| Literature DB >> 31364005 |
Noriyuki Kadoya1, Kota Abe2,3, Hikaru Nemoto2, Kiyokazu Sato4, Yoshiro Ieko2,5, Kengo Ito2, Suguru Dobashi6, Ken Takeda6, Keiichi Jingu2.
Abstract
We evaluated an anthropomorphic head and neck phantom with tissue heterogeneity, produced using a personal 3D printer, with quality assurance (QA), specific to patients undergoing intensity-modulated radiation therapy (IMRT). Using semi-automatic segmentation, 3D models of bone, soft tissue, and an air-filled cavity were created based on computed tomography (CT) images from patients with head and neck cancer treated with IMRT. For the 3D printer settings, polylactide was used for soft tissue with 100% infill. Bone was reproduced by pouring plaster into the cavity created by the 3D printer. The average CT values for soft tissue and bone were 13.0 ± 144.3 HU and 439.5 ± 137.0 HU, respectively, for the phantom and 12.1 ± 124.5 HU and 771.5 ± 405.3 HU, respectively, for the patient. The gamma passing rate (3%/3 mm) was 96.1% for a nine-field IMRT plan. Thus, this phantom may be used instead of a standard shape phantom for patient-specific QA in IMRT.Entities:
Keywords: 3D printer; Head and neck; Phantom; Quality assurance; Radiotherapy; Structured exercise
Year: 2019 PMID: 31364005 DOI: 10.1007/s12194-019-00527-5
Source DB: PubMed Journal: Radiol Phys Technol ISSN: 1865-0333