In vivo rectal wall measurements during HDR prostate brachytherapy with MOSkin dosimeters integrated on a trans-rectal US probe: Comparison with planned and reconstructed doses

Mauro Carrara, Chiara Tenconi, Giulio Rossi, Marta Borroni, Annamaria Cerrotta, Simone Grisotto, Davide Cusumano, Brigida Pappalardi, Dean Cutajar, Marco Petasecca, Michael Lerch, Grazia Gambarini, Carlo Fallai, Anatoly Rosenfeld, Emanuele Pignoli

Research output: Contribution to journalArticle

Abstract

Background and purpose To study if MOSkin detectors coupled to a trans-rectal ultrasound (TRUS) probe may be used for in vivo dosimetry on the rectal wall surface during US-based HDR prostate brachytherapy and to quantify possible discrepancies between planned and delivered doses. Materials and methods MOSkins are a specific type of MOSFET dosimeter optimized to measure dose in steep dose gradients on interfaces. Two MOSkins were assembled on a TRUS probe used for on-line treatment planning. Measurements of the dose to the rectal wall were performed over 18 treatment sessions and compared to the doses calculated on the pre-treatment plan (DPRE) and reconstructed on post-treatment images (DPOST). Results Averages of the absolute differences between MOSkin readings and DPRE, MOSkin readings and DPOST and DPRE and DPOST were 6.7 ± 5.1%, 3.6 ± 1.9% and 6.3 ± 4.7%, respectively. Agreement between measurements and DPOST was significantly better than between measurements and DPRE (p = 0.002) and DPRE and DPOST (p = 0.004). Discrepancy between DPOST and DPRE correlated with the time required for treatment planning. Conclusion MOSkin dosimeters integrated to the TRUS probe proved to be an accurate instrument for measuring the dose delivered to the rectal wall in HDR prostate brachytherapy. The delivered doses may differ significantly from those calculated in the treatment plan.

Original languageEnglish
Pages (from-to)148-153
Number of pages6
JournalRadiotherapy and Oncology
Volume118
Issue number1
DOIs
Publication statusPublished - Jan 1 2016

Keywords

  • HDR brachytherapy
  • In vivo dosimetry
  • MOSFET
  • Prostate

ASJC Scopus subject areas

  • Oncology
  • Radiology Nuclear Medicine and imaging
  • Hematology

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