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Biomedical subjects

D Viggars

Publications and source records attributed to D Viggars.

3 recordsLinked to original sources

The objective evaluation of alternative treatment plans: II. Score functions.

A series of six patients with adenocarcinoma of the prostate, Stages A2, B1, or B2, were planned for treatment using a four-field box technique at 25 MV. Plans were prepared by three techniques: composite, mid-plane, and conformal. The dose distributions at the central plane and at two planes offset by +/- 2 cm were evaluated by means of score functions which quantify the magnitude of regret for target dose gradient, target over- and under-dose, non-target tissue overdose, and for overdose to the rectum, bladder, and femoral heads. The score functions are normalized to give values in the range from 10 (ideal) to zero (limit of acceptability), with negative values indicating unacceptable deviations from the prescribed dose limits. The scores for off-axis conformal plans were found to be essentially the same as for mid-plane plans on the central plane. However, mid-plane planning was shown to be totally inadequate for off-axis planes, where the average target gradient and underdose scores were reduced by 10 units. Composite planning resulted in adequate target coverage on all planes, but at the expense of unacceptable overdose to non-target tissue. The effect of reducing the posterior beam weight to half that of the other three beams was to reduce the target gradient score by 1.6 +/- 0.5 units and to increase the rectal score by 0.9 +/- 0.3 units.

Adenocarcinoma↗

Treatment planning for protocol-based radiation therapy.

Many protocol studies are conducted in which patients are assigned to alternative treatment regimens. Typically the dosimetric specifications will define the maximal and minimal target doses and maximal doses to specified critical normal structures, and the success of the study will depend upon the consistency and reliability with which these dose specifications are applied. We have investigated the use of dose-area histograms to ensure complete adherence to protocol dose specifications. A dose prescription is prepared that defines upper and lower target doses as well as normal tissue dose tolerance levels for all organs of interest. In addition, dose-volume histograms are derived which provide quantitative measures of the extent to which each dose limit has been met. This technique can be used during treatment planning to prevent protocol violations of pre-defined severity, or for retroactive correlation of local tumor recurrence and treatment-related morbidity with dose levels in the target and normal tissues. An example is presented for a protocol study of ca prostate, stages A and B, in which seven treatments were evaluated at the mid-plane for protocol violations.

Clinical Trials as Topic↗

Treatment planning using images of regret.

The lack of well-defined criteria for evaluating alternative treatment plans introduces a degree of subjectivity into the planning process. The complexity of conventional isodose charts causes further difficulty in making rapid and reliable evaluations of a plan. An objective method is described, using a prescription file to define the clinician's requirements in terms of the area of each organ which may be treated to predefined tolerance doses. The computer program OSCAR then compares the predicted dose distribution with the prescribed limits, and displays regions of noncompliance as colored "areas of regret." In addition, score functions are used to provide a quantitative measure of the acceptability of dose distributions within the target and each organ at risk. An example is described in which a plan for the treatment of ca esophagus is evaluated using both images of regret and score functions.

Esophageal Neoplasms↗