Spot-scanning proton therapy for early breast cancer in free breathing versus deep inspiration breath-hold.

Maria Fuglsang Jensen, Line Bjerregaard Stick, Camilla Jensenius Skovhus Kronborg, Stine Elleberg Petersen, Linh My Hoang Thai, Helle Precht, Birgitte Vrou Offersen, Louise Lærke Nielsen, Cecilia Bui Trinh, Ihsan Bahij, May-Lin Martinsen

Journal: Acta oncologica (Stockholm, Sweden) 2024;63():56-61

PMID: 38404218

Abstract

BACKGROUND AND PURPOSE

Proton therapy for breast cancer is usually given in free breathing (FB). With the use of deep inspiration breath-hold (DIBH) technique, the location of the heart is displaced inferiorly, away from the internal mammary nodes and, thus, the dose to the heart can potentially be reduced. The aim of this study was to explore the potential benefit of proton therapy in DIBH compared to FB for highly selected patients to reduce exposure of the heart and other organs at risk. We aimed at creating proton plans with delivery times feasible with treatment in DIBH.

MATERIAL AND METHODS

Sixteen patients with left-sided breast cancer receiving loco-regional proton therapy were included. The FB and DIBH plans were created for each patient using spot-scanning proton therapy with 2-3 fields, robust and single field optimization. For the DIBH plans, minimum monitor unit per spot and spot spacing were increased to reduce treatment delivery time.

RESULTS

All plans complied with target coverage constraints. The median mean heart dose was statistically significant reduced from 1.1 to 0.6 Gy relative biological effectiveness (RBE) by applying DIBH. No statistical significant difference was seen for mean dose and V17Gy RBE to the ipsilateral lung. The median treatment delivery time for the DIBH plans was reduced by 27% compared to the FB plans without compromising the plan quality.

INTERPRETATION

The median absolute reduction in dose to the heart was limited. Proton treatment in DIBH may only be relevant for a subset of these patients with the largest reduction in heart exposure.

Address: Danish Centre for Particle Therapy, Aarhus University Hospital, Aarhus, Denmark. [email protected].; The Education of Radiography, University College Lillebælt, Svendborg, Denmark.; Danish Centre for Particle Therapy, Aarhus University Hospital, Aarhus, Denmark.; Health Sciences Research Center, University College Lillebælt, Svendborg, Denmark; Institute of Regional Health Sciences, University of Southern Denmark, Odense, Denmark; Department of Radiology, Lillebælt University Hospital of Southern Denmark, Kolding, Denmark.; Danish Centre for Particle Therapy, Aarhus University Hospital, Aarhus, Denmark; Department of Experimental Clinical Oncology & Department of Oncology, Aarhus University Hospital, Aarhus, Denmark.
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