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1.

図書

図書
edited by Hari Singh Nalwa
出版情報: San Diego ; London ; Tokyo : Academic Press, c2000  5 v. ; 29 cm
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Synthesis and Processing / H.G. Jiang ; M.L. Lau ; V.L. Telkamp ; and E.J. LaverniaVolume 1:
Synthesis of Nanostructured Coatings by High Velocity Oxygen Fuel Thermal Spraying / K.E. Gonsalves ; S.P. Rangarajan ; J. Wang
Chemical Synthesis of Nanostructured Metals, Metal Alloys, and Semiconductors / J. Costa
Nanoparticles from Low-Pressure and Low-Temperature Plasma / C.D. Johnson ; M. Noh ; H. Sellinschegg ; R. Schneidmiller ; D.C. Johnson
Kinetic Control of Inorganic Solid State Reactions Resulting from Mechanistic Studies Using Elementally Modulated Reactants / E.J. Gonzalez ; G.J. Piermarini
Low Temperature Compaction on Nanosize Powders / W.H. Weinberg ; C.M. Reaves ; B.Z. Nosho ; R.I. Pelzel ; S.P. denBaars
Strained-layer Heteroepitaxy to Fabricate Self-assembled Semiconductor Islands / J.J. McClelland
Nanofabrication via Atom Optics / K.C. Kwaitkowski ; C.M. Lukehart
Nanocomposites Prepared by Sol-Gel Methods: Synthesis and Characterization / Q. Yitai
Chemical Preparation and Characterization of Nanocrystalline Materials / D.J. Duval ; S.H. Risbud
Semiconductors Quantum Dots-Progress in Processing / I.T.H. Chang
Rapid Solidification Processing of Nanocrystalline Metallic Alloys / K.L. Choy
Vapor Processing of Nanostructured Materials
Spectroscopy and Theory / J.M. Cowley ; J.C.H. SpenceVolume 2:
Nanodiffraction / M.-I. Baraton
FT-IR Surface Spectrometry of Nanosized Particles / P. Milani ; C.E. Bottani
Vibrational Spectroscopy of Mesoscopic Systems / R.M. Taylor II ; R. Superfine
Advanced Interfaces to Scanning-probe Microscopes / R. Blick
Microwave Spectroscopy on Quantum Dots / E. Meyer ; R. Luthi
Tribological Experiments with Friction Force Microscopy / M. J. Yacaman ; J.A. Ascencia
Electron Microscopy Techniques Applied to Study of Nanostructured Materials and Ancient Materials / K. Ounadjela ; R.L. Stamps
Mesoscopic Magnetism in Metals / D.J. Whitehouse
Tools of Nanotechnology: Nanometrology / V.Gasparian ; M. Ortuno ; G. Schon ; U. Simon
Tunneling Times in Nanostructures / S.B. Sinnott
Theory of Atomic-Scale Friction / D. Ahn
Theoretical Aspects of Strained-layer Quantum-Well Lasers / L.R. Ram Mohan ; I. Vurgaftman ; J.R. Meyer
Wavefunction Engineering: A New Paradigm in Quantum Nanostructure Modeling
Electrical Properties / J. Smolines ; G. PlonerVolume 3:
Electron Transport and Confining Potentials in Semiconductor Nanostructures / M.A. Reed ; J.W. Sleight ; M.R. Deshpande
Electron Transport Properties of Quantum Dots
Electrical Properties of Chemically Tailored Nanoparticles and Their Applications in Microelectronics / R.P. Andres ; S. Datta ; D.B. Janes ; C.P. Kubiak ; R. Reifenberger
Design, Fabrication, and Electronic Properties of Self-assembled Molecular Nanostructures / T.P. Sidiki ; C.M. Sotomayor Torres
Silicon-based Nanostructures / P.V. Kamat ; K. Murakoshi ; Y. Wada ; S. Yanagida
Semiconductor Nanoparticles / F.M. Peeters ; J. DeBoeck
Hybrid Magnetic-Semiconductor Nanostructures / O.I. Micic ; A.J. Nozik
Colloidal Quantum Dots of III-V Semiconductors / V.V. Moshchalkov ; Y. Bruynseraede ; L. Van Look ; M.J. Van Bael ; A. Tonomura
Quantization and Confinement Phenomena in Nanostructured Superconductors / M. Graetzel ; P
Synthesis and Processing / H.G. Jiang ; M.L. Lau ; V.L. Telkamp ; and E.J. LaverniaVolume 1:
Synthesis of Nanostructured Coatings by High Velocity Oxygen Fuel Thermal Spraying / K.E. Gonsalves ; S.P. Rangarajan ; J. Wang
Chemical Synthesis of Nanostructured Metals, Metal Alloys, and Semiconductors / J. Costa
2.

