2,472 research outputs found

    Fig. 4. Desplatsia Bocq. fruit images. A–B. D in A taxonomic revision of the African genus Desplatsia Bocq. (Malvaceae - Grewioideae)

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    Fig. 4. Desplatsia Bocq. fruit images. A–B. D. chrysochlamys (Mildbr. & Burret) Mildbr. & Burret. A. Fresh fruit (Jongkind 8725). B. Cut fresh fruit (Jongkind 9717). C–D. D. dewevrei (De Wild. & T.Durand) Burret. C. Fresh fruit (Harris 9652 (E)). D. Cut fresh fruit (Jongkind 8142). E. D. mildbraedii Burret (Harris 4005 (E)), fresh fruits. F. D. subericarpa Bocq. (Harris 10194), fresh fruit. A–B, D images by C. Jongkind; C, E–F images by D. Harris (RBGE).Published as part of Wellsow, Julia, Hart, Michelle, Wilkie, Peter & Harris, David J., 2019, A taxonomic revision of the African genus Desplatsia Bocq. (Malvaceae - Grewioideae), pp. 1-38 in European Journal of Taxonomy 584 (584) on page 8, DOI: 10.5852/ejt.2019.584, http://zenodo.org/record/545163

    Hydration Maps of Oman Drilling Project Holes GT1A, GT2A, and GT3A

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    This dataset is the supplement for the following paper: Crotteau, M.A., Greenberger, R. N., Ehlmann, B. L., Rossman, G.R., Harris, M., Kelemen, P. B., Teagle, D. A. H., et al. (2021). Characterizing Hydration of the Ocean Crust Using Shortwave Infrared Microimaging Spectroscopy of ICDP Oman Drilling Project Cores. Journal of Geophysical Research: Solid Earth. These datasets are maps of hydration for the International Continental Scientific Drilling Program (ICDP) Oman Drilling Project (OmanDP) Holes GT1A, GT2A, and GT3A. The maps were derived from imaging spectroscopy measurements of the archive half of the OmanDP cores, with methods for data acquisition described in Kelemen et al. (2020) and data analysis in Crotteau et al. (2021). The hydration maps archived here are part of the supplement of Crotteau et al. (2021) but are too large to be published through the journal. Data descriptions are in the supplement of Crotteau et al. (2021), and that paper must be cited with use of these datasets. Included files: 1. GT1A_HydrationMaps.pdf: Maps of the hydration in Hole GT1A. 2. GT2A_HydrationMaps.pdf: Maps of the hydration in Hole GT2A. 3. GT3A_HydrationMaps.pdf: Maps of the hydration in Hole GT3A., Cite this record as: Crotteau, M. A., Greenberger, R. N., Ehlmann, B. L., Rossman, G. R., Harris, M., Kelemen, P. B., Teagle, D. A. H., &amp;amp; Team, T. O. D. P. S. (2021). Hydration Maps of Oman Drilling Project Holes GT1A, GT2A, and GT3A (Version 1.0) [Data set]. CaltechDATA. https://doi.org/10.22002/D1.2141 or choose a different citation style. Download Citation ,</span

    Fig. 2. Desplatsia Bocq. leaf images. A. D in A taxonomic revision of the African genus Desplatsia Bocq. (Malvaceae - Grewioideae)

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    Fig. 2. Desplatsia Bocq. leaf images. A. D. chrysochlamys (Mildbr. & Burret) Mildbr. & Burret (Harris 4977 (E)). B. D. dewevrei (De Wild. & T.Durand) Burret (Harris 9664 (E)). C–D. D. subericarpa Bocq. (Harris 10194). C. Leaves. D. Leaf base with subulately divided stipules and distinctly inflated petiole in upper part. E–F. Stellate hairs on leaf undersurface. E. D. chrysochlamys (Mildbr. & Burret) Mildbr. & Burret (Harris 5241 (E)). F. D. mildbraedii Burret (Harris 4397 (E)). E–F at the same magnification (40 × with microscope). Scale bars = 1 mm. A–D images by D. Harris (RBGE); E–F images by J. Wellsow (RBGE).Published as part of Wellsow, Julia, Hart, Michelle, Wilkie, Peter & Harris, David J., 2019, A taxonomic revision of the African genus Desplatsia Bocq. (Malvaceae - Grewioideae), pp. 1-38 in European Journal of Taxonomy 584 (584) on page 5, DOI: 10.5852/ejt.2019.584, http://zenodo.org/record/545163

    Hydration Imaging Spectroscopy Dataset for Oman Drilling Project Holes GT1A, GT2A, and GT3A

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    This dataset contains paired .img and .hdr files of calculated water content used for the following paper: Crotteau, M.A., Greenberger, R. N., Ehlmann, B. L., Rossman, G.R., Harris, M., Kelemen, P. B., Teagle, D. A. H., et al. (2021). Characterizing Hydration of the Ocean Crust Using Shortwave Infrared Microimaging Spectroscopy of ICDP Oman Drilling Project Cores. Journal of Geophysical Research: Solid Earth. This dataset contains the .img and .hdr files with weight percent water values for each pixel for the International Continental Scientific Drilling Program (ICDP) Oman Drilling Project (OmanDP) Holes GT1A, GT2A, and GT3A. The hydration values were derived from imaging spectroscopy measurements of the archive half of the OmanDP cores, with methods for data acquisition described in Kelemen et al. (2020) and data analysis in Crotteau et al. (2021). Data descriptions are in the supplement of Crotteau et al. (2021), and that paper must be cited with use of this dataset. Included files: 1. GT1A_HydrationMaps.zip: Zip file containing paired .img and .hdr files containing calcuated hydration for each core section in Hole GT1A. 2. GT2A_HydrationMaps.zip: Zip file containing paired .img and .hdr files containing calcuated hydration for each core section in Hole GT2A. 3. GT3A_HydrationMaps.zip: Zip file containing paired .img and .hdr files containing calcuated hydration for each core section in Hole GT3A., Cite this record as: Crotteau, M. A., Greenberger, R. N., Ehlmann, B. L., Rossman, G. R., Harris, M., Kelemen, P. B., Teagle, D. A. H., &amp;amp; Team, T. O. D. P. S. (2021). Hydration Imaging Spectroscopy Dataset for Oman Drilling Project Holes GT1A, GT2A, and GT3A (Version 1.0) [Data set]. CaltechDATA. https://doi.org/10.22002/D1.2142 or choose a different citation style. Download Citation ,</span

