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Figure 97 from: Bruneau A, Queiroz LP, Ringelberg JJ, Borges LM, Bortoluzzi RLC, Brown GK, Cardoso DBOS, Clark RP, Conceição AS, Cota MMT, Demeulenaere E, Duno de Stefano R, Ebinger JE, Ferm J, Fonseca-Cortés A, Gagnon E, Grether R, Guerra E, Haston E, Herendeen PS, Hernández HM, Hopkins HCF, Huamantupa-Chuquimaco I, Hughes CE, Ickert-Bond SM, Iganci J, Koenen EJM, Lewis GP, Lima HC, Lima AG, Luckow M, Marazzi B, Maslin BR, Morales M, Morim MP, Murphy DJ, O'Donnell SA, Oliveira FG, Oliveira ACS, Rando JG, Ribeiro PG, Ribeiro CL, Santos FS, Seigler DS, Silva GS, Simon MF, Soares MVB, Terra V (2024) Advances in Legume Systematics 14. Classification of Caesalpinioideae. Part 2: Higher-level classification. PhytoKeys 240: 1-552. https://doi.org/10.3897/phytokeys.240.101716
Figure 97 Distribution of Dinizia based on quality-controlled digitised herbarium records. See Suppl. material 1 for the source of occurrence data.
Figure 96 from: Bruneau A, Queiroz LP, Ringelberg JJ, Borges LM, Bortoluzzi RLC, Brown GK, Cardoso DBOS, Clark RP, Conceição AS, Cota MMT, Demeulenaere E, Duno de Stefano R, Ebinger JE, Ferm J, Fonseca-Cortés A, Gagnon E, Grether R, Guerra E, Haston E, Herendeen PS, Hernández HM, Hopkins HCF, Huamantupa-Chuquimaco I, Hughes CE, Ickert-Bond SM, Iganci J, Koenen EJM, Lewis GP, Lima HC, Lima AG, Luckow M, Marazzi B, Maslin BR, Morales M, Morim MP, Murphy DJ, O'Donnell SA, Oliveira FG, Oliveira ACS, Rando JG, Ribeiro PG, Ribeiro CL, Santos FS, Seigler DS, Silva GS, Simon MF, Soares MVB, Terra V (2024) Advances in Legume Systematics 14. Classification of Caesalpinioideae. Part 2: Higher-level classification. PhytoKeys 240: 1-552. https://doi.org/10.3897/phytokeys.240.101716
Figure 96 Distribution of Campsiandra based on quality-controlled digitised herbarium records. See Suppl. material 1 for the source of occurrence data.
Figure 98 from: Bruneau A, Queiroz LP, Ringelberg JJ, Borges LM, Bortoluzzi RLC, Brown GK, Cardoso DBOS, Clark RP, Conceição AS, Cota MMT, Demeulenaere E, Duno de Stefano R, Ebinger JE, Ferm J, Fonseca-Cortés A, Gagnon E, Grether R, Guerra E, Haston E, Herendeen PS, Hernández HM, Hopkins HCF, Huamantupa-Chuquimaco I, Hughes CE, Ickert-Bond SM, Iganci J, Koenen EJM, Lewis GP, Lima HC, Lima AG, Luckow M, Marazzi B, Maslin BR, Morales M, Morim MP, Murphy DJ, O'Donnell SA, Oliveira FG, Oliveira ACS, Rando JG, Ribeiro PG, Ribeiro CL, Santos FS, Seigler DS, Silva GS, Simon MF, Soares MVB, Terra V (2024) Advances in Legume Systematics 14. Classification of Caesalpinioideae. Part 2: Higher-level classification. PhytoKeys 240: 1-552. https://doi.org/10.3897/phytokeys.240.101716
Figure 98 Generic membership and phylogenetic position of tribe Erythrophleeae. For description of phylogeny and support values, see Fig. 6 caption (page 63).
