Meikle S R, Bailey D L, Hooper P K, Eberl S, Hutton B F, Jones W F, Fulton R R, Fulham M J
PET Department, Royal Prince Alfred Hospital, Sydney, Australia.
J Nucl Med. 1995 Sep;36(9):1680-8.
We describe a methodology for measuring and correcting for attenuation in whole-body PET using simultaneous emission and transmission (SET) measurements.
The main components of the methodology are: (a) sinogram windowing of low activity (< or = 50 MBq) rotating 68Ge/Ga rod sources, (b) segmented attenuation correction (SAC) and (c) maximum likelihood reconstruction using the ordered subsets EM (OS-EM) algorithm. The methods were implemented on a whole-body positron emission tomograph. Quantitative accuracy and the signal-to-noise ratio (SNR) were measured for a thorax-tumor phantom as functions of acquisition time (range: 2-20 min per position).
When a typical rod source activity (200 MBq 68Ge/Ga) was used, emission SNR was 60% lower in simultaneous than in separate measurements. The difference was only 14% when the rods contained 45 MBq 68Ge/Ga. The SNR was further improved by SAC in conjunction with OS-EM reconstruction and the relative gain increased with increasing acquisition time. Quantitative estimates of tumor, liver and lung radioactivity agreed with values obtained from a separate high count measurement to within 8%, independent of acquisition time.
Attenuation correction of whole-body PET images is feasible using SET measurements. There is good quantitative agreement with conventional methods and increased noise is offset by the use of SAC and OS-EM reconstruction.
我们描述了一种使用同时发射和透射(SET)测量来测量和校正全身正电子发射断层扫描(PET)中衰减的方法。
该方法的主要组成部分包括:(a)低活度(≤50MBq)旋转68Ge/Ga棒源的正弦图开窗,(b)分段衰减校正(SAC)和(c)使用有序子集期望最大化(OS-EM)算法的最大似然重建。这些方法在一台全身正电子发射断层扫描仪上实现。对胸部肿瘤模型测量了定量准确性和信噪比(SNR),作为采集时间(范围:每个位置2 - 20分钟)的函数。
使用典型的棒源活度(200MBq 68Ge/Ga)时,同时测量的发射SNR比单独测量时低60%。当棒源含有45MBq 68Ge/Ga时,差异仅为14%。通过SAC结合OS-EM重建,SNR进一步提高,且相对增益随采集时间增加而增加。肿瘤、肝脏和肺部放射性的定量估计与从单独的高计数测量获得的值在8%以内相符,与采集时间无关。
使用SET测量对全身PET图像进行衰减校正是可行的。与传统方法有良好的定量一致性,并且通过使用SAC和OS-EM重建抵消了增加的噪声。