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Titlebook: Lab-on-a-Chip Devices and Micro-Total Analysis Systems; A Practical Guide Jaime Castillo-León,Winnie E. Svendsen Book 2015 Springer Interna

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书目名称Lab-on-a-Chip Devices and Micro-Total Analysis Systems
副标题A Practical Guide
编辑Jaime Castillo-León,Winnie E. Svendsen
视频video
概述Provides readers with a unique approach and toolset for lab-on-a-chip development in terms of materials, fabrication techniques, and components.Discusses novel materials and techniques, such as paper-
图书封面Titlebook: Lab-on-a-Chip Devices and Micro-Total Analysis Systems; A Practical Guide Jaime Castillo-León,Winnie E. Svendsen Book 2015 Springer Interna
描述.This book covers all the steps in order to fabricate a lab-on-a-chip device starting from the idea, the design, simulation, fabrication and final evaluation. Additionally, it includes basic theory on microfluidics essential to understand how fluids behave at such reduced scale. Examples of successful histories of lab-on-a-chip systems that made an impact in fields like biomedicine and life sciences are also provided..This book also:.·       Provides readers with a unique approach and toolset for lab-on-a-chip development in terms of materials, fabrication techniques, and components .·       Discusses novel materials and techniques, such as paper-based devices and synthesis of chemical compounds on-chip.·       Covers the four key aspects of development: basic theory, design, fabrication, and testing.·       Provides readers with a comprehensive list of the most important journals, blogs, forums, and conferences where microfluidics and lab-on-a-chip news, methods, techniques and challenges are presented and discussed, as well as a list of companies providing design and simulation support, components, and/or developing lab-on-a-chip and microfluidic devices.. .
出版日期Book 2015
关键词Biosensors; Lab-on-a-chip devices; Medical Microdevices; Micro-total-analysis-systems; Microfabrication;
版次1
doihttps://doi.org/10.1007/978-3-319-08687-3
isbn_softcover978-3-319-37718-6
isbn_ebook978-3-319-08687-3
copyrightSpringer International Publishing Switzerland 2015
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https://doi.org/10.1007/978-3-319-08687-3Biosensors; Lab-on-a-chip devices; Medical Microdevices; Micro-total-analysis-systems; Microfabrication;
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Basic Microfluidics Theory,ce is that the chaotic turbulent flow we most often observe, e.g., rivers flowing or tap water running does not appear on the microscale. Here, the flow is more smooth and most often what we call laminar flow. Other parameters considered important on the macroscale such as inertia are insignificant
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Design and Simulation of Lab-on-a-Chip Devices,o B or mixing or separating liquids. As production costs for such systems are not insignificant, it is essential that the systems are designed properly before the fabrication, in order to avoid unnecessary fabrication repetitions. The use of simulations can give a good idea of how microfluidic syste
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A Considered Approach to Lab-on-a-Chip Fabrication,these devices can be enhanced though the adoption of a considered engineering based approach to chip fabrication which encompasses the design, material selection and manufacture process stages. Fabrication considerations in this chapter extend to the potential for mass production of LOC devices usin
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Microfluidic Electrochemical Biosensors: Fabrication and Applications,R. Lowe .). It consists of bio-recognition systems (enzymes, DNA, proteins, cells, etc.), immobilized onto the surface of a transducer (electrochemical, optical, mass and thermal for the most common). Specific interactions between the target (analyte) and the complementary bio-recognition layer prod
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