DocumentCode :
2813771
Title :
A technique that facilitates an accurate comparison between stereotactic and IMRT plans
Author :
Dogan, Nesrin ; Leybovich, Leonid B. ; Sethi, Anil ; Meian, E. ; Krasin, Matthew J. ; Emani, B.
Author_Institution :
Med. Center, Loyola Univ., Maywood, IL, USA
Volume :
2
fYear :
2000
fDate :
2000
Firstpage :
1542
Abstract :
A non-invasive localization and immobilization method that facilitates tomographic intensity-modulated radiation treatment (IMRT) of intracranial tumors with accuracy comparable to that achieved with invasive methods were developed. This method combines coordinate systems of Linac based-radiosurgery (RS), stereotactic radiotherapy (SRT), and tomographic IMRT treatment planning systems (TPSs). In this method, stereotactic localization frame (BRW-LF) with the NOMOS CT pointer attached to its top is used for CT scanning. The patient is scanned from the tip of the CT pointer to the bottom ring of the localization frame. Thus, CT slices contain fiducial marks for RS, SRT, and tomographic IMRT. Contouring of patient anatomy and target(s) is done on imaging system that can communicate with both RS and NOMOS-IMRT TPSs. Treatment planning is concurrently done for both stereotactic and IMRT methods using the same study set. This provides more accurate comparison of competing treatment plans. The same patient immobilization system is used for both treatment techniques. For IMRT patient localization, a modified Target Box replaced the original NOMOS Target Box. This Target Box is attached to the Linac Target Localization Frame when a patient is in a treatment position. For fractionated IMRT treatments, the accuracy of frame repositioning is checked before every fraction using the stereotactic Depth Helmet. This method of immobilization and localization method was clinically tested. Based on the comparison of developed SRT and IMRT treatment plans, the IMRT method was selected. Depth Helmet measurements verified that an accurate (~1 mm) repositioning of the patient was achieved
Keywords :
computerised tomography; dosimetry; intensity modulation; planning; radiation therapy; CT scanning; CT slices; IMRT; IMRT plan; Linac Target Localization Frame; Linac based-radiosurgery; NOMOS CT pointer; accurate comparison; bottom ring; coordinate systems; fiducial marks; fractionated IMRT treatment; frame repositioning; immobilization method; intracranial tumors wi; invasive methods; localization frame; modified Target Box; noninvasive localization method; patient anatomy contouring; patient repositioning; stereotactic Depth Helmet; stereotactic localization frame; stereotactic plan; stereotactic radiotherapy; tomographic IMRT treatment planning systems; tomographic intensity-modulated radiation treatment; Anatomy; Biomedical imaging; Computed tomography; Fasteners; Fractionation; Linear particle accelerator; Medical treatment; Neoplasms; Skull; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society, 2000. Proceedings of the 22nd Annual International Conference of the IEEE
Conference_Location :
Chicago, IL
ISSN :
1094-687X
Print_ISBN :
0-7803-6465-1
Type :
conf
DOI :
10.1109/IEMBS.2000.898035
Filename :
898035
Link To Document :
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