| Literature DB >> 28969706 |
J Krayenbuehl1, M Di Martino2, M Guckenberger2, N Andratschke2.
Abstract
BACKGROUND: Whole-brain radiation therapy (WBRT) with hippocampus sparing (HS) has been investigated by the radiation oncology working group (RTOG) 0933 trial for patients with multiple brain metastases. They showed a decrease of adverse neurocognitive effects with HS WBRT compared to WBRT alone. With the development of automated treatment planning system (aTPS) in the last years, a standardization of the plan quality at a high level was achieved. The goal of this study was to evaluate the feasibility of using an aTPS for the treatment of HS WBRT and see if the RTOG 0933 dose constraints could be achieved and improved.Entities:
Keywords: Automated planning optimization; Hippocampus sparing; RTOG 0933; Volumetric modulated arc therapy; Whole brain irradiation
Mesh:
Year: 2017 PMID: 28969706 PMCID: PMC5625717 DOI: 10.1186/s13014-017-0896-7
Source DB: PubMed Journal: Radiat Oncol ISSN: 1748-717X Impact factor: 3.481
Dose volume histogram, monitor units and treatment time for hippocampus sparing whole brain irradiation
| HS WBRT | |||||
|---|---|---|---|---|---|
| Krayenbuehl et al. Mean (range) | RTOG 0933 recommendation | Gondi et al. Mean (range) | Nevelsky et al. Mean (range) | Wang et al. Mean (range) | |
| PTV D98% (Gy) | 25.8 (25.0–27.1) | ≥ 25Gy | N/A | 25.7 (25.4–25.9) | |
| PTV V95% (%) | 96.4 (95.2–97.8) | N/A | 96.9 (96.1–97.5) | N/A | 96.9 (96.0–97.5) |
| PTV D2 (Gy) | 33.5 (32.8–34.6) | ≤37.5 | N/A | 37.2 (36.9–37.6) | 35.1 (34.8–35.6) |
| PTV Dmax (Gy) | 36 (35.1–36.5) | N/A | N/A | N/A | N/A |
| PTV V30Gy (%) | 92 (92.0–92.0) | = 90 | N/A | 92.1 (90.5–93.2) | N/A |
| PTV HI | 0.24 (0.21–0.26) | N/A | 0.3 (0.26–0.34) | 0.36 (0.34–0.37) | 0.26 (0.23–0.33) |
| PTV Dmean (Gy) | 31.5 (30.9–32.2) | N/A | N/A | N/A | N/A |
| HC D100% (Gy) | 8.1 (7.8–8.5) | ≤ 9 | N/A | 8.4 (7.7–8.9) | 9.3 (8.3–10.0) |
| HC Dmean (Gy2) | 7.3 (6.0–7.9) | N/A | 7.3 (7.2–7.6) | N/A | N/A |
| HC Dmax (Gy) | 14.1 (12.0–15.3) | ≤ 16 | 15.3 (14.3–15.9) | 14.3 (13.5–15.4) | 16 (14.6–16.9) |
| Lens Dmax (Gy) | 4.6 (3.7–5.6) | N/A | 3.8 (3.1–4.3) | N/A | 5.8 (4.5–6.5) |
| Opt chiasm Dmax (Gy) | 32.9 (31.7–35.1) | ≤ 37.5 | N/A | 36.2 (33.9–37.2) | 34.7 (33.1–36.8) |
| Opt nerve Dmax (Gy) | 33.1 (32.5–33.8) | ≤ 37.5 | N/A | 32.5 (28.3–35.7) | 32.0 (23.7–36.1) |
| Lacrymal glands Dmax (Gy) | 10.8 (6.6–15.5) | ≤ 37.5 | N/A | N/A | N/A |
| MU | 1481 (1345–1550) | N/A | N/A | 1724 (1622–1914) | N/A |
| Effective working time (min) | 4.5 (4.1–5.3) | N/A | N/A | N/A | N/A |
Abbreviations: PTV: planning target volume, D98%: dose to 98% of the volume, V95%: volume covered by 95% of the prescribed dose, D2%: dose to 2% of the volume, Dmax: maximal point dose, V30Gy: volume covered by 95% of the prescribed dose, HI: homogeneity index, HC: hippocampus, MU: monitor units, Gy2: equivalent dose if the actual treatment was delivered in 2 Gy per fraction with an α/β ratio of 2 Gy, MU: monitor units
Dose constraints for plan optimization and tuning balance
| Structure | DVH parameter | Dose (Gy) | Priority |
|---|---|---|---|
| PTV_7mm | – | 30 | – |
| Hippocampus | Max dose | 14.5 | High |
| D40% | 10 | Medium | |
| D99% | 8 | High | |
| Lens | Max dose | 5 | High |
| Lacrimal gland | Max dose | 20 | Medium |
| Mean dose | 10 | Medium |
Tuning balance
Conform to Target: 30%
Dose fall-off Margin: 2.6 cm
Hot-Spot Maximum goal: 105%
Abbreviations: PTV_7mm planning target volume minus the hippocampus expanded by 7 mm in three-dimension, D99% dose to 99% of the volume, D40% dose to 40% of the volume
Fig. 1Ring structures around the hippocampus. The hippocampus is segmented in orange, the target in red and the first, second, third and fourth ring structures in light blue, blue, dark blue and violet respectively. All the ring structures have a width of 5 mm
Fig. 2Dose in close proximity to the hippocampus. Abbreviations: Dmin: Minimal dose, Dmean: Mean dose, Dmax: Maximal dose
Fig. 3Average dose volume histogram over ten patients planned with HS WBRT
Fig. 4Dose distribution in axial, coronal and sagittal view for a patient planned with HS WBRT with 10 × 3 Gy