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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Numerical equilibration of signal intensity and spatial resolution in time-resolved continuously moving table imaging.
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Numerical equilibration of signal intensity and spatial resolution in time-resolved continuously moving table imaging.

机译:时间分辨连续移动台成像中信号强度和空间分辨率的数值平衡。

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摘要

Time-resolved continuously moving table imaging techniques have been previously developed to observe a dynamically changing phenomenon over an extended field-of-view. The acquisition involves differential k-space sampling and view sharing. Since the table is continuously moving during data acquisition, the k-space for any longitudinal position is sampled only sparsely for the first reconstruction timeframe and is progressively more fully sampled for subsequent frames. Consequently, the signal intensity increases and the lateral spatial resolution improves from frame to frame even for static materials, which can mask true dynamically changing phenomena. This work provides a description of this effect and a means for signal correction in the early reconstruction frames, thus permitting any residual variation in signal intensity to be primarily attributed to true dynamic processes. The method is tested experimentally on a static phantom and in a peripheral vascular study designed to observe the leading edge of the contrast bolus.
机译:时间分辨的连续移动台成像技术先前已经被开发出来,以在扩展的视场上观察动态变化的现象。采集涉及差分k空间采样和视图共享。由于表在数据获取期间不断移动,因此对于任何纵向位置的k空间在第一个重构时间范围内只会被稀疏采样,而在随后的帧中则被逐渐更充分地采样。因此,即使对于静态材料,信号强度也会逐帧增加,横向空间分辨率也会提高,这可以掩盖真正的动态变化现象。这项工作描述了这种效果,并提供了在早期重建帧中进行信号校正的方法,从而使信号强度的任何残余变化都主要归因于真正的动态过程。该方法在静态体模上进行了实验测试,并在旨在观察对比推注前缘的周围血管研究中进行了测试。

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