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Single-shot curved slice imaging

机译:单次弯曲切片成像

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摘要

The feasibility of imaging a curved slice with a single-shot technique so that the reconstructed image shows an un-warping of the slice is examined. This could be of practical importance when the anatomical structures of interest can be more efficiently covered with curved slices than with a series of flat planes. One possible example of such a structure is the cortex of the human brain. Functional imaging would especially benefit from this technique because several planar images can be replaced by a few curved slice images. A method is introduced that is based on multidimensional pulses to excite the desired curved slice profile. A GRASE imaging sequence is then applied that is tailored to the k-space representation of the curved slice. This makes it possible to capture the in-plane information of the slice with a single-shot technique. The method presented is limited to slices that are straight along one axis and can be approximated by a polygon. Reconstruction is performed using a simple numeric Fourier integration along the curved slice. This leads to an image that shows the desired un-warped representation of the slice. Experimental results obtained with this method from healthy volunteers are presented and demonstrate the feasibility of the proposed technique.
机译:研究了使用单次成像技术对弯曲切片成像以使重建图像显示切片未翘曲的可行性。当感兴趣的解剖结构可以比一系列平面更有效地被弯曲切片覆盖时,这可能具有实际重要性。这种结构的一个可能的例子是人脑的皮质。功能成像将特别受益于此技术,因为可以用几个弯曲的切片图像代替几个平面图像。引入了一种基于多维脉冲来激发所需弯曲切片轮廓的方法。然后应用适合于弯曲切片的k空间表示的GRASE成像序列。这使得可以通过单次捕获技术来捕获切片的平面内信息。提出的方法仅限于沿一个轴直的切片,并且可以用多边形近似。使用简单的数值傅里叶积分沿着弯曲的切片进行重建。这导致图像显示出所需的切片未变形表示。提出了使用这种方法从健康志愿者那里获得的实验结果,并证明了该技术的可行性。

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