Andersson J L, Vagnhammar B E, Schneider H
Uppsala University PET Centre, Department of Radiation Sciences, Sweden.
J Nucl Med. 1995 Apr;36(4):670-8.
Recent methods to realign PET images are useful to correct minor changes in position due to subject movement. When using measured attenuation correction in the presence of larger subject movements, the attenuation data will not correctly represent the conditions of the emission scan and hence lead to erroneous attenuation correction.
In the presence of subject movement between two emission scans (EM1 and EM2), the first scan was assumed to be correctly aligned with the transmission scan. The emission scans were reconstructed without attenuation correction and were realigned so that the transformation matrix mapping EM2 onto EM1 was found. The inverse of that matrix was used to reslice the transmission images. The resliced transmission images were forward projected to yield new attenuation data and EM2 was re-reconstructed. Finally, the image set from EM2 was resliced to match the orientation of EM1. The method was validated by phantom data and by human brain and cardiac studies.
Phantom data show that accurate attenuation correction can be achieved by reslicing the transmission images. In 795 region of interest measurements, the mean error after reslicing was -0.8%, the standard deviation of the error was 3.8% and the maximum error was no greater than 11.7%. Results from human brain and cardiac experiments yield similar results with a maximum error of 7.5% in 80 measurements.
Reslicing of attenuation data with transformation parameters obtained from realignment of emission data provides an accurate and reliable method to obtain correct quantification in the presence of changes in position due to subject movement during or between PET examinations.
近期用于重新对齐PET图像的方法对于校正因受检者移动导致的位置微小变化很有用。在受检者移动较大的情况下使用测量衰减校正时,衰减数据将无法正确反映发射扫描的条件,从而导致错误的衰减校正。
在两次发射扫描(EM1和EM2)之间存在受检者移动的情况下,假设第一次扫描与透射扫描正确对齐。发射扫描在不进行衰减校正的情况下重建并重新对齐,以便找到将EM2映射到EM1的变换矩阵。该矩阵的逆用于对透射图像进行重新切片。对重新切片的透射图像进行前向投影以生成新的衰减数据,并对EM2进行重新重建。最后,对来自EM2的图像集进行重新切片以匹配EM1的方向。该方法通过体模数据以及人脑和心脏研究进行了验证。
体模数据表明,通过对透射图像进行重新切片可以实现准确的衰减校正。在795次感兴趣区域测量中,重新切片后的平均误差为-0.8%,误差的标准差为3.8%,最大误差不超过11.7%。人脑和心脏实验的结果与之相似,在80次测量中最大误差为7.5%。
利用从发射数据重新对齐中获得的变换参数对衰减数据进行重新切片,提供了一种准确可靠的方法,可在PET检查期间或之间因受检者移动导致位置变化的情况下获得正确的定量结果。