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FIGURE 9. Lepidaploa eriolepis. A. Plant. B. Stem detail. C. Abaxial leaf surface detail. D. Abaxial leaf surface detail. E. Capitula. F. Cypsela and pappus. G. Floret. H. Style. I. Floret dissected with anther detail. J. Corolla lobe detail. K. Outer phyllaries. L–M in The genus Lepidaploa (Vernonieae, Asteraceae) in southern South America
FIGURE 9. Lepidaploa eriolepis. A. Plant. B. Stem detail. C. Abaxial leaf surface detail. D. Abaxial leaf surface detail. E. Capitula. F. Cypsela and pappus. G. Floret. H. Style. I. Floret dissected with anther detail. J. Corolla lobe detail. K. Outer phyllaries. L–M. Inner phyllaries.
FIGURE 2. Stylotrichium hortensiae. A. Floriferous branch. B. Abaxial surface showing the venation reticulodromous. C. Leaf transverse section. D. Uniseriate tector trichome. E. Uniseriate glandular trichome with multicellular head. F. Biseriate glandular trichome with unicellular head. G. Capitulum. H. Receptacles convex pilose. I. Corolla. J. Stamen. K. Style. L in Stylotrichium hortensiae (Asteraceae-Eupatorieae): A new species from Chapada Diamantina, Bahia, Brazil
FIGURE 2. Stylotrichium hortensiae. A. Floriferous branch. B. Abaxial surface showing the venation reticulodromous. C. Leaf transverse section. D. Uniseriate tector trichome. E. Uniseriate glandular trichome with multicellular head. F. Biseriate glandular trichome with unicellular head. G. Capitulum. H. Receptacles convex pilose. I. Corolla. J. Stamen. K. Style. L. Cypselae with subpaleaceous pappus. Illustrations by N. Nascimento.
FIGURE 1. Croton ichthygaster. A. Habit. B. Branch with one leaf having petiolar glands and one leaf apparently lacking them. C. Reddish latex. D. Staminate flowers. E. Pistillate flower with bifid styles. F in Rediscovery and sectional placement of Croton ichthygaster (Euphorbiaceae), a rare species from southern Brazil
FIGURE 1. Croton ichthygaster. A. Habit. B. Branch with one leaf having petiolar glands and one leaf apparently lacking them. C. Reddish latex. D. Staminate flowers. E. Pistillate flower with bifid styles. F. Detail of the subglobose and strongly trigonous capsules. G. Columella with three inflated distal lobes. A–E: Pereira et al. 47 (SP); F–G: Caruzo et al. 201 (SP). Photos by the authors.
FIGURE 1. Allium pseudotelmatum. A. Habit. B. Inflorescence. C. Perigon with stamens and anthers. D. Ovary with style. E. Capsule. F. Anther. G in Allium pseudotelmatum (Amaryllidaceae), a new species of Allium sect. Codonoprasum from Croatia
FIGURE 1. Allium pseudotelmatum. A. Habit. B. Inflorescence. C. Perigon with stamens and anthers. D. Ovary with style. E. Capsule. F. Anther. G. Details of aerial bulbils within the inflorescence. H. Bulb with two daughter bulbs. Length of scale bar represents 1 cm (A, B, C, G, H) or 1 mm (D, E, F). Photographs by Martin DUCHOSLAV.
FIGURE 3. Turnera spicata. A. Habit. B. Inflorescence showing long-styled flowers. C in Turnera spicata: a new species of Turneraceae (Passifloraceae s.l.) from the Brazilian Atlantic Forest
FIGURE 3. Turnera spicata. A. Habit. B. Inflorescence showing long-styled flowers. C. Detail of inflorescences, showing flowers, floral buds and floral scars. D. Part of a leaf, proximal portion, upper surface, showing pairs of extrafloral nectaries (white arrows) (Photographed by James Lucas Costa-Lima).
