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451 results for “167”
Figure 1 from: Xu Z, Tian J, Rapanarivo SHJV, Letsara R, Rakotonasolo RA, Onjalalaina GE, Hu G-W, Wang Q-F (2020) Hydrostachys flabellifera (Hydrostachyaceae), a new species from Madagascar. PhytoKeys 167: 45-56. https://doi.org/10.3897/phytokeys.167.58538
Figure 1 Hydrostachys flabellifera G.W. Hu, Zhun Xu & Q.F. Wang. A habit B lateral view of stipule and petiole base C ventral view of stipule and petiole base D, E part of the leaf F downside of a leaf emergence G upperside of a leaf emergence H dorsal view of male bract I ventral view of male bract J, K stamen. Drawn by Jing Tian.
Figure 2 from: Xu Z, Tian J, Rapanarivo SHJV, Letsara R, Rakotonasolo RA, Onjalalaina GE, Hu G-W, Wang Q-F (2020) Hydrostachys flabellifera (Hydrostachyaceae), a new species from Madagascar. PhytoKeys 167: 45-56. https://doi.org/10.3897/phytokeys.167.58538
Figure 2 Hydrostachys flabellifera G.W. Hu, Zhun Xu & Q.F. Wang A habit B emergences on rachis, cross-section C, D emergences E dorsal view of male bract F ventral view of male bract G top view of stamen.
Figure 1 from: Carvalho-Sobrinho J, da Mota AC, Dorr LJ (2020) A new species of Eriotheca (Malvaceae, Bombacoideae) from coastal areas in northeastern Brazil. PhytoKeys 167: 31-43. https://doi.org/10.3897/phytokeys.167.57840
Figure 1 Eriotheca alversoniiA flowering branch B three-foliolate leaf C flower buds and vegetative terminal buds D flower bud E flower F, G petals; adaxial and abaxial views H staminal tube I ovary J, K anthers; undehisced and dehisced L stigma M fruit. All drawn from the holotype, except for fruit (L.A. Mattos Silva 1769). Scale bars: 3 cm (A, B); 1 cm (C, M); 5 mm (D–I); 0.5 mm (J–L).
Figure 2 from: Carvalho-Sobrinho J, da Mota AC, Dorr LJ (2020) A new species of Eriotheca (Malvaceae, Bombacoideae) from coastal areas in northeastern Brazil. PhytoKeys 167: 31-43. https://doi.org/10.3897/phytokeys.167.57840
Figure 2 Distribution map of Eriotheca alversonii. Gray-shaded areas represent the original extent of Atlantic forest. State boundaries are indicated by continuous lines. Abbreviations for Brazilian states: AL: Alagoas; BA: Bahia; PE: Pernambuco; SE: Sergipe.
Supplementary material 1 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751
Table S1. Taxa and materials analyzed in the phylogenetic analyses
Figure 5 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751
Figure 5 Mitotic metaphase chromosomes of Capsicum regale Barboza & Bohs, 2n = 26. Scale bar: 10 µm
Figure 6 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751
Figure 6 Bayesian majority-rule consensus tree of Capsicum showing the placement of C. regale Barboza & Bohs. The Andean clade is highlighted in colored branches. Support values are indicated by each branch (bootstrap support maximum parsimony/bootstrap support maximum likelihood/posterior probabilities; dashes indicate support values < 50%). Key support values that indicate the position of C. regale are shown in bold. Asterisks indicate different resolutions using maximum parsimony.
Figure 3 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751
Figure 3 Seed of C. regale Barboza & Bohs viewed under SEM. A Seed B Seed coat sculpture. From Orejuela et al. 3034.
Figure 2 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751
Figure 2 Capsicum regale Barboza & Bohs. A habitat B apical branch, showing anisophyllous leaf pairs C abaxial surface of leaf with purple main vein D forked inflorescence; note the scars of the deciduous flowers E flower, in lateral view, on a unbranched elongate inflorescence F, G Flowers with and without pigmentation respectively H–K various stages of fruit maturity, in K mature fruit showing the constriction between the pedicel and the berry (arrow) A–F, H–K from Orejuela et al. 3034 (photos by A. Orejuela, P. Gonzáles, and G. Barboza) G from Hoyos 127 (photo by L. Coca).
Figure 3 from: Peterson PM, Sylvester SP, Romaschenko K, Soreng RJ, Barberá P, Quintanar A, Aedo C (2020) A phylogeny of species near Agrostis supporting the recognition of two new genera, Agrostula and Alpagrostis (Poaceae, Pooideae, Agrostidinae) from Europe. PhytoKeys 167: 57-82. https://doi.org/10.3897/phytokeys.167.55171
Figure 3 Neotype of Agrostis setacea Curtis [= Alpagrostis setacea (Poir.) P.M. Peterson, Romasch., Soreng & Sylvester] from Curtis's garden (BM-001144085), upper left hand specimen indicated by A.
