Zobrazeno 1 - 10
of 16
pro vyhledávání: '"N Saleh-Sayah"'
Publikováno v:
Medical physics. 39(6Part18)
Purpose: To quantify dose mapping errors (DMEs) of a point‐based dose mapping method for 4D lung treatment plans. Methods: Point‐based dose mapping methods utilize deformation vector fields (DVFS) to interpolate dose from a deformed image. Volume
Autor:
Elisabeth Weiss, N Saleh-Sayah, C Yan, Jeffrey V. Siebers, William C. Sleeman, F. J. Salguero, Geoffrey D. Hugo
Publikováno v:
Medical Physics. 39:2119-2128
Purpose: To present a method to evaluate the dose mapping error introduced by the dose mapping process. In addition, apply the method to evaluate the dose mapping error introduced by the 4D dose calculation process implemented in a research version o
Publikováno v:
Medical Physics. 38:2318-2323
Purpose : To introduce a tool, termed distance to dose difference (DTD), which estimates the required spatial accuracy of displacement vector fields (DVFs) used for mapping four dimensional dose values. Methods : Dose mapping maps dose values from an
Publikováno v:
Medical Physics. 38:343-353
Purpose: This article presents a general procedural framework to assess the point-by-point precision in mapped dose associated with the intrinsic uncertainty of a deformable image registration (DIR) for any arbitrary patient. Methods: Dose uncertaint
Publikováno v:
Medical physics. 39(4)
To present a method to evaluate the dose mapping error introduced by the dose mapping process. In addition, apply the method to evaluate the dose mapping error introduced by the 4D dose calculation process implemented in a research version of commerc
Publikováno v:
International Journal of Radiation Oncology*Biology*Physics. 78:S736
Publikováno v:
Medical Physics. 37:3148-3148
Purpose: To evaluate dose uncertainties introduced by dose mapping process implemented in a commercial 4D treatment planning system by evaluating integral dose conservation in common volumes between unmapped and mapped images.Method and Materials:CTi
Publikováno v:
Medical Physics. 37:3186-3186
Purpose: Most deformable image registration (DIR) algorithms require utilize user‐selectable parameters. Inappropriate parameter values may lead to severe under‐performance. This work addresses optimal user‐selected DIR parameter values for Pin
Publikováno v:
Medical Physics. 37:3185-3185
Purpose: Most deformable image registration (DIR) algorithms require utilize user‐selectable parameters. Inappropriate parameter values may lead to severe under‐performance. This work addresses optimal user‐selected DIR parameter values for Pin
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