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如何获得高精度图像配准:在动态正电子发射断层扫描数据运动校正中的应用

How to obtain high-accuracy image registration: application to movement correction of dynamic positron emission tomography data.

作者信息

Andersson J L

机构信息

Uppsala University PET-Centre, Uppsala, Sweden.

出版信息

Eur J Nucl Med. 1998 Jun;25(6):575-86. doi: 10.1007/s002590050258.

Abstract

When registering dynamic positron emission tomography (PET) sequences, the time-dependent changes in uptake pattern prevent registration of all frames to the first frame in a straightforward manner. Instead, a sequential registration of each frame to its predecessor may be used, provided the registration algorithm is completely free of bias. It is shown that most existing algorithms introduce a bias, the size of which depends on the pixel size and the signal-to-noise ratio of the data. The bias is introduced by the pixelisation of the underlying continuous process. All existing cost-functions are more or less sensitive to noise, and the noise reduction resulting from translating one image set relative to the other means that a small movement will always be detected in the cases where no actual movement has occurred. The problem is solved by an initial resampling of the reference volume into a representation with another image and pixel size. If the new representation is sensibly chosen it means that all possible transforms applied to the other image volume will yield approximately the same noise reduction, thereby removing the source of the bias. The described effect is demonstrated on phantom data, and its impact is shown on human data.

摘要

在对动态正电子发射断层扫描(PET)序列进行配准 时,摄取模式随时间的变化使得无法直接将所有帧与第一帧进行配准。相反,可以使用将每一帧与其前一帧进行顺序配准的方法,前提是配准算法完全无偏差。结果表明,大多数现有算法都会引入偏差,偏差的大小取决于像素大小和数据的信噪比。偏差是由基础连续过程的像素化引入的。所有现有的代价函数或多或少都对噪声敏感,并且通过将一个图像集相对于另一个图像集进行平移而导致的降噪意味着在没有实际运动发生的情况下总会检测到小的运动。通过将参考体积初始重采样为具有另一种图像和像素大小的表示形式来解决该问题。如果合理选择新的表示形式,则意味着应用于另一个图像体积的所有可能变换将产生大致相同的降噪效果,从而消除偏差源。在体模数据上演示了所描述的效果,并在人体数据上展示了其影响。

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