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991.
Christa Taylor Zorana Ivcevic Julia Moeller Marc Brackett 《Creativity & Innovation Management》2020,29(3):453-464
Although innovation is vital for the success of organizations, many may not be capitalizing on the creativity of all workers. Gender bias in attributions of creativity may lead to an imbalance in the extent to which organizations support the creativity of men and women. Because organizational support for creativity is positively associated with creative outcomes, this may undermine the creativity of women in the workplace. To determine if gender influences creative workplace behavior through support for creativity, conditional process models were used to analyze the survey responses and external employment data of workers (N = 14,590) across industries in the US. Our analyses demonstrate that men report greater support for creativity in the workplace than women, and greater support for workplace creativity leads to more frequent creative workplace behaviors. The proportion of women employed in an industry influences this relationship, such that differences between men and women become smaller as the proportion of women in an industry increases. However, the level of creativity required in an occupation does not influence the relationship between gender and creativity. The theoretical and practical implications of these results are discussed. 相似文献
992.
Baesmat Hana Jannaty Bodson Marc 《International Journal of Control, Automation and Systems》2022,20(2):483-495
International Journal of Control, Automation and Systems - The paper proposes a complex domain control and robustness analysis approach to damping of Sub-Synchronous Control Interactions (SSCI) in... 相似文献
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Rieke Himstedt Dr. Silke Wagner Dr. Robert J. R. Jaeger Dr. Michèle-Laure Lieunang Watat Dr. Jana Backenköhler Dr. Zeljka Rupcic Prof. Dr. Marc Stadler Prof. Dr. Peter Spiteller 《Chembiochem : a European journal of chemical biology》2020,21(11):1613-1620
Mycenarubin C, a previously unknown red pyrroloquinoline alkaloid, was isolated from fruiting bodies of the mushroom Mycena rosea and its structure was elucidated mainly by NMR spectroscopy and mass spectrometry. Unlike mycenarubin A, the major pyrroloquinoline alkaloid in fruiting bodies of M. rosea, mycenarubin C, contains an eight-membered ring with an additional C1 unit that is hitherto unprecedented for pyrroloquinoline alkaloids known in nature. Incubation of mycenarubin A with an excess of formaldehyde revealed that mycenarubin C was generated nearly quantitatively from mycenarubin A. An investigation into the formaldehyde content of fresh fruiting bodies of M. rosea showed the presence of considerable amounts of formaldehyde, with values of 5 μg per gram of fresh weight in fresh fruiting bodies. Although mycenarubin C did not show bioactivity against selected bacteria and fungi, formaldehyde inhibits the growth of the mycoparasite Spinellus fusiger at concentrations present in fruiting bodies of M. rosea. Therefore, formaldehyde might play an ecological role in the chemical defence of M. rosea against S. fusiger. In turn, S. fusiger produces gallic acid—presumably to detoxify formaldehyde by reaction of this aldehyde with amino acids and gallic acid to Mannich adducts. 相似文献
995.
Applied Intelligence - The community detection in complex networks has become a major field of research. Disjoint community detection deals often with getting a partition of nodes where every node... 相似文献
996.
Marc Hernaiz-Llorens Ramn Martínez-Mrmol Cristina Rosell-Busquets Eduardo Soriano 《International journal of molecular sciences》2021,22(9)
Central nervous system damage caused by traumatic injuries, iatrogenicity due to surgical interventions, stroke and neurodegenerative diseases is one of the most prevalent reasons for physical disability worldwide. During development, axons must elongate from the neuronal cell body to contact their precise target cell and establish functional connections. However, the capacity of the adult nervous system to restore its functionality after injury is limited. Given the inefficacy of the nervous system to heal and regenerate after damage, new therapies are under investigation to enhance axonal regeneration. Axon guidance cues and receptors, as well as the molecular machinery activated after nervous system damage, are organized into lipid raft microdomains, a term typically used to describe nanoscale membrane domains enriched in cholesterol and glycosphingolipids that act as signaling platforms for certain transmembrane proteins. Here, we systematically review the most recent findings that link the stability of lipid rafts and their composition with the capacity of axons to regenerate and rebuild functional neural circuits after damage. 相似文献
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An astronomical set of sentences can be produced in natural language by combining relatively simple sentence structures with a human-size lexicon. These sentences are within the range of human language performance. Here, we investigate the ability of simple recurrent networks (SRNs) to handle such combinatorial productivity. We successfully trained SRNs to process sentences formed by combining sentence structures with different groups of words. Then, we tested the networks with test sentences in which words from different training sentences were combined. The networks failed to process these sentences, even though the sentence structures remained the same and all words appeared on the same syntactic positions as in the training sentences. In these combination cases, the networks produced work–word associations, similar to the condition in which words are presented in the context of a random word sequence. The results show that SRNs have serious difficulties in handling the combinatorial productivity that underlies human language performance. We discuss implications of this result for a potential neural architecture of human language processing. 相似文献
1000.
Electron microscopy of vitrified ultrathin sections allows cell ultrastructure to be studied in the hydrated state. Sectioning of the frozen material is, however, a limiting step, since the cutting forces cause severe mechanical deformation. In order to address this problem, we have investigated the surface of cryosections. It is shown that cryosections have two fundamentally different surfaces. One surface is rough, deformed by cutting-induced deformation lines which are orientated perpendicular to the cutting direction. The other surface, in comparison, is not affected by those deformation lines. Except for knife marks it is smooth. In order to explain the observations, the following model is proposed. The rough relief corresponds to the former block face. Its roughness originates from material that is squeezed out of the section plane when the section is compressed in the cutting direction and bent away from the specimen block. The smooth section surface is the surface in contact with the knife during the sectioning. This contact keeps the surface smooth while imprinting the knife marks. 相似文献