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Title: Breathing-Synchronized Delivery: A Potential Four-Dimensional Tomotherapy Treatment Technique

Journal Article · · International Journal of Radiation Oncology, Biology and Physics
 [1];  [2];  [2];  [3];  [4];  [5];  [6];  [2];  [4]
  1. Department of Radiation Oncology, William Beaumont Hospital, Royal Oak, MI (United States)
  2. TomoTherapy Inc., Madison, WI (United States)
  3. Department of Radiation Physics, Princess Margaret Hospital, Toronto, Ontario (Canada)
  4. Department of Medical Physics, University of Wisconsin, Madison, WI (United States)
  5. Department of Radiation Oncology, M.D. Anderson Cancer Center, Orlando, FL (United States)
  6. Department of Human Oncology, University of Wisconsin, Madison, WI (United States)

Purpose: To introduce a four-dimensional (4D) tomotherapy treatment technique with improved motion control and patient tolerance. Methods and Materials: Computed tomographic images at 10 breathing phases were acquired for treatment planning. The full exhalation phase was chosen as the planning phase, and the CT images at this phase were used as treatment-planning images. Region of interest delineation was the same as in traditional treatment planning, except that no breathing motion margin was used in clinical target volume-planning target volume expansion. The correlation between delivery and breathing phases was set assuming a constant gantry speed and a fixed breathing period. Deformable image registration yielded the deformation fields at each phase relative to the planning phase. With the delivery/breathing phase correlation and voxel displacements at each breathing phase, a 4D tomotherapy plan was obtained by incorporating the motion into inverse treatment plan optimization. A combined laser/spirometer breathing tracking system has been developed to monitor patient breathing. This system is able to produce stable and reproducible breathing signals representing tidal volume. Results: We compared the 4D tomotherapy treatment planning method with conventional tomotherapy on a static target. The results showed that 4D tomotherapy can achieve dose distributions on a moving target similar to those obtained with conventional delivery on a stationary target. Regular breathing motion is fully compensated by motion-incorporated breathing-synchronized delivery planning. Four-dimensional tomotherapy also has close to 100% duty cycle and does not prolong treatment time. Conclusion: Breathing-synchronized delivery is a feasible 4D tomotherapy treatment technique with improved motion control and patient tolerance.

OSTI ID:
20953618
Journal Information:
International Journal of Radiation Oncology, Biology and Physics, Vol. 68, Issue 5; Other Information: DOI: 10.1016/j.ijrobp.2007.02.054; PII: S0360-3016(07)00527-5; Copyright (c) 2007 Elsevier Science B.V., Amsterdam, Netherlands, All rights reserved; Country of input: International Atomic Energy Agency (IAEA); ISSN 0360-3016
Country of Publication:
United States
Language:
English

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