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Partial volume correction using structural–functional synergistic resolution recovery: comparison with geometric transfer matrix method

机译:使用结构-功能协同分辨率恢复进行部分体积校正:与几何传递矩阵法的比较

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摘要

We validated the use of a novel image-based method for partial volume correction (PVC), structural–functional synergistic resolution recovery (SFS-RR) for the accurate quantification of dopamine synthesis capacity measured using [18F]DOPA positron emission tomography. The bias and reliability of SFS-RR were compared with the geometric transfer matrix (GTM) method. Both methodologies were applied to the parametric maps of [18F]DOPA utilization rates (kicer). Validation was first performed by measuring repeatability on test–retest scans. The precision of the methodologies instead was quantified using simulated [18F]DOPA images. The sensitivity to the misspecification of the full-width-half-maximum (FWHM) of the scanner point-spread-function on both approaches was also assessed. In the in-vivo data, the kicer was significantly increased by application of both PVC procedures while the reliability remained high (intraclass correlation coefficients >0.85). The variability was not significantly affected by either PVC approach (<10% variability in both cases). The corrected kicer was significantly influenced by the FWHM applied in both the acquired and simulated data. This study shows that SFS-RR can effectively correct for partial volume effects to a comparable degree to GTM but with the added advantage that it enables voxelwise analyses, and that the FWHM used can affect the PVC result indicating the importance of accurately calibrating the FWHM used in the recovery model.
机译:我们验证了使用基于图像的新型方法进行部分体积校正(PVC),结构-功能协同分辨率恢复(SFS-RR)的准确定量,该定量方法使用[ 18 F ] DOPA正电子发射断层扫描。将SFS-RR的偏差和可靠性与几何传递矩阵(GTM)方法进行了比较。两种方法均应用于[ 18 F] DOPA利用率(ki cer )的参数图。首先通过在测试-再测试扫描中测量可重复性来进行验证。相反,使用模拟的[ 18 F] DOPA图像对方法的精度进行了量化。还评估了两种方法对扫描器点扩展功能的半峰全宽(FWHM)错误指定的敏感性。在体内数据中,通过同时使用两种PVC程序,ki cer 显着增加,而可靠性仍然很高(类内相关系数> 0.85)。两种PVC方法均未显着影响变异性(两种情况下变异性均<10%)。校正后的ki cer 受到采集和模拟数据中应用的FWHM的显着影响。这项研究表明,SFS-RR可以有效地校正部分体积效应,达到与GTM相当的程度,但是其附加优势是可以进行体素分析,并且所用的FWHM可以影响PVC结果,表明准确校准所用FWHM的重要性在恢复模型中。

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