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SLIMMER:SLIce MRI Motion Estimation and Reconstruction tool for studies of fetal anatomy

机译:SLIMMER:SLIce MRI运动估计和重建工具,用于胎儿解剖学研究

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We describe a free software tool which combines a set of algorithms that provide a framework for building 3D volumetric images of regions of moving anatomy using multiple fast multi-slice MRI studies. It is specifically motivated by the clinical application of unsedated fetal brain imaging, which has emerged as an important area for image analysis. The tool reads multiple DICOM image stacks acquired in any angulation into a consistent patient coordinate frame and allows the user to select regions to be locally motion corrected. It combines algorithms for slice motion estimation, bias field inconsistency correction and 3D volume reconstruction from multiple scattered slice stacks. The tool is built onto the RView (http://rview.colin-studholme.net) medical image display software and allows the user to inspect slice stacks, and apply both stack and slice level motion estimation that incorporates temporal constraints based on slice timing and interleave information read from the DICOM data. Following motion estimation an algorithm for bias field inconsistency correction provides the user with the ability to remove artifacts arising from the motion of the local anatomy relative to the imaging coils. Full 3D visualization of the slice stacks and individual slice orientations is provided to assist in evaluating the quality of the motion correction and final image reconstruction. The tool has been evaluated on a range of clinical data acquired on GE, Siemens and Philips MRI scanners.
机译:我们描述了一个免费软件工具,该工具结合了一组算法,这些算法提供了使用多个快速多层MRI研究构建运动解剖区域的3D体积图像的框架。非镇静胎儿脑部成像的临床应用特别地激发了这种现象,而胎儿脑部成像已成为图像分析的重要领域。该工具将以任何角度获取的多个DICOM图像堆栈读取到一致的患者坐标系中,并允许用户选择要进行局部运动校正的区域。它结合了用于切片运动估计,偏置场不一致校正和从多个分散的切片堆栈进行3D体积重建的算法。该工具内置于RView(http://rview.colin-studholme.net)医学图像显示软件上,并允许用户检查切片堆栈,并应用基于切片定时的时间限制合并的切片和切片水平运动估计以及从DICOM数据读取的交织信息。在运动估计之后,用于偏置场不一致校正的算法为用户提供了消除由局部解剖结构相对于成像线圈的运动引起的伪像的能力。提供切片堆栈和各个切片方向的完整3D可视化,以帮助评估运动校正和最终图像重建的质量。该工具已通过GE,西门子和Philips飞利浦MRI扫描仪获得的一系列临床数据进行了评估。

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