| Literature DB >> 24020432 |
Mika Kapanen1, Marko Laaksomaa, Tapio Tulijoki, Seppo Peltola, Tuija Wigren, Simo Hyödynmaa, Pirkko-Liisa Kellokumpu-Lehtinen.
Abstract
BACKGROUND: We estimated sufficient setup margins for head-and-neck cancer (HNC) radiotherapy (RT) when 2D kV images are utilized for routine patient setup verification. As another goal we estimated a threshold for the displacements of the most important bony landmarks related to the target volumes requiring immediate attention.Entities:
Mesh:
Year: 2013 PMID: 24020432 PMCID: PMC3851546 DOI: 10.1186/1748-717X-8-212
Source DB: PubMed Journal: Radiat Oncol ISSN: 1748-717X Impact factor: 3.481
Figure 1Selection of bony landmarks related to the target volumes in HNC RT. a) Selection of four subregions (white boxes) to measure the combined effect of rotation, mutual movement and shape changes of the bony landmarks. Image matching for these areas was based on well defined structures (indicated in black) in the vertebrae C1-2 and C5-7, the mandible and the occiput bone. b) Example of large and small CTV volumes in tonsilla carcinoma (outer and inner lines) with prescribed doses of 54 and 60 Gy, respectively. The lower dose volumes may extend to all four subregions while the higher dose volumes (receiving 60 Gy or more) typically covers only one or two of the subregions.
Error components for the presented setup correction protocol in different directions (mm)
| Rigid target1 | 0.8 (1.1) | 0.9 (1.3) | 0.7 (0.7) | 1.7 (1.3) | 1.6 (1.6) | 1.6 (1.2) |
| Observer variation | 0.9 (1.0) | 0.8 (1.0) | 0.9 (0.9) | 1.4 (1.4) | 1.5 (1.6) | 1.6 (1.6) |
| C1-22 | 2.0 (1.6) | 1.0 (1.4) | 1.6 (1.3) | 1.8 (1.4) | 1.3 (1.6) | 1.6 (1.5) |
| C5-72 | 1.5 (1.8) | 1.0 (1.5) | 1.2 (1.2) | 1.4 (1.6) | 1.8 (1.9) | 1.7 (1.6) |
| Mandible2 | 2.9 (1.5) | 2.7 (1.5) | 1.6 (1.3) | 2.3 (1.7) | 2.4 (1.9) | 1.9 (1.6) |
| Occiput bone2 | 2.4 (2.2) | 1.5 (2.0) | - | 2.3 (1.9) | 1.9 (1.7) | - |
1Errors of the reference location for weekly IGRT without observer related variation.
2Errors with daily imaging including observer errors.
The results are given for the two matching principles as MID_PTV (MIN_MAX).
Figure 23D setup errors for the four subregions. The black bars present the results of the MID_PTV match, while the white bars demonstrate the results of the MIN_MAX match. The errors present daily imaging and include observer variation. Note that 2D errors are given for the occiput bone.
Systematic change in distance between the subregions due to rotation and shape changes of the bony landmarks
| C1-2 and C5-7 | Rotation of the vertebrae | 3.1 mm | 1.2 mm | 2.3 mm |
| ρ = −0.34 (−0.21) | ρ = 0.55 (0.82) | ρ = −0.14 (−0.06) | ||
| C5-7 and occiput bone | Rotation of patient | 3.4 mm | 1.5 mm | - |
| ρ = −0.34 (−0.26) | ρ = 0.34 (0.63) | | ||
| C1-2 and occiput bone | Orientation of vertebrae and skull base | 1.9 mm | 1.3 mm | - |
| ρ = 0.69 (0.60) | ρ = 0.55 (0.66) | | ||
| Mandible and occiput bone | Nod movement of the head | 2.6 mm | 4.0 mm | - |
| ρ = 0.42 (0.37) | ρ = −0.27 (−0.27) | | ||
| Mandible and C1-2 | Independent movement of mandible | 2.2 mm | 2.9 mm | 1.5 mm |
| ρ = 0.61 (0.30) | ρ = 0.12 (−0.22) | ρ = 0.62 (0.57) |
Also correlation coefficients (ρ) for the position errors are given for MID_PTV and (MIN_MAX) image matches.
Required setup margins (mm) for the presented weekly IGRT protocol in different directions without an action level for position errors of the subregions
| Rigid target1 | 3.1 (0) | 3.3 (0) | 2.7 (0) | 3.1 (0) | 3.84 (04) | 4.44 (04) | 2.74 (04) | 3.64 (04) |
| Rigid target2 | 4.5 (3.2) | 4.5 (3.1) | 4.4 (3.4) | 4.5 (3.2) | 5.04 (3.34) | 5.44 (3.54) | 4.34 (3.44) | 4.94 (3.44) |
| C1-22 | 7.0 (6.2) | 4.8 (3.4) | 5.8 (5.1) | 5.9 (4.9) | 6.4 (5.1) | 6.4 (4.6) | 5.1 (4.3) | 6.0 (4.7) |
| C5-72 | 5.7 (4.7) | 5.0 (3.8) | 4.9 (4.1) | 5.2 (4.2) | 6.8 (5.6) | 6.8 (5.1) | 4.9 (4.0) | 6.1 (4.9) |
| Mandible2 | 9.6 (8.9) | 9.2 (8.5) | 6.1 (5.3) | 8.3 (7.6) | 6.3 (5.0) | 6.9 (5.2) | 5.1 (4.3) | 6.1 (4.8) |
| Occiput bone2 | 8.3 (7.6) | 6.1 (5.1) | - | 7.23 (6.33) | 7.8 (7.3) | 7.6 (6.1) | - | 7.73 (6.73) |
1Without observer errors, 2with observer errors, 32D margins for the occiput bone, 4the MIN_MAX match shifted the reference location of the target by 2.5 ± 1.2 mm (3D mean ± SD) not included in the margins.
The results for daily IGRT are given in parenthesis.
Required setup margins (mm) for the presented weekly IGRT protocol in different directions with the action level of 4 mm for position errors of the subregions
| C1-21 | 6.0 (5.1) | 4.6 (3.1) | 5.5 (4.7) | 5.4 (4.3) | 6.0 (4.7) | 5.7 (3.6) | 5.0 (4.2) | 5.6 (4.2) |
| C5-71 | 5.4 (4.3) | 5.0 (3.7) | 4.9 (4.1) | 5.1 (4.0) | 6.5 (5.3) | 5.9 (3.8) | 4.7 (3.8) | 5.7 (4.3) |
| Mandible1 | 6.1 (5.2) | 5.8 (4.7) | 5.2 (4.4) | 5.7 (4.8) | 5.9 (4.5) | 6.3 (4.5) | 5.1 (4.3) | 5.7 (4.4) |
| Occiput bone1 | 7.0 (6.2) | 5.3 (4.1) | - | 6.12 (5.22) | 6.6 (5.5) | 6.1 (4.2) | - | 6.42 (4.82) |
1includes observer errors, 22D margins for the occiput bone.
The results for daily IGRT are given in parenthesis.