Literature DB >> 11499434

Chromosome aberration analysis in radiotherapy patients and simulated partial body exposures: biological dosimetry for non-uniform exposures.

B Sreedevi1, B S Rao, H Nagaraj, N K Pal.   

Abstract

Chromosome aberration analysis was carried out in peripheral blood lymphocytes of cancer patients following radiotherapy of lungs, cervix and spine. Radiotherapy in the pelvic region involving large doses (6 Gy) showed an overdispersed distribution of dicentrics. However, when the doses were fractionated (three fractions of 2 Gy) distribution was found to be near Poisson. Spine irradiation covering almost all the lymphocytes pools, indicated a Poisson distribution. The data show that depending on the sites of exposure, the distribution of dicentrics in cells varies and hence there is a non-uniform distribution of lymphocytes in the body. The average dose to the lymphocytes was found to be one sixth of the partial body dose. Based on the non-Poisson distribution of aberrations, the fraction of lymphocytes irradiated, mean dose to the fraction and part of the body exposed was calculated in a case of acute 6 Gy pelvic irradiation. The fraction of cells irradiated was calculated to be 4.11% and the portion of the body exposed was approximately 16.8%. The dose to the irradiated fraction was found to be 5.4 Gy, which is in agreement with the given dose of 6 Gy. In simulated exposures the u values increased systematically with the decrease in fraction of irradiated cells and the calculated dose to the fraction was also in good agreement with the true dose.

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Year:  2001        PMID: 11499434     DOI: 10.1093/oxfordjournals.rpd.a006505

Source DB:  PubMed          Journal:  Radiat Prot Dosimetry        ISSN: 0144-8420            Impact factor:   0.972


  4 in total

1.  Chromosome aberration analysis and the influence of mitotic delay after simulated partial-body exposure with high doses of sparsely and densely ionising radiation.

Authors:  Anna Heimers; Hein Jürgen Brede; Ulrich Giesen; Wolfgang Hoffmann
Journal:  Radiat Environ Biophys       Date:  2006-03-25       Impact factor: 1.925

2.  Cytogenetic assessment of heterogeneous radiation doses in cancer patients treated with fractionated radiotherapy.

Authors:  S Roch-Lefèvre; F Pouzoulet; A L Giraudet; Pa Voisin; A Vaurijoux; G Gruel; E Grégoire; V Buard; M Delbos; Ph Voisin; J Bourhis; L Roy
Journal:  Br J Radiol       Date:  2010-09       Impact factor: 3.039

3.  Increase in dicentric chromosome formation after a single CT scan in adults.

Authors:  Yu Abe; Tomisato Miura; Mitsuaki A Yoshida; Risa Ujiie; Yumiko Kurosu; Nagisa Kato; Atsushi Katafuchi; Naohiro Tsuyama; Takashi Ohba; Tomoko Inamasu; Fumio Shishido; Hideyoshi Noji; Kazuei Ogawa; Hiroshi Yokouchi; Kenya Kanazawa; Takashi Ishida; Satoshi Muto; Jun Ohsugi; Hiroyuki Suzuki; Tetsuo Ishikawa; Kenji Kamiya; Akira Sakai
Journal:  Sci Rep       Date:  2015-09-09       Impact factor: 4.379

4.  The first in vivo multiparametric comparison of different radiation exposure biomarkers in human blood.

Authors:  Ales Tichy; Sylwia Kabacik; Grainne O'Brien; Jaroslav Pejchal; Zuzana Sinkorova; Adela Kmochova; Igor Sirak; Andrea Malkova; Caterina Gomila Beltran; Juan Ramon Gonzalez; Jakub Grepl; Matthaeus Majewski; Elizabeth Ainsbury; Lenka Zarybnicka; Jana Vachelova; Alzbeta Zavrelova; Marie Davidkova; Marketa Markova Stastna; Michael Abend; Eileen Pernot; Elisabeth Cardis; Christophe Badie
Journal:  PLoS One       Date:  2018-02-23       Impact factor: 3.240

  4 in total

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