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Titlebook: Viruses in Foods; Sagar M. Goyal Book 20061st edition Springer-Verlag US 2006 Public Health.amines.food safety.food science.food viruses.m

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书目名称Viruses in Foods
编辑Sagar M. Goyal
视频video
概述The first book to focus entirely on viruses in foods.Collates information on the occurrence, detection, transmission, and epidemiology of viruses in various foods.Intended for food safety experts, foo
丛书名称Food Microbiology and Food Safety
图书封面Titlebook: Viruses in Foods;  Sagar M. Goyal Book 20061st edition Springer-Verlag US 2006 Public Health.amines.food safety.food science.food viruses.m
描述.Cases of viral foodborne outbreaks are on the rise in part due to the increases in population, scarcity of clean water, and changes in eating habits. Outbreaks attributed to toxic, fungal, parasitic, and bacterial agents are very well known and characterized because we have known about these diseases for a long time and have developed appropriate methods to investigate and track them. Detection methods to investigate and track viral agents in food, with the exception of shellfish, have only recently begun to be developed. However, with the advent of molecular diagnostic methods, the role of viruses in foodborne disease outbreaks is beginning to be understood...Viruses in Foods. is the first book that comprehensively discusses the role of viruses in foodborne disease outbreaks, along with strategies for the prevention and control of viral contamination of food..
出版日期Book 20061st edition
关键词Public Health; amines; food safety; food science; food viruses; microbiology; processing; transport
版次1
doihttps://doi.org/10.1007/0-387-29251-9
isbn_softcover978-1-4419-3962-3
isbn_ebook978-0-387-29251-9Series ISSN 2629-1010 Series E-ISSN 2629-1029
issn_series 2629-1010
copyrightSpringer-Verlag US 2006
The information of publication is updating

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Gary P. Richardsquires a whole mammalian organism (e.g., enzyme replacement therapy in metabolic disease). Since accurate models of genetic disorders cannot be readily produced by experimental manipulation of normal laboratory animals, genetically determined counterparts of human disease in animals offer the most plausible alternative.
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Craig W. Hedberg efforts began for different reasons and depended at first on different experimental systems. The theme for this review is that they now appear to be converging on a common question: what determines the rate of production of a given gene product (hemoglobin) in differentiated cells (erythrocytes) of a eukaryote (man) ?
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Robert L. Atmar proliferation. In all of these interactions the platelets adhere to surfaces, become adhesive and stick to each other, discharge their granule contents, and synthesize products from arachidonic acid freed from membrane phospholipids.
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