FIGURE 2. Camellia mingii S.X.Yang. A. Habit. B. Habitat. C. Adaxial leaves. D. Abaxial leaves. E. Flower. F. Ovary and style. G. Stamens. H. Petals. I. Fruit. J in Camellia mingii, a new species of yellow camellias from Southeast Yunnan, China
FIGURE 2. Camellia mingii S.X.Yang. A. Habit. B. Habitat. C. Adaxial leaves. D. Abaxial leaves. E. Flower. F. Ovary and style. G. Stamens. H. Petals. I. Fruit. J. Seeds. Scale=1cm.
FIGURE 2. A–J. Werneria microphylla. A. Capitulum. B. Ray floret. C. Disk floret. D. Inmature achene. E. Anther. F. Style. G–J in Werneria microphylla (Asteraceae, Senecioneae), a new species from the Andean marshes of Peru
FIGURE 2. A–J. Werneria microphylla. A. Capitulum. B. Ray floret. C. Disk floret. D. Inmature achene. E. Anther. F. Style. G–J. Leaves.
Dataset for "Evolutionary Dynamics and Mechanisms of Chain-style Landslide Dam Failure Hazard: Insights from Experimental Field Research"
<p>Yang et al. (2024) Dataset for "Evolutionary Dynamics and Mechanisms of Chain-style Landslide Dam Failure Hazard: Insights from Experimental Field Research", Journal of Geophysical Research-Earth Surface.</p> <p>The data that support the findings of this study are available on request from the corresponding author upon reasonable request.</p>
FIGURE 2. Vaccinium bullatum. A, B. Flowering branch, viewed from below. C. Flowering branch, viewed from above. D. Flower, oblique view. E. Flower, apical view. F. Flower, lateral view. G. Flower, longitudinal section. H. Stamens and style. I in A revision of Vaccinium bullatum (Ericaceae): floral morphology, distribution and typification
FIGURE 2. Vaccinium bullatum. A, B. Flowering branch, viewed from below. C. Flowering branch, viewed from above. D. Flower, oblique view. E. Flower, apical view. F. Flower, lateral view. G. Flower, longitudinal section. H. Stamens and style. I. Flower after anthesis with corolla, stamens and style abscised, showing calyx and disk. All photos by M. Nuraliev from Nuraliev 1071.
FIGURE 2. Mixtecalia teitaensis. A. Habit. B. Leaf. C. Plant with Synflorescence. D. Synflorescence. E. Primary inflorescence corymbiform. F. Involucre. G. Phyllary apex. H. Ovary with pappus. I. Floret., J. Style. K. Dissected floret. L. Anthers. M in Mixtecalia, a new monotypic genus of the subtribe Tussilagininae (Senecioneae, Asteraceae) from the state of Oaxaca, Mexico
FIGURE 2. Mixtecalia teitaensis. A. Habit. B. Leaf. C. Plant with Synflorescence. D. Synflorescence. E. Primary inflorescence corymbiform. F. Involucre. G. Phyllary apex. H. Ovary with pappus. I. Floret., J. Style. K. Dissected floret. L. Anthers. M. Cypselae with pappus.
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H in The species of Tigrideae (Iridaceae) in the Sierra of Nanchititla, State of México, Mexico, and description of the new species Tigridia nanchititlensis
FIGURE 3. Tigridia nanchititlensis. A. Habit. B. Bulb. C–D. Flower front and lateral view. E. Flower dissection. F. Style. G. Stamens. H. Fruits. Illustrated by Ericka Belén Cortez Castro based on type material (A. Rodríguez et al. 6049).
