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首页> 外文期刊>IEEE Transactions on Nuclear Science >Estimation of 6-Degree-of-Freedom (6-DOF) Rigid-Body Patient Motion From Projection Data by the Principal-Axes Method in Iterative Reconstruction
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Estimation of 6-Degree-of-Freedom (6-DOF) Rigid-Body Patient Motion From Projection Data by the Principal-Axes Method in Iterative Reconstruction

机译:迭代重构中基于委托-轴方法的投影数据估计六自由度(6-DOF)刚体患者运动

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摘要

We developed a unique method for estimating and compensating rigid-body translations and rotations from scatter-and-attenuation-compensated projection data in iterative reconstruction when multiple projection angles are acquired at the same time. During reconstruction, both the non-attenuated and attenuated line-integrals are calculated. Their ratios are then multiplied to the scatter-corrected projection data to estimate scatter-and-attenuation-compensated projection data. At the end of each iteration, the sets of compensated projection data for the angles acquired at the same time are employed to calculate the center-of-mass and the inertia tensor, which are used to estimate the location and orientation of the imaging object by the principle-axes method. The estimated motion is applied in the next iteration to reposition the estimated slices and attenuation map in the projector and back-projector to match the pose of the patient at time the projections were acquired. To evaluate our method, we simulated an acquisition of the MCAT phantom with a 3-head SPECT system and imaged the Data Spectrum anthropomorphic phantom on a 3-head IRIX SPECT system. In simulations the phantom translated and rotated by the same amount 9 times. A numerical projector modeling the motion, attenuation, and distance-dependent blurring was used to generate the projection data. Poisson noise was added and 30 noise-realizations were generated. In the experiment with the anthropomorphic phantom, four 360-degree acquisitions were performed with the phantom translated or rotated beforehand. A motion-present dataset was made by mixing the 4 acquisitions. For both the MCAT phantom simulations and anthropomorphic phantom experiment, the motion-present data were reconstructed with 10 iterations of the OSEM which estimates and corrects the motion as described above. Our method obtained visually artifact-free reconstructions, while the reconstruction with no motion correction showed severe artifacts.- The motion estimated from our method was in good agreement with the motion simulated. We determined in MCAT simulated and actual phantom acquisitions that our data-driven approach was effective reducing motion artifacts.
机译:我们开发了一种独特的方法,该方法可以在迭代重建中同时获取多个投影角度时,根据散射和衰减补偿后的投影数据估算和补偿刚体平移和旋转。在重建期间,将计算非衰减和衰减线积分。然后将它们的比率乘以散射校正后的投影数据,以估计散射和衰减补偿后的投影数据。在每次迭代结束时,针对同一时间获取的角度的补偿投影数据集将用于计算质量中心和惯性张量,用于估计成像对象的位置和方向。原理轴方法。在下一次迭代中应用估算的运动,以在投影仪和背投仪中重新定位估算的切片和衰减图,以匹配获取投影时患者的姿势。为了评估我们的方法,我们用3头SPECT系统模拟了MCAT幻像的采集,并在3头IRIX SPECT系统上对Data Spectrum拟人幻像进行了成像。在仿真中,幻像平移并旋转了9次。使用数字投影仪对运动,衰减和与距离相关的模糊进行建模,以生成投影数据。添加了泊松噪声,并生成了30个噪声实现。在拟人化体模的实验中,进行了四个360度采集,其中体模已预先平移或旋转。通过混合这4次采集来制作运动存在数据集。对于MCAT体模仿真和拟人体模实验,均使用10次OSEM迭代来重建运动存在数据,OSEM会如上所述估计和校正运动。我们的方法获得了无视觉伪影的重建,而没有进行运动校正的重建显示出严重的伪影。-根据我们的方法估算的运动与模拟的运动非常吻合。我们在MCAT模拟和实际幻像采集中确定,我们的数据驱动方法可有效减少运动伪影。

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