首页> 外文OA文献 >Voxel-based estimation of kinetic model parameters of the L-[1-(11)C]leucine PET method for determination of regional rates of cerebral protein synthesis: validation and comparison with region-of-interest-based methods
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Voxel-based estimation of kinetic model parameters of the L-[1-(11)C]leucine PET method for determination of regional rates of cerebral protein synthesis: validation and comparison with region-of-interest-based methods

机译:基于体素的L- [1-(11)C]亮氨酸PET方法动力学模型参数估计,用于确定脑蛋白合成的区域速率:验证和与基于目标区域的方法比较

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摘要

We adapted and validated a basis function method (BFM) to estimate at the voxel level parameters of the kinetic model of the L-[1-(11)C]leucine positron emission tomography (PET) method and regional rates of cerebral protein synthesis (rCPS). In simulation at noise levels typical of voxel data, BFM yielded low-bias estimates of rCPS; in measured data, BFM and nonlinear least-squares parameter estimates were in good agreement. We also examined whether there are advantages to using voxel-level estimates averaged over regions of interest (ROIs) in place of estimates obtained by directly fitting ROI time-activity curves (TACs). In both simulated and measured data, fits of ROI TACs were poor, likely because of tissue heterogeneity not taken into account in the kinetic model. In simulation, rCPS determined from fitting ROI TACs was substantially overestimated and BFM-estimated rCPS averaged over all voxels in an ROI was slightly underestimated. In measured data, rCPS determined by regional averaging of voxel estimates was lower than rCPS determined from ROI TACs, consistent with simulation. In both simulated and measured data, intersubject variability of BFM-estimated rCPS averaged over all voxels in a ROI was low. We conclude that voxelwise estimation is preferable to fitting ROI TACs using a homogeneous tissue model.
机译:我们改编并验证了基本函数方法(BFM),以估计L- [1-(11)C]亮氨酸正电子发射断层扫描(PET)方法动力学模型的体素水平参数和脑蛋白合成的区域速率( rCPS)。在以体素数据典型的噪声水平进行仿真时,BFM得出了rCPS的低偏置估计值。在测量数据中,BFM和非线性最小二乘参数估计值吻合良好。我们还检查了使用在感兴趣区域(ROI)上平均的体素级别的估计值代替通过直接拟合ROI时间活动曲线(TAC)获得的估计值是否有优势。在模拟和测量数据中,ROI TAC的拟合都很差,这可能是因为动力学模型未考虑组织异质性。在模拟中,从拟合的ROI TAC确定的rCPS被大大高估了,而ROI中所有体素的BFM估计的rCPS被平均低估了。在测量数据中,通过体素估计值的区域平均确定的rCPS低于通过ROI TAC确定的rCPS,与模拟一致。在模拟和测量数据中,ROI中所有体素的BFM估计rCPS的受试者间变异性均很低。我们得出结论,体素估计比使用均匀组织模型拟合ROI TAC更可取。

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