G. inflorescence enclosed by leaves; H. trichome; J. sepals, from left to right the outer to the inner (drawn from the holotype R. M. Harley 22710).
FIGURE 1. Adenia barthelatii. A. Habit, scale bar 30 in Adenia barthelatii (Passifloraceae), a new endemic species of Mayotte and its phylogenetic status within the genus Adenia
FIGURE 1. Adenia barthelatii. A. Habit, scale bar 30 cm; B, C. Stem and leaves, scale bar 2 cm; D, E. ♁ flower, scale bar 4 mm; F, G.♀ flower, scale bar 4 mm; H. ♀ inflorescence and fruit, scale bar 1 cm; I. open fruit, scale bar 1 cm;. A–C, I, from Labat et al. 3291, D, E, from Barthelat et al. 1205, F, G, H from Barthelat et al. 433. Drawing by Agathe Haevermans.
FIGURE 2 in Adenia barthelatii (Passifloraceae), a new endemic species of Mayotte and its phylogenetic status within the genus Adenia
FIGURE 2. Bayesian allcompat tree of Adenia. Clades I-V of Hearn (2006) are indicated. Node 'A' (with surrounding box) is the
FIGURE 4 in Eugenia alletiana (Myrtaceae), a new critically endangered species endemic to the island of Mauritius
FIGURE 4. Distribution of the new species Eugenia alletiana on Mauritius. Each point is 1 km across.
FIGURE 3. A in Eugenia alletiana (Myrtaceae), a new critically endangered species endemic to the island of Mauritius
FIGURE 3. A. Foliage with unripe fruits; B. Ripe fruit; C. Variation in external surface of the woody endocarp (all from a single plant); D. Longitudinal cross-section of the endocarp; E. Seed, showing bullate outer surface on the left and smooth adaxial surface of cotyledon on the right (dark brown); F. Seedling still attached to endocarp (A-Le Pouce, others Brise Fer).
FIGURE 2. A in Eugenia alletiana (Myrtaceae), a new critically endangered species endemic to the island of Mauritius
FIGURE 2. A. Flower bud showing fused apex; B. Flower bud showing teeth (bottom left); C. Flower with irregularly ruptured hypanthium lobes (5 lobes on the left, 4 lobes on the right). D. Stamens distribution on the inner surface of a split hypanthium; E. Side view of flower showing diminutive white petals at ends of split hypanthium lobes; F. Detail of stamens and a petal (all Brise Fer).
FIGURE 1. A in Eugenia alletiana (Myrtaceae), a new critically endangered species endemic to the island of Mauritius
FIGURE 1. A. Tree; B–C. Bark; D. Leaf, adaxial surface; E. Leaf, abaxial leaf; F. Foliage with flower buds; G. Flower bud (A–C Le Pouce, others Brise Fer).
FIGURE 2. Trigonachras postardanjeisin. A in A new endemic species of Trigonachras (Sapindaceae) from Sabah, Malaysia (Borneo)
FIGURE 2. Trigonachras postardanjeisin. A: immature fruit; B: stamen; C: branchlet with leaf and inflorescence; D: immature infrutescence; E: flower with detail of disc; F: flower with longitudinal section and details of petals and sepals. B, C, E, F from Buerki et al. 338 (G, L, MO); A, D from Leopold & Amin SAN 75360 (SING). Drawn by Roger Lala Andriamiarisoa.
FIGURE 3. Trigonachras postardanjeisin. A in A new endemic species of Trigonachras (Sapindaceae) from Sabah, Malaysia (Borneo)
FIGURE 3. Trigonachras postardanjeisin. A: inflorescence (Buerki et al. 338, MO); B: flower (Buerki et al. 338, MO). Pictures: Chris Davidson.
FIGURE 2 in Senegalia lotterii (Fabaceae) a new species endemic to the Barberton Centre of Endemism, South Africa
FIGURE 2: Characteristic thorns of Senegalia lotterii with the upper malformed and the lower projecting at 110°.
FIGURE 1. Manihot kalungae. A. Habit. B. Stipule. C. Adaxial leaf surface. D. Staminate flower with calyx split and opened. E. Stamen. F. Pistillate flower. G in A new endemic species of Manihot (Euphorbiaceae s. str.) from the Chapada dos Veadeiros, Goiás, Brazil
FIGURE 1. Manihot kalungae. A. Habit. B. Stipule. C. Adaxial leaf surface. D. Staminate flower with calyx split and opened. E. Stamen. F. Pistillate flower. G. Detail of the inner surface of the pistillate sepals showing the villous trichomes. H. Fruit. I. Seed, dorsal side. From M. J. Silva, R. C. Sodré, F. K. L. Silva, A. O. Souza & L. L. C. Antunes 4768 (UFG), drawn by Cristiano Gualberto.
FIGURE 1. A in Mimosa sobralii (Fabaceae, Mimosoideae), a new tree species endemic to the southern Brazilian highland slopes
FIGURE 1. A. Branches with flowers (in most leaves of this material many pinnae fell, which is common in a lot of individuals of this species). B. Detail of stem hair-covering, sometimes with sparse whitish tichomes. C. Globose capitulum (some stamens fell). D. Flower and floral bract. E. Floral bract. F. Stamens, two sizes. G. Ovary and style. H. Adaxial surface of leaflet. I. Abaxial surface of leaflet densely covered with dark rounded resinous glands (Illustrator: Diana Carneiro).
