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SIMULTANEOUS BAYESIAN CORRECTION OF SLAB BOUNDARY ARTIFACTS AND BIAS FIELD FOR HIGH RESOLUTION EX VIVO MRI

机译:同时贝叶斯校正平板边界伪影及高分辨率偏压场的校正

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Multi-slab MRI overcomes some of the hardware limitations of today's clinical scanners (e.g., memory size), enabling the acquisition of ultra-high resolution ex vivo MRI of the whole human brain with high SNR efficiency. However, multi-slab MRI suffers from slab boundary artifacts (SBA) that can greatly bias subsequent analyses. Since SBA heavily interplays with the bias field (BF) present in MRI, we propose a Bayesian method that corrects for SBA and BF simultaneously. The method, which combines a probabilistic brain atlas with an Expectation Maximization inference algorithm, is shown to outperform state-of-the-art SBA and BF correction techniques - even when used in combination.
机译:多板MRI克服了当今临床扫描仪(例如,内存大小)的一些硬件限制,使得能够以高SNR效率获取全人脑的超高分辨率EXVivo MRI。然而,多板MRI遭受平板边界伪像(SBA),其可以大大偏离后续分析。由于SBA与MRI中存在的偏置字段(BF)重大相互作用,因此我们提出了一种贝叶斯方法,可同时纠正SBA和BF。将概率脑图集与期望最大化推理算法相结合的方法显示为优于最先进的SBA和BF校正技术 - 即使在组合使用时也是如此。

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