Figure 4 from: Oppenheimer H (2020) A new species of Cyanea Gaud. (Lobelioideae, Campanulaceae) from Maui, Hawai`i. PhytoKeys 167: 1-11. https://doi.org/10.3897/phytokeys.167.55107
Figure 4 Cyanea heluensisA seedling at Olinda Rare Plant Facility. Plant is approximately 1 year old B distribution Cyanea heluensis of on Maui, Hawai`i. Photo by H. Oppenheimer.
Figure 3 from: Oppenheimer H (2020) A new species of Cyanea Gaud. (Lobelioideae, Campanulaceae) from Maui, Hawai`i. PhytoKeys 167: 1-11. https://doi.org/10.3897/phytokeys.167.55107
Figure 3 Cyanea heluensis. Leaf (left); flowers (right). Illustration by Anna Palomino. Drawn from H. Oppenheimer et al. #H91007 (BISH) and field images taken by H. Oppenheimer.
Figure 1 from: Barboza GE, García CC, Scaldaferro M, Bohs L (2020) An amazing new Capsicum (Solanaceae) species from the Andean-Amazonian Piedmont. PhytoKeys 167: 13-29. https://doi.org/10.3897/phytokeys.167.57751
Figure 1 Capsicum regale Barboza & Bohs. A fruiting apical branch B unbranched inflorescence C flower, in lateral view D opened corolla E gynoecium F fruit. From Orejuela et al. 3034. Drawn by S. Montecchiesi.
Figure 2 from: Peterson PM, Sylvester SP, Romaschenko K, Soreng RJ, Barberá P, Quintanar A, Aedo C (2020) A phylogeny of species near Agrostis supporting the recognition of two new genera, Agrostula and Alpagrostis (Poaceae, Pooideae, Agrostidinae) from Europe. PhytoKeys 167: 57-82. https://doi.org/10.3897/phytokeys.167.55171
Figure 2 Alpagrostis alpinaA, D spikelets B caryopsis C floret E floret, showing dorsal surface. Plant fragments taken from Sain-Lager 3 (US-1628154).
Figure 1 from: Oppenheimer H (2020) A new species of Cyanea Gaud. (Lobelioideae, Campanulaceae) from Maui, Hawai`i. PhytoKeys 167: 1-11. https://doi.org/10.3897/phytokeys.167.55107
Figure 1 Cyanea heluensisA habit B close up of flower buds prior to anthesis. Note murications on petioles and corolla. Photos by H. Oppenheimer.
Figure 1 from: Peterson PM, Sylvester SP, Romaschenko K, Soreng RJ, Barberá P, Quintanar A, Aedo C (2020) A phylogeny of species near Agrostis supporting the recognition of two new genera, Agrostula and Alpagrostis (Poaceae, Pooideae, Agrostidinae) from Europe. PhytoKeys 167: 57-82. https://doi.org/10.3897/phytokeys.167.55171
Figure 1 Maximum-likelihood tree inferred from combined plastid (rpl32-trnL, rps16 intron, rps16-trnK) and ITS sequences. Numbers above the branches are posterior probabilities; numbers below the branches are bootstrap values; accessions marked with an asterisk* were formerly included in Neoschischkinia; and letters refer to clade A = Agrostis subg. Agrostis and clade B = A. subg. Vilfa. Scale bar: 0.002 substitutions per site.
FIGURE 167 in Generic relationships of New World Jerusalem crickets (Orthoptera: Stenopelmatoidea:Stenopelmatinae), including all known species of Stenopelmatus
FIGURE 167. Three torn apart logs at neotype locality (photos DC Lightfoot).
Figure 1 from: Proskurina K, Yevtifieieva O, Mala O, Mashtaler V (2021) Development of the method for standardization of the medicinal plant raw material of Cichorium intybus L. herb by the total amount of hydroxycinnamic acid derivatives. Pharmacia 68(1): 167-173. https://doi.org/10.3897/pharmacia.68.e49273
Figure 1 The TLC chromatogram of hydroxycinnamic acids in ethanolic extracts of different samples of chicory herb originating from Ukraine. S1–3: chlorogenic acid, caffeic acid and ferulic acid as references; for plant extracts, see abbreviations in Table 3.
Figure 2 from: Proskurina K, Yevtifieieva O, Mala O, Mashtaler V (2021) Development of the method for standardization of the medicinal plant raw material of Cichorium intybus L. herb by the total amount of hydroxycinnamic acid derivatives. Pharmacia 68(1): 167-173. https://doi.org/10.3897/pharmacia.68.e49273
Figure 2 The absorption spectrum of ethanol (50 per cent V/V) chicory herb extracts for 8 sample of the raw plant material. See abbreviations in Table 3. UV/Vis absorption spectra of chlorogenic acid chemical standard at 10.08 µg/ml in ethanol (50 per cent V/V).
Figure 3 from: Proskurina K, Yevtifieieva O, Mala O, Mashtaler V (2021) Development of the method for standardization of the medicinal plant raw material of Cichorium intybus L. herb by the total amount of hydroxycinnamic acid derivatives. Pharmacia 68(1): 167-173. https://doi.org/10.3897/pharmacia.68.e49273
Figure 3 Absorbance values of chlorogenic acid as a function of the solution concentrations. The data correlation was calculated by a linear fit.
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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.