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232 results for “micromorphology”
FIGURE 5 in Leaf micromorphology and anatomy in the tribe Aristideae (Poaceae) in Iran and its systematic implications
FIGURE 5.Scanning electron microscopy of abaxial surface, (A) Aristida abnormis Chiov. prickle (Pr), Dambbell-shaped silica bodies;(B, E&F) S. barbata H. Scholz saddle shaped silica bodies, prickle (Pr), bicellular microhair (Bm); (C) A. adscensionis L. prickle &(D) macrohairs (Mh).
FIGURE 2 in Leaf micromorphology and anatomy in the tribe Aristideae (Poaceae) in Iran and its systematic implications
FIGURE 2. Leaf cross section of the Aristideae species: G: S. obtusa, H: S. raddiana I: S. pennata, J: S. plumosa.Scale bar=0.3 mm
FIGURE3 in Leaf micromorphology and anatomy in the tribe Aristideae (Poaceae) in Iran and its systematic implications
FIGURE3.Leaf cross section of the Aristideae species: A:Sipagrostisciliatta, B: Aristida abnormis, C: S. barbata; D: A. coerulescens, E: S. karelinii, F:, G: S. obtusa, H: S. paradisea, I: S. pennata, J:S. plumosa, K: S. pogonoptela, L: S. raddiana; OS: Outer bundle sheath, (IS: Inner bundle sheath, BC: Bulliform cell, SC: sclerenchyma). Scale bar=0.3 mm
FIGURE 1 in Leaf micromorphology and anatomy in the tribe Aristideae (Poaceae) in Iran and its systematic implications
FIGURE 1.Leaf cross section:A: S. karelinii, B: A. abnormis, C: A. adscensionis; D:S. ciliatta, E:S. barbata, F: S.paradisea,Scale bar=0.3 mm G: Furrow, IS: Inner bundle sheath, Mh: Macro hair, OS: Outer bundle sheath, Pr:Prickle, R: Rib, Sc:sclerenchyma.
FIGURE 8.Phenogram for 9 in Leaf micromorphology and anatomy in the tribe Aristideae (Poaceae) in Iran and its systematic implications
FIGURE 8.Phenogram for 9 species of Stipagrostis and 3 species of Aristida from cluster analysis based on Ward method using 6 qualitative anatomical traits; the vertical dashed lineindicates similarity coefficient.
FIGURE 4 in Leaf micromorphology and anatomy in the tribe Aristideae (Poaceae) in Iran and its systematic implications
FIGURE 4. Leaf cross section of the Aristideae species showing leaf margin: A: Aristida coerulescens, B: A. abnormis, C: Stipagrostis paradisea, D:S. obtusa, E:S. pennata, F: S. plumosa, G: S. barbata, H:S. raddiana, I: S. ciliatta, J: S. pogonoptela, (Sc:sclerenchyma, Pr: Prickle). Scale bar=0.3 mm
Dissection for floral micromorphology and plastid genome of valuable medicinal borages Arnebia and Lithospermum (Boraginaceae)
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Data from: The phylogenetic significance of fruit anatomical and micromorphological structures in Chinese Heracleum and related taxa (Apiaceae)
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Trichome micromorphology in Alcea L. and allied genera (Malvaceae) and its systematic
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Supplementary material 29 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Table S1
Supplementary material 10 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S10
Supplementary material 14 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S14
Supplementary material 26 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S26
Supplementary material 28 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S28
Supplementary material 13 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S13
Supplementary material 2 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S2
Supplementary material 9 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S9
Supplementary material 4 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S4
Supplementary material 1 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S1
Supplementary material 19 from: Rewicz A, Marciniuk J, Marciniuk P (2020) Achene micromorphology and its taxonomic significance in some species in Taraxacum sect. Palustria (Asteraceae). PhytoKeys 166: 1-28. https://doi.org/10.3897/phytokeys.166.54271
Figure S19
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Allen Brain Atlas
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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.