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Comparative studies of collimator performance in DaTscan(Ioflupane 1-123)striatal SPECT

机译:DaTscan(Ioflupane 1-123)纹状体SPECT准直仪性能的比较研究

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Purpose: To determine optimal collimator and gamma camera combination for Ioflupane 1-123(DaTscan)striatal SPECT. Methods: Anthropomorphic basal ganglia phantom was used. The striatal chambers(caudate and putamen chambers)and the large chamber simulating nonspecific background activity in the remainder of the brain were filled with 1-123 with the specific activity ratio 7.7. SPECT data were acquired using triple-head gamma camera(THGC)with fan-beam low-energy ultra high-resolution(LEUR)collimators, with dual-head gamma camera(DHGC)with parallel-beam low-energy high-resolution(LEHR)collimators and medium-energy general-purpose(MEGP)collimators. Data were acquired at 159 keV with a 20% window, with 1-123 and Tc-99m flood table for THGC and DHGC, respectively. The images were reconstructed using the OSEM algorithm with resolution modeling and uniform attenuation correction, and Butterworth postfilter, 5th order and 0.64, 0.78 and 1.0 Ny for LEUR, LEHR, and MEGP, respectively. The filter parameters were chosen to optimize the balance between image noise and spatial resolution. Results: The best image quality in terms of spatial resolution and contrast was obtained with fan-beam LEUR/THGC. The MEGP/DHBC produced images with better contrast-to-noise ratio than LEHR/DHGC. The measured ratio of mean activity in striatal chambers to the remainder of the brain was comparable for all three collimator/camera combinations. Conclusions: Based on phantom DaTscan striatal SPECT, the THGC with fan-beam LEUR collimators is preferable. If DHGC is used MEGP collimators provide better image quality, as compared to LEHR. More studies including patient studies are needed to confirm best collimator/camera combination.
机译:目的:确定用于Ioflupane 1-123(DaTscan)纹状体SPECT的最佳准直仪和伽马相机组合。方法:使用拟人化的基底神经节体模。模拟其余大脑中非特异性背景活动的纹状体腔(尾状壳和壳状核腔)和大腔室充满了1-123,比活度比为7.7。 SPECT数据是使用具有扇束低能超高分辨率(LEUR)准直器的三头伽马相机(THGC)和具有平行束低能高分辨率(LEHR)的双头伽马相机(DHGC)来获取的准直仪和中能通用(MEGP)准直仪。在159 keV处以20%的窗口采集数据,分别使用THGC和DHGC的1-123和Tc-99m洪水表。使用具有分辨率建模和均匀衰减校正的OSEM算法以及LEUR,LEHR和MEGP的5阶巴特沃斯后置滤波器和0.64、0.78和1.0 Ny重建图像。选择滤波器参数以优化图像噪声和空间分辨率之间的平衡。结果:使用扇形光束LEUR / THGC获得了最佳的空间分辨率和对比度图像质量。 MEGP / DHBC产生的图像具有比LEHR / DHGC更好的对比度-噪声比。对于所有三种准直器/相机组合,在纹状体腔室中平均活动度与大脑其余部分的测量比率是可比的。结论:基于幻影DaTscan纹状体SPECT,具有扇形光束LEUR准直仪的THGC是较可取的。如果使用DHGC,与LEHR相比,MEGP准直仪可提供更好的图像质量。需要更多的研究,包括患者研究,以确认最佳的准直仪/相机组合。

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