
Treatment of multiple intracranial metastases in radiation oncology: a contemporary review of available technologies
Author(s) -
Christina Skourou,
Darina Hickey,
Luke Rock,
P. Houston,
P. Sturt,
Siobhra O' Sullivan,
C. Faul,
Ian Paddick
Publication year - 2021
Publication title -
bjr|open
Language(s) - English
Resource type - Journals
ISSN - 2513-9878
DOI - 10.1259/bjro.20210035
Subject(s) - radiosurgery , medicine , medical physics , radiation oncology , radiation therapy , radiation treatment planning , radiology
The use of stereotactic radiosurgery to treat multiple intracranial metastases, frequently concurrently, has become increasingly common. The ability to accurately and safely deliver stereotactic radiosurgery treatment to multiple intracranial metastases (MIM) relies heavily on the technology available for targeting, planning, and delivering the dose. A number of platforms are currently marketed for such applications, each with intrinsic capabilities and limitations. These can be broadly categorised as cobalt-based, linac-based, and robotic. This review describes the most common representative technologies for each type along with their advantages and current limitations as they pertain to the treatment of multiple intracranial metastases. Each technology was used to plan five clinical cases selected to represent the clinical breadth of multiple metastases cases. The reviewers discuss the different strengths and limitations attributed to each technology in the case of MIM as well as the impact of disease-specific characteristics (such as total number of intracranial metastases, their size and relative proximity) on plan and treatment quality.