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Optimization of Dose Distribution for LINAC-based Radiosurgery with Multiple Isocenters
Tae Suk Suh, Sei Chul Yoon, Kyung Sub Shinn, Yong Whee Bahk
Radiation Oncology Journal. 1991;9(2):351-359.

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Morphology-guided radiosurgery treatment planning and optimization for multiple isocenters
Medical Physics. 1999;26(10):2151-2160   Crossref logo
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Comparison of Dose Distribution between 3D-CRT and IMRT Plans for LINAC Based Stereotactic Radiosurgery (SRS): Tumor Dose Inhomogeneity and Normal Tissue Dose Fall Off
International Journal of Radiation Oncology*Biology*Physics. 2008;72(1):S537   Crossref logo
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EXACTRACx-ray and beam isocenters-What's the difference?
Medical Physics. 2012;39(3):1418-1423   Crossref logo
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1431 POSTER Measurement of the exposure dose to the phantom's body for LINAC-based stereotactic radiosurgery
European Journal of Cancer Supplements. 2005;3(2):414   Crossref logo
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Optimization of treatment isocenter location in single‐isocenter LINAC‐based stereotactic radiosurgery for management of multiple brain metastases
Medical Physics. 2021;48(12):7632-7640   Crossref logo
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Technical Note: Using k‐means clustering to determine the number and position of isocenters in MLC ‐based multiple target intracranial radiosurgery
Journal of Applied Clinical Medical Physics. 2017;18(5):351-357   Crossref logo
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Effects of irradiation geometry on treatment plan optimization with linac-based radiosurgery
Medical Physics. 1996;23(8):1399-1406   Crossref logo
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EP-1667: Dose fall off patterns and the OAR effect - experience of Linac based frameless radiosurgery
Radiotherapy and Oncology. 2016;119:S778-S779   Crossref logo
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Beam shaping assembly optimization of Linac based BNCT and in-phantom depth dose distribution analysis of brain tumors for verification of a beam model
Annals of Nuclear Energy. 2011;38(2-3):404-409   Crossref logo
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Veterinary Radiology & Ultrasound. 2004;45(5):471-475   Crossref logo
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