| Literature DB >> 25575414 |
Joakim H Jonsson1, Mohammad M Akhtari2, Magnus G Karlsson3, Adam Johansson4, Thomas Asklund5, Tufve Nyholm6.
Abstract
BACKGROUND: In this pilot study we evaluated the performance of a substitute CT (s-CT) image derived from MR data of the brain, as a basis for optimization of intensity modulated rotational therapy, final dose calculation and derivation of reference images for patient positioning.Entities:
Mesh:
Year: 2015 PMID: 25575414 PMCID: PMC4299127 DOI: 10.1186/s13014-014-0308-1
Source DB: PubMed Journal: Radiat Oncol ISSN: 1748-717X Impact factor: 3.481
Figure 1Overview of study design. Dose distributions from separate optimizations on s-CT and CT were compared in (A). Doses based on the s-CT optimization but recalculated on the CT were compared in (B).
Figure 2An overview of the five patients included in the study. The figure shows selected slices from a T2 weighted sequence. Lesions are marked with white arrows.
The optimization objectives used in the study
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|---|---|---|
| GTV | Min dose > 58 | 3000 |
| PTV | Min dose > 57 | 3000 |
| Max dose < 63 | ||
| Left lens | Max dose < 5 | 1 |
| Right lens | Max dose < 5 | 1 |
| Left opticus | Max dose < 5 | 1 |
| Right opticus | Max dose < 5 | 1 |
| Chiasma | Max dose < 50 | 1 |
| Brain stem | Max dose < 60 | 1 |
| Pituritary gland | Max dose < 40 | 1 |
| External | Surrounding dose falloff: 60 to 30 Gy in 10 mm | 1000 |
Dose comparison results
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|---|---|---|---|---|
| PTV | 0.3 (1.6) | −0.3 (0.6) | −0.1 (0.1) | 0.0 (0.0) |
| GTV | 0.8 (1.0) | 0.5 (0.6) | 0.3 (0.8) | 0.3 (0.7) |
| Brainstem | −5.9 (7.9) | −0.4 (4.0) | 1.6 (3.7) | −0.4 (1.9) |
| Pituitary gland | −0.9 (4.0) | 0.9 (3.5) | 0.7 (3.5) | 0.1 (3.4) |
| Right lens | 4.8 (8.6) | 0.4 (6.4) | 2.3 (7.8) | 2.3 (7.7) |
| Left lens | 4.6 (2.0) | −5.0 (24.8) | 5.2 (4.4) | 5.1 (4.0) |
| Right opticus | 1.2 (5.6) | 0.6 (4.7) | 1.6 ( 4.0) | 2.3 (5.0) |
| Left opticus | 4.2 (4.3) | 5.1 (11.6) | −2.2 (11.6) | 5.0 (6.3) |
| Chiasma | −2.1 (3.1) | −0.7 (3.5) | −0.7 (3.3) | −1.0 (3.6) |
Legend: Average differences between Dmax, Dmin, Dmedian and Dmean dose for plans optimized on CT and s-CT. The standard deviation calculated based on the five patients are presented within brackets.
Figure 3Anatomical CT image, dose distribution and gamma map for a representative slice of the patient with the largest observed dosimetric errors. The high dose region extends into the ethmoidal and sphenoidal sinuses.
Figure 4Lateral and anterior projections of the s-CT data (left) and CT data (right) for a representative patient. Structures deemed relevant for patient positioning are displayed using dashed red lines. The structures were delineated on the s-CT DRR and copied to the CT DRR. No obvious geometric differences between the two DRRs can be detected.
Figure 5The dice index as function of the position in the z-direction. A 400 HU threshold was used for both CT and s-CT.
Figure 6CT, s-CT and illustration of overlapping bony anatomy. The DICE index for the slice on display was 0.81.