図書

図書
edited by W.J. Lorenz and W. Plieth
出版情報: Weinheim ; Chichester : Wiley-VCH, c1998  xi, 324p. ; 25cm
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General Aspects
Local Probing of Electrochemical Processes at Non-Ideal Electrodes / E. Ammann, et al.
Electrochemistry and Nanotechnology / G. Staikov ; W. Lorenz
Imaging of Electrochemical Processes and Biological Macromolecular Adsorbates by In-Situ Scanning Tunneling Microscopy / J. Andersen, et al.
Beyond the Landscapes: Imaging the Invisible / A. Kornyshev ; M. Sumetskii
Roughness and Interface Structure
Roughness Kinetics and Mechanism Derived from the Analysis of AFM and STM Imaging Data / R. Salvarezza ; A. Arvia
Electrodes with Defined Mesoscopic Structure / U. Stimming ; R. Vogel
In-Situ Stress Measurements at the Solid/Liquid Interface Using a Micromechanical Sensor / T. Brunt, et al.
Surface Structure and Electrochemistry: New Insight by Scanning Tunneling Microscopy / G. Aloisi, et al.
Surface Modification
STM and AFM Studies of the Electrified Solid-Liquid Interface: Monolayers, Multilayers, and Organic Transformations / A. Gewirth ; B. Niece
Scanning Probe Microsocopy Studies of Molecular Redox Films / J. Hudson ; H. Abru?a
New Aspects of Iodine-Modified Single-Crystal Electrodes / K. Itaya
The Growth and the Surface Properties of Polypyrrole on Single Crystal Graphite Electrodes as Studied by In-Situ Electrochemical Scanning Probe Microscopy / C. Froeck, et al.
Nucleation and Electrodeposition
Nucleation and Growth at Metal Electrode Surfaces / O. Magnussen, et al.
STM Study of Electrodeposition of Strained-Layer Metallic Superlattices / T. Moffat
Oxide Layers and Corrosion
STM Studies of Thin Anodic Oxide Layers / P. Marcus ; V. Maurice
Local Probing of Electrochemical Interfaces in Corrosion Research / A. Schreyer, et al.
Morphology and Nucleation of Ni-TiO 2 LIGA Layers / M. Strobel, et al.
SPM Investigations on Oxide-Covered Titanium Surfaces: Problems and Possibilities / C. Kobusch ; J. Schultze
Semiconductors
Electrochemical Surface Processing of Semiconductors at the Atomic Level / P. Allongue ; C. de Villeneuve
In-Situ Electrochemical AFM Study of Semiconductor Electrodes in Electrolyte Solutions / K. Uosaki ; M. Koinuma
STM and Complementary Methods
In-Situ STM and Electrochemical UHV Technique: Complementary, Noncompeting Techniques / M. Soriaga, et al.
Growth Morphology and Molecular Orientation of Additives in Electrocrystallization Studied by Surface-Enhanced Raman Spectroscopy / B. Reents ; W. Plieth
Instrumental Design and Prospects for NMR-Electrochemistry / J. Day, et al.
List of Contributors
List of Abbreviations
Indexes
General Aspects
Local Probing of Electrochemical Processes at Non-Ideal Electrodes / E. Ammann, et al.
Electrochemistry and Nanotechnology / G. Staikov ; W. Lorenz
3.

図書

図書
edited by Masuo Hosokawa ... [et al.]
出版情報: Amsterdam ; Tokyo : Elsevier, 2007  xxi, 622 p. ; 27 cm
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4.

