Last edited by Faele
Wednesday, May 20, 2020 | History

1 edition of Lab-on-a-chip found in the catalog.

Lab-on-a-chip

Yehya H. Ghallab

Lab-on-a-chip

techniques, circuits, and biomedical applications

by Yehya H. Ghallab

  • 180 Want to read
  • 37 Currently reading

Published by Artech House in Boston .
Written in English

    Subjects:
  • Microelectromechanical systems,
  • Chemical laboratories,
  • Biomedical engineering,
  • Electronic equipment

  • Edition Notes

    Includes bibliographic references and index.

    StatementYehya H. Ghallab, Wael Badawy
    SeriesIntegrated microsystems series, Artech House integrated microsystems series
    ContributionsBadawy, Wael
    Classifications
    LC ClassificationsTK7875 .G475 2010
    The Physical Object
    Paginationxv, 220 p. :
    Number of Pages220
    ID Numbers
    Open LibraryOL25002234M
    ISBN 101596934182
    ISBN 109781596934184
    LC Control Number2010282726
    OCLC/WorldCa548660610

    ISBN: OCLC Number: Description: 2 volumes: illustrations ; 26 cm: Contents: V. 1. Fabrication and. processing steps onto the platform and making them independent from off-chip controls and bench-top scale techniques. Even the current source can be integrated into.

    Generate Lab on a Chip citations for Journal Articles. Searching In print. Online. Online database. Source was: Found in this journal (most common) An abstract compiled in another journal: Creator (often writer) of a piece such as a book, script, play, article, podcast, comic, etc. Dear Colleagues, Lab-on-a-chip technologies have led to remarkable advances in diagnostics in recent years. These advances include the development of a wide range of diagnostic platforms; novel microfluidic operations; the development of fully-integrated and automated bioanalytical platforms and systems; strategies for multiplex detection; prolonged storage of assay reagents and biomolecules.

    Micromachines, an international, peer-reviewed Open Access journal. Dear Colleagues, Lab-on-a-chip (LOC) stands for the vision to integrate all necessary functions to perform, e.g., a chemical analysis, a biochemical assay or even the organic synthesis of new chemicals on a single miniaturized device, built from a planar substrate (silicon, glass, ceramics, polymers, ) using micro and.   Barriers to getting a blood test can be numerable, but infectious disease specialist Robert Bollinger is hoping to overcome those obstacles with a “lab on a chip.”. Through a project called miLab, Bollinger, an international team of Johns Hopkins scientists and silicon chip engineers in Belgium are aiming to create a device that will test blood quickly and inexpensively, at home or in a.


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Lab-on-a-chip by Yehya H. Ghallab Download PDF EPUB FB2

Scope. Lab on a Chip provides a unique forum for the publication of significant and original work related to miniaturisation, at the micro- and nano-scale, of interest to a multidisciplinary readership.

The journal seeks to publish Lab-on-a-chip book at the interface between physical technological advancements and high impact applications that are of direct interest to a broad audience.

This first Lab-on-a-Chip book contains a broad collection of papers on microtechnology, microfluidics, analytical methods and applications. All contributions are written by leading researchers in their respective fields, and provide new scientists with an overview of the field, to make him/her aware of the enormous opportunities offered by.

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. The necessity of on-site, fast, sensitive, and cheap complex laboratory analysis, associated with the advances Lab-on-a-chip book the microfabrication technologies and the microfluidics, made it possible for the creation of the innovative device lab-on-a-chip (LOC), by which we would be able to scale a single or multiple laboratory processes down to a chip format.

The present book is dedicated to the LOC Author: Margarita Stoytcheva, Roumen Zlatev. 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.

Lab on a Chip is a peer-reviewed scientific journal which publishes original (primary) research and review articles on any aspect of miniaturisation at the micro and nano scale. Lab on a Chip is published twice monthly by the Royal Society of Chemistry (RSC) and the editor-in-chief is Abraham Lee.

The journal was established in and hosts other RSC publications: Highlights in Chemical Discipline: Miniaturisation. Lab-on-a-Chip (LOC) devices integrate and scale down laboratory functions and processes to a miniaturized chip format.

