PubMed Health⌕ Search

Biomedical subjects

N Y Kelkar

Publications and source records attributed to N Y Kelkar.

3 recordsLinked to original sources

Dose computation for irregular fields in cobalt-60 beam.

Dose computation in large irregular fields used for treating certain malignant tumors cannot be done by equivalent field methods. The present methods available for such dose computations are accurate but complicated and tedious and are amenable to only computers. This paper describes an algorithm (a semiempirical formula) of dose computation in an irregular field. Attempt is also made to estimate the dose outside the field border and in the shielded region. The dose values computed with this method at different depths in mantle and inverted Y-field in a cobalt-60 beam are compared with the experimentally measured values. The method proves to be simple and accurate. The calculations can be done even manually with a calculator and a statistical table in the absence of computer facility. It also successfully estimates the dose in the shielded region and in the penumbra.

Algorithms↗

A simple computational approach to irregular field dosimetry.

Treatment of certain malignant tumors requires very large and irregular fields. The dose computations in such field configurations are quite complicated and tedious and hence accessible to computer methods only. This paper describes an easy method for estimating dose to any point in such irregular fields except those which are in the shielded region. For radiotherapy centres which do not have access to a computer, this paper presents an algorithm that can be used with a desk calculator for dose computation at any point. The dose values calculated using this algorithm at different points and at different depths in the mantle and inverted Y-fields agree within +/- 3% with the values computed using detailed sector integration method of Clarkson.

Algorithms↗

A simple formula for depth dose calculation for Co-60 teletherapy beam dosimetry.

Knowledge of dose at all the points of interest, in the plane of tumour, is essential for treatment planning. A very simple formula for scatter dose calculation along the central axis of a Co-60 beam has been derived. This formula uses primary dose at depth d, scatter air ratio at the depth of maximum ionisation and the effective depth of the volume, irradiating the medium. The method for calculation of percentage depth dose at any point in the principal plane has been explained in detail. The simple form of the formulation will help in improving the treatment plans for treatments of lesions using Co-60 teletherapy machines.

Cobalt Radioisotopes↗