METHODS
Patients diagnosed with BC were scanned using PET-CT during 2013?2015. Twenty patients who had
undergone OPS but who did not have metastasis underwent CT prior to radiotherapy. Their preoperative
images were fused with planning CT images. The tumor volume (CTVboost-pet), as determined
from the preoperative PET-CT images, was contoured. Next, CTVboost-clips was determined using
surgical clips. Geometric relationships between these two volumes were statistically compared.
RESULTS
Planar projections of CTVboost-pet and CTVboost-clips were evaluated. Displacements between CTVboost-
pet and CTVboost-clips in the axial (XZ) and coronal (XY) planes were 1.17 cm (min?max: 0.03?
3.64 cm) and 1.67 cm (min?max: 0.38?4.14 cm), respectively, and were statistically significant (p<0.001),
whereas the displacement in the sagittal (YZ) plane was 1.07 cm (min?max: 0.04?4.45 cm) and was not
significant (p>0.7).
CONCLUSION
Preoperative imaging alone was not reliable when determining the BV in patients who had undergone OPS and had
no clips. Large PTV margins can be an option to overcome this issue. Surgical clips need to be inserted during OPS.
Keywords: Boost volume; Breast cancer; Oncoplastic surgery; PET-CT; Radiotherapy
In recent years, oncoplastic surgery (OPS) for breast
cancer to obtain cosmetic reasons is being increasingly
performed. Techniques used during these operations
require tumors to be removed with larger margins; the
tumor cavity is shifted to a different quadrant using
various flap sliding methods.[
Surgical clips, when implanted during surgery, and
preoperative images (when surgical clips are not present)
are used to determine the volume for the abovementioned
additional boost.[
In this prospective study, the geometries of BVs determined
using surgical clips and those predicted using
preoperative PET-CT images were compared. Our aim was to question the suitability of using preoperative
images to determine the BV of patients who have
undergone OPS for breast cancer.
Planning CT and preoperative PET-CT images were superposed using the rigid fusion method based on "user origins," and breast tissue was added to the image using the deformable fusion method. As the final step, the three-dimensional common point was chosen as the origin and the x-, y-, and z-axes for both images were accordingly assigned.
In the first step, the tumor volume, as determined
from the preoperative PET-CT images, was contoured and pathological surgical borders were added; this volume
was designated as CTVboost-pet in the following
analysis. In the second step, surgical clips (four each)
were marked as a volume CTVboost-clips (Fig.
The geometric shift calculated for all three axes was then analyzed using Student"s t-test.
Number and placement technique during OPS of
clips has been defined.[
In a study assessing BVs obtained from preoperative
and planning tomographies, the authors have reported
that a minimum of three clips should be placed during
OPS for accurate postoperative BV determination.[
Clips have to be implanted in a certain order to
facilitate BV generation.[
Rigid fusion of registries is used where anatomical
changes are limited or for superposing fixed tissue images.
In cases where the tissue is removed, relocated,
and/or altered due to surgical or treatment procedures
or positional differences, deformable fusion techniques
produce more reliable and effective results. This technique
also provides better CTV definitions in cases
where external contours are altered.[
Schaverian et al published a review on this topic
in 2013 and evaluated a total of 24 studies regarding
the determination of BV during OPS. It was reported
that clips were used to determine the BV in 9 of these
studies, but the basis for volume determination was not
mentioned in the other studies. Their concern was in
using only surgical clips for volume determination after
OPS where the primary tumor volume is displaced.
They emphasized the fact that OPS is more frequently
performed on young patients with large tumors and
the importance of coordination between the surgeon
and radiation oncologist to obtain the most effective
outcomes for boost treatment, particularly in this patient
segment who will benefit the most.[
These results suggest that the use of preoperative tumor volume, which is the current basis for treatment, is not very accurate for determining the BV in patients who have undergone OPS. Objective criteria and methods need to be established for guidance. Until a golden standard is established through research and validation, the BV should always be determined taking all available information into account and larger PTV margins might be suitable for patients who have undergone OPS. Additionally, for patients who have undergone OPS without surgical clips on the tumor bed, using PTV margins of more than 1 cm may be reliable for overcoming this issue.
Disclosures Statement
The authors declare no conflicts of interest.
Acknowledgments: The authors have no fundings or
conflicts of interest to disclose.
Ethics Committee Approval: This study was conducted inaccordance
with local ethical rules.
Peer-review: Externally peer-reviewed.
Conflict of Interest: None declared.
Authorship contributions: Concept - A. Y. A; Design - A.
Y. A; Supervision - T. A; Materials - A. Y. A, H. Ç, T. Ç;
Data collection &/or processing - A. Y. A, T. Ç; Analysis and/
or interpretation - M. D, M. Ç, H. A, E. K, N. K; Literature
search - A. Y. A; Writing - A. Y. A, M. D, M. Ç; Critical review
- T. A.