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首页> 外文期刊>NMR in biomedicine >Analysis of errors in diffusion kurtosis imaging caused by slice crosstalk in simultaneous multi-slice imaging
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Analysis of errors in diffusion kurtosis imaging caused by slice crosstalk in simultaneous multi-slice imaging

机译:切片串扰在同时多切片成像中引起的扩散峰成像误差分析

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摘要

Simultaneous multi-slice (SMS) imaging techniques accelerate diffusion MRI data acquisition. However, slice separation is imperfect and results in residual signal leakage between the simultaneously excited slices. The resulting consistent bias may adversely affect diffusion model parameter estimation. Although this bias is usually small and might not affect the simplified diffusion tensor model significantly, higher order diffusion models such as kurtosis are likely to be more susceptible to such effects. In this work, two SMS reconstruction techniques and an alternative acquisition approach were tested to quantify the effects of slice crosstalk on diffusion kurtosis parameters. In reconstruction, two popular slice separation algorithms, slice GRAPPA and split-slice GRAPPA, are evaluated to determine the effect of slice leakage on diffusion kurtosis metrics. For the alternative acquisition, the slice pairings were varied across diffusion weighted images such that the signal leakage does not come from the same overlapped slice for all diffusion encodings. Simulation results demonstrated the potential benefits of randomizing the slice pairings. However, various experimental factors confounded the advantages of slice pair randomization. In volunteer experiments, region-of-interest analyses found high metric errors with each of the SMS acquisitions and reconstructions in the brain white matter.
机译:同时多切片(SMS)成像技术加速扩散MRI数据采集。然而,切片分离是不完美的,导致同时激发切片之间的残余信号泄漏。由此产生的一致偏差可能对扩散模型参数估计产生不利影响。虽然这种偏差通​​常很小,可能不会显着影响简化的扩散张量模型,但寿星等诸如峰的高阶扩散模型可能更容易受到这些效果的影响。在这项工作中,测试了两个SMS重建技术和另一种采集方法,以量化切片串扰对扩散峰度参数的影响。在重建中,评估了两个流行的切片分离算法,切片格拉帕和分离切片格拉帕,以确定切片泄漏对扩散峰度指标的影响。对于替代获取,切片配对在扩散加权图像上变化,使得信号泄漏不来自所有扩散编码的相同重叠切片。仿真结果表明,随机化切片配对的潜在益处。然而,各种实验因素混淆了切片对随机化的优势。在志愿者实验中,利息地区分析发现了大脑白物中的每一个短信收集和重建的高度量误差。

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