図書

図書
T. Chakraborty, F. Peeters, U. Sivan, editors
出版情報: Amsterdam ; London : Elsevier, 2002  354 p. ; 25 cm
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Preface
Electronic states and transport in carbon nanotubes / T. Ando1:
Vertical diatomic artificial quantum dot molecules / D.G. Austing et al.2:
Optical spectroscopy of self-assembled quantum dots / D. Mowbray ; J. Finley3:
Generation of single photons using semiconductor quantum dots / A.J. Shields et al.4:
Spin, spin-orbit, and electron-electron interactions in mesoscopic systems / Y. Oreg et al.5:
Kondo effect in quantum dots with an even number of electrons / M. Eto6:
From single dots to interacting arrays / V. Gudmundsson et al.7:
Quantum dots in a strong magnetic field: Quasi classical consideration / A. Matulis8:
Micro-Hall-magnetometry / M. Rahm ; J. Biberger ; D. Weiss9:
Stochastic optimization methods for biomolecular structure prediction / T. Herges ; H. Merlitz ; W. Wenzel10:
Electrical transport through a molecular nanojunction / M. Hettler ; H. Scholler11:
Single metalloproteins at work: Towards a single-protein transistor / P. Facci12:
Towards synthetic evolution of nanostructures / H. Lipson13:
Subject Index
Preface
Electronic states and transport in carbon nanotubes / T. Ando1:
Vertical diatomic artificial quantum dot molecules / D.G. Austing et al.2:
5.

図書

図書
Dae Mann Kim
出版情報: Weinheim : Wiley-VCH, c2010  xv, 447 p. ; 25 cm
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Brief Review of Classical Theories
Harmonic Oscillator
Boltzmann Transport Equation
Maxwell's Equations
Milestone Discoveries and Old Quantum Theory
Blackbody Radiation and Quantum of Energy
Specific Heat of Solids
Photoelectric Effects
Compton Scattering
Duality of Matter
Bohr?s H-Atom Theory
Schrodinger Equation and Operator Algebra
Schrodinger Equation
Momentum Eigenfunction and Fourier Series
Hermitian Operator and Bra Ket Notations
Orthgonality and Completeness of Eigenfunctions
Basic Postulates of Quantum Mechanics
Commutation Relations
Conjugate Variables and Uncertainty Relation
Operator Equation of Motion and Ehrenfest Theorem
Particle in Potential Well
Infinite Square Well Potential
Particle in 3-D Box
Density of States: 1-D, 2-D and 3-D
Particle in Quantum Well
Particle in Delta Function Potential Well
Quantum Well and Wire
Scattering of a Particle at 1-D Potentials
Scattering at Step Potential
Scattering at Quantum Well
Tunneling and Its Applications
Tunneling across Square Potential Barrier
Fowler-Nordheim and Direct Tunneling
Resonant Tunneling
The Applications of Tunneling
Periodic Potentials and Energy Bands
1-D Crystal and Kronig-Penny Model
E-k Dispersion and Energy Bands
Energy Bands and Resonant Tunneling
The Harmonic Oscillator
Energy Eigenequation
The Properties of Energy Eigenfunction
The Operator Treatment
The Angular Momentum
Angualr Momentum Operators
Eigenfunctions and Spherical Harmonics
The Hydrogen Atom: The Schrodinger Treatment
Two-Body Central Force Problem
The Hydrogen Atom
The Atomic Orbital
Virial Theorm and Doppler Shift
System of Identical Particles and Many-Electron Atoms
Two Electron System
Two Spin 1/2 System
The Helium Atom
The Periodic Table and the Structure of Atoms
Molecules and Chemical Bonds
The Ionized Hydrogen Molecule
The Hydrogen Molecule
Ionic Bond and Van der Waals Attraction
The Perturbation Theory
Time Independent Perturbation in Non-Degenerate Systems
Time Dependent Perturbation Theory
Atom - Field Interaction
Field Quantization
Atom -
Field Interaction
Driven, Damped Two Level Atom
Interaction Between Em Waves and Optical Media
Attenuation and Dispersion of Waves
Density Matrix and Ensemble Averaging
Laser Devices
Quantum Statistics
General Background and Three Kinds of Particles
Statistics for Distinguishable particles
Statistics for Fermions and Fermi Distribution Function
Statistics for Boson and Bose Einstein Distribution
Semiconductor Statistics
Carrier Densities in Intrinsic Semiconductors
Carrier Densities in Extrinsic Semiconductors
Fermi Level in Extrinsic Semiconductors
Charge Transport in Semiconductors
Drift and Diffusion Currents
Transport Coefficients
Equilibrium and Non-Equilibrium
Recombination and Generation Currents
P-N Junction Diode
The Junction Interface in Equilibrium
The Junction Interface Under Bias
The Diode I-V
Applications of P-N Junction Diodes
The Bipolar Junction Transistor: Device Physics and Technology
Bipolar Junction Transistor: Overview
The Physics of Transistor Action
Ebers Moll Equations
Base Transit Time and Charge Control Model
Metal Oxide Silicon Field Effect Transistors (Mosfet) I: Overview of Device Behavior and Applications
MOSFET: Overview
Charge Control and Metal-Oxide-Silicon System
NMOS I-V
Applications of MOSFET
Metal Oxide Silicon Field Effect Transistors (Mosfet) Ii: Device Scaling and Schottky Contact
Device Scaling: Physical issues and Limitations
Metal - Semiconductor Contacts
The I-V Behavior in Metal - Semiconductor Contacts
Brief Review of Classical Theories
Harmonic Oscillator
Boltzmann Transport Equation
6.

