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4,937 results for “Endemic species”
FIGURE 3. A in A new species of Microlicia (Melastomataceae) endemic to Serra das Confusões expands the range of the genus to Piauí, Brazil
FIGURE 3. A. Areas of endemism (AEs) of Lavoisiereae and the distribution of Microlicia piauiensis. The AEs were identified by Pacifico et al. (2020a) using endemicity analysis and a grid of 1º degree cells. For overlapping AEs, only those with higher endemicity scores are shown. B. Distribution of Microlicia piauensis in southern Piauí, within the boundaries of the Serra das Confusões National Park (outlined in blue).
FIGURE 2 in A new species of Microlicia (Melastomataceae) endemic to Serra das Confusões expands the range of the genus to Piauí, Brazil
FIGURE 2. Microlicia piauiensis, photos of living specimens and type locality. A. Habit of a fruiting specimen. B. Close-up of a 3-locular capsule. C. Close-up of a 4-locular capsule. D. Flowering branch. E. Frieseomelitta varia (Apidae) pollinating a flower. F. Landscape with rocky sandstone outcrops at the Serra das Confusões. Photos A–E by José Alves Siqueira Filho, F by Antonio Nogueira. Voucher specimens: A–C, J.A. Siqueira Filho 2632 et al. (HVASF); D–E, J.A. Siqueira Filho 3027 et al. (HVASF).
FIGURE 1 in A new species of Microlicia (Melastomataceae) endemic to Serra das Confusões expands the range of the genus to Piauí, Brazil
FIGURE 1. Microlicia piauiensis, images of dried specimens. A. Habit. B. Apical branch. C. Basal branch with corky bark peeling away. D. Leaf abaxial surface. E. Leaf adaxial surface. F. Floral bud. G. Petal. H. Stamen (profile view). I. Capsule. J. Seed. Photos taken from the holotype. Scale bars: A: 2 cm; B-C: 4 mm; D-J: 2 mm.
Distribution. Endemic to N Pacific Ocean, the majority ofrecords come from W North America from 32° 42° N to 54° 18' N, also recorded on the Pacific coast ofJapan from 35% to 41° 42° N. This suggests that distribution of this species spans the N Pacific Ocean, but with no records from the C Pacific Ocean, it remains possible that there are separate E and W populations. It has been suggested that distribution of this species is related to the deep current system of the subarctic. in Ziphiidae
Distribution. Endemic to N Pacific Ocean, the majority ofrecords come from W North America from 32° 42° N to 54° 18' N, also recorded on the Pacific coast ofJapan from 35% to 41° 42° N. This suggests that distribution of this species spans the N Pacific Ocean, but with no records from the C Pacific Ocean, it remains possible that there are separate E and W populations. It has been suggested that distribution of this species is related to the deep current system of the subarctic.
Distribution. Endemic to cold temperate and subpolar waters of N Pacific Ocean, from the relatively shallow waters of the Bering Sea in the N to S Japan (W Pacific Ocean) and C California (E Pacific Ocean); itis the only species of Mesoplodon that commonly occurs in the Sea ofJapan. in Ziphiidae
Distribution. Endemic to cold temperate and subpolar waters of N Pacific Ocean, from the relatively shallow waters of the Bering Sea in the N to S Japan (W Pacific Ocean) and C California (E Pacific Ocean); itis the only species of Mesoplodon that commonly occurs in the Sea ofJapan.
FIGURE 1 in Astragalus durandianus (sect. Trachycercis) as an Iranian endemic species: emended description, distribution, and conservation
FIGURE 1. Scanned image of the isolectotype specimen of Astragalus durandianus kept in P (P03202941).
FIGURE 7 in Astragalus durandianus (sect. Trachycercis) as an Iranian endemic species: emended description, distribution, and conservation
FIGURE 7. Distribution map of seven species of Astragalus sect. Trachycercis in the Iranian plateau based on confirmed identification of the herbarium specimens.
FIGURE 6 in Astragalus durandianus (sect. Trachycercis) as an Iranian endemic species: emended description, distribution, and conservation
FIGURE 6. Some details of morphological characters in Astragalus durandianus. A–B) Fruits densely covered by a mixture of black and white hairs (A: Hojjat & Zangooie 32262-FUMH) or wholly by white hairs and on stipe by black hairs (B: Ayatollahi & Zangooie 14380-FUMH); C) Calyx in fruiting stage covered by black hairs (Rafeie & Zangooei 30651-FUMH); D) Seed. Scale bars: A–B=5 mm; C=2 mm; D=1 mm.
FIGURE 2. A in Astragalus durandianus (sect. Trachycercis) as an Iranian endemic species: emended description, distribution, and conservation
FIGURE 2. A specimen of Astragalus durandianus (Faghihnia & Zangooie 27565-FUMH) collected from Hezar-Masjed Mountains (NE Iran) with a relatively large-sized habit.
FIGURE 5 in Astragalus durandianus (sect. Trachycercis) as an Iranian endemic species: emended description, distribution, and conservation
FIGURE 5. Some details of morphological characters in Astragalus durandianus. A) Relatively long terminal branches in fruiting stage (Rafeie & Zangooei 30651-FUMH); B) Floral bracts with black and white hairs (Joharchi & Memariani 46031-FUMH). Scale bars: A=10 mm; B=2 mm.
FIGURE 8 in Astragalus durandianus (sect. Trachycercis) as an Iranian endemic species: emended description, distribution, and conservation
FIGURE 8. GeoCAT distribution map of Astragalus durandianus and estimation of Extent of Occurrence (EOO) and Area of Occupancy (AOO) based on IUCN Red List Criteria.