FIGURE 2. A. Flowering branches. B, C. Rhytidome. D, E in Mimosa sobralii (Fabaceae, Mimosoideae), a new tree species endemic to the southern Brazilian highland slopes
FIGURE 2. A. Flowering branches. B, C. Rhytidome. D, E. Leaves and reddish-brown stems. F, I. Leaf-stalks canaliculate, paraphyllidia reniform. G. Branch with immature fruits. H. Habit. J, K. Mature fruits: craspedia and seeds (J=scale 1mm, K=scale 1cm)(K. photo: Valdely Kinupp). L. Abaxial surface of leaflets densely covered with dark rounded resinous glands.
FIGURE 1. A–G in Four new endemic species of Hippeastrum (Amaryllidaceae) from Serra da Canastra, Minas Gerais State, Brazil
FIGURE 1. A–G. Hippeastrum canastrense (from Nakajima et al. 2812). A–B. Habit. A. Bulbs in reproductive phase. B. Bulb in vegetative phase. C. Longitudinal section in perigone, showing absence of paraperigone, staminal filaments and style position. D–G. Papillary region at the adaxial apex of tepals. D. Upper sepal. E. Lateral sepal. F. Lateral petal. G. Lower petal. H–N. Hippeastrum diniz-cruziae (from Romero & Nakajima 3789). H–I. Habit. H. Bulb in reproductive phase. I. Bulb in vegetative phase. J. Longitudinal section in hypanthium tube and throat region, showing paraperigone of bristles. K–N. Papillary region at the adaxial apex of tepals. K. Upper sepal. L. Lateral sepal. M. Lateral petal. N. Lower petal.
FIGURE 3. A–D. Hippeastrum canastrense. A in Four new endemic species of Hippeastrum (Amaryllidaceae) from Serra da Canastra, Minas Gerais State, Brazil
FIGURE 3. A–D. Hippeastrum canastrense. A. Flower in lateral view. B. Biflora inflorescence with a flower in front view. C. Uniflora inflorescence. D. Population in field, some months after fire. E–H. Hippeastrum roseoalbum. E. Biflora inflorescence. F. Close-up of throat region. G. Uniflora inflorescence with flower in lateral view. H. Flower in front view. I–L. Hippeastrum dinizcruziae. I. Habit. J. Biflora inflorescence, a flower in front view with a pillager insect. K. Close-up of throat region. L. Triflora inflorescence, with flowers in bud. M–O. Hippeastrum sanfranciscanum. M. Uniflora inflorescence with flower in lateral view. N. Flower in front view. O. Flower in lateral view. P. Hippeastrum glaucescens. Inflorescence with flowers in front and lateral view. (A– I, K, M–O photos by R. S. Oliveira; J, L by R. Mello-Silva; P by J. Dutilh).
FIGURE 2. A–G in Four new endemic species of Hippeastrum (Amaryllidaceae) from Serra da Canastra, Minas Gerais State, Brazil
FIGURE 2. A–G. Hippeastrum roseoalbum (from Romero et al. 4582). A–B. Habit. A. Bulbs in reproductive phase. B. Bulb in vegetative phase. C. Longitudinal section in hypanthium tube and throat region, showing paraperigone of fasciculate bristles. D–G. Papillary region at the adaxial apex of tepals. D. Upper sepal. E. Lateral sepal. F. Lateral petal. G. Lower petal. H–M. Hippeastrum sanfranciscanum (from Nakajima et al. 2868). H–I. Habit. H. Bulbs in reproductive phase. I. Bulb in vegetative phase. J–M. Papillary region at the adaxial apex of tepals. J. Upper sepal. K. Lateral sepal. L. Lateral petal. M. Lower petal.
FIGURE 4 a-b in A geometric morphometric evaluation on three populations of endemic species Dorcadion micans (Cerambycidae, Coleoptera) in Ankara Province from Turkey with a new subspecies description
FIGURE 4 a-b. Canonical variate analyses (CVA) of elytra (a) and pronotum (b) configurations. Colors represent different populations: Akyurt population (red), Bala population (green) and Beynam population (blue). Wire-frame graphs were shown for shape differences along the CV1 and CV2. The extreme changes of shape in positive and negative direction was shown by the violet lines and mean shape of elytra and pronotum was shown by blue lines. The scale for each figures is; elytra CV1 (-5, +5), pronotum CV2 (-5, +5).
FIGURE 5 a-b in A geometric morphometric evaluation on three populations of endemic species Dorcadion micans (Cerambycidae, Coleoptera) in Ankara Province from Turkey with a new subspecies description
FIGURE 5 a-b. Box-plot showing the average of centroid size of elytra (a) and pronotum (b) each species. The inner line represents the median. Box margins are at 25th and 75th percentiles bars extend to 5th and 95th percentiles, circles represent outliers.
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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.