図書

図書
Vincenzo Balzani, Alberto Credi, Margherita Venturi
出版情報: Weinheim : Wiley-VCH, c2008  xxxvi, 546 p. ; 25 cm
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7.

図書

図書
Fan Li, Sajid Bashir, Jingbo Louise Liu, editors
出版情報: Berlin : Springer, c2018  xliv, 556 p. ; 25 cm
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8.

図書

図書
edited by Shunri Oda and David K. Ferry
出版情報: Boca Raton : Taylor & Francis Group, 2006  313 p. ; 24 cm
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Physics of Silicon Nanodevices / David K. Ferry ; Richard Akis ; Matthew J. Gilbert ; Stephen M. RameyChapter 1:
Introduction / 1.1:
Small MOSFETs / 1.2:
The Simple One-Dimensional Theory / 1.2.1:
Ballistic Transport in the MOSFET / 1.2.2:
Granularity / 1.3:
Quantum Behavior in the Device / 1.4:
The Effective Potential / 1.4.1:
Effective Carrier Wave Packet / 1.4.1.1:
Statistical Considerations / 1.4.1.2:
Quantum Simulations / 1.4.2:
The Device Structure / 1.4.2.1:
The Wave Function and Technique / 1.4.2.2:
Results / 1.4.2.3:
Quantum Dot Single-Electron Devices / 1.5:
Many-Body Interactions / 1.6:
Acknowledgments / 1.7:
References
Practical CMOS Scaling / David J. FrankChapter 2:
CMOS Technology Overview / 2.1:
Current CMOS Device Technology / 2.2.1:
International Technology Roadmap for Semiconductors (ITRS) Projections / 2.2.2:
Scaling Principles / 2.3:
General Scaling
Characteristic Scale Length / 2.3.2:
Exploratory Technology / 2.4:
New Materials / 2.4.1:
Fully Depleted SOI / 2.4.2:
Double-Gate and Multiple-Gate FET Structures / 2.4.3:
Limits to Scaling / 2.5:
Quantum Mechanics / 2.5.1:
Atomistic Effects / 2.5.2:
Thermodynamic Effects / 2.5.3:
Practical Considerations / 2.5.4:
Power-Constrained Scaling Limits / 2.6:
Summary / 2.7:
The Scaling Limit of MOSFETs due to Direct Source-Drain Tunneling / Hisao KawauraChapter 3:
EJ-MOSFETs / 3.1:
Concept of EJ-MOSFETs / 3.2.1:
Fabrication of the Device Structure / 3.2.2:
Basic Operation / 3.2.3:
Direct Source-Drain Tunneling / 3.3:
Detection of the Tunneling Current / 3.3.1:
Numerical Study of the Tunneling Current / 3.3.2:
The Scaling Limit of MOSFETs / 3.4:
Estimation of Direct Source-Drain Tunneling in MOSFETs / 3.4.1:
Future Trends in Post-6-nm MOSFETs / 3.4.2:
Conclusion / 3.5:
Quantum Effects in Silicon Nanodevices / Toshiro HiramotoChapter 4:
Quantum Effects in MOSFETs / 4.1:
Band Structures of Silicon / 4.2.1:
Surface Quantization / 4.2.2:
Carrier Confinement in Thin SOI MOS Structures / 4.2.3:
Mobility of Confined Carriers / 4.2.4:
Influences of Quantum Effects in MOSFETs / 4.3:
Threshold Voltage Increase in Bulk MOSFETs / 4.3.1:
