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使用磁共振成像(MRI)进行聚合物凝胶测量时的噪声。

Noise in polymer gel measurements using MRI.

作者信息

Low D A, Markman J, Dempsey J F, Mutic S, Oldham M, Venkatesan R, Haacke E M, Purdy J A

机构信息

Mallinckrodt Institute of Radiology, Division of Radiation Oncology, St. Louis, Missouri 63110, USA.

出版信息

Med Phys. 2000 Aug;27(8):1814-7. doi: 10.1118/1.1287284.

Abstract

With the development of conformal radiotherapy, particularly intensity modulated radiation therapy (IMRT), there is a clear need for multidimensional dosimeters. A commercial polymerizing gel, BANG-2 gel (MGS Research, Inc., Guilford, CT), has recently been developed that shows potential as a multi-dimensional dosimeter. This study investigates and characterizes the noise and magnetic resonance (MR) artifacts from imaging BANG-2 gels. Seven cylindrical vials (4 cm diam, 20 cm length) were irradiated end on in a water bath and read using MRI (B0=1.5 T, TE=20 ms/100 ms, TR=3000 ms). The gel calibration compared the measured depth-dose distributions in water against the change in solvent-proton R2 relaxivity of the gel. A larger vial (13 cm diam, 14 cm length) was also irradiated to test the calibration accuracy in a vial of sufficient volume for dose distribution measurements. The calibration curve proved accurate to within 1.3% in determining the depth dose measured by the larger vial. An investigation of the voxel-to-voxel (IXIX 3 mm3) noise and sensitivity response curve showed that the voxel-to-voxel variation dominated the dose measurement uncertainty. The voxel-to-voxel standard deviation ranged from 0.2 Gy for the unirradiated gel to 0.7 Gy at 20 Gy. Slice-to-slice R2 magnitude deviations were also observed corresponding to 0.2 Gy. These variations limited the overall accuracy of the gel dose measurements and warrant an investigation of more accurate MR readout sequences.

摘要

随着适形放射治疗的发展,尤其是调强放射治疗(IMRT)的发展,对多维剂量计的需求日益明显。最近开发了一种商业聚合凝胶BANG-2凝胶(MGS Research公司,康涅狄格州吉尔福德),它显示出作为多维剂量计的潜力。本研究调查并表征了对BANG-2凝胶成像时的噪声和磁共振(MR)伪影。七个圆柱形小瓶(直径4厘米,长度20厘米)在水浴中进行端对端照射,并使用MRI(B0 = 1.5 T,TE = 20 ms/100 ms,TR = 3000 ms)读取数据。凝胶校准将水中测量的深度剂量分布与凝胶中溶剂质子R2弛豫率的变化进行了比较。还对一个更大的小瓶(直径13厘米,长度14厘米)进行了照射,以测试在足够体积的小瓶中进行剂量分布测量时校准的准确性。校准曲线在确定较大小瓶测量的深度剂量时,证明其准确性在1.3%以内。对体素间(IXIX 3立方毫米)噪声和灵敏度响应曲线的研究表明,体素间变化主导了剂量测量的不确定性。体素间标准偏差范围从未照射凝胶的0.2 Gy到20 Gy时的0.7 Gy。还观察到层间R2幅度偏差对应于0.2 Gy。这些变化限制了凝胶剂量测量的整体准确性,因此有必要研究更准确的MR读出序列。

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