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2,359 results for “Southwest”
FIGURES 35–48 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 35–48. Halamphora elongata, LM. Valve views showing size diminution series. Scale bars = 10 μm for all figures.
FIGURES 20–34 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 20–34. Halamphora hezhangii, sp. nov. 20–27. LM. Valve views showing size diminution series. Figure 24 is of the holotype. Scale bars = 10 μm for all LM figures. 28–34. SEM. 28, 30–32. External views. 28. Entire valve showing shape of the valve. 30. Show of dash–like areolae composed of biseriate, which distinctly in several rows of axial areolae near the raphe ledge. 31. View of central area with curved proximal raphe. 32. View of curved distal raphe end. 29, 33, 34. Internal views. 29. Entire valve view. 33. Central area with a narrow central helictoglossae. 34. View of valve end, with curved distal raphe ends and helictoglossa. Scale bars show in each SEM figure.
FIGURES 17–19 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 17–19. Halamphora subfontinalis, sp. nov. SEM. 17. External view of the frustule. 18. View of central area with numerous girdle bands. 19. View of frustule end, each girdle band with two rows of round poroids. Scale bars show in each SEM figure.
FIGURES 55–65. Halamphora submontana. 55–59 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 55–65. Halamphora submontana. 55–59. LM. Valve views showing size diminution series. Scale bars = 10 μm for all LM figures. 60–65. SEM. 60, 62, 64. External views. 60. Entire valve showing shape of the valve. 62. View of curved proximal raphe and biseriate dorsal striae beneath the raphe ledge. 64. View of curved distal raphe end. 61, 63, 65. Internal views. 61. Entire valve view. 63. Central area with a narrow central helictoglossae. 65. View of valve end, with curved distal raphe ends and helictoglossa. Scale bars shown in each SEM figure.
FIGURES 1–16 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 1–16. Halamphora subfontinalis, sp. nov. 1–9. LM. Valve views showing size diminution series. Figure 1 is of the holotype. Scale bars = 10 μm for all LM figures. 10–16. SEM. 10, 12, 13, 15, external views. 10. Entire valve showing shape of the valve. 12, 13. View of central area with curved proximal raphe, as well as raphe ledge (see arrows). 15. View of valve end with curved raphe end. 11, 14, 16, internal views. 11. Entire valve view. 14. Central area with evident thickened central virgae. 16. View of valve end, with helictoglossa. Scale bars show in each SEM figure.
FIGURES 78–90. 78–81 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 78–90. 78–81. Halamphora tenella. LM. 82. Halamphora dusenii. LM. 83–86. Halamphora sp. 1. LM. 87–89. Halamphora sp. 2. LM. 90. Halamphora sp. 3. Scale bars = 10 μm for all LM figures.
FIGURES 49–54. H. elongata. SEM. 49, 51, 53. External views. 49 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 49–54. H. elongata. SEM. 49, 51, 53. External views. 49. Entire valve showing shape of the valve. 51. View of central area with proximal raphe ends curved towards the dorsal margin. 53. View of valve end with curved raphe end. 50, 52, 54. Internal views. 50. Entire valve view. 52. Central area with evident thickened virgae. 54. View of valve end, with prominent helictoglossa. Scale bars shown in each figure.
FIGURES 66–77. Halamphora montana. 66–70 in Taxonomic studies of the diatom genus Halamphora (Bacillariophyceae) from the mountainous regions of southwest China, including the description of two new species
FIGURES 66–77. Halamphora montana. 66–70. LM. Valve views showing size diminution series. Scale bars = 10 μm for all LM figures. 71–77. SEM. 71, 73, 74, 76. External views. 71, 74. Entire valve showing shape of the valve. 73. View of curved distal raphe end. 76. View of proximal raphe and larger areolae beneath the raphe ledge lie in a shallow depression. 72, 75, 77. Internal views. 72. Entire valve view. 75. View of valve end, with curved distal raphe ends and helictoglossa. 77. Central area with evident interrupted dorsal striae. Scale bars shown in each SEM figure.
FIGURE 1 in Pueraria grandiflora (Fabaceae), a new species from Southwest China
FIGURE 1. Pueraria grandiflora (from type locality). A. Habit. B. Flowers. C. Entire leaflets. D. Tubers. E. Tuber opened up. F. Sagittate stipule. G. Lobed leaflets. Photos by Bo Pan and Bing Liu.
FIGURE 2. Pueraria grandiflora. A. Calyx. B. Bracteoles. C. Bracts. D. Standard. E. Wing. F. Keel. G. Stamens. H. Pistil. I. Inflorescence. J. Tuberous roots. K. Flower. L. Pod. M. Flowering branch. N. Seed. O in Pueraria grandiflora (Fabaceae), a new species from Southwest China
FIGURE 2. Pueraria grandiflora. A. Calyx. B. Bracteoles. C. Bracts. D. Standard. E. Wing. F. Keel. G. Stamens. H. Pistil. I. Inflorescence. J. Tuberous roots. K. Flower. L. Pod. M. Flowering branch. N. Seed. O. Leaf with entire leaflets. Illustrations by Bo Pan.
FIGURE 15 in Sporolithon yoneshigueae sp. nov. (Sporolithales, Corallinophycidae, Rhodophyta), a new rhodolith-forming coralline alga from the southwest Atlantic
FIGURE 15. Phylogenetic tree inferred from ML, MP, and NJ analyses with SSU sequences for 19 specimens from the orders Sporolithales and Hapalidiales. Values at nodes represent percentage of 1,000 bootstrap replicates for ML (left), MP (middle) and NJ (right). Branches lacking values received <70 % support.