Threshold Voltage Increase in FD-SOI MOSFETs / 4.3.2:
Mobility in Ultrathin FD-SOI MOSFETs / 4.3.3:
Quantum Effects in Ultranarrow Channel MOSFETs / 4.4:
Advantage of Quantum Effects in Ultranarrow Channel MOSFETs / 4.4.1:
Threshold Voltage Increase in n-Type Narrow Channel MOSFETs / 4.4.2:
Threshold Voltage Increase in n-Type and p-Type Narrow Channel MOSFETs / 4.4.3:
Threshold Voltage Adjustment Using Quantum Effects / 4.4.4:
Mobility Enhancement due to Quantum Effects / 4.4.5:
Ballistic Transport in Silicon Nanostructures / Hiroshi Mizuta ; Katsuhiko Nishiguchi ; Shunri Oda4.5:
Ballistic Transport in Quantum Point Contacts / 5.1:
Ballistic Transport in Ultra-Short Channel Vertical Silicon Transistors / 5.3:
Fabrication of Nanoscale Vertical FETs / 5.3.1:
Conductance Quantization in Nanoscale Vertical FETs / 5.3.2:
Characteristics under a Magnetic Field / 5.3.3:
Effects of Cross-Sectional Channel Geometries / 5.3.4:
Summary and Future Subjects / 5.4:
Resonant Tunneling in Si Nanodevices / Michiharu Tabe ; Hiroya Ikeda ; Yasuhiko IshikawaChapter 6:
Outline of Resonant Tunneling / 6.1:
Early Work on Resonant Tunneling / 6.1.1.1:
Resonant Tunneling in Si-Based Materials - Si/SiGe and Si/SiO[subscript 2] / 6.1.1.2:
Quantum Confinement Effect in a Thin Si Layer / 6.1.2:
Double-Barrier Structures of SiO[subscript 2]/Si/SiO[subscript 2] Formed by Anisotropic Etching / 6.1.3:
Resonant Tunneling in SiO[subscript 2]/Si/SiO[subscript 2] / 6.2:
Fabrication of an RTD / 6.2.1:
Resonant Tunneling in the Low Voltage Region / 6.2.2:
Hot-Electron Storage in the High-Voltage Region / 6.2.3:
Switching of Tunnel-Modes: Comparison with a Single Barrier / 6.2.4:
Zero-Dimensional Resonant Tunneling / 6.3:
Coexistence of Coulomb Blockade and Resonant Tunneling / 6.3.1:
Fabrication of a SiO[subscript 2]/Si-Dots/SiO[subscript 2] Structure / 6.3.2:
I-V Characteristics of an SiO[subscript 2]/Si-Dots/SiO[subscript 2] Tunnel Diode / 6.3.3:
Acknowledgment
Silicon Single-Electron Transistor and Memory / L. Jay GuoChapter 7:
Quantum Dot Transistor / 7.1:
Theoretical Background / 7.2:
Energy of the Quantum Dot System / 7.2.1:
Conductance Oscillation and Potential Fluctuation / 7.2.2:
Transport under Finite Temperature and Finite Bias / 7.2.3:
Device Structure and Fabrication / 7.3:
Experimental Results and Analysis / 7.4:
Single-Electron Quantum-Dot Transistor / 7.4.1:
Single-Hole Quantum-Dot Transistor / 7.4.2:
Transport Characteristics under Finite Bias / 7.4.3:
Transport Through Excited States / 7.4.4:
Artificial Atom / 7.5:
Single Charge Trapping / 7.6:
Introduction to Memory Devices / 7.7:
Floating Gate Scheme / 7.8:
Single-Electron MOS memory (SEMM) / 7.9:
