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931.
932.
Back cover: Cardiovascular Benefits of Phenol‐Enriched Virgin Olive Oils: New Insights from the Virgin Olive Oil and HDL Functionality (VOHF) Study
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Anna Pedret Sara Fernández‐Castillejo Rosa‐Maria Valls Úrsula Catalán Laura Rubió Marta Romeu Alba Macià Maria Carmen López de las Hazas Marta Farràs Montse Giralt Juana I. Mosele Sandra Martín‐Peláez Alan T. Remaley Maria‐Isabel Covas Montse Fitó Maria‐José Motilva Rosa Solà 《Molecular nutrition & food research》2018,62(16)
933.
Cardiovascular Benefits of Phenol‐Enriched Virgin Olive Oils: New Insights from the Virgin Olive Oil and HDL Functionality (VOHF) Study
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![点击此处可从《Molecular nutrition & food research》网站下载免费的PDF全文](/ch/ext_images/free.gif)
Anna Pedret Sara Fernández‐Castillejo Rosa‐Maria Valls Úrsula Catalán Laura Rubió Marta Romeu Alba Macià Maria Carmen López de las Hazas Marta Farràs Montse Giralt Juana I. Mosele Sandra Martín‐Peláez Alan T. Remaley Maria‐Isabel Covas Montse Fitó Maria‐José Motilva Rosa Solà 《Molecular nutrition & food research》2018,62(16)
934.
935.
Application of multi‐block analysis and mixture design with process variable for development of chocolate cake containing yacon (Smallanthus sonchifolius) and maca (Lepidium meyenii)
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![点击此处可从《Journal of the science of food and agriculture》网站下载免费的PDF全文](/ch/ext_images/free.gif)
936.
The effect of addition of Nigella sativa L. oil on the quality and shelf life of pork patties
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![点击此处可从《Journal of Food Processing and Preservation》网站下载免费的PDF全文](/ch/ext_images/free.gif)
937.
Control of Rhizopus soft rot and quality responses in plums (Prunus domestica L.) coated with gum arabic,oregano and rosemary essential oils
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938.
939.
L. Christoffer Johansson Marta Wolf Anders Hedenstr?m 《Journal of the Royal Society Interface》2010,7(42):61-66
Qualitative comparison of bird and bat wakes has demonstrated significant differences in the structure of the far wake. Birds have been found to have a unified vortex wake of the two wings, while bats have a more complex wake with gradients in the circulation along the wingspan, and with each wing generating its own vortex structure. Here, we compare quantitative measures of the circulation in the far wake of three bird and one bat species. We find that bats have a significantly stronger normalized circulation of the start vortex than birds. We also find differences in how the circulation develops during the wingbeat as demonstrated by the ratio of the circulation of the dominant start vortex and the total circulation of the same sense. Birds show a more prominent change with changing flight speed and a relatively weaker start vortex at minimum power speed than bats. We also find that bats have a higher normalized wake loading based on the start vortex, indicating higher relative induced drag and therefore less efficient lift generation than birds. Our results thus indicate fundamental differences in the aerodynamics of bird and bat flight that will further our understanding of the evolution of vertebrate flight. 相似文献
940.
Bally M Bailey K Sugihara K Grieshaber D Vörös J Städler B 《Small (Weinheim an der Bergstrasse, Germany)》2010,6(22):2481-2497
Sensitive and selective biosensors for high-throughput screening are having an increasing impact in modern medical care. The establishment of robust protein biosensing platforms however remains challenging, especially when membrane proteins are involved. Although this type of proteins is of enormous relevance since they are considered in >60% of the pharmaceutical drug targets, their fragile nature (i.e., the requirement to preserve their natural lipid environment to avoid denaturation and loss of function) puts strong additional prerequisites onto a successful biochip. In this review, the leading approaches to create lipid membrane-based arrays towards the creation of membrane protein biosensing platforms are described. Liposomes assembled in micro- and nanoarrays and the successful set-ups containing functional membrane proteins, as well as the use of liposomes in networks, are discussed in the first part. Then, the complementary approaches to create cell-mimicking supported membrane patches on a substrate in an array format will be addressed. Finally, the progress in assembling free-standing (functional) lipid bilayers over nanopore arrays for ion channel sensing will be reported. This review illustrates the rapid pace by which advances are being made towards the creation of a heterogeneous biochip for the high-throughput screening of membrane proteins for diagnostics, drug screening, or drug discovery purposes. 相似文献