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(Ebook) Ultrasmall Lanthanide Oxide Nanoparticles for Biomedical Imaging and Therapy 1st Edition by Gang Ho Lee, Jeong Tae Kim ISBN 0081000693 9780081000663

  • SKU: EBN-4961462
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Authors:Gang Ho Lee; Yongmin Chang; Tae-Jeong Kim
Pages:208 pages.
Year:2014
Editon:1
Publisher:Woodhead Publishing
Language:english
File Size:10.96 MB
Format:pdf
ISBNS:9780081000663, 9780081000694, 0081000669, 0081000693
Categories: Ebooks

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(Ebook) Ultrasmall Lanthanide Oxide Nanoparticles for Biomedical Imaging and Therapy 1st Edition by Gang Ho Lee, Jeong Tae Kim ISBN 0081000693 9780081000663

(Ebook) Ultrasmall Lanthanide Oxide Nanoparticles for Biomedical Imaging and Therapy 1st Edition by Gang Ho Lee, Jeong Tae Kim - Ebook PDF Instant Download/Delivery: 0081000693, 9780081000663
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Product details:

ISBN 10: 0081000693 
ISBN 13: 9780081000663
Author: Gang Ho Lee, Jeong Tae Kim

Most books discuss general and broad topics regarding molecular imagings. However, Ultrasmall Lanthanide Oxide Nanoparticles for Biomedical Imaging and Therapy, will mainly focus on lanthanide oxide nanoparticles for molecular imaging and therapeutics. Multi-modal imaging capabilities will discussed, along with up-converting FI by using lanthanide oxide nanoparticles. The synthesis will cover polyol synthesis of lanthanide oxide nanoparticles, Surface coatings with biocompatible and hydrophilic ligands will be discussed and TEM images and dynamic light scattering (DLS) patterns will be provided. Various techniques which are generally used in analyzing the synthesized surface coated nanoparticles will be explored and this section will also cover FT­, IR analysis, XRD analysis, SQUID analysis, cytotoxicity measurements and proton relaxivity measurements. In vivo MR images, CT images, fluorescence images will be provided and Therapeutic application of gadolinium oxide nanoparticles will be discussed. Finally, future perpectives will be discussed. That is, present status and future works needed for clinical applications of lanthanide oxide nanoparticles to molecular imagings will be discussed.

(Ebook) Ultrasmall Lanthanide Oxide Nanoparticles for Biomedical Imaging and Therapy 1st Table of contents: 

  1. 1: Introduction to biomedical imaging
    1. Abstract
    2. 1.1 What is biomedical imaging?
    3. 1.2 Various imaging modalities now available
    4. 1.3 References
  2. 2: Properties and possible application areas
    1. Abstract
    2. 2.1 Introduction
    3. 2.2 Possible application areas
    4. 2.3 References
  3. 3: Synthesis and surface modification
    1. Abstract
    2. 3.1 Synthesis
    3. 3.2 Surface coating
    4. 3.3 Other lanthanide nano-systems
    5. 3.4 References
  4. 4: Characterization
    1. Abstract
    2. 4.1 Introduction
    3. 4.2 Particle diameter and morphology
    4. 4.3 Crystal structure
    5. 4.4 Hydrodynamic diameter (a)
    6. 4.5 Surface coating confirmation
    7. 4.6 Surface coating amount
    8. 4.7 Magnetic properties
    9. 4.8 Cytotoxicity
    10. 4.9 Water proton relaxivity and map image
    11. 4.10 Biodistribution
    12. 4.11 In vivo TEM analysis of nanoparticles
    13. 4.12 Fluorescent properties
    14. 4.13 References
  5. 5: MRI, CT, FI, and multi-modal imaging and images
    1. Abstract
    2. 5.1 Magnetic resonance imaging (MRI) and images
    3. 5.2 X-ray computed tomography (CT) and images
    4. 5.3 Fluorescent imaging (FI) and images
    5. 5.4 Multi-modal imaging
    6. 5.5 References
  6. 6: A simple model calculation of water proton relaxivities
    1. Abstract
    2. 6.1 Introduction
    3. 6.2 Magnetization
    4. 6.3 Longitudinal water proton relaxation (T1) and relaxivity (r1)
    5. 6.4 Transverse water proton relaxation (T2) and relaxivity (r2)
    6. 6.5 Concluding remarks
    7. 6.6 References
  7. 7: Thermal neutron capture therapy (NCT)
    1. Abstract
    2. 7.1 Introduction
    3. 7.2 BNCT
    4. 7.3 GdNCT
    5. 7.4 References
  8. 8: Perspectives and challenges
    1. Abstract
    2. 8.1 Perspectives and challenges
    3. 8.2 What needs to be done for clinical applications

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Tags: Gang Ho Lee, Jeong Tae Kim, Ultrasmall Lanthanide, Biomedical Imaging

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