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Titlebook: Design Automation Methods and Tools for Microfluidics-Based Biochips; Krishnendu Chakrabarty,Jun Zeng Book 2006 Springer Science+Business

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书目名称Design Automation Methods and Tools for Microfluidics-Based Biochips
编辑Krishnendu Chakrabarty,Jun Zeng
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概述A complete volume that includes chapters contributed by the world’s leading experts in microfluidics and CAD for biochips.The first edited volume that addresses all aspects of biochip design automatio
图书封面Titlebook: Design Automation Methods and Tools for Microfluidics-Based Biochips;  Krishnendu Chakrabarty,Jun Zeng Book 2006 Springer Science+Business
描述.Microfluidics-based biochips, also known as lab-on-a-chip or bio-MEMS, are becoming increasingly popular for DNA analysis, clinical diagnostics, and the detection/manipulation of bio-molecules. As the use of microfluidics-based biochips increases, their complexity is expected to become significant due to the need for multiple and concurrent assays on the chip, as well as more sophisticated control mechanisms for resource management. Time-to-market and fault tolerance are also expected to emerge as design considerations. As a result, current full-custom design techniques will not scale well for larger designs. There is a need to deliver the same level of CAD support to the biochip designer that the semiconductor industry now takes for granted...Design Automation Methods and Tools for Microfluidics-Based Biochips deals with all aspects of design automation for microfluidics-based biochips. Experts have contributed chapters on various aspects of biochip design automation. Topics include device modeling; adaptation of bioassays for on-chip implementations; numerical methods and simulation tools; architectural synthesis, scheduling and binding of assay operations; physical design and m
出版日期Book 2006
关键词biochip; biochips; complexity; computer; computer-aided design (CAD); design automation; diagnostics; fault
版次1
doihttps://doi.org/10.1007/1-4020-5123-9
isbn_softcover978-94-017-8108-4
isbn_ebook978-1-4020-5123-4
copyrightSpringer Science+Business Media B.V. 2006
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PERFORMANCE CHARACTERIZATION OF A RECONFIGURABLE PLANAR ARRAY DIGITAL MICROFLUIDIC SYSTEM,hrough simulation, including the system’s ability to perform multiple assays simultaneously. Since array layout design and droplet routing strategies are closely related in such a digital microfluidic system, our goal is to provide designers with algorithms that enable rapid simulation and control of these DMFS devices.
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MACROMODEL GENERATION FOR BIOMEMS COMPONENTS USING A STABILIZED BALANCED TRUNCATION PLUS TRAJECTORYwer-order and more accurate models. The key result is a perturbation analysis of an instability problem with the reduction algorithm, and a simple modification that makes the algorithm more robust. Results are presented from examples to demonstrate dramatic improvements in reduced model accuracy and show the limitations of the method.
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A PATTERN-MINING METHOD FOR HIGH-THROUGHPUT LAB-ON-A-CHIP DATA ANALYSIS,active research is ongoing for the miniaturization and integration of protein microarrays [36, 19, 33], tissue microarrays (TMAs) [37, 8], and fluorescence-based multiplexed cytokine immunoassays [41].
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