Structure of SEMM / 7.9.1:
Fabrication Procedure / 7.9.2:
Experimental Observations / 7.9.3:
Analysis / 7.9.4:
Effects of Trap States / 7.9.5:
Effect of Thicker Tunnel Oxide / 7.10:
Discussion / 7.11:
Silicon Memories Using Quantum and Single-Electron Effects / Sandip TiwariChapter 8:
Single-Electron Effect / 8.1:
Single-Electron Transistors and Their Memories / 8.3:
Memories by Scaling Floating Gates of Flash Structures / 8.3.2:
Modeling of Transport: Tunneling / 8.4:
Tunneling in Oxide / 8.4.1:
Quantum Kinetic Equation / 8.4.2:
Carrier Statistics and Charge Fluctuations / 8.4.3:
Experimental Behavior of Memories / 8.5:
Percolation Effects / 8.5.1:
Limitations in Use of Field Effect / 8.5.2:
Confinement and Random Effects in Semiconductors / 8.5.3:
Variances due to Dimensions / 8.5.4:
Limits due to Tunneling / 8.5.5:
Tunneling in Silicon / 8.5.5.1:
Can We Avoid Use of Collective Phenomena? / 8.6:
SESO Memory Devices / Kazuo Yano8.7:
How Nanotechnologies Solve Real Problems / 9.1:
New Direction of Electronics / 9.1.2:
Conventional Memory Technologies / 9.2:
Classification of Conventional Memories / 9.2.1:
Origin of DRAM Power Consumption / 9.2.2:
Bandgap Enlargement in Nanosilicon / 9.3:
SESO Transistor / 9.4:
History: Single-Electron Devices to SESO / 9.4.1:
Fabricated SESO Transistor / 9.4.2:
SESO Memory / 9.5:
Memory-Technology Comparison / 9.6:
SESO as On-Chip RAM Component / 9.7:
Conclusions / 9.8:
Few Electron Devices and Memory Circuits / Kazuo Nakazato ; Haroon AhmedChapter 10:
Current Semiconductor Memories / 10.1:
Limitations of the DRAM / 10.2.1:
DRAM Gain Cell / 10.2.2:
A New DRAM Gain Cell - The PLEDM / 10.3:
PLEDTR / 10.3.1:
PLEDM Cell / 10.3.2:
Single-Electron Memory / 10.4:
Single-Electron Devices / 10.4.1:
Operation Principle of Single-Electron Memory / 10.4.2:
Local Stability / 10.4.2.1:
Global Stability / 10.4.2.2:
Experimental Single-Electron Memory / 10.4.3:
First Experimental Single-Electron Memory / 10.4.3.1:
Silicon Single-Electron Memory / 10.4.3.2:
Single-Electron Memory Array / 10.4.4:
Single-Electron Logic Devices / Yasuo Takahashi ; Yukinori Ono ; Akira Fujiwara ; Hiroshi Inokawa10.5:
Single-Electron Transistor (SET) / 11.1:
Fabrication of Si SETs / 11.3:
Logic Circuit Applications of SETs / 11.4:
Fundamentals of SET Logic / 11.4.1:
Merged SET and MOSFET Logic / 11.4.2:
CMOS-Type Logic Circuit / 11.4.3:
Pass-Transistor Logic / 11.4.4:
Multigate SET / 11.4.5:
Multiple-Valued Operation / 11.4.6:
Index / 11.5:
Physics of Silicon Nanodevices / David K. Ferry ; Richard Akis ; Matthew J. Gilbert ; Stephen M. RameyChapter 1:
Introduction / 1.1:
Small MOSFETs / 1.2:
9.

