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FIGURE 21. a, b in A review of Northern Peruvian glassfrogs (Centrolenidae), with the description of four new remarkable species
FIGURE 21. a, b) Cochranella guayasamini tadpoles, c) egg clutch of Co. guayasamini.
FIGURE 29 in A review of Northern Peruvian glassfrogs (Centrolenidae), with the description of four new remarkable species
FIGURE 29. Cochranella croceopodes holotype, KU 211804, SVL 24.7 mm.
FIGURE 20 in A review of Northern Peruvian glassfrogs (Centrolenidae), with the description of four new remarkable species
FIGURE 20. Cochranella guayasamini holotype (MHNC 13930, SVL 23.4 mm) in preservative.
Figure 3 from: Dillon M, Luebert F (2014) Synopsis of Plazia Ruiz & Pav. (Onoserideae, Asteraceae), including a new species from northern Peru. PhytoKeys 34: 1-13. https://doi.org/10.3897/phytokeys.34.6151
Figure 3 - Plazia robinsonii M.O.Dillon & Sagást. Photograph of the holotype collection of A. López M. & A. Sagástegui A. 8123 (HUT).
Figure 1 from: Dillon M, Luebert F (2014) Synopsis of Plazia Ruiz & Pav. (Onoserideae, Asteraceae), including a new species from northern Peru. PhytoKeys 34: 1-13. https://doi.org/10.3897/phytokeys.34.6151
Figure 1 - Distribution map of the currently recognized species of Plazia. The shaded area indicates high-elevation areas of the Andes above 3000 m. Locality data were obtained from Cabrera (1951), Ferreyra (1995), Missouri Botanical Garden (http://www.tropicos.org/), Instituto de Botánica Darwinion (through http://www.gbif.org/) and the herbaria ASU, B, F, HUT, P, SGO, US.
Figure 2 from: Dillon M, Luebert F (2014) Synopsis of Plazia Ruiz & Pav. (Onoserideae, Asteraceae), including a new species from northern Peru. PhytoKeys 34: 1-13. https://doi.org/10.3897/phytokeys.34.6151
Figure 2 - Plazia robinsonii M.O. Dillon & Sagást. (drawn from A. López M. & A. Sagástegui A. 8123). A Flowering branch B External phyllary C Internal phyllary D Ligulate floret E Terminal portion of the style of ligulate florets F Stamen from ligulate floret G Disc floret H Stamen from disc floret I Achene.
Figure 1 from: Martine C, E. Symon D, C. Evans E (2013) A new cryptically dioecious species of bush tomato (Solanum) from the Northern Territory, Australia. PhytoKeys 30: 23-31. https://doi.org/10.3897/phytokeys.30.6003
Figure 1 - A Functionally female plant with morphologically hermaphrodite flower and developing fruit (from type collection, Brennan 7274) B Close-up of functionally female flower showing bifid stigma C Mature fruit with enlarged fruiting calyx (pressed specimen) D Staminate plant in flower (also from type collection) E SEM of aperturate pollen grain of staminate flower (from herbarium specimen and partially degraded), arrows showing three germination pores F Inaperturate pollen grain of functionally female flower G Leaf showing lobing pattern and armed midvein (both infrequent). Photos A–C by Kym Brennan. SEM images by Renata Mammone.
Figure 2 from: Martine C, E. Symon D, C. Evans E (2013) A new cryptically dioecious species of bush tomato (Solanum) from the Northern Territory, Australia. PhytoKeys 30: 23-31. https://doi.org/10.3897/phytokeys.30.6003
Figure 2 - Solanum cowiei habitat near the Lost City in A unburned condition and B burned condition C Post-fire resprout growth with deep green color and widened leaves D Excavated ramet showing belowground stolon leading to additional ramets of same genet.
Figure 1 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 1 - Map showing the generalized distribution of Empodisma in Australia and New Zealand and the collection localities of the DNA samples included in our study. The approximate position of the kauri line in New Zealand is shown with a dashed line.
Figure 12 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 12 - High resolution photograph of a syntype of Empodisma gracillimum (F.Muell.) L.A.S. Johnson & D.F.Cutler. Mueller (1872–74) originally described the plant as Calorophus gracillimus F.Muell. The specimen, Nouvelle-Hollande, Riv. des cygnes, Preiss JA 1711, 1843, P00748711 is held at HERBARIUM MUSEI PARISIENSIS. The syntype was designated by BG Briggs xi.1998.