Figure 102 from: Bruneau A, Queiroz LP, Ringelberg JJ, Borges LM, Bortoluzzi RLC, Brown GK, Cardoso DBOS, Clark RP, Conceição AS, Cota MMT, Demeulenaere E, Duno de Stefano R, Ebinger JE, Ferm J, Fonseca-Cortés A, Gagnon E, Grether R, Guerra E, Haston E, Herendeen PS, Hernández HM, Hopkins HCF, Huamantupa-Chuquimaco I, Hughes CE, Ickert-Bond SM, Iganci J, Koenen EJM, Lewis GP, Lima HC, Lima AG, Luckow M, Marazzi B, Maslin BR, Morales M, Morim MP, Murphy DJ, O'Donnell SA, Oliveira FG, Oliveira ACS, Rando JG, Ribeiro PG, Ribeiro CL, Santos FS, Seigler DS, Silva GS, Simon MF, Soares MVB, Terra V (2024) Advances in Legume Systematics 14. Classification of Caesalpinioideae. Part 2: Higher-level classification. PhytoKeys 240: 1-552. https://doi.org/10.3897/phytokeys.240.101716
Figure 102 Distribution of Pachyelasma based on quality-controlled digitised herbarium records. See Suppl. material 1 for the source of occurrence data.
Tolerance of Future Professionals Towards Corruption. Analysis Through the Attitues of Students of Lima's Universities Regarding Situations Related to Ethics and Morals
<p>Ponencia - IV Congreso Latinoamericano de Marketing Social</p>
Moral dilemmas: Insights about morality from forced choice and budget allocation methods
Open the record for dataset details and reuse information.
Supplementary material 1 from: Palchetti MV, Cantero JJ, Morales-Fierro V, Barboza GE, Moreira-Muñoz A (2021) Living in extreme environments: distribution of Lycium humile (Solanaceae), an endemic halophyte from the Altiplano-Puna region, South America. PhytoKeys 185: 1-15. https://doi.org/10.3897/phytokeys.185.71377
Occurences of Lycium humile in South America
Figure 4 from: Palchetti MV, Cantero JJ, Morales-Fierro V, Barboza GE, Moreira-Muñoz A (2021) Living in extreme environments: distribution of Lycium humile (Solanaceae), an endemic halophyte from the Altiplano-Puna region, South America. PhytoKeys 185: 1-15. https://doi.org/10.3897/phytokeys.185.71377
Figure 4 Saline environments of the Altiplano-Puna region (South America) in which Lycium humile grows A Salar del Hombre Muerto (Catamarca, Argentina) B Los Colorados (Salta, Argentina) C Salar de Uyuni (Potosí, Bolivia).
Figure 2 from: Palchetti MV, Cantero JJ, Morales-Fierro V, Barboza GE, Moreira-Muñoz A (2021) Living in extreme environments: distribution of Lycium humile (Solanaceae), an endemic halophyte from the Altiplano-Puna region, South America. PhytoKeys 185: 1-15. https://doi.org/10.3897/phytokeys.185.71377
Figure 2 Lectotype of Lycium humile Phil. (SGO 055683). Digital image by courtesy of the Museo Nacional de Historia Natural.
Figure 7 from: Fuentes-Reinés JM, Suarez-Morales E, Silva-Briano M (2021) A new species of Esola Edwards, 1891 (Crustacea, Copepoda, Harpacticoida, Laophontidae) from the Caribbean coast of Colombia. ZooKeys 1074: 1-15. https://doi.org/10.3897/zookeys.1074.73030
Figure 7 Esola wellsi sp. nov., adult female from Colombia, SEM-prepared specimen A proximal urosomites semi-lateral view and leg 5 B leg 5, ventral view C same, lateral view D fifth leg, detail of leg 5 EXP insertion.
