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عنوان
Clinical Applications of Magnetic Nanoparticles.

پدید آورنده

موضوع
Biomedical materials.,Nanoscience.,Nanotechnology.,Biomedical materials.,Nanoscience.,Nanotechnology.

رده
R857
.
N34

کتابخانه
Center and Library of Islamic Studies in European Languages

محل استقرار
استان: Qom ـ شهر: Qom

Center and Library of Islamic Studies in European Languages

تماس با کتابخانه : 32910706-025

INTERNATIONAL STANDARD BOOK NUMBER

(Number (ISBN
1315168251
(Number (ISBN
1351685414
(Number (ISBN
1351685422
(Number (ISBN
1351685430
(Number (ISBN
9781315168258
(Number (ISBN
9781351685412
(Number (ISBN
9781351685429
(Number (ISBN
9781351685436
Erroneous ISBN
9781138051553 (hbk.)

TITLE AND STATEMENT OF RESPONSIBILITY

Title Proper
Clinical Applications of Magnetic Nanoparticles.
General Material Designation
[Book]

EDITION STATEMENT

Edition Statement
First edition.

.PUBLICATION, DISTRIBUTION, ETC

Place of Publication, Distribution, etc.
Boca Raton, FL :
Name of Publisher, Distributor, etc.
CRC Press,
Date of Publication, Distribution, etc.
2018.

PHYSICAL DESCRIPTION

Specific Material Designation and Extent of Item
1 online resource :
Other Physical Details
text file, PDF

INTERNAL BIBLIOGRAPHIES/INDEXES NOTE

Text of Note
Includes bibliographical references and index.

CONTENTS NOTE

Text of Note
Cover; Half Title; Title Page; Copyright Page; Dedication; Table of Contents; Foreword; Preface; Acknowledgements; Editor; Foreword Author; Contributors; Section I : Fabrication, Characterisation of MNPs; Chapter 1: Controlling the Size and Shape of Uniform Magnetic Iron Oxide Nanoparticles for Biomedical Applications; 1.1 State of the Art: Size, Shape Control and Self-Assembly Processes; 1.2 Progress on synthesis routes; 1.2.1 Aqueous Synthesis; 1.2.1.1 Co-Precipitation of Iron (II) and (III) Salts; 1.2.1.2 Partial Reduction of Iron (III) Salts; 1.2.1.3 Partial Oxidation of Iron (II) Salts.
Text of Note
1.2.1.4 Reduction of Antiferromagnetic Precursor1.2.1.5 Biomineralization; 1.2.2 Organic Synthesis by Thermal Decomposition of an Organic Precursor; 1.2.3 Polyol Synthesis; 1.2.4 Microwave-Assisted Synthesis; 1.2.5 Electrochemical Synthesis; 1.2.6 Other Synthetic Routes; 1.3 Particlesâ#x80;#x99; Coating and Polymer Encapsulation; 1.4 Final Remarks; Acknowledgements; References; Chapter 2: Magnetic Nanochains; 2.1 Introduction; 2.2 Properties and Interactions of Magnetic NPs; 2.2.1 Magnetic NPs: Magnetic Properties at the Nanometric Scale; 2.2.2 Isolated Magnetic NPs.
Text of Note
2.2.3 Interactions between Particles2.2.4 Dipolar Interactions: Consequences for Orientational Order and Spontaneous Chain Formation; 2.2.5 Experimental Evidence of Dipolar Behavior; 2.3 Synthetic Strategies; 2.3.1 Magnetotactic Bacteria; 2.3.2 Self-Assembly; 2.3.3 Self-Assembly Induced by External Forces or Constraints; 2.3.3.1 Application of External Magnetic Field; 2.3.3.2 Chemical Synthesis; 2.3.3.3 Magnetic Electrospinning; 2.3.3.4 Microfluidics; 2.4 Applications; 2.4.1 Individual Magnetic NPs; 2.4.2 1-D Assemblies â#x80;#x93; Applications in Life Sciences.
Text of Note
2.4.2.1 Biomarkers and MRI Contrast Agents2.4.2.2 Therapy: Delivery of Medicines and Hyperthermia; 2.4.2.3 Antibacterial Properties; 2.4.2.4 Regenerative Medicine; 2.5 Conclusions; 2.6 Future Directions; References; Chapter 3: Carbon-Coated Magnetic Metal Nanoparticles for Clinical Applications; 3.1 Synthesis of Carbon-Â Coated Nanomagnets; 3.2 Physical Properties: How Metal Nanomagnets are Different from Iron Oxides; 3.3 Initial Chemical Derivatization of the Carbon Surface; 3.4 Application of Specific Surface Functionalizations; 3.5 Carbon-Coated Metal Nanomagnets for Diagnostics.
Text of Note
3.6 The Future of Carbon-Coated Metal Nanomagnets in Blood Purification3.7 Conclusion and Future Outlook; References; Chapter 4: Bioinspired Magnetic Nanoparticles for Biomedical Applications; 4.1 MNPs in Living Organisms; 4.1.1 MNPs in Magnetotactic Bacteria; 4.1.2 MNPs in Animal; 4.1.3 Ferritins; 4.2 Bioinspired Synthesis of MNPs; 4.2.1 Synthesis of MNPs Inspired by Biomineralization of Ferritin; 4.2.2 Synthesis of MNPs Inspired by Magnetotactic Bacteria; 4.3 Bioinspired MNPs for Cancer Diagnosis and Therapy; 4.3.1 Peroxidase Activity of M-HFN for In Vitro Staining of Tumour Cells.
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SUMMARY OR ABSTRACT

Text of Note
"Offering the latest information in magnetic nanoparticle (MNP) research, this book builds upon the success of the first volume and provides an updated and comprehensive review, from synthesis, characterization, and biofunctionalization to clinical applications of MNPs, including the diagnosis and treatment of cancers. The book captures some of emerging research area which was not available in the first volume. Good Manufacturing Practices and Commercialization of MNPs are also included. This volume, also written by some of the most qualified experts in the field, incorporates new developments in the literature, and continues to bridge the gaps between the different areas in this field."--Provided by publisher.

ACQUISITION INFORMATION NOTE

Source for Acquisition/Subscription Address
Ingram Content Group
Stock Number
9781351685429

OTHER EDITION IN ANOTHER MEDIUM

International Standard Book Number
9781351685429

TOPICAL NAME USED AS SUBJECT

Biomedical materials.
Nanoscience.
Nanotechnology.
Biomedical materials.
Nanoscience.
Nanotechnology.

DEWEY DECIMAL CLASSIFICATION

Number
610
.
28

LIBRARY OF CONGRESS CLASSIFICATION

Class number
R857
.
N34

PERSONAL NAME - PRIMARY RESPONSIBILITY

Thanh, Nguyen TK

ORIGINATING SOURCE

Date of Transaction
20200822160546.0
Cataloguing Rules (Descriptive Conventions))
pn

ELECTRONIC LOCATION AND ACCESS

Electronic name
 مطالعه متن کتاب 

[Book]

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