0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R5,000 - R10,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

4D Modeling and Estimation of Respiratory Motion for Radiation Therapy (Paperback, Softcover reprint of the original 1st ed.... 4D Modeling and Estimation of Respiratory Motion for Radiation Therapy (Paperback, Softcover reprint of the original 1st ed. 2013)
Jan Ehrhardt, Cristian Lorenz
R5,556 Discovery Miles 55 560 Ships in 10 - 15 working days

Respiratory motion causes an important uncertainty in radiotherapy planning of the thorax and upper abdomen. The main objective of radiation therapy is to eradicate or shrink tumor cells without damaging the surrounding tissue by delivering a high radiation dose to the tumor region and a dose as low as possible to healthy organ tissues. Meeting this demand remains a challenge especially in case of lung tumors due to breathing-induced tumor and organ motion where motion amplitudes can measure up to several centimeters. Therefore, modeling of respiratory motion has become increasingly important in radiation therapy. With 4D imaging techniques spatiotemporal image sequences can be acquired to investigate dynamic processes in the patient's body. Furthermore, image registration enables the estimation of the breathing-induced motion and the description of the temporal change in position and shape of the structures of interest by establishing the correspondence between images acquired at different phases of the breathing cycle. In radiation therapy these motion estimations are used to define accurate treatment margins, e.g. to calculate dose distributions and to develop prediction models for gated or robotic radiotherapy. In this book, the increasing role of image registration and motion estimation algorithms for the interpretation of complex 4D medical image sequences is illustrated. Different 4D CT image acquisition techniques and conceptually different motion estimation algorithms are presented. The clinical relevance is demonstrated by means of example applications which are related to the radiation therapy of thoracic and abdominal tumors. The state of the art and perspectives are shown by an insight into the current field of research. The book is addressed to biomedical engineers, medical physicists, researchers and physicians working in the fields of medical image analysis, radiology and radiation therapy.

4D Modeling and Estimation of Respiratory Motion for Radiation Therapy (Hardcover, 2013 ed.): Jan Ehrhardt, Cristian Lorenz 4D Modeling and Estimation of Respiratory Motion for Radiation Therapy (Hardcover, 2013 ed.)
Jan Ehrhardt, Cristian Lorenz
R5,806 Discovery Miles 58 060 Ships in 10 - 15 working days

Respiratory motion causes an important uncertainty in radiotherapy planning of the thorax and upper abdomen. The main objective of radiation therapy is to eradicate or shrink tumor cells without damaging the surrounding tissue by delivering a high radiation dose to the tumor region and a dose as low as possible to healthy organ tissues. Meeting this demand remains a challenge especially in case of lung tumors due to breathing-induced tumor and organ motion where motion amplitudes can measure up to several centimeters. Therefore, modeling of respiratory motion has become increasingly important in radiation therapy. With 4D imaging techniques spatiotemporal image sequences can be acquired to investigate dynamic processes in the patient's body. Furthermore, image registration enables the estimation of the breathing-induced motion and the description of the temporal change in position and shape of the structures of interest by establishing the correspondence between images acquired at different phases of the breathing cycle. In radiation therapy these motion estimations are used to define accurate treatment margins, e.g. to calculate dose distributions and to develop prediction models for gated or robotic radiotherapy. In this book, the increasing role of image registration and motion estimation algorithms for the interpretation of complex 4D medical image sequences is illustrated. Different 4D CT image acquisition techniques and conceptually different motion estimation algorithms are presented. The clinical relevance is demonstrated by means of example applications which are related to the radiation therapy of thoracic and abdominal tumors. The state of the art and perspectives are shown by an insight into the current field of research. The book is addressed to biomedical engineers, medical physicists, researchers and physicians working in the fields of medical image analysis, radiology and radiation therapy.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Cable Guy Ikon "Light Up" Harry Potter…
R543 Discovery Miles 5 430
Tipping Point: Turmoil Or Reform…
Raymond Parsons Paperback R300 R215 Discovery Miles 2 150
STEM Activity: Sensational Science
Steph Clarkson Paperback  (4)
R256 R211 Discovery Miles 2 110
Mellerware Swiss - Plastic Floor Fan…
 (1)
R348 Discovery Miles 3 480
Jabra Elite 5 Hybrid ANC True Wireless…
R2,899 R2,399 Discovery Miles 23 990
Jumbo Puzzle Mates Puzzle & Roll Storage…
 (4)
R699 R639 Discovery Miles 6 390
Bestway Beach Ball (51cm)
 (2)
R26 Discovery Miles 260
Wonder Plant Food Stix - Premium Plant…
R49 R41 Discovery Miles 410
Cable Guys Controller and Smartphone…
R355 Discovery Miles 3 550
The High Notes
Danielle Steel Paperback R340 R266 Discovery Miles 2 660

 

Partners