Figure 6 from: Fuentes-Reinés JM, Suarez-Morales E, Silva-Briano M (2021) A new species of Esola Edwards, 1891 (Crustacea, Copepoda, Harpacticoida, Laophontidae) from the Caribbean coast of Colombia. ZooKeys 1074: 1-15. https://doi.org/10.3897/zookeys.1074.73030
Figure 6 Esola wellsi sp. nov., adult female from Colombia, SEM-prepared specimen A anal somite, caudal rami and ornamentation of operculum dorsal view B same, semi-lateral view C cephalosome, dorsal view D urosome dorsal view showing ornamentation of urosomites distal margins.
Figure 5 from: Fuentes-Reinés JM, Suarez-Morales E, Silva-Briano M (2021) A new species of Esola Edwards, 1891 (Crustacea, Copepoda, Harpacticoida, Laophontidae) from the Caribbean coast of Colombia. ZooKeys 1074: 1-15. https://doi.org/10.3897/zookeys.1074.73030
Figure 5 Esola wellsi sp. nov., adult female from Colombia, SEM-prepared specimen A densely spinulate prosome, dorsal view B habitus, lateral view C anal somite dorsal view D antennule segments 1–3 E same, segments 4–6 F antenna (A2) G antenna (A2) showing exopod (EXP) H maxilliped.
Figure 4 from: Fuentes-Reinés JM, Suarez-Morales E, Silva-Briano M (2021) A new species of Esola Edwards, 1891 (Crustacea, Copepoda, Harpacticoida, Laophontidae) from the Caribbean coast of Colombia. ZooKeys 1074: 1-15. https://doi.org/10.3897/zookeys.1074.73030
Figure 4 Esola wellsi sp. nov., adult male from Colombia A habitus, lateral view B anal operculum, dorsal view C P3 D P3 ENP dentate apophysis (arrowed) E leg 5 F sixth leg. Scale bars: 100 μm (A); 50 μm (B, C, E); 20 μm (D, E); 10 μm (F).
Figure 3 from: Fuentes-Reinés JM, Suarez-Morales E, Silva-Briano M (2021) A new species of Esola Edwards, 1891 (Crustacea, Copepoda, Harpacticoida, Laophontidae) from the Caribbean coast of Colombia. ZooKeys 1074: 1-15. https://doi.org/10.3897/zookeys.1074.73030
Figure 3 Esola wellsi sp. nov., adult female from Colombia A leg 1 B leg 2 C leg 3 D leg 4 E adult male from Colombia, geniculate antennule with long aesthetasc (*). Scale bars: 50 μm (A); 100 μm (B–D); 25 μm (E).
Figure 2 from: Fuentes-Reinés JM, Suarez-Morales E, Silva-Briano M (2021) A new species of Esola Edwards, 1891 (Crustacea, Copepoda, Harpacticoida, Laophontidae) from the Caribbean coast of Colombia. ZooKeys 1074: 1-15. https://doi.org/10.3897/zookeys.1074.73030
Figure 2 Esola wellsi sp. nov., adult female from Colombia A antennule B antenna C mandible with palp D maxillule E maxilla F maxilliped G adult male from Colombia, P3 ENP pectinate apophysis (arrow). Scale bars: 10 μm (A–G).
Figure 1 from: Fuentes-Reinés JM, Suarez-Morales E, Silva-Briano M (2021) A new species of Esola Edwards, 1891 (Crustacea, Copepoda, Harpacticoida, Laophontidae) from the Caribbean coast of Colombia. ZooKeys 1074: 1-15. https://doi.org/10.3897/zookeys.1074.73030
Figure 1 Esola wellsi sp. nov., adult female from Colombia A habitus, lateral view B urosome, ventral view C anal operculum D caudal rami, ventral view E fifth leg F same, another specimen. Scale bars: 100 μm (A); 50 μm (B, C); 20 μm (D).