Dataset Bibliometric - Leadership Style In Tourism and Hospitality
<p>Dataset Bibliometric - Leadership Style In Tourism and Hospitality In 2010 -2024</p>
Persistence of Learning Style, Learning Strategy, and Personality Traits
<p>This dataset contains the result of the survey to learning styles, learning strategies, and personality traits.</p> <p>The survey was executed in winter term 2023/24 and summer term 2023 in a German university (OTH Regensburg) during the course "Software Engineering".</p> <p>Examined questionnaires are ILS (learning styles), LIST-K (learning strategies), and BFI-10 (personality traits).</p> <p> </p> <p>The same three questionnaires were asked at two different survey periods three to four months apart while each survey period lasts one to two weeks. Pretest data were examined at the start of the term, while posttest data at the end.</p> <p> </p> <p>Files:</p> <ul> <li>answer_comparison.xlsx</li> <li>persistence.xlsx</li> <li>value_comparison.xlsx</li> </ul> <table> <tbody> <tr> <td>Abbreviation LIST-K</td> <td>Full name</td> </tr> <tr> <td>CS</td> <td>Cognitive strategies</td> </tr> <tr> <td>MCS</td> <td>Metacognitive strategies</td> </tr> <tr> <td>MIR</td> <td>Strategies for managing internal resources</td> </tr> <tr> <td>MER</td> <td>Strategies for managing external resources</td> </tr> <tr> <td>CSORG</td> <td>Cognitive strategies - organizing</td> </tr> <tr> <td>CSELA</td> <td>Cognitive strategies - elaborating</td> </tr> <tr> <td>CSCCH</td> <td>Cognitive strategies - critical checking</td> </tr> <tr> <td>CSREP</td> <td>Cognitive strategies - repeating</td> </tr> <tr> <td>MCSGOP</td> <td>Metacognitive strategies - goals & plans</td> </tr> <tr> <td>MCSMON</td> <td>Metacognitive strategies - monitoring</td> </tr> <tr> <td>MCSREG</td> <td>Metacognitive strategies - regulating</td> </tr> <tr> <td>MIRATT</td> <td>Strategies for managing internal resources - attention</td> </tr> <tr> <td>MIREFF</td> <td>Strategies for managing internal resources - effort</td> </tr> <tr> <td>MIRTIM</td> <td>Strategies for managing internal resources - time</td> </tr> <tr> <td>MERLEE</td> <td>Strategies for managing external resources - learning environment</td> </tr> <tr> <td>MERLIT</td> <td>Strategies for managing external resources - literature research</td> </tr> <tr> <td>MERLWP</td> <td>Strategies for managing external resources - learning with peers</td> </tr> </tbody> </table> <p> </p> <table> <tbody> <tr> <td>Abbreviation ILS</td> <td>Full name</td> </tr> <tr> <td>VV</td> <td>Visual Verbal</td> </tr> <tr> <td>SG</td> <td>Sequential Global</td> </tr> <tr> <td>AR</td> <td>Active Reflective</td> </tr> <tr> <td>SI</td> <td>Sensing Intuitive</td> </tr> </tbody> </table> <p> </p> <table> <tbody> <tr> <td>Abbreviation BFI-10</td> <td>Full name</td> </tr> <tr> <td>A</td> <td>Agreeableness</td> </tr> <tr> <td>C</td> <td>Conscientiousness</td> </tr> <tr> <td>E</td> <td>Extraversion</td> </tr> <tr> <td>N</td> <td>Neuroticism</td> </tr> <tr> <td>O</td> <td>Openness</td> </tr> </tbody> </table> <p> </p> <p> </p> <p>The presented work is supported by the ‘German Federal Ministry of Research, Technology and Space’ (BMFTR) through the granting of the funding project HASKI (FKZ: 16DHBKI035).</p>
Data from: Divergence in style length and pollen size leads to a postmating-prezygotic reproductive barrier among populations of Silene latifolia
A central tenet of speciation research is the need to identify reproductive isolating barriers. One approach to this line of research is to identify the phenotypes that lead to reproductive isolation. Several studies on flowering plants have shown that differences in style length contribute to reproductive isolation between species, leading us to consider whether style length could act as a reproductive barrier among populations of a single species. This could occur if style length varied sufficiently and pollen size covaried with style length. Populations of Silene latifolia exhibit variation in flower size, including style length, that is negatively correlated with annual precipitation. We show that this divergence in style length has a genetic basis and acts as a reproductive barrier: males from small-flowered populations produced relatively small pollen grains that were poor at fertilizing ovules when crossed to females from large-flowered populations, leading to a significant reduction in seed production. Manipulating the distance pollen tubes had to travel revealed that this failure was purely mechanical and not the result of other incompatibilities. These results show that style length acts as a postmating-prezygotic reproductive barrier and indicate a potential link between ecotypic differentiation and reproductive isolation within a species.