    Temporal coordination of the arms during bilateral simultaneous and sequential movements in patients with chronic hemiparesis

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    Upper extremity (UE) hemiparesis results in decreased movement speed and impaired coordination leading to functional limitations and disability. The effects of UE hemiparesis on bilateral functional reaching have not been studied even though most activities of daily living are bilateral tasks. We examined the characteristics of bilateral simultaneous (SIM-B) and bilateral sequential paretic-lead (SEQ-P) and nonparetic-lead (SEQ-NP) functional reaching tasks at preferred and fast speeds. Sixteen patients with chronic hemiparesis completed three bilateral reaching tasks as fast as possible. A subset of eight participants attempted to complete the tasks at both preferred and fastest possible speeds. Paretic (P) and nonparetic (NP) arms were not different from each other in movement time (MT) or peak velocity in the SIM-B condition. MT and peak velocity differed between the two arms during both SEQ tasks. P MT was shorter and NP MT longer in the SIM-B task compared to SEQ-P and SEQ-NP. The P arm MT was the shortest when moving with the NP arm in a simultaneous task compared to both P and NP lead sequential movements. Despite hemiparesis, the two arms demonstrate a temporal coupling when moving simultaneously. When attempting to move at fastest speed, P arm MT time is better when reaching before or with the NP arm than when reaching after the NP arm showing coupling to the NP limb and increased speed of movement. These coupling effects support the rationale for bilateral arm training for individuals with UE hemiparesi

    Genetic influences on level and stability of self-esteem

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    We attempted to clarify the relation between self-esteem level (high vs. low) and perceived self-esteem stability (within-person variability) by using a behavioral genetics approach. We tested whether the same or independent genetic and environmental influences impact on level and stability. Adolescent twin siblings (n = 183 pairs) completed level and stability scales at two time points. Heritability for both was substantial. The remaining variance in each was attributable to non-shared environmental influences. Shared environmental influences were not significant. Level and stability of self-esteem shared common antecedents via genetic and non-shared environmental influences. Nonetheless, stability was influenced by substantial unique genetic and non-shared environmental influences. The results validate the notion that level and stability are partially autonomous components of self-esteem

    Mineral occurrence maps of Oman Drilling Project Holes GT1A, GT2A, and GT3A

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    These datasets are maps of the occurrences of key minerals and mineral groups (clinopyroxene, amphibole, chlorite, epidote, prehnite, zeolite, gypsum, calcite, and kaolinite/montmorillonite) for the International Continental Scientific Drilling Program (ICDP) Oman Drilling Project (OmanDP) Holes GT1A, GT2A, and GT3A. The maps were derived from imaging spectroscopy measurements of the archive half of the OmanDP cores, with methods for data acquisition described in Kelemen et al. (2020) and data analysis in Greenberger et al. (in review, JGR Solid Earth). The mineral occurrence maps archived here are part of the supplement of Greenberger et al. (in review) but are too large to be published through the journal. Data descriptions are in the supplement of Greenberger et al. (in review), and that paper must be cited with use of these datasets. Included files: 1. GT1A_MineralOccurrenceMaps.pdf: Maps of the occurrence of key minerals and mineral groups in Hole GT1A. 2. GT2A_MineralOccurrenceMaps.pdf: Maps of the occurrence of key minerals and mineral groups in Hole GT2A. 3. GT3A_MineralOccurrenceMaps.pdf: Maps of the occurrence of key minerals and mineral groups in Hole GT3A., Cite this record as: Greenberger, R. N., Harris, M., Ehlmann, B. L., Crotteau, M., Kelemen, P. B., Manning, C. E., Teagle, D. A. H., &amp;amp; Team, T. O. D. P. S. (2021). Mineral occurrence maps of Oman Drilling Project Holes GT1A, GT2A, and GT3A (Version 1.0) [Data set]. CaltechDATA. https://doi.org/10.22002/D1.2010 or choose a different citation style. Download Citation , Unique Views: 7 Unique Downloads: 0 between June 23, 2021 and July 12, 2021 More info on how stats are collected ,</span

    Framing Madame B: Quotation and Indistinction in Mieke Bal and Michelle Williams Gamaker’s Video Installation

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    The article engages with the video installation Madame B by Mieke Bal and Michelle Williams Gamaker. The work was premiered in the city of Łódź in Poland (between 6 Dec. 2013 and 9 Feb. 2014). The author makes use of the exhibition brochure by two artists published by the Museum of Modern Art, and the recording of a seminar held by Bal and Williams Gamaker after launching their work. The article focuses on the innovative audiovisual interpretation of Flaubert’s famous novel. Basing the argument on the concept of framing created by Bal, the author applies it to Bal and Williams Gamaker’s exhibition by relating it to the history and culture of the Polish location where it was first shown. Above all, however, the article discusses the importance of quotation and indistinction in Madame B, where the artists quote from (among others): Louise Bourgeois, Maya Deren, Artemisia Gentileschi, Charlotte Perkins Gilman, William Kentridge and Sol LeWitt
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