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使用18F-氟化物正电子发射断层扫描对股动脉处基于图像的动脉输入函数进行验证。

Validation of image-derived arterial input functions at the femoral artery using 18F-fluoride positron emission tomography.

作者信息

Puri Tanuj, Blake Glen M, Frost Michelle L, Moore Amelia E B, Siddique Musib, Cook Gary J R, Marsden Paul K, Fogelman Ignac, Curran Kathleen M

机构信息

School of Medicine and Medical Sciences, University College Dublin, Dublin, Ireland.

出版信息

Nucl Med Commun. 2011 Sep;32(9):808-17. doi: 10.1097/MNM.0b013e328349716f.

Abstract

INTRODUCTION

The use of image-derived arterial input functions (IDAIF) for the dynamic quantification of bone metabolism using 18F-fluoride positron emission tomography 18F-PET is an attractive alternative to direct arterial blood sampling.

PURPOSES

(a) To validate a method for obtaining the IDAIF by imaging the femoral artery against a method for deriving the IDAIF at the aorta that was previously validated against direct arterial sampling. (b) To compare the accuracy of bone plasma clearance measurements (Ki) at the total hip site obtained using the femoral artery IDAIF against Ki values at the same site obtained using the aorta IDAIF.

METHODS

Twelve healthy postmenopausal women with a mean age of 62.6 years (range, 52.3-70.6 years) had 60-min dynamic 18F-PET scans of the lumbar spine and proximal femur 2 weeks apart. The femoral artery IDAIF was obtained from the proximal femur scan using four different algorithms: (a) fixed partial volume correction (PVC) method; (b) variable PVC method; (c) Chen method; and (d) Cook-Lodge method. The aorta IDAIF was obtained from the lumbar spine scan using a previously validated method and the respective Ki values in the hip were used to assess the performance of each of the femoral artery algorithms.

RESULTS

When the femoral artery IDAIF methods were compared with the aorta IDAIF in terms of the area under the curve AUC values calculated in 4-min time intervals over 0-60 min, the absolute root mean square errors were: (a) fixed PVC, 0.52; (b) variable PVC, 0.54; (c) Chen, 0.72; and (d) Cook-Lodge, 0.49 in MBq s/ml. There were small, but statistically significant differences, in the Ki values found by all four femoral artery IDAIF methods when compared with the figures obtained using the aorta IDAIF. Bland-Altman plots of Ki values showed the best agreement for the fixed PVC method with a standard deviation of 0.0020 ml/min/ml, followed by variable PVC, Cook-Lodge and Chen method with standard deviations of 0.0022, 0.0024 and 0.0042 ml/min/ml, respectively.

CONCLUSION

We have demonstrated that it is possible to measure regional bone turnover at the hip without the need to perform direct arterial sampling to acquire the arterial input function (AIF). The differences in the Ki values obtained at the hip by using aorta IDAIF and any of the four image-based AIF methods at the femoral artery were small and clinically insignificant. The performance of fixed PVC, variable PVC and Cook-Lodge method was similar although the latter was less robust than the other two methods.

摘要

引言

使用图像衍生动脉输入函数(IDAIF)通过18F-氟化物正电子发射断层扫描(18F-PET)对骨代谢进行动态定量分析,是直接动脉采血的一种有吸引力的替代方法。

目的

(a)验证通过对股动脉成像获取IDAIF的方法,并与先前针对直接动脉采样进行验证的在主动脉处获取IDAIF的方法进行比较。(b)比较使用股动脉IDAIF在全髋关节部位获得的骨血浆清除率测量值(Ki)与使用主动脉IDAIF在同一部位获得的Ki值的准确性。

方法

12名平均年龄为62.6岁(范围52.3 - 70.6岁)的健康绝经后女性,每隔2周进行一次腰椎和股骨近端60分钟的动态18F-PET扫描。使用四种不同算法从股骨近端扫描中获取股动脉IDAIF:(a)固定部分容积校正(PVC)方法;(b)可变PVC方法;(c)Chen方法;(d)Cook-Lodge方法。使用先前验证的方法从腰椎扫描中获取主动脉IDAIF,并使用髋关节各自的Ki值评估每种股动脉算法的性能。

结果

当在0 - 60分钟内以4分钟时间间隔计算的曲线下面积(AUC)值方面,将股动脉IDAIF方法与主动脉IDAIF进行比较时,绝对均方根误差分别为:(a)固定PVC,0.52;(b)可变PVC,0.54;(c)Chen,0.72;(d)Cook-Lodge,0.49(单位为MBq s/ml)。与使用主动脉IDAIF获得的数据相比,所有四种股动脉IDAIF方法获得的Ki值存在微小但具有统计学意义的差异。Ki值的Bland-Altman图显示固定PVC方法的一致性最佳,标准差为0.0020 ml/min/ml,其次是可变PVC、Cook-Lodge和Chen方法,标准差分别为0.0022、0.0024和0.0042 ml/min/ml。

结论

我们已经证明,无需进行直接动脉采样来获取动脉输入函数(AIF),就可以测量髋关节区域的骨转换。使用主动脉IDAIF和股动脉处四种基于图像AIF方法中的任何一种在髋关节获得的Ki值差异很小,在临床上无显著意义。固定PVC、可变PVC和Cook-Lodge方法的性能相似,尽管Cook-Lodge方法不如其他两种方法稳健。

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