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Titlebook: BioMEMS and Biomedical Nanotechnology; Volume II: Micro/Nan Mauro Ferrari (Editor-in-Chief, Professor, Brown I Book 2007 Springer-Verlag US

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Plastic Microfluidic Devices for DNA and Protein Analysesllular analysis [., ., .]. Advantages of these µ-TAS over bench-top instruments include low reagent consumption, small sample volumes, high separation efficiencies, short reaction times, ease of automation, and potential for massproduction with low cost [.].
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Mauro Ferrari (Editor-in-Chief, Professor, Brown IFocuses on diagnostic and therapeutic applications of MEMS and nanotechnology in biomedical engineering.Heavily illustrated with line drawings, half tones and many color illustrations.Top researchers
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https://doi.org/10.1007/978-3-031-60579-6g for genomic and proteomic applications through utilizing electric field control to facilitate analytes concentration, DNA hybridization, stringency and multiplexing. An overview of electronic microarray technology is presented followed by its variety applications in genomic research and DNA diagno
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https://doi.org/10.1007/978-3-031-60579-6with nucleic acid sequencing technology improvements that enabled completion of the human genome project years ahead of schedule [., .], methods were developed for high throughput analysis of genetic variation and gene expression. These new molecular analytical tools have stimulated a resurgence of
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https://doi.org/10.1057/9781137505385thousands of proteins in parallel. A result of the many genome projects has been the advance of automation and robotic procedures to manipulate biomolecules using a high-throughput, systematic approach. The promise of the protein microarray is the ability to interrogate a large number of proteins si
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https://doi.org/10.1057/9781137505385 detection), for short tandem repeat (STR) forensics analysis, and for gene expression applications. In addition to these bioresearch and clinical diagnostic applications, such devices also have the potential to carry out the assisted assembly of a wide variety of molecular scale, nanoscale and micr
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