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High-resolution DCE-MRI of the pituitary gland using radial k-space acquisition with compressed sensing reconstruction

机译:径向k空间采集与压缩感知重建的高分辨率垂体DCE-MRI

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BACKGROUNDANDPURPOSE: The pituitary gland is located outside of the blood-brain barrier. Dynamic T1 weighted contrast enhanced sequence is considered to be the gold standard to evaluate this region. However, it does not allow assessment of intrinsic permeability properties of the gland. Our aim was to demonstrate the utility of radial volumetric interpolated brain examination with the golden-angle radial sparse parallel technique to evaluate permeability characteristics of the individual components (anterior and posterior gland and the median eminence) of the pituitary gland and areas of differential enhancement and to optimize the study acquisition time. MATERIALS AND METHODS: A retrospective study was performed in 52 patients (group 1, 25 patients with normal pituitary glands; and group 2, 27 patients with a known diagnosis of microadenoma). Radial volumetric interpolated brain examination sequences with goldenangle radial sparse parallel technique were evaluated with an ROI-based method to obtain signal-time curves and permeability measures of individual normal structures within the pituitary gland and areas of differential enhancement. Statistical analyses were performed to assess differences in the permeability parameters of these individual regions and optimize the study acquisition time. RESULTS: Signal-time curves from the posterior pituitary gland and median eminence demonstrated a faster wash-in and time of maximum enhancement with a lower peak of enhancement compared with the anterior pituitary gland (P ≤.005). Time-optimization analysis demonstrated that 120 seconds is ideal for dynamic pituitary gland evaluation. In the absence of a clinical history, differences in the signal-time curves allow easy distinction between a simple cyst and a microadenoma. CONCLUSIONS: This retrospective study