首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Inverse reconstruction method for segmented multishot diffusion-weighted MRI with multiple coils.
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Inverse reconstruction method for segmented multishot diffusion-weighted MRI with multiple coils.

机译:具有多个线圈的分段多发弥散加权MRI的逆重建方法。

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摘要

Each k-space segment in multishot diffusion-weighted MRI is affected by a different spatially varying phase which is caused by unavoidable motions and amplified by the diffusion-encoding gradients. A proper image reconstruction therefore requires phase maps for each segment. Such maps are commonly derived from two-dimensional navigators at relatively low resolution but do not offer robust solutions. For example, phase variations in diffusion-weighted MRI of the brain are often characterized by high spatial frequencies. To overcome this problem, an inverse reconstruction method for segmented multishot diffusion-weighted MRI is described that takes advantage of the full k-space data acquired from multiple receiver coils. First, the individual coil sensitivities are determined from the non-diffusion-weighted acquisitions by regularized nonlinear inversion. These coil sensitivities are then used to estimate accurate motion-associated phase maps for each segment by iterative linear inversion. Finally, the coil sensitivities and phase maps serve to reconstruct artifact-free images of the object by iterative linear inversion, taking advantage of the data of all segments. The efficiency of the new method is demonstrated for segmented diffusion-weighted stimulated echo acquisition mode MRI of the human brain.
机译:多重扩散加权MRI中的每个k空间片段都会受到不同的空间变化相位的影响,该相位变化是由不可避免的运动引起的,并由扩散编码梯度放大。因此,正确的图像重建需要每个段的相位图。这样的地图通常是从二维导航器中以相对较低的分辨率派生而来的,但是并不能提供可靠的解决方案。例如,大脑弥散加权MRI的相位变化通常以高空间频率为特征。为了克服这个问题,描述了一种用于分段多次扩散扩散加权MRI的逆重建方法,其利用了从多个接收器线圈获取的全k空间数据。首先,通过正则化非线性反演,由非扩散加权采集确定各个线圈的灵敏度。这些线圈灵敏度然后用于通过迭代线性反演为每个段估计准确的运动相关相位图。最后,线圈灵敏度和相位图可利用所有段的数据,通过迭代线性反演来重建对象的无伪像。证明了该新方法对分段扩散加权人脑回声采集模式MRI的有效性。

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