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Tissue segmentation‐based electron density mapping for MR‐only radiotherapy treatment planning of brain using conventional T1‐weighted MR images
- Source :
- Journal of Applied Clinical Medical Physics
- Publication Year :
- 2019
- Publisher :
- Wiley, 2019.
-
Abstract
- Purpose Magnetic resonance imaging (MRI) is the primary modality for targeting brain tumors in radiotherapy treatment planning (RTP). MRI is not directly used for dose calculation since image voxel intensities of MRI are not associated with EDs of tissues as those of computed tomography (CT). The purpose of the present study is to develop and evaluate a tissue segmentation‐based method to generate a synthetic‐CT (sCT) by mapping EDs to corresponding tissues using only T1‐weighted MR images for MR‐only RTP. Methods Air regions were contoured in several slices. Then, air, bone, brain, cerebrospinal fluid (CSF), and other soft tissues were automatically segmented with an in‐house algorithm based on edge detection and anatomical information and relative intensity distribution. The intensities of voxels in each segmented tissue were mapped into their CT number range to generate a sCT. Twenty‐five stereotactic radiosurgery and stereotactic ablative radiotherapy patients’ T1‐weighted MRI and coregistered CT images from two centers were retrospectively evaluated. The CT was used as ground truth. Distances between bone contours of the external skull of sCT and CT were measured. The mean error (ME) and mean absolute error (MAE) of electron density represented by standardized CT number was calculated in HU. Results The average distance between the contour of the external skull in sCT and the contour in coregistered CT is 1.0 ± 0.2 mm (mean ± 1SD). The ME and MAE differences for air, soft tissue and whole body voxels within external body contours are −4 HU/24 HU, 2 HU/26 HU, and −2 HU/125 HU, respectively. Conclusions A MR‐sCT generation technique was developed based on tissue segmentation and voxel‐based tissue ED mapping. The generated sCT is comparable to real CT in terms of anatomical position of tissues and similarity to the ED assignment. This method provides a feasible method to generate sCT for MR‐only radiotherapy treatment planning.
- Subjects :
- Organs at Risk
brain
medicine.medical_treatment
Radiosurgery
computer.software_genre
Edge detection
87.57.nt – Edge Enhancement
030218 nuclear medicine & medical imaging
03 medical and health sciences
Standard anatomical position
0302 clinical medicine
87.57.uq – Dosimetry
Voxel
87.57.q–Ct
MR synthetic CT
Image Processing, Computer-Assisted
medicine
Radiation Oncology Physics
Humans
MR pseudo CT
Radiology, Nuclear Medicine and imaging
Instrumentation
87.61.-c – MRI
Radiation
medicine.diagnostic_test
Brain Neoplasms
business.industry
Radiotherapy Planning, Computer-Assisted
Soft tissue
Radiotherapy Dosage
Magnetic resonance imaging
87.57.nm – Segmentation
Radiotherapy treatment planning
Magnetic Resonance Imaging
87.53.Tf – Treatment Planning
Radiation therapy
030220 oncology & carcinogenesis
87.57.N – image analysis
MR‐only treatment planning
Nuclear medicine
business
computer
MR‐linac
Algorithms
Subjects
Details
- ISSN :
- 15269914
- Volume :
- 20
- Database :
- OpenAIRE
- Journal :
- Journal of Applied Clinical Medical Physics
- Accession number :
- edsair.doi.dedup.....e74b70d472be075c04c066b33d41c5ca
- Full Text :
- https://doi.org/10.1002/acm2.12654