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http://dx.doi.org/10.14316/pmp.2013.24.4.230

A Smart Setup for Craniospinal Irradiation  

Peterson, Jennifer L. (Department of Radiation Oncology, Mayo Clinic)
Vallow, Laura A. (Department of Radiation Oncology, Mayo Clinic)
Kim, Siyong (Department of Radiation Oncology, Virginia Commonwealth University)
Casale, Henry E. (Department of Radiation Oncology, Mayo Clinic)
Tzou, Katherine S. (Department of Radiation Oncology, Mayo Clinic)
Publication Information
Progress in Medical Physics / v.24, no.4, 2013 , pp. 230-236 More about this Journal
Abstract
Our purpose is to present a novel technique for delivering craniospinal irradiation in the supine position using a perfect match, field-in-field (FIF) intrafractional feathering, and simple forward-optimization technique. To achieve this purpose, computed tomography simulation was performed with patients in the supine position. Half-beam, blocked, opposed, lateral, cranial fields with a collimator rotation were matched to the divergence of the superior border of an upper-spinal field. Fixed field parameters were used, and the isocenter of the upper-spinal field was placed at the same source-to-axis distance (SAD), 20 cm inferior to the cranial isocenter. For a lower-spinal field, the isocenter was placed 40 cm inferior to the cranial isocenter at a constant SAD. Both gantry and couch rotations for the lower-spinal field were used to achieve perfect divergence match with the inferior border of the upper-spinal field. A FIF technique was used to feather the craniospinal and spinal-spinal junction daily by varying the match line over 2 cm. The dose throughout the target volume was modulated using the FIF simple forward optimization technique to obtain homogenous coverage. Daily, image-guided therapy was used to assure and verify the setup. This supine-position, perfect match craniospinal irradiation technique with FIF intrafractional feathering and dose modulation provides a simple and safe way to deliver treatment while minimizing dose inhomogeneity.
Keywords
Dose modulation; Field matching; Intrafractional feathering; Daily feathering;
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