図書

図書
edited by Zhong Lin Wang
出版情報: Boston : Kluwer Academic Publishers, c2003
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10.

図書

図書
edited by Kiichi Fukui, Tatsuo Ushiki
出版情報: Boca Raton : CRC Press, c2008  xviii, 267 p. ; 25 cm
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Preface
Acknowledgments
Editors
Contributors
Devices for Chromosome Handling / Part I:
Mechanical Approaches to Elucidate Mechanisms of Chromosome Condensation at the Nano- and Microlevels / Kazushige Kawabata ; Keisuke Nomura ; Kensuke Ikeda ; Osamu Hoshi ; Daisuke Fukushi ; Hisashi Haga ; Tatsuo UshikiChapter 1:
Development of Novel AFM Probes for Chromosome Manipulation / Masato Saito ; Gen Hashiguchi ; Eiichi TamiyaChapter 2:
Microchamber Array-Based Sequence-Specific DNA Detection from a Single Chromosome via Trace Volume PCR / Chapter 3:
On-Chip Chromosome Sorter Using Electric and Magnetic Fields / Takahito Inoue ; Yasuyuki Fujita ; Susumu Uchiyama ; Tomoyuki Doi ; Kiichi Fukui ; Hiroshi YokoyamaChapter 4:
Visualization of Chromosomes at the Nano- and Microlevels / Part II:
Fluorescence Microscopy for Analysis of Chromosome Dynamics / Sachihiro MatsunagaChapter 5:
Fluorescence In Situ Hybridization (FISH) as a Tool for Comparative Genomics: Application of FISH to Studies of Chromosome Evolution in Vertebrates / Yoichi Matsuda ; Mami Shibusawa ; Kazumi Matsubara ; Chizuko Nishida-UmeharaChapter 6:
Immunocytochemistry for Analyzing Chromosomes / Toru Hirota ; Eiji Kimura ; Nae KomatsubaraChapter 7:
Transmission and Scanning Electron Microscopy of Mammalian Metaphase Chromosomes / Sumire Inaga ; Keiichi TanakaChapter 8:
Atomic Force Microscopy of Human Chromosomes in Relation to Their Higher-Order Structure / Chapter 9:
Mechanism of Higher-Order Chromatin Folding Revealed by AFM Observation of In Vitro Reconstituted Chromatin / Kohji Hizume ; Toshiro Kobori ; Shige H. Yoshimura ; Kunio TakeyasuChapter 10:
Scanning Near-Field Optical/Atomic Force Microscopy as a Tool for Simultaneous Specification of Chromosome Topography and Particular Gene Location on the Nanometer Scale / Motoharu Shichiri ; Tomoyuki Yoshino ; Shoji Hagiwara ; Kohei Akazawa ; Toshio Ohtani ; Shigeru SugiyamaChapter 11:
Chromosomes as Nanomaterials / Part III:
Isolation of Human and Plant Chromosomes as Nanomaterials / Chapter 12:
Proteome Analysis of Human Metaphase Chromosomes / Chapter 13:
Antipeptide Antibodies for Examining the Conformation and Molecular Assembly of an Intracellular Protein / Masatoshi Nakagawa ; Nobuko Ohmido ; Katsumi Ishikawa ; Takachika AzumaChapter 14:
Structure and Interactions of the Imitation SWI-Type Chromatin-Remodeling Complex, ATP-Dependent Chromatin-Assembly Factor / Tadayasu Ohkubo ; Mariana Petkova-Andonova ; Yukiko Kojima ; Shota Nakamura ; Hiroko Fujita ; Yoshinori Nishi ; Hiroaki Nakano ; Yuji KobayashiChapter 15:
Dynamic and Functional Analysis of Chromosomal Proteins / Chapter 16:
Informatics of Chromosome Imaging / Part IV:
Development of a Sustainable Chromosome Imaging Database / Kenji Taniguchi ; Chiharu Mitsueda ; Naho Okumura ; Wakako MiyazakiChapter 17:
Image Database and Image Analysis of Chromosome Information / Shin-ichi Toyabe ; Takayuki MatsutoChapter 18:
Index
Preface
Acknowledgments
Editors
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