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使用虚拟体模评估治疗计划系统进行磁共振图像失真校正的能力。

Use of a virtual phantom to assess the capability of a treatment planning system to perform magnetic resonance image distortion correction.

作者信息

Diaz Moreno Rogelio Manuel, Nuñez Gonzalo, Venencia C Daniel, Isoardi Roberto A, Almada María José

机构信息

Physics Department, Instituto Zunino, Obispo Oro 423, X5000BFI, Córdoba, Argentina.

, 9 de julio 2015, 10, X5003CQI, Córdoba, Argentina.

出版信息

Phys Eng Sci Med. 2025 Mar;48(1):317-327. doi: 10.1007/s13246-024-01515-9. Epub 2025 Jan 6.

Abstract

Treatment Planning Systems (TPS) offer algorithms for distortion correction (DC) of Magnetic Resonance (MR) images, whose performances demand proper evaluation. This work develops a procedure using a virtual phantom to quantitatively assess a TPS DC algorithm. Variations of the digital Brainweb MR study were created by introducing known distortions and Control Points (CPs). A synthetic Computed Tomography (sCT) study was created based upon the MR study. Elements TPS (Brainlab, Munich, Germany) was used to apply DC to the MR images, choosing the sCT as the gold standard. Deviations in the CP locations between the original images, the distorted images and the corrected images were calculated. Structural Similarity Metric (SSIM) tests were applied for further assessment of image corrections. The introduced distortion deviated the CP locations by a median (range) value of 1.8 (0.2-4.4) mm. After DC was applied, these values were reduced to 0.6 (0.1-1.9) mm. Correction of the original image deviated the CP locations by 0.2 (0-1.1) mm. The SSIM comparisons between the original and the distorted images yielded values of 0.23 and 0.67 before and after DC, respectively. The SSIM comparison of the original study, before and after DC, yielded a value of 0.97. The proposed methodology using a virtual phantom with CPs can be used to assess a TPS DC algorithm. Elements TPS effectively reduced MR distorsions below radiosurgery tolerances.

摘要

治疗计划系统(TPS)提供了用于磁共振(MR)图像失真校正(DC)的算法,其性能需要进行适当评估。这项工作开发了一种使用虚拟体模来定量评估TPS DC算法的程序。通过引入已知失真和控制点(CP)来创建数字Brainweb MR研究的变体。基于MR研究创建了一个合成计算机断层扫描(sCT)研究。使用Elements TPS(德国慕尼黑的Brainlab公司)对MR图像应用DC,选择sCT作为金标准。计算原始图像、失真图像和校正图像之间CP位置的偏差。应用结构相似性度量(SSIM)测试来进一步评估图像校正。引入的失真使CP位置的中位数(范围)值偏差1.8(0.2 - 4.4)mm。应用DC后,这些值降至0.6(0.1 - 1.9)mm。原始图像校正使CP位置偏差0.2(0 - 1.1)mm。原始图像和失真图像之间的SSIM比较在DC前后分别产生0.23和0.67的值。原始研究在DC前后的SSIM比较产生0.97的值。所提出的使用带有CP的虚拟体模的方法可用于评估TPS DC算法。Elements TPS有效地将MR失真降低到放射外科手术的耐受范围内。

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