FIGURE 2. Bauhinia conceptionis. A in Rediscovery of Bauhinia conceptionis (Leguminosae: Cercidoideae), a rare and endemic species of Colombian legume from Chocó - Colombia, after eighty years
FIGURE 2. Bauhinia conceptionis. A. Branch with buds; B. Anthers. C. Flower; D. Juvenile fruit; E. Upper surface of leaf; F. Lower surface of leaf. All from Castellanos 760 UDB. Photographs by Cesar Castellanos.
FIGURE 1. Bauhinia conceptionis Britton & Killip. A in Rediscovery of Bauhinia conceptionis (Leguminosae: Cercidoideae), a rare and endemic species of Colombian legume from Chocó - Colombia, after eighty years
FIGURE 1. Bauhinia conceptionis Britton & Killip. A. Branch with foliage, bud and flowers; B. Buds; C. Flower; D. One of the petals at anthesis; E. Legume. Materials all from Castellanos 760 UDB. Drawn by O.D. Bernal-Gacharrá.
FIGURE 4 in Rediscovery of Bauhinia conceptionis (Leguminosae: Cercidoideae), a rare and endemic species of Colombian legume from Chocó - Colombia, after eighty years
FIGURE 4. Specimen of Bauhinia conceptionis (M-0171127). Reproduced with the permission of the Herbario Forestal, Universidad Distrital de Bogotá, UDBC Bogotá.
FIGURE 4 in A new species of Coronatella Dybowski & Grochowski, 1984 (Cladocera: Chydoridae) endemic to Jeju Island (Republic of Korea)
FIGURE 4. Coronatella (Coronatella) jejuana sp. nov. from Sangdoekcheon Gyocharo (type locality), Jeju-do, Republic of Korea, parthenogenetic females. Parthenogenetic female, thoracic limbs. A, limb I. B, IDL and ODL of limb I. C–D, outer and inner portions of limb II. E, exopodite of limb III. F–G, inner portion of limb III. H, exopodite of limb IV. I–J, inner portion of limb IV. K, exopodite of limb V. L, inner lobe of limb V. Coronatella (Coronatella) jejuana sp. nov. from Yongsuji Reservoir, Jeju-do, Republic of Korea, parthenogenetic female. M, IDL and ODL of limb I. Coronatella (Coronatella) rectangula (Sars, 1862) from a small pond near Jungsanganseo-ro, Jeju-do, Republic of Korea, parthenogenetic female. N, IDL and ODL of limb I.
FIGURE 2 in A new species of Coronatella Dybowski & Grochowski, 1984 (Cladocera: Chydoridae) endemic to Jeju Island (Republic of Korea)
FIGURE 2. Coronatella (Coronatella) jejuana sp. nov. from Sangdoekcheon Gyocharo (type locality), Jeju-do, Republic of Korea, parthenogenetic females. A–B, lateral view. C, anterolateral view. D, ventral view. E, dorsal view. F, head shield. G–H, head pores.
FIGURE 3 in A new species of Coronatella Dybowski & Grochowski, 1984 (Cladocera: Chydoridae) endemic to Jeju Island (Republic of Korea)
FIGURE 3. Coronatella (Coronatella) jejuana sp. nov. from Sangdoekcheon Gyocharo (type locality), Jeju-do, Republic of Korea, parthenogenetic females. A, antenna. B, labral keel.
FIGURE 1 in A new species of Coronatella Dybowski & Grochowski, 1984 (Cladocera: Chydoridae) endemic to Jeju Island (Republic of Korea)
FIGURE 1. Coronatella (Coronatella) jejuana sp. nov. from Sangdoekcheon Gyocharo (type locality), Jeju-do, Republic of Korea, parthenogenetic females. A, juvenile female of instar II, lateral view. B, adult, lateral view. C, ventral margin of valves. D, posteroventral angle of valves. E–F, head pores. G, labrum. H, postabdomen. I, antennule. J, antenna. K, antennal exopod, setae not shown. C. (C.) rectangula from a small pond near Jungsanganseo-ro, Jeju-do, Republic of Korea. L, adult, lateral view. M, head pores. N, postabdomen. O, antennal exopod, setae not shown.
FIGURE. Distribution maps of Drosera species endemic to Minas Gerais. a, D. ascendens (circles), D. quartzicola (triangles) and D. villosa (stars). b, D. camporupestris (triangles) and D. graomogolensis (circles). c, D. chimaera (stars), D. schwackei (triangles) and D. spirocalyx (diamonds). d, D. graminifolia (triangles), D. magnifica (star) and D. spiralis (circles). in A synopsis of the genus Drosera (Droseraceae) in Brazil
FIGURE. Distribution maps of Drosera species endemic to Minas Gerais. a, D. ascendens (circles), D. quartzicola (triangles) and D. villosa (stars). b, D. camporupestris (triangles) and D. graomogolensis (circles). c, D. chimaera (stars), D. schwackei (triangles) and D. spirocalyx (diamonds). d, D. graminifolia (triangles), D. magnifica (star) and D. spiralis (circles).
Figure 3 in Discovering endemic species among the bumblebees of Taiwan (Apidae, genus Bombus)
Figure 3. Map of species richness for the bumblebee species widespread between Taiwan and the mainland (from Table 3) among equal-area grid cells. Numbers of species are written in black. The grid is based on longitudinal intervals of 10°, which are used to calculate graduated latitudinal intervals to provide equal-area cells (each cell has an area of approximately 611,000 km2). The colour scale (right) has equal-frequency richness classes, with the maximum in a separate class. The map is a cylindrical orthomorphic equal-area projection (excluding Antarctica) with north at the top.
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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.