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使用二维和三维线性变换将放射自显影片与磁共振容积数据进行融合。

Fusion of autoradiographs with an MR volume using 2-D and 3-D linear transformations.

作者信息

Malandain Grégoire, Bardinet Eric, Nelissen Koen, Vanduffel Wim

机构信息

Epidaure team, INRIA, 06 902 Sophia-Antipolis cedex, France.

出版信息

Neuroimage. 2004 Sep;23(1):111-27. doi: 10.1016/j.neuroimage.2004.04.038.

Abstract

In the past years, the development of 3-D medical imaging has enabled the 3-D imaging of in vivo tissues, from an anatomical (MR, CT) or even functional (fMRI, PET, SPECT) point of view. However, despite immense technological progress, the resolution of these images is still short of the level of anatomical or functional details that in vitro imaging (e.g., histology, autoradiography) permits. The motivation of this work is to compare fMRI activations to activations observed in autoradiographic images from the same animals. We aim to fuse post-mortem autoradiographic data with a pre-mortem anatomical MR image. We first reconstruct a 3-D volume from the 2-D autoradiographic sections, coherent both in geometry and intensity. Then, this volume is fused with the MR image. This way, we ensure that the reconstructed 3-D volume can be superimposed onto the MR image that represents the reference anatomy. We demonstrate that this fusion can be achieved by using only simple global transformations (rigid and/or affine, 2-D and 3-D), while yielding very satisfactory results.

摘要

在过去几年中,3D医学成像技术的发展已实现了对体内组织的3D成像,无论是从解剖学角度(磁共振成像、计算机断层扫描),还是从功能角度(功能磁共振成像、正电子发射断层扫描、单光子发射计算机断层扫描)。然而,尽管技术取得了巨大进步,但这些图像的分辨率仍低于体外成像(如组织学、放射自显影)所允许的解剖或功能细节水平。这项工作的目的是将功能磁共振成像激活与同一动物放射自显影图像中观察到的激活进行比较。我们旨在将死后放射自显影数据与生前解剖磁共振图像融合。我们首先从二维放射自显影切片重建一个三维体积,使其在几何形状和强度上都连贯一致。然后,将这个体积与磁共振图像融合。通过这种方式,我们确保重建的三维体积能够叠加到代表参考解剖结构的磁共振图像上。我们证明,仅使用简单的全局变换(刚性和/或仿射变换,二维和三维)就可以实现这种融合,同时能产生非常令人满意的结果。

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