Off-center ratios for three-dimensional dose calculations Journal Article


Authors: Chui, C. S.; Mohan, R.
Article Title: Off-center ratios for three-dimensional dose calculations
Abstract: A new method is proposed for computing the off center ratios (OCR's) in three dimensional dose calculations. For an open field, the OCR at a point is computed as the product of the primary OCR (POCR) and the boundary factors (BF's). The POCR describes the beam profile for an infinite field, that is, without the effect of the collimators. It is defined as the ratio of the dose at a point off the central ray to the dose at the point on the central ray at the same depth for an infinite field. The POCR is a function of radial distance from the beam central ray and depth. The BF describes the shape of the beam in the neighborhood of the field boundary defined by the collimators. It is defined as the ratio of the OCR at a point for a finite field to the OCR at the same point for an infinite field. The BF is a function of distance from the field boundary, depth, and field size. For a wedged field, we assume that the boundary factors remain the same as for open fields but the POCR's are altered. The changes in beam profiles are described by a factor called the wedge profile factor (WPF), defined as the ratio of the dose at a point for the largest wedged field to the dose at the same point for an open field of the same field size. The WPF is a function of lateral distance from the beam central plane and depth. Calculated OCR's using this new method are in agreement with the measured data along both the transverse and the diagonal directions of the field. © 1984, American Institute of Physics for the National Institute of Standards and Technology. All rights reserved.
Keywords: nonhuman; methodology; radiotherapy dosage; radiotherapy; dosimetry; radiotherapy, high-energy; therapy; biometry; theoretical study; planning; computer analysis; health physics; mathematical models; radiation doses; human; priority journal; beam profiles; 87.53.10.b
Journal Title: Medical Physics
Volume: 13
Issue: 3
ISSN: 0094-2405
Publisher: American Association of Physicists in Medicine  
Date Published: 1986-05-01
Start Page: 409
End Page: 412
Language: English
DOI: 10.1118/1.595886
PUBMED: 3088413
PROVIDER: scopus
DOI/URL:
Notes: Letter -- Export Date: 18 August 2021 -- Source: Scopus
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  1. Chen Chui
    144 Chui
  2. Radhe   Mohan
    97 Mohan