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首页> 外文期刊>Journal of Medical Systems >Data Capture of Transdermal Glucose Monitoring through Computerized Appliance-Based Virtual Remote Sensing and Alert Systems
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Data Capture of Transdermal Glucose Monitoring through Computerized Appliance-Based Virtual Remote Sensing and Alert Systems

机译:通过基于计算机的基于设备的虚拟遥感和警报系统进行透皮葡萄糖监测的数据捕获

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摘要

Monitoring of blood glucose levels is important to persons with diabetes or pre-diabetic, abnormal glucose indications. Such individuals must determine when insulin is needed to reduce glucose levels in their bodies, or when additional glucose must be administered to raise levels. A conventional technique used by many diabetics to personally monitor their glucose level includes the periodic drawing of blood, the application of blood to a test strip, and determination of blood glucose level using calorimetric, electrochemical, or photometric detection. This technique does not permit continuous or automatic monitoring of levels in the body, but typically must be performed manually, and on a periodic basis. Unfortunately, checking consistency varies widely among individuals, where wide variation of high or low levels of glucose or other analytes may have detrimental effects. The ongoing capture of data through continuous and/or automatic in vivo monitoring of analyte levels, and its inclusion with a user-friendly computer interface, is now possible using a subcutaneous implanted sensor. Such devices are small and comfortable when used, allowing a wide range of life activities. In this technology review we propose one promising model using a combination of emerging, systems-based technologies in non-invasive analyte monitoring, as integrated within household-based health monitoring using home appliances.
机译:血糖水平的监测对患有糖尿病或糖尿病前,异常葡萄糖指征的人很重要。这些人必须确定何时需要胰岛素来降低体内葡萄糖水平,或何时必须补充葡萄糖以提高血糖水平。许多糖尿病患者用来个人监测其血糖水平的常规技术包括定期抽取血液,将血液施加到试纸上以及使用量热,电化学或光度检测确定血糖水平。该技术不允许连续或自动监测体内的水平,但通常必须手动执行并定期进行。不幸的是,检查一致性在个体之间差异很大,其中高水平或低水平的葡萄糖或其他分析物的广泛变化可能产生有害影响。现在,可以使用皮下植入传感器通过连续和/或自动体内监测分析物水平来捕获数据,并将其包含在用户友好的计算机界面中。此类设备使用时小巧舒适,可进行广泛的生活活动。在这项技术回顾中,我们提出了一种有前途的模型,该模型结合了新兴的基于系统的技术在无创分析物监测中的应用,并集成在使用家用电器的基于家庭的健康监测中。

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