Figure 3 from: Morales EA, Wetzel CE, Ector L (2021) New and poorly known araphid diatom species (Bacillariophyta) from regions near Lake Titicaca, South America and a discussion on the continued use of morphological characters in araphid diatom taxonomy. PhytoKeys 187: 23-70. https://doi.org/10.3897/phytokeys.187.73338
Figure 3 A–F SEM micrographs of Pseudostaurosira pulchra sp. nov. from the Bolivian Altiplano A, B outer views of valves showing axial area, striae and spines features C inner view of valve still attached to neighboring cell. Black arrow indicates absence of apical pore field. Dotted arrow points to depression into which the stria opens internally D tilted view of frustule. Notice larger valvocopula, lateral growth of spines and blister-like depositions on abvalvar edge of mantle E outer view of valve tip. Black arrow denotes absence of apical pore field. Notice round to elliptical spine base and larger areola on valve mantle. F frustule attached to neighboring valve by means of heavily silicified spines. Notice open girdle elements (white arrow) and depositions along abvalvar mantle edge. Scale bars: 2 µm (E); 4 µm (C, F); 5 µm (A, B, D).
Figure 5 from: Morales EA, Wetzel CE, Ector L (2021) New and poorly known araphid diatom species (Bacillariophyta) from regions near Lake Titicaca, South America and a discussion on the continued use of morphological characters in araphid diatom taxonomy. PhytoKeys 187: 23-70. https://doi.org/10.3897/phytokeys.187.73338
Figure 5 A–F SEM images of Pseudostaurosira heteropolaris sp. nov. from the Bolivian Altiplano A, B Valve views showing striation pattern and features of the axial area, virgae, vimines, and spine location C side view of complete frustule and neighboring cell showing girdle bands (white arrows denote open copulae). White arrows point to open girdle elements D close up of C showing details of spines with bifurcations with pinnatifid projections, characteristics of the striae on valve mantle and the features of the blisters E broken frustule with girdle bands. Pattern of volae within areolae is also shown F frustule in side, tilted view. Notice open copulae (white arrow) and reduced apical pore field with cavernous poroids (black arrow). Scale bars: 1 µm (D); 3 µm (A–C, E); 4 µm (F).
Figure 2 from: Morales EA, Wetzel CE, Ector L (2021) New and poorly known araphid diatom species (Bacillariophyta) from regions near Lake Titicaca, South America and a discussion on the continued use of morphological characters in araphid diatom taxonomy. PhytoKeys 187: 23-70. https://doi.org/10.3897/phytokeys.187.73338
Figure 2 A–F SEM images of little known "araphid" diatoms from the Bolivian Altiplano A, BNanofrustulum cataractarumA specimen from the Desaguadero River, showing quasifract girdle elements with prominent ligulae (white arrows) B specimen from the Sajama River showing common internal depression into which the areolae open (dotted arrows) and the blister-like depositions of silica at the abvalvar edge of the mantle C, DN. rarissimum from the Desaguadero River C small, spineless valve D internal view showing apical and foot pole pore fields (black arrows) and internal depressions containing all areolae within a stria (dotted arrow) E, FPseudostaurosira sajamaensis from the Desaguadero River E top view showing gradual transition of valve face to mantle and the reduced apical pore fields (black arrow) F side view of two half cells still attached by heavily silicified spines. Notice open girdle elements (white arrows). Scale bars: 1 µm (B); 3 µm (C, E); 4 µm (A, D); 5 µm (F).
Figure 1 from: Morales EA, Wetzel CE, Ector L (2021) New and poorly known araphid diatom species (Bacillariophyta) from regions near Lake Titicaca, South America and a discussion on the continued use of morphological characters in araphid diatom taxonomy. PhytoKeys 187: 23-70. https://doi.org/10.3897/phytokeys.187.73338
Figure 1 A–M' LM images of little known and new "araphid" diatoms from the Bolivian Altiplano A–ENanofrustulum cataractarumF–LN. rarissimumM–SPseudostaurosira sajamaensisT–ZP. pulchra sp. nov. (Fig. 1U is the holotype) A'–G' P. aedes sp. nov. (Fig. 1A' is the holotype). H'–M' P. heteropolaris sp. nov. (Fig. 1I' is the holotype). Scale bar: 10 µm.
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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.