Tremblay Marleine, Tam Fred, Graham Simon J
Department of Medical Biophysics, University of Toronto, Toronto, Canada.
Magn Reson Med. 2005 Jan;53(1):141-9. doi: 10.1002/mrm.20319.
Coregistration is essential for correcting head motion artifacts in functional magnetic resonance imaging (fMRI). Coregistration algorithms typically realign images through optimization of a similarity measure based on voxel signal intensities. However, coregistration can also be performed through external monitoring, whereby a tracking device measures head motion directly and independently of the imaging data. This paper describes development of external monitoring using fMRI-compatible infrared cameras. Three subjects participated in block-design fMRI experiments consisting of bilateral finger tapping alone and tapping combined with visuomotor tracking to produce controlled task-correlated head motion. Functional MRI time-series were coregistered using the external monitoring technique and a known image-based algorithm for comparison. Over various performance characteristics, external monitoring and image-based coregistration exhibited good agreement, in particular reducing signals correlated with millimeter task-correlated motions by 50-100%, with a 5% difference between the two techniques. These results promise future applications and refinements of external monitoring in patient populations where head motion is especially problematic. Possibilities include 3D prospective coregistration during real-time fMRI, coregistration of individual slices, and motion correction in anatomic MRI.
配准对于校正功能磁共振成像(fMRI)中的头部运动伪影至关重要。配准算法通常通过基于体素信号强度优化相似性度量来重新对齐图像。然而,配准也可以通过外部监测来执行,即通过跟踪设备直接且独立于成像数据测量头部运动。本文描述了使用与fMRI兼容的红外摄像机进行外部监测的开发过程。三名受试者参与了组块设计的fMRI实验,实验包括单独的双侧手指轻敲以及与视觉运动跟踪相结合的轻敲,以产生可控的与任务相关的头部运动。使用外部监测技术和一种已知的基于图像的算法对功能MRI时间序列进行配准以作比较。在各种性能特征方面,外部监测和基于图像的配准表现出良好的一致性,特别是将与毫米级任务相关运动相关的信号减少了50 - 100%,两种技术之间相差5%。这些结果预示着外部监测在头部运动特别成问题的患者群体中的未来应用和改进。可能性包括实时fMRI期间的三维前瞻性配准、单个切片的配准以及解剖MRI中的运动校正。