Figure 4 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 4 - Comparison of median networks from independent analyses of trnL, rbcL and matK sequences. Bootstrap values / the number of mutations distinguishing each haplotype. are shown beside the branches. The accessions of Empodisma minus from New Zealand are indicated NZ and Australia Aus.
Figure 11 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 11 - Morphological characteristics of Empodisma minus. A Vegetative shoot with attached leaves and flowers (2.5× actual size) B Rhizomes with emerging vegetative shoots (2.5× actual size) C Vegetative shoot with attached pistillate flower D Pistillate flower with attached bracts E Gynoecium F Mature nut G Vegetative shoot with attached staminate spikelet H Staminate flower with attached bracts I Staminate flower. Scale bar = 1 mm.
Figure 10 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 10 - High resolution photograph of the lectotype of Empodisma minus (Hook.f.) L.A.S. Johnson & D.F.Cutler. Reproduced with the consent of the Royal Botanic Gardens, Kew, © The Board of Trustees of the Royal Botanic Gardens. Hooker (1853) described the new species Calorophus minor Hook.f. based upon Bidwell, Colenso and Lyall specimens. A specimen collected near Nelson by Bidwell, no. 84, K000441989, was chosen as the lectotype by Moore and Edgar (1970).
Figure 9 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 9 - Morphological characteristics of Empodisma robustum. A Vegetative shoot with attached leaves and flowers (actual size) B Rhizomes with emerging vegetative shoots (2.5× actual size) C Vegetative shoot with attached pistillate flower D Pistillate flower with attached bracts E Gynoecium F Mature nut G Vegetative shoot with attached staminate spikelet H Staminate flower with attached bracts I Staminate flower. Scale bar = 1 mm.
Figure 6 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 6 - Box plots illustrating patterns of morphological variation among the species of Empodisma. The box spans the interquartile range of the values in the variate. The middle 50% of the data lie within the box, with a line showing the median. The whiskers extend beyond the ends of the box as far as the minimum and maximum values.
Figure 7 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 7 - Principal coordinates ordination depicting patterns of overall similarity among the 74 OTEs that comprised our morphological sample. The first PC axis accounted for 58.3% of the variation in our sample and the second PC axis accounted for 23. 4% of the variation.
Figure 5 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 5 - Unrooted parsimony tree from a combined analysis of the three sequence partitions. Six distinct cpDNA haplotypes are supported. Bootstrap values / the number of mutations distinguishing each haplotype are shown beside the branches. The accessions of Empodisma minus from New Zealand are indicated NZ and Australia Aus.
Figure 2 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 2 - Strict consensus tree. The three species of Empodisma (highlighted in bold) emerge as a well-supported clade distinct from Calorophus and Hypolaena. They were placed in these latter two genera by Moore and Edgar (1970) and Cheeseman (1906). Bootstrap values are provided above the branches
Figure 3 from: Wagstaff S, Clarkson B (2012) Systematics and ecology of the Australasian genus Empodisma (Restionaceae) and description of a new species from peatlands in northern New Zealand. PhytoKeys 13: 39-79. https://doi.org/10.3897/phytokeys.13.3259
Figure 3 - Bayesian chronogram with estimated divergence times. Node error bars are provided in blue showing the 95% highest probability density for the divergence estimates. Posterior probability support values > 97% are given above the branches. A geological time scale is shown at the base of the tree.
Figure 2 from: Stern S, Bohs L (2010) Two new species of Solanum (Solanaceae) from the Amotape-Huancabamba Zone of southern Ecuador and northern Peru. PhytoKeys 1: 53-65. https://doi.org/10.3897/phytokeys.1.660
Figure 2 - Photos of type collection of Solanum rubicaule S. Stern. A Collecting party in front of type collection, indicated by arrow, at trailside habitat in San Ignacio, Dept. Cajamarca, Peru (from left to right: Segundo Leiva, Stephen Stern, Mario Zapata, and Eric Tepe). B Fruiting inflorescence; note recurved pediels. C Hermaphroditic flower. D Functionally male flower; note the absence of exserted style. Scale bars = 1 cm.
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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)
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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.