Towards real time in-vivo rectal dosimetry during trans-rectal ultrasound based high dose rate prostate brachytherapy using MOSkin dosimeters.


Journal

Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology
ISSN: 1879-0887
Titre abrégé: Radiother Oncol
Pays: Ireland
ID NLM: 8407192

Informations de publication

Date de publication:
10 2020
Historique:
received: 30 03 2020
revised: 04 08 2020
accepted: 05 08 2020
pubmed: 18 8 2020
medline: 15 4 2021
entrez: 18 8 2020
Statut: ppublish

Résumé

To compare the dose measured by MOSkin dosimeters coupled to a trans-rectal ultrasound (TRUS) probe to the dose predicted by the brachytherapy treatment planning system (BTPS) during high dose rate (HDR) prostate brachytherapy (pBT), and to examine the feasibility of performing real-time catheter-by-catheter analysis of in-vivo rectal dosimetry during TRUS based HDR pBT. Four MOSkin dosimeters were coupled to a TRUS probe during 20 TRUS-based HDR pBT treatment fractions. The measured MOSkin doses were retrospectively compared to those predicted by the BTPS for the total treatment fraction, as well as on a per catheter basis. The average relative percentage difference between MOSkin measured and BTPS predicted doses for a total treatment fraction was 0.3% ± 11.6% (k = 1), with a maximum of 23.2% and a minimum of -29.0%. The average relative percentage difference per catheter was +2.5% ± 16.9% (k = 1). The majority (64%) of per catheter MOSkin measured doses agreed with the treatment planning system within the calculated uncertainty budget of 12.3%. The results of the study agreed well with previously published data, despite differences in clinical workflows. To improve the redundancy to potential dosimeter errors, a minimum of 4 MOSkin dosimeters should be used when performing real-time in-vivo rectal dosimetry for HDR pBT, and error thresholds should be based off the total combined uncertainty estimate of measurement. 'Real time' error thresholds can be more confidently applied in the future through enhanced integration between IVD systems with both the imaging device and the BTPS/afterloader.

Identifiants

pubmed: 32798597
pii: S0167-8140(20)30721-0
doi: 10.1016/j.radonc.2020.08.003
pii:
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

273-279

Informations de copyright

Crown Copyright © 2020. Published by Elsevier B.V. All rights reserved.

Auteurs

Joel Poder (J)

St George Hospital Cancer Care Centre, Kogarah, Australia; Centre for Medical Radiation Physics, University of Wollongong, Australia. Electronic address: Joel.Poder@health.nsw.gov.au.

Andrew Howie (A)

St George Hospital Cancer Care Centre, Kogarah, Australia.

Ryan Brown (R)

St George Hospital Cancer Care Centre, Kogarah, Australia.

Joseph Bucci (J)

St George Hospital Cancer Care Centre, Kogarah, Australia.

Anatoly Rosenfeld (A)

Centre for Medical Radiation Physics, University of Wollongong, Australia.

Komiti Enari (K)

St George Hospital Cancer Care Centre, Kogarah, Australia.

Kristine Schreiber (K)

St George Hospital Cancer Care Centre, Kogarah, Australia.

Mauro Carrara (M)

Medical Physics Unit, Fondazione IRCCS Istituto Nazionale Tumori, Milan, Italy.

Andrej Bece (A)

St George Hospital Cancer Care Centre, Kogarah, Australia.

David Malouf (D)

St George Hospital Cancer Care Centre, Kogarah, Australia.

Dean Cutajar (D)

St George Hospital Cancer Care Centre, Kogarah, Australia; Centre for Medical Radiation Physics, University of Wollongong, Australia.

Articles similaires

[Redispensing of expensive oral anticancer medicines: a practical application].

Lisanne N van Merendonk, Kübra Akgöl, Bastiaan Nuijen
1.00
Humans Antineoplastic Agents Administration, Oral Drug Costs Counterfeit Drugs

Smoking Cessation and Incident Cardiovascular Disease.

Jun Hwan Cho, Seung Yong Shin, Hoseob Kim et al.
1.00
Humans Male Smoking Cessation Cardiovascular Diseases Female
Humans United States Aged Cross-Sectional Studies Medicare Part C
1.00
Humans Yoga Low Back Pain Female Male

Classifications MeSH