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New Opportunities for Polymer Nanocomposites in Microfluidics and Biomedical MEMS: An introduction to cutting-edge composite polymer materials for use in microfluidics and biomedical MEMS.

机译:微流体和生物医学MEMS中的聚合物纳米复合材料的新机遇:用于微流体和生物医学MEMS的尖端复合聚合物材料的介绍。

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摘要

From the miniaturization of laboratory instrumentation for bedside rapid diagnosis of disease to bioanalytical instrumentation for studying individual cells or molecules in new ways using micromachined structures, microfluidics is well established as an exciting area of research with great promise and an ever-growing application base. Microfluidics is revolutionizing laboratory methods and biomedical devices, offering new capabilities and instrumentation for multiple areas such as deoxyribonucleic acid (DNA) analysis, proteomics, enzymatic analysis, single-cell analysis, immunology, point-of-care medicine, personalized medicine, drug delivery, and environmental toxin and pathogen detection. Through the combination of biosensors; microchannel fluid transport; and other micromechanical, optical, chemical, and fluidic components; microfluidic-based instrumentation has spawned research into miniaturized systems, e.g., bedside rapid diagnosis, wearable environmental monitoring, and biological single-cell monitoring.
机译:从用于病床快速诊断的实验室仪器的小型化,到使用微机械结构以新方式研究单个细胞或分子的生物分析仪器,微流控技术已被确立为令人兴奋的研究领域,具有广阔的前景和不断增长的应用基础。微流体正在彻底改变实验室方法和生物医学设备,为多个领域提供新功能和仪器,例如脱氧核糖核酸(DNA)分析,蛋白质组学,酶促分析,单细胞分析,免疫学,即时护理医学,个性化医学,药物递送,以及环境毒素和病原体检测。通过生物传感器的组合;微通道流体传输;以及其他微机械,光学,化学和流体成分;基于微流体的仪器催生了对微型系统的研究,例如床头快速诊断,可穿戴环境监测和生物单细胞监测。

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