FIGURES 7–13 in Sporolithon yoneshigueae sp. nov. (Sporolithales, Corallinophycidae, Rhodophyta), a new rhodolith-forming coralline alga from the southwest Atlantic
FIGURES 7–13. Tetrasporangial anatomy of Sporolithon yoneshigueae. 7. Magnified surface view of a protuberance showing a sorus with large tetrasporangial compartment pores (RB 505770). Scale bar = 500 μm. 8. SEM of the surface of a sorus showing tetrasporangial compartment pores (RB 569425). Scale bar = 80 μm. 9. SEM of a single tetrasporangial compartment pore surrounded by 24 rosette cells that are slightly raised towards the pore opening (RB 569425). Note the mucilage ring that forms inward of the rosette cells, which only partially occludes the pore (arrow). Scale bar = 30 μm. 10. Vertical section of the outer thallus showing numerous tetrasporangial compartments buried in distinct layers (RB 505770). Note the distinct layers of elongate cells at the base of tetrasporangial compartments. Scale bar = 300 μm. 11. Magnified view of the thallus showing the paraphyses (arrows) between tetrasporangial compartments (RB 505770). Scale bar = 60 μm. 12. Vertical section of the outer thallus showing a raised sorus (RB 505770). Note the tetrasporangial compartment bearing a single tetrasporangium (t) and an apical pore plug (arrow). Scale bar = 50 μm. 13. Magnified view of the base of a tetrasporangial compartment showing a tetrasporangium (t) subtended by a single stalk cell (arrow) (RB 505770). Scale bar = 25 μm.
FIGURE 1 in Sporolithon yoneshigueae sp. nov. (Sporolithales, Corallinophycidae, Rhodophyta), a new rhodolith-forming coralline alga from the southwest Atlantic
FIGURE 1. Bathymetric map of the Abrolhos Shelf and Vitória–Trindade Chain showing the collecting sites (arrows) (data source: ETOPO 1).
FIGURES 2–6 in Sporolithon yoneshigueae sp. nov. (Sporolithales, Corallinophycidae, Rhodophyta), a new rhodolith-forming coralline alga from the southwest Atlantic
FIGURES 2–6. Vegetative features of Sporolithon yoneshigueae. 2. General morphology of the holotype (RB 569425) showing a lumpy to fruticose growth-form. Scale bar = 3 cm. 3. General morphology of a paratype (RB 505770) showing a warty growth-form. Scale bar = 4 cm. 4. Vertical section of the inner thallus showing the monomerous, plumose (non-coaxial) internal construction (RB 569425). Scale bar = 150 μm. 5. Magnified view of the outer thallus showing a flared epithallial cell (e) and a squat subepithallial initials (i) (RB 569425). Scale bar = 10 μm. 6. SEM of a fracture showing a secondary pit connection (arrow) and cell fusions (arrowheads) (RB 569425). Scale bar = 20 μm.
FIGURE 14 in Sporolithon yoneshigueae sp. nov. (Sporolithales, Corallinophycidae, Rhodophyta), a new rhodolith-forming coralline alga from the southwest Atlantic
FIGURE 14. Phylogenetic tree inferred from ML, MP, and NJ analyses with psbA sequences for 36 specimens from the orders Sporolithales and Hapalidiales. Values at nodes represent percentage of 1,000 bootstrap replicates for ML (left), MP (middle) and NJ (right). Branches lacking values received <70 % support.
FIGURE 3 in Eutrema racemosum (Eutremeae, Brassicaceae), a new tetraploid species from southwest China
FIGURE 3. Specimen of Eutrema heterophyllum (A), E. racemosum (B, holotype), and interspecific hybrids (C, D).
FIGURE 1. E in Eutrema racemosum (Eutremeae, Brassicaceae), a new tetraploid species from southwest China
FIGURE 1. E. racemosum Al-Shehbaz, G.Q. Hao & J.Q. Liu; B: flower C: fruit; D: basal leaf; E: cauline leaf. Drawn by Wang, Q. from Liu, jianquan & Hao, Guoqian 14048 (SZ).
FIGURE 4 in Eutrema racemosum (Eutremeae, Brassicaceae), a new tetraploid species from southwest China
FIGURE 4. The most parsimonious trees constructed based on nrITS data (A) and 4 cpDNA (B) regions. Bootstrap support values are given above branches receiving>50% bootstrap support; A: The strict consensus tree of 21 most maximum parsimony trees (Length = 156, CI=0.827, and RI=0.765) based on the analysis of nrITS data. B: The strict consensus tree of 13 most maximum parsimony trees (Length = 299, CI=0.873, and RI=0.73) based on the analysis of 4 cpDNA regions.
FIGURE 2 in Metacordyceps shibinensis sp. nov. from larvae of Lepidoptera in Guizhou Province, southwest China
FIGURE 2. Metacordyceps shibinensis (holotype). a. Overview of stroma and host. b. Infected host. c, d. Pale yellow, superficial ascomata on stroma. e. Cross section showing the stroma and ascomata. f, g. Sections of ascomata. h, i. Part of ascoma. j. Ascus. k, m. Ascus stained in methylene blue. l. Mature ascospores in methylene blue. n. Section of stipe. Scale bars: f = 1000 μm, g = 200 μm, h = 100 μm, i = 50 μm, j–l = 40 μm, m = 50 μm, n = 20 μm.
FIGURE 1 in Metacordyceps shibinensis sp. nov. from larvae of Lepidoptera in Guizhou Province, southwest China
FIGURE 1. Phylogenetic relationships among Metacordyceps shibinensis and related species based on four combined 5.8S-ITS rDNA, nrSSU, EF-1α, RPB1 gene data. Bootstrap values (1,000 replicates) are indicated above the nodes. The tree is rooted to Glomerella cingulata. Type species have an asterisk.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.