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A METHOD OF PROVIDING NUTRIGENOMIC INFORMATION FOR OBESITY AND A DEVICE USING THE SAME

机译:提供肥胖症营养信息的方法和使用该方法的设备

摘要

For inputting the invention for the experimental hypertrophy in the basic hereditary information of DEG (database of indispensable gene) of information, MOA (mode of action) analyzes based on a hereditary information and input unit, by the hereditary information for independently collecting oil base from document; For common genetic screening test calculators of the DEG based on hereditary information, MOA analyses are based on hereditary information and file based on hereditary information; First group of the hereditary information based on DEG of selected test heredity, the analysis based on MOA of hereditary information and the common hereditary information from the hereditary information based on document; MOA analyze the common hereditary information based on hereditary information genetic test based on DEG and second group; The basic hereditary information of the common heredity of MOA analyses and the third group of the hereditary information based on document; The experimental hereditary information based on DEG used to store and a common memory are based partially on hereditary information in the literature by the 4th group of separation of hereditary information; There is provided for establish genetic obesity trophozoite and export gene expression levels comparison an equipment, protein expression level before and after intake trophozoite trophozoite sucks relative to the hereditary information of storage. By this, gene related with disease of interest is provided by active, more efficiently and research uses gene, can provide information on the dielectric of nutrition.
机译:为了在信息的基本遗传信息DEG(必不可少的数据库)中输入用于实验性肥大的发明,MOA(作用方式)基于遗传信息和输入单元进行分析,通过遗传信息独立地收集油基文件;对于基于遗传信息的DEG通用基因筛查测试计算器,MOA分析基于遗传信息,而文件则基于遗传信息;第一组基于DEG的遗传信息选择测试遗传,基于遗传信息的MOA分析和基于文档的遗传信息中的常见遗传信息; MOA根据基于DEG和第二组的遗传信息遗传测试分析共同的遗传信息; MOA常见遗传的基本遗传信息分析和基于文档的第三类遗传信息;基于DEG的实验性遗传信息用于存储和共同记忆,部分是基于第四类遗传信息的分离,基于文献中的遗传信息。提供了用于建立遗传肥胖滋养体和输出基因表达水平的比较设备,相对于遗传信息,摄入滋养体滋养体前后的蛋白质表达水平。通过这种方式,与目标疾病有关的基因可以通过主动,高效地提供,并且研究使用的基因可以提供有关营养介质的信息。

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