
Nanoparticle Enhanced Radiation Therapy
- Principles, methods and applications
- Erno Sajo, Piotr Zygmanski
- November 2020
Description
Improved targeting of abnormal cells and tissue in the radiotherapy of cancer has been a long-standing goal of researchers. The central purpose of nanoparticle-enhanced radiotherapy (NPRT) is to more precisely control where the radiation dose is delivered, desirably with subcellular precision, provided we can find a method to bring the nanoparticles to target as well as control their concentration and size distribution.
The contents within this book will cover the rationale and fundamental principles of NPRT, optimal nanoparticle sizes, concentrations, design and fabrication, effective nanoparticle delivery methods, emerging clinical applications of NRT modalities, treatment planning and quality assurance and the potential of NPRT in global health. This volume will serve as a resource for researchers, educators and industry, and as a practical guide or comprehensive reference for students, research trainees and others working in cancer nanomedicine.
Key Features- Covers the most important advances in nanoparticle-aided radiation therapy over the last few decades
- Features contributions from leaders in the field
- Focuses first on the fundamentals of radiosensitization, then it continues with imaging methods and concludes with various clinical applications
About Editors
Table of Contents
IntroductionPart I Radiosensitization and fundamentals
7 Nanoparticle aided radiotherapy: quality assurance perspective
9 Translational nanomaterials for cancer radiation therapy
Part II Imaging
11 Super-resolution microscopy of nanogold-labelling
12 X-ray based nanoparticle imaging
13 MRI based nanoparticle imaging
14 Nanoparticle detection using photoacoustic imaging (PAI)
Part III Applications
16 High-Z ORAYA therapy for wet AMD and ocular cancers
17 Cerium oxide and titanium dioxide
18 Accelerated Partial Breast Irradiation (APBI)
Bibliographic
Hardback ISBN: 9780750323949
Ebook ISBN: 9780750323963
DOI: 10.1088/978-0-7503-2396-3
Publisher: Institute of Physics Publishing