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首页> 外文期刊>Investigative radiology >Diffusion tensor imaging in a human PET/MR hybrid system.
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Diffusion tensor imaging in a human PET/MR hybrid system.

机译:人类PET / MR混合系统中的扩散张量成像。

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PURPOSE: The aim of this study was to test and demonstrate the feasibility of diffusion tensor imaging (DTI) with a hybrid positron emission tomography (PET)/magnetic resonance imaging system for simultaneous PET and magnetic resonance (MR) data acquisition. MATERIALS AND METHODS: All measurements were performed with a prototype hybrid PET/MR scanner dedicated for brain and head imaging. The PET scanner, which is inserted into a conventional 3.0-Tesla high field MR imager equipped with a transmit/receive birdcage head coil, consists of 192 block detectors with a matrix of 12 x 12 lutetium oxyorthosilicate scintillation crystals combined with MR-compatible 3 x 3 avalanche photodiode arrays. In 7 volunteers and 4 patients with brain tumors, DTI was performed during simultaneous PET data readout applying a diffusion weighted echo planar sequence (12 noncollinear directions, echo time (TE)/repetition time (TR) 98 ms/5300 ms, b-value 800 s/mm). Image quality and accuracy of DTI were assessed in comparison with DTI images acquired after removal of the PET insert. RESULTS: The diffusion images showed good image quality in all volunteers regardless of simultaneous PET data readout or after removal of the PET scanner; however, significantly (P < 0.01) stronger rim artifacts were found in fractional anisotropy images computed from DTI images recorded during simultaneous PET acquisition, demonstrating higher eddy-current effects. In region of interest analysis, no notable differences were found in the computation of the direction of the principal eigenvector (P > 0.05) and fractional anisotropy values (P > 0.05). In the assessment of pathologies, in all 4 patients PET and DTI provided important clinical information in addition to conventional magnetic resonance imaging. CONCLUSION: Diffusion tensor imaging may be combined with simultaneous PET data acquisition, offering additional important morphologic and functional information for treatment planning in patients with brain tumors.
机译:目的:这项研究的目的是测试和证明扩散张量成像(DTI)与混合正电子发射断层扫描(PET)/磁共振成像系统同时进行PET和磁共振(MR)数据采集的可行性。材料与方法:所有测量均使用专门用于脑部和头部成像的混合PET / MR原型扫描仪进行。 PET扫描仪被插入配备了发射/接收鸟笼头线圈的传统3.0-Tesla高场MR成像仪中,由192个块探测器组成,矩阵中包含12 x 12氧化正硅酸lut闪烁晶体和MR兼容3 x 3个雪崩光电二极管阵列。在7名志愿者和4名脑肿瘤患者中,在同时进行PET数据读取的过程中,采用扩散加权回波平面序列(12个非共线方向,回波时间(TE)/重复时间(TR)98 ms / 5300 ms,b值)进行DTI 800秒/毫米)。与去除PET插入物后获得的DTI图像相比,评估了DTI的图像质量和准确性。结果:无论同时读取PET数据还是取出PET扫描仪,扩散图像在所有志愿者中均显示出良好的图像质量。然而,从同时进行PET采集时记录的DTI图像计算出的分数各向异性图像中,发现明显更强的(P <0.01)边缘伪影,表明涡流效应更高。在感兴趣区域分析中,在主特征向量方向(P> 0.05)和分数各向异性值(P> 0.05)的计算中没有发现显着差异。在病理评估中,除了常规的磁共振成像外,在所有4位患者中,PET和DTI还提供了重要的临床信息。结论:扩散张量成像可与同时的PET数据采集相结合,为脑肿瘤患者的治疗计划提供其他重要的形态学和功能信息。

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