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04771nam a2200589 4500 |
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ocn919317915 |
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OCoLC |
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20170124071245.4 |
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150828s2015 gw ob 001 0 eng d |
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|a N$T
|b eng
|e rda
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|d YDXCP
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|d IDEBK
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|d OCLCF
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|d OCLCQ
|d RECBK
|d DEBBG
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|a 9783527690237
|q electronic bk.
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|a 3527690239
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|a 9783527690220
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|a 3527690220
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|z 9783527337842
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|z 3527337849
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|a GBVCP
|b 835805379
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|a DEBBG
|b BV043738040
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|a (OCoLC)919317915
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|a QR69.M5
|b M53 2015eb
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|a SCI
|x 008000
|2 bisacsh
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|a SCI
|x 045000
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|a 579.028/2
|2 23
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|a MAIN
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|a Micro- and nanomanipulation tools /
|c edited by Yu Sun and Xinyu Liu.
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|a Weinhem, Germany :
|b Wiley-VCH,
|c [2015]
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|a 1 online resource.
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|a text
|b txt
|2 rdacontent
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|a computer
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|2 rdamedia
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|a online resource
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|a Advanced micro & nanosystems
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|a Vendor-supplied metadata.
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|a Includes bibliographical references and index.
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|a Related Titles; Title Page; Copyright; Table of Contents; About the Editors; Series Editors Preface; Preface; List of Contributors; Chapter 1: High-Speed Microfluidic Manipulation of Cells; 1.1 Introduction; 1.2 Direct Cell Manipulation; 1.3 Indirect Cell Manipulation; 1.4 Summary; Acknowledgments; References; Chapter 2: Micro and Nano Manipulation and Assembly by Optically Induced Electrokinetics; 2.1 Introduction; 2.2 Optically Induced Electrokinetic (OEK) Forces; 2.3 OEK-Based Manipulation and Assembly; 2.4 Summary; References
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|a Chapter 3: Manipulation of DNA by Complex Confinement Using Nanofluidic Slits3.1 Introduction; 3.2 Slitlike Confinement of DNA; 3.3 Differential Slitlike Confinement of DNA; 3.4 Experimental Studies; 3.5 Design of Complex Slitlike Devices; 3.6 Fabrication of Complex Slitlike Devices; 3.7 Experimental Conditions; 3.8 Conclusion; Disclaimer; References; Chapter 4: Microfluidic Approaches for Manipulation and Assemblyof One-Dimensional Nanomaterials; 4.1 Introduction; 4.2 Microfluidic Assembly; 4.3 Summary; References
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|a Chapter 5: Optically Assisted and Dielectrophoretical Manipulation of Cells and Molecules on Microfluidic Platforms5.1 Introduction; 5.2 Operating Principle and Fundamental Physics of the ODEP Platform; 5.3 Applications of the ODEP Platform; 5.4 Conclusion; References; Chapter 6: On-Chip Microrobot Driven by Permanent Magnetsfor Biomedical Applications; 6.1 On-Chip Microrobot; 6.2 Characteristics of Microrobot Actuated by Permanent Magnet; 6.3 Friction Reduction for On-Chip Robot; 6.4 Fluid Friction Reduction for On-Chip Robot; 6.5 Applications of On-Chip Robot to Cell Manipulations
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|a 6.6 SummaryReferences; Chapter 7: Silicon Nanotweezers for Molecules and Cells Manipulation and Characterization; 7.1 Introduction; 7.2 SNT Operation and Design; 7.3 SNT Process; 7.4 DNA Trapping and Enzymatic Reaction Monitoring; 7.5 Cell Trapping and Characterization; 7.6 General Concluding Remarks and Perspectives; Acknowledgments; References; Chapter 8: Miniaturized Untethered Tools for Surgery; 8.1 Introduction; 8.2 Macroscale Untethered Surgical Tools; 8.3 Microscale Untethered Surgical Tools; 8.4 Nanoscale Untethered Surgical Tools; 8.5 Conclusion; Acknowledgments; References
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|a Chapter 9: Single-Chip Scanning Probe Microscopes9.1 Scanning Probe Microscopy; 9.2 The Role of MEMS in SPM; 9.3 CMOS-MEMS Manufacturing Processes Applied to sc-SPMs; 9.4 Modeling and Design of sc-SPMs; 9.5 Imaging Results; 9.6 Conclusion; References; Chapter 10: Untethered Magnetic Micromanipulation; 10.1 Physics of Micromanipulation; 10.2 Sliding Friction and Surface Adhesion; 10.3 Fluid Dynamics Effects; 10.4 Magnetic Microrobot Actuation; 10.5 Locomotion Techniques; 10.6 Manipulation Techniques; 10.7 Conclusions and Prospects; References; Chapter 11: Microrobotic Tools for Plant Biology
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|a Micrurgy.
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|a Nanoelectromechanical systems.
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|a SCIENCE / Life Sciences / Biology
|2 bisacsh
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|a SCIENCE / Life Sciences / Microbiology
|2 bisacsh
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650 |
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|a Micrurgy.
|2 fast
|0 (OCoLC)fst01020281
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650 |
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|a Nanoelectromechanical systems.
|2 fast
|0 (OCoLC)fst01741807
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|a Electronic books.
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|a Sun, Yu,
|e editor.
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|a Liu, Xinyu,
|e editor.
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|a Advanced micro & nanosystems.
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|u https://doi.org/10.1002/9783527690237
|z Full Text via HEAL-Link
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|a 92
|b DG1
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