Literature DB >> 24206209

Commissioning and quality assurance of an integrated system for patient positioning and setup verification in particle therapy.

A Pella1, M Riboldi, B Tagaste, D Bianculli, M Desplanques, G Fontana, P Cerveri, M Seregni, G Fattori, R Orecchia, G Baroni.   

Abstract

In an increasing number of clinical indications, radiotherapy with accelerated particles shows relevant advantages when compared with high energy X-ray irradiation. However, due to the finite range of ions, particle therapy can be severely compromised by setup errors and geometric uncertainties. The purpose of this work is to describe the commissioning and the design of the quality assurance procedures for patient positioning and setup verification systems at the Italian National Center for Oncological Hadrontherapy (CNAO). The accuracy of systems installed in CNAO and devoted to patient positioning and setup verification have been assessed using a laser tracking device. The accuracy in calibration and image based setup verification relying on in room X-ray imaging system was also quantified. Quality assurance tests to check the integration among all patient setup systems were designed, and records of daily QA tests since the start of clinical operation (2011) are presented. The overall accuracy of the patient positioning system and the patient verification system motion was proved to be below 0.5 mm under all the examined conditions, with median values below the 0.3 mm threshold. Image based registration in phantom studies exhibited sub-millimetric accuracy in setup verification at both cranial and extra-cranial sites. The calibration residuals of the OTS were found consistent with the expectations, with peak values below 0.3 mm. Quality assurance tests, daily performed before clinical operation, confirm adequate integration and sub-millimetric setup accuracy. Robotic patient positioning was successfully integrated with optical tracking and stereoscopic X-ray verification for patient setup in particle therapy. Sub-millimetric setup accuracy was achieved and consistently verified in daily clinical operation.

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Mesh:

Year:  2013        PMID: 24206209     DOI: 10.7785/tcrt.2012.500386

Source DB:  PubMed          Journal:  Technol Cancer Res Treat        ISSN: 1533-0338


  4 in total

1.  Re-irradiation With Carbon Ion Radiotherapy for Pelvic Rectal Cancer Recurrences in Patients Previously Irradiated to the Pelvis.

Authors:  Amelia Barcellini; Viviana Vitolo; Lorenzo Cobianchi; Andrea Peloso; Alessandro Vanoli; Alfredo Mirandola; Angelica Facoetti; Maria Rosaria Fiore; Alberto Iannalfi; Barbara Vischioni; Francesco Cuccia; Sara Ronchi; Maria Bonora; Giulia Riva; Rachele Petrucci; Emma D'Ippolito; Francesca Dal Mas; Lorenzo Preda; Francesca Valvo
Journal:  In Vivo       Date:  2020 May-Jun       Impact factor: 2.155

2.  Characterization of a MLIC Detector for QA in Scanned Proton and Carbon Ion Beams.

Authors:  Alessandro Vai; Alfredo Mirandola; Giuseppe Magro; Davide Maestri; Edoardo Mastella; Andrea Mairani; Silvia Molinelli; Stefania Russo; Michele Togno; Sara La Civita; Mario Ciocca
Journal:  Int J Part Ther       Date:  2019-11-26

3.  Long-time clinical experience in patient setup for several particle therapy clinical indications: management of patient positioning and evaluation of setup reproducibility and stability.

Authors:  Rosalinda Ricotti; Andrea Pella; Barbara Tagaste; Giovanni Elisei; Giulia Fontana; Maria Bonora; Mario Ciocca; Francesca Valvo; Roberto Orecchia; Guido Baroni
Journal:  Br J Radiol       Date:  2019-11-14       Impact factor: 3.629

4.  Utilization of optical tracking to assess efficacy of intracranial immobilization techniques in proton therapy.

Authors:  Wen C Hsi; Andries N Schreuder; Omar Zeidan
Journal:  J Appl Clin Med Phys       Date:  2015-09-08       Impact factor: 2.102

  4 in total

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