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使用CT图像进行患者体位验证。

Patient position verification using CT images.

作者信息

Kress J, Minohara S, Endo M, Debus J, Kanai T

机构信息

Department of Radiation Oncology, Deutsches Krebsforschungszentrum, Heidelberg, Germany.

出版信息

Med Phys. 1999 Jun;26(6):941-8. doi: 10.1118/1.598486.

Abstract

The use of ions in the radiotherapy of cancer patients requires an accurate patient positioning in order to exploit its potential benefits. Using CT images as the basis for the setup verification offers the advantage of a high in-plane resolution in combination with a geometrically accurate, volumetric information. Before each fraction a single CT slice is acquired at the isocenter level after the positioning procedure. This single slice is registered to the planning CT cube using automated image registration algorithms. Thus any erreonous translation or rotation can be detected and quantified. The registration process involves the interpolation of the volumetric data, the calculation of an energy function, and the minimization of this energy function. Several data interpolation functions as well as minimization algorithms were compared. CT studies with a head phantom were performed in which defined translations and rotations were simulated by moving a motor-driven treatment chair. Different slice thicknesses and anatomical sites were studied to investigate their potential influence on the registration accuracy. The accuracy of the registration was found to be a fraction of a voxel size for suitable combinations of algorithms (typically better than 0.16 mm/deg). A significant dependancy of the registration accuracy on the CT slice thickness and the anatomical site was found (the accuracy ranges from 0.05 mm/deg to 0.16 mm/deg depending on the site). The calculation time is dependant on the used algorithms and the magnitude of the setup error. For the standard combination of algorithms as proposed by the authors (Downhill Simplex minimization with Trilinear interpolation) the typical calculation time is about 20 s for a Sun UltraSPARC processor. Taking into account the mechanical accuracy of the setup device (motor-driven chair) the registration of CT images is thus a useful tool for detecting and quantifying any significant error in the patient position.

摘要

在癌症患者的放射治疗中使用离子需要精确的患者定位,以便发挥其潜在益处。以CT图像作为设置验证的基础,具有高平面分辨率以及几何精确的体积信息的优势。在每次分次治疗前,在定位程序完成后,于等中心层面获取单个CT切片。使用自动图像配准算法将此单个切片与计划CT立方体进行配准。这样就能检测并量化任何错误的平移或旋转。配准过程涉及体积数据的插值、能量函数的计算以及该能量函数的最小化。比较了几种数据插值函数以及最小化算法。使用头部体模进行了CT研究,通过移动电动治疗椅模拟定义的平移和旋转。研究了不同的切片厚度和解剖部位,以调查它们对配准精度的潜在影响。对于合适的算法组合,发现配准精度为体素大小的一部分(通常优于0.16毫米/度)。发现配准精度显著依赖于CT切片厚度和解剖部位(精度范围根据部位从0.05毫米/度到0.16毫米/度)。计算时间取决于所使用的算法和设置误差的大小。对于作者提出的标准算法组合(带三线性插值的下山单纯形最小化),对于Sun UltraSPARC处理器,典型的计算时间约为20秒。考虑到设置设备(电动椅)的机械精度,CT图像配准因此是检测和量化患者位置中任何显著误差的有用工具。

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