
Microarray Technology and Its Applications by Dan Nicolau
Ithasbeenstatedthatourknowledgedoublesevery20years,butthatmaybe an understatement when considering the Life Sciences. A series of discoveries and inventions have propelled our knowledge from the recognition that DNA isthegeneticmaterialtoabasicmolecularunderstandingofourselvesandthe living world around us in less than 50 years. Crucial to this rapid progress was thediscoveryofthedouble-helicalstructureofDNA,whichlaidthefoundation forallhybridizationbasedtechnologies. Thediscoveriesofrestrictionenzymes, ligases, polymerases, combined with key innovations in DNA synthesis and sequencing ushered in the era of biotechnologyas a new science with profound sociological and economic implications that are likely to have a dominating in?uence on the development of our society during this century. Given the process by which science builds on prior knowledge, it is perhaps unfair to single out a few inventions and credit them with having contributed most to thisavalancheofknowledge. Yet,therearesurelysomethatwillberecognized as having had a more profound impact than others, not just in the furthering of our scienti?c knowledge, but by leveraging commercial applications that provide a tangible return to our society. The now famous Polymerase Chain Reaction, or PCR, is surely one of those, as it has uniquely catalyzed molecular biology during the past 20 years, and continues to have a signi?cant impact on all areas that involve nucleic acids, ranging from molecular pathology to forensics. Ten years ago micro- ray technology emerged as a new and powerful tool to study nucleic acid - quences in a highly multiplexed manner, and has since found equally exciting and useful applications in the study of proteins, metabolites, toxins, viruses, whole cells and even tissues.-
Physics of the Human Body
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Biomedical Optical Sensors
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Biomimetic Membranes for Sensor and Separation Applications
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Biophysics of DNA-Protein Interactions
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The Physics of Proteins
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Protein Folding and Misfolding
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Optical Coherence Tomography
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Laser Technology in Biomimetics
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Applications of Synchrotron Radiation
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Biophysics of Human Hair
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Biomimetics -- Materials, Structures and Processes
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Micro-Segmented Flow
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Medical Applications of Nuclear Physics
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Biomaterials
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Biomedical Image Processing
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Biological Systems under Extreme Conditions
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Point-of-Care Diagnostics on a Chip
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4D Modeling and Estimation of Respiratory Motion for Radiation Therapy
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Membrane Biophysics
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Towards Practical Brain-Computer Interfaces
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Fundamentals of Cryobiology
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Nanoneuroscience
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Biomedical Optical Imaging Technologies
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Emerging Raman Applications and Techniques in Biomedical and Pharmaceutical Fields
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Water and Biomolecules
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Thin Films and Coatings in Biology
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Image Processing using Pulse-Coupled Neural Networks
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Ion Beam Therapy
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Epilepsy as a Dynamic Disease
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Biomechanics of the Brain
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Computer Simulation and Data Analysis in Molecular Biology and Biophysics
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Artificial Sight
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Computational Modeling of Biological Systems
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Targeted Cancer Therapy in Biomedical Engineering
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Computational Methods for Protein Structure Prediction and Modeling
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Implantable Neural Prostheses 2
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Radiation Damage in Biomolecular Systems
| SKU | Unavailable |
| ISBN 13 | 9783540229315 |
| ISBN 10 | 3540229310 |
| Title | Microarray Technology and Its Applications |
| Author | Dan Nicolau |
| Series | Biological And Medical Physics Biomedical Engineering |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer |
| Year published | 2004-10-20 |
| Number of pages | 380 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |




































