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Magnetic-Resonance-Imaging Based Polymer Gel Dosimetry: Methodology, Spatial Resolution, Applications

机译:基于磁共振成像的聚合物凝胶剂量法:方法论,空间分辨率,应用

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Modern radiation techniques aim on improved 3-dimensional (3D) spatial selectivity of the dose application sparing dose from organs-at-risk (e.g. 1MRT with micro-multi-leaf collimatioi), y-knife-, Brachy- and heavy-ion therapy). The corresponding 3D-dose distributions exhibit high dose gradients above 4 Gy/mm, which are difficult to be investigated using standard single-point dosimetric detectors as ionization chambers, which cover a minimum size of few mm.Parameter selective Magnetic Resonance (MR) based dosimetry (MRPD) represents a 3D detection method, capable of high spatial resolution. Moreover tissue equivalence of the detector material (a polymer-gel) is offered. This review is focused on polymer-gels using the polymerization of monomers during ionizing radiation. The change in the mobility of the detected molecules is detected via parameter-selective (T2) MR-imaging.A manufacturing recipe for the actually used "normoxic" polymer gels, which allow simple processing at normal oxygen pressure in atmosphere, is listed. Data on sensitivity, precision, accuracy, spatial resolution and sensitivity to different radiation quality (i.e. energy, particle type) is presented.Dosimetric images for two highly-spatially selective radiation applications (i.e. a 2 mm electron-beam and a mixed 11 mm y-knife collimation) from our lab demonstrate the capabilities of high-resolution MRPD at voxel size of 0,2 x 0,2 x 1 mm3. Finally limitations of MRPD for actual clinical applications are discussed.
机译:现代放射技术的目标是提高剂量应用的三维(3D)空间选择性,以减少来自高风险器官的剂量(例如,具有微多叶准直的1MRT),Y刀,近距离和重离子疗法)。相应的3D剂量分布显示出高于4 Gy / mm的高剂量梯度,很难使用标准的单点剂量检测器作为电离室来进行研究,该检测器的最小尺寸为几mm。 基于参数选择性磁共振(MR)的剂量测定(MRPD)表示3D检测方法,能够实现高空间分辨率。此外,提供了检测器材料(聚合物凝胶)的组织等效性。这篇综述集中于在电离辐射过程中使用单体聚合的聚合物凝胶。通过参数选择性(T2)MR成像可检测出被检测分子的迁移率变化。 列出了实际使用的“常氧”聚合物凝胶的制造配方,该配方允许在大气中的正常氧气压力下进行简单处理。给出了有关灵敏度,精度,准确度,空间分辨率和对不同辐射质量(即能量,粒子类型)的敏感性的数据。 来自我们实验室的两种高空间选择性辐射应用(即2毫米电子束和11毫米y刀混合准直)的剂量学图像证明了在0.2 x 0.2体素尺寸下高分辨率MRPD的功能x 1毫米3。最后,讨论了MRPD在实际临床应用中的局限性。

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