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81.
82.
Huhmann B.A. Mothersbaugh D.L. Franke G.R. 《Professional Communication, IEEE Transactions on》2002,45(3):157-169
Professionals involved in the creation of text-based communication face a number of challenges. These include overburdened and often uninterested users juxtaposed with the writer's desire to communicate relevant topical information. Uninvolved users are likely to ignore the message. This may be exacerbated by increases in text length designed to increase the amount and/or detail of information to be communicated. An experiment was conducted to examine the effect of rhetorical figures in text headings as to how users read and process the text (hereafter readership, as used in marketing). To the extent that higher levels of text readership increase user knowledge and skills, enhance topic-related attitudes, and facilitate beneficial topic-related behaviors, higher readership should yield desirable communication outcomes. Headings with rhetorical figures were hypothesized to enhance readership, particularly under conditions generally associated with relatively low readership, namely, lower perceived information relevance and longer text. Results generally support rhetorical figures' abilities to enhance readership, especially with longer texts. 相似文献
83.
Ralf-Peter Franke Anne Krüger Tim Scharnweber Folker Wenzel Friedrich Jung 《International journal of molecular sciences》2014,15(9):16134-16152
Effects of radiographic contrast media (RCM) application were demonstrated in vitro and in vivo where the injection of RCM into the A. axillaris of patients with coronary artery disease was followed by a significant and RCM-dependent decrease of erythrocyte velocity in downstream skin capillaries. Another study in pigs revealed that the deceleration of erythrocytes coincided with a significant reduction of the oxygen partial pressure in the myocardium—supplied by the left coronary artery—after the administration of RCM into this artery. Further reports showed RCM dependent alterations of erythrocytes like echinocyte formation and exocytosis, sequestration of actin or band 3 and the buckling of endothelial cells coinciding with a formation of interendothelial fenestrations leading to areas devoid of endothelial cells. Key to morphological alterations of erythrocytes is the membrane cytoskeleton, which is linked to the band 3 in the erythrocyte membrane via the junctional complex. Fundamental observations regarding the cell biological and biochemical aspects of the structure and function of the cell membrane and the membrane cytoskeleton of erythrocytes have been reported. This review focuses on recent results gained, e.g., by advanced confocal laser scanning microscopy of different double-stained structural elements of the erythrocyte membrane cytoskeleton. 相似文献
84.
Haiming Zhang Jörn‐Holger Franke Dingyong Zhong Yan Li Alexander Timmer Oscar Díaz Arado Harry Mönig Hong Wang Lifeng Chi Zhaohui Wang Klaus Müllen Harald Fuchs 《Small (Weinheim an der Bergstrasse, Germany)》2014,10(7):1361-1368
The surface‐assisted synthesis of gold–organic hybrids on Au (111) and Au (100) surfaces is repotred by thermally initiated dehalogenation of chloro‐substituted perylene‐3,4,9,10‐tetracarboxylic acid bisimides (PBIs). Structures and surface‐directed alignment of the Au–PBI chains are investigated by scanning tunnelling microscopy in ultra high vacuum conditions. Using dichloro‐PBI as a model system, the mechanism for the formation of Au–PBI dimer is revealed with scanning tunnelling microscopy studies and density functional theory calculations. A PBI radical generated from the homolytic C‐Cl bond dissociation can covalently bind a surface gold atom and partially pull it out of the surface to form stable PBI‐Au hybrid species, which also gives rise to the surface‐directed alignment of the Au–PBI chains on reconstructed Au (100) surfaces. 相似文献
85.
At ACCESS e.V. numerical simulations of casting and heat treatment processes are performed and are in use for process optimization since more than 10 years. During the last few years, a simulation technique, for the prediction of microscale texture characteristics dependent on the solidification conditions, has been additionally developed. Both simulation methods are applied to silicon crystallization processes in close collaboration with partners from the industry, namely the Deutsche Solar GmbH.In this paper, general features of numerical simulation for silicon crystallization techniques will be presented. The prospectives and limitations of these simulation methods will be discussed. Finally, examples of numerical simulation results on different length scales for two silicon-casting processes are given. 相似文献
86.
87.
We report a new method for fast and sensitive analyses of biologically relevant fatty acids (FAs) in red blood cells (RBC) by liquid chromatography mass spectrometry (LC-MS). A new chemical derivatization approach was developed forming picolylamides from FAs in a quantitative reaction. Fourteen derivatized FA standards, including saturated and unsaturated FAs from C14 to C22, were efficiently separated within 15 min. In addition, the use of a recently introduced benchtop orbitrap mass spectrometer under positive electrospray ionization (ESI) full scan mode showed a 2-10-fold improvement in sensitivity compared with a conventional tandem MS method, with a limit of detection in the low femtomole range for saturated and unsaturated FAs. The developed method was applied to determine FA concentrations in RBC with intra- and interday coefficients of variation below 10%. 相似文献
88.
Joerg Konheiser Carsten Brachem Marcus Seidl 《Journal of Nuclear Science and Technology》2017,54(2):188-195
This work shows the impact of potential displacements of the fuel assembly positions in the reactor core on the signal values of the ex-core instrumentation of a pressurized water reactor in order to understand in detail the impact on the calibration factor of ex-core detectors. This was done with a range of Monte Carlo calculations that simulated the detailed geometrical effect by stepwise changing of the positions of fuel assemblies for selected, conservative scenarios. First, criticality calculations were carried out for the chosen core configurations, and corresponding surface sources on the core barrel were determined. In these calculations, the distances were varied between the fuel assemblies which were in the line of sight of the ex-core instrumentation. A maximal change of the fluxes on the surface of the core barrel of 4%/mm could be calculated under conservative assumptions for the combination of displaced fuel assemblies. In addition, a dependence of this effect as a function of cycle burn-up was analyzed. In a second step, transport calculations for the ionization chambers were performed using the surface sources. An increase of the reaction rate at the chambers of up to 3%/mm has been calculated. 相似文献
89.
90.
Thiol–Ene Clickable Gelatin: A Platform Bioink for Multiple 3D Biofabrication Technologies 下载免费PDF全文
Sarah Bertlein Gabriella Brown Khoon S. Lim Tomasz Jungst Thomas Boeck Torsten Blunk Joerg Tessmar Gary J. Hooper Tim B. F. Woodfield Juergen Groll 《Advanced materials (Deerfield Beach, Fla.)》2017,29(44)
Bioprinting can be defined as the art of combining materials and cells to fabricate designed, hierarchical 3D hybrid constructs. Suitable materials, so called bioinks, have to comply with challenging rheological processing demands and rapidly form a stable hydrogel postprinting in a cytocompatible manner. Gelatin is often adopted for this purpose, usually modified with (meth‐)acryloyl functionalities for postfabrication curing by free radical photopolymerization, resulting in a hydrogel that is cross‐linked via nondegradable polymer chains of uncontrolled length. The application of allylated gelatin (GelAGE) as a thiol–ene clickable bioink for distinct biofabrication applications is reported. Curing of this system occurs via dimerization and yields a network with flexible properties that offer a wider biofabrication window than (meth‐)acryloyl chemistry, and without additional nondegradable components. An in‐depth analysis of GelAGE synthesis is conducted, and standard UV‐initiation is further compared with a recently described visible‐light‐initiator system for GelAGE hydrogel formation. It is demonstrated that GelAGE may serve as a platform bioink for several biofabrication technologies by fabricating constructs with high shape fidelity via lithography‐based (digital light processing) 3D printing and extrusion‐based 3D bioprinting, the latter supporting long‐term viability postprinting of encapsulated chondrocytes. 相似文献