FIGURE 13. Styles. A in Evaluation of the taxonomic status of the genus Aliella (Compositae, Gnaphalieae): a recircumscription of the genus Phagnalon
FIGURE 13. Styles. A. Aliella ballii (Sáez 6186, Sáez pers. herb.), scale bar = 200 µm. B. Aliella embergeri (Gómiz 5650, Gómiz pers. herb.), scale bar = 500 µm. C. Aliella platyphylla (Fernández Casas 3329, MA), scale bar = 200 µm. D. Aliella iminouakensis (Sáez 6182, Sáez pers. herb.), scale bar = 100 µm.
FIGURE 3. Begonia tandangii. A. Habit. B. Stipule. C. Leaf margin sparsely fringed with minute hairs. D. Bracts. E. Staminate flower. F. Stamens. G. Pistillate flower, ventral view. H. Pistillate flower, lateral view. I. Styles and stigmas. J in Begonia tandangii (Begoniaceae, section Baryandra), a new species from Luzon Island, the Philippines
FIGURE 3. Begonia tandangii. A. Habit. B. Stipule. C. Leaf margin sparsely fringed with minute hairs. D. Bracts. E. Staminate flower. F. Stamens. G. Pistillate flower, ventral view. H. Pistillate flower, lateral view. I. Styles and stigmas. J. Transverse section of developing capsule. K. Capsule with persistent tepals. All drawn from Ching-I Peng 23400 (HAST) by Chien-Yu Ke.
FIGURE 1 in The significance of one versus two styles: the return of Seddera section Socotroseddera to Convolvulus
FIGURE 1. Majority rule consensus tree from the Bayesian analysis of matK data. Numbers next to nodes indicate parsimony bootstrap support percentage values (with % omitted)/ML bootstrap support values/ Bayesian posterior probabilities sequentially. Blue branches designate Seddera section Seddera and red branches Seddera section Socotroseddera (S. semhaensis and S. fastigiata). The arrow denotes the Dicranostyloideae Clade.
FIGURE 3. Saussurea pseudorockii. A. Habit. B. Floret, with the pappus removed. C. Inner pappus. D. Outer pappus. E. Style branches. F. Leaf section. G. Floret with pappus. H in Five new species of Saussurea (Asteraceae, Cardueae) from the Hengduan Mountains region, southwestern China
FIGURE 3. Saussurea pseudorockii. A. Habit. B. Floret, with the pappus removed. C. Inner pappus. D. Outer pappus. E. Style branches. F. Leaf section. G. Floret with pappus. H. Phyllaries (from left to right, outer to inner series). I. Anther. All from Y.S. Chen 9730 (PE). Illustration by Mr. Y.X. Zhu.
FIGURE 1. Saussurea austrotibetica. A. Habit. B. Style branches. C. Achene. D in Six new species of Saussurea (Asteraceae) from eastern Himalaya
FIGURE 1. Saussurea austrotibetica. A. Habit. B. Style branches. C. Achene. D. Phyllaries (from left to right, outer to inner series). E. Anther. F. Floret. G. Inner pappus. H. Floret, with pappus removed. I. Outer pappus. J. Adaxial leaf section. K. Abaxial leaf section. All
FIGURE 1. Sabicea urniformis. A. Fruiting twig. B. Inflorescence. C. Long-styled flower. D in Two new Sabicea (Rubiaceae) species from West Central Africa: Sabicea bullata and Sabicea urniformis
FIGURE 1. Sabicea urniformis. A. Fruiting twig. B. Inflorescence. C. Long-styled flower. D. Section of long-styled flower. E. Section of short-styled flower. F. Fruit. A & C, Breteler et al. 9427; B, J.M. & B. Reitsma 3571; D–F, Wieringa & Haegens 2390.
ScienceDex guides
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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.