Characterization of system-related geometric distortions in MR images employed in Gamma Knife radiosurgery applications
- 1. Medical Physics Laboratory, Medical School, National and Kapodistrian University of Athens, 75 Mikras Asias, 115 27 Athens (Greece)
- 2. Medical Physics Laboratory, Medical School, Democritus University of Thrace, 2nd building of Preclinical Section, University Campus, 68100 Alexandroupolis (Greece)
- 3. Gamma Knife Department, Hygeia Hospital, Kifisias Avenue and 4 Erythrou Stavrou, Marousi, 151 23 Athens (Greece)
Description
This work provides characterization of system-related geometric distortions present in MRIs used in Gamma Knife (GK) stereotactic radiosurgery (SRS) treatment planning. A custom-made phantom, compatible with the Leksell stereotactic frame model G and encompassing 947 control points (CPs), was utilized. MR images were obtained with and without the frame, thus allowing discrimination of frame-induced distortions. In the absence of the frame and following compensation for field inhomogeneities, measured average CP disposition owing to gradient nonlinearities was 0.53 mm. In presence of the frame, contrarily, detected distortion was greatly increased (up to about 5 mm) in the vicinity of the frame base due to eddy currents induced in the closed loop of its aluminum material. Frame-related distortion was obliterated at approximately 90 mm from the frame base. Although the region with the maximum observed distortion may not lie within the GK treatable volume, the presence of the frame results in distortion of the order of 1.5 mm at a 7 cm distance from the center of the Leksell space. Additionally, severe distortions observed outside the treatable volume could possibly impinge on the delivery accuracy mainly by adversely affecting the registration process (e.g. the position of the lower part of the N-shaped fiducials used to define the stereotactic space may be miss-registered). Images acquired with a modified version of the frame developed by replacing its front side with an acrylic bar, thus interrupting the closed aluminum loop and reducing the induced eddy currents, were shown to benefit from relatively reduced distortion. System-related distortion was also identified in patient MR images. Using corresponding CT angiography images as a reference, an offset of 1.1 mm was detected for two vessels lying in close proximity to the frame base, while excellent spatial agreement was observed for a vessel far apart from the frame base. (paper)
Availability note (English)
Available from http://dx.doi.org/10.1088/0031-9155/61/19/6993Additional details
Identifiers
Publishing Information
- Journal Title
- Physics in Medicine and Biology
- Journal Volume
- 61
- Journal Issue
- 19
- Journal Page Range
- p. 6993-7011
- ISSN
- 0031-9155
- CODEN
- PHMBA7
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 49094730
- Subject category
- S62: RADIOLOGY AND NUCLEAR MEDICINE; S61: RADIATION PROTECTION AND DOSIMETRY;
- Descriptors DEI
- ACCURACY; ALUMINIUM; APPROXIMATIONS; BIOMEDICAL RADIOGRAPHY; BLOOD VESSELS; COMPUTERIZED TOMOGRAPHY; EDDY CURRENTS; IMAGES; NMR IMAGING; PATIENTS; PHANTOMS; PLANNING; RADIOTHERAPY; SURGERY
- Descriptors DEC
- BODY; CALCULATION METHODS; CARDIOVASCULAR SYSTEM; CURRENTS; DIAGNOSTIC TECHNIQUES; ELECTRIC CURRENTS; ELEMENTS; MEDICINE; METALS; MOCKUP; NUCLEAR MEDICINE; ORGANS; RADIOLOGY; STRUCTURAL MODELS; THERAPY; TOMOGRAPHY