Many LOC devices are used in a wide array of biomedical and other analytical applications including rapid pathogen detection, clinical diagnosis, forensic science, electrophoresis, flow cytometry, blood chemistry analysis, protein analysis, and DNA : Keith E.

Herold. Lab on a Chip citation style guide with bibliography and in-text referencing examples: Journal articles Books Book chapters Reports Web pages.

PLUS: Download. Lab-on-a-Chip (LOC) devices integrate and scale down laboratory functions and processes to a miniaturized chip format. Many LOC devices are used in a wide array of biomedical and other analytical applications including rapid pathogen detection, clinical diagnosis, forensic science, electrophoresis, flow cytometry, blood chemistry analysis, protein analysis, and DNA analysis.

Written by an interdisciplinary team of chemists, biologists and engineers from one of the leading European centers for microsystem research, MIC in Lyngby, Denmark, this book introduces and discusses the different aspects of (bio)chemical microsystem development.

Unlike other, far more voluminous and theoretical books on this topic, this is a concise, practical handbook, focusing on. Li authored a monograph entitled Microfluidics lab-on- a-chip for chemical and biological analysis and discovery inand has co-authored a book chapter on microfluidic lab-on-a-chip in Ewing’s Analytical Instrumentation Handbook, 3rd edition, Cited by: 8.

The first commercial microfluidic lab-on-a-chip-microchips. based systems were introduced for life science InKricka [1] surveyed the range of micro applications less than three years ago. This book provides a comprehensive coverage of sensor and lab-on-a-chip technologies for medical applications.

Presenting a unified coverage of the operational principles and fabrication issues of the sensors and related chips, this important compendium. Lab-on-a-chip (LOC) devices integrate and scale down laboratory functions and processes to a miniaturized chip format.

Many LOC devices are used in a wide array of biomedical and other analytical applications including rapid pathogen detection, clinical diagnosis, forensic science, electrophoresis, flow cytometry, blood chemistry analysis, protein and DNA analysis.

Mammalian cells cultured on 2D surfaces in microfluidic channels are increasingly used in drug development and biological research applications. These systems would have more biological or clinical relevance if the cells exhibit 3D phenotypes similar to the cells in have developed a microfluidic channel based system that allows cells to be perfusion-cultured in 3D by supporting them Cited by: Through our ‘Lab on a Chip book of choice’ scheme Lab on a Chip will regularly highlight a book from the RSC eBook Collection relevant to your research interests.

Read the latest chapter today by visiting the Lab on a Chip website. The RSC eBook Collection offers: Over new and existing books. Introduction. A microfluidic platform contains set of well-defined fabricated fluidic operational units.

Lab-on-a-chip (LOC) platforms provide a solid way for miniaturization, integration, automation, and parallelization of chemical processes (Mark et al., ).The main advantage of LOC devices is cost efficiency because of using fewer reagents in modular fabricated miniaturized by: 2.

As the lab-on-a-chip systems increase in importance and complexity it is important for scientists to become familiar not only with the technology but also with the potential applications. The editors of this book have brought together expert authors from many countries to produce a comprehensive volume focusing on the applications of LOC.

Droplet-based microfluidic systems have been shown to be compatible with many chemical and biological reagents and capable of performing a variety of “digital fluidic” operations that can be rendered programmable and reconfigurable.

This platform has dimensional. Lab on a Chip presents uTAS Abstracts to The page link below gives the lab on a chip/microfluidics/μTAS communities free access to both current and archived content submitted to the μTAS conferences in the form of extended abstracts.

This service will support workers in finding essential references and hence increase knowledge of past work in the field and assist with current.

Journal articles on microfluidic or lab-on-a-chip (LOC) devices increased significantly between and The field rapidly expanded with ~ publications in and ~ in (Fig. 2). Since many of these devices held potential commercial applications, there was a corresponding rise in patent protection.

The first microfluidic File Size: 1MB.lab on a chip A semiconductor chip used to analyze the composition of a person's body fluids (blood, saliva, urine) for medical purposes. It combines microfluidics and .He's talking about a miniature biological laboratory just tested for the first time onboard the International Space Station.

Called LOCAD-PTS (short for Lab-On-a-Chip Application Development–Portable Test System), the mini-lab detects the presence of bacteria or fungi on the surfaces of a spacecraft far more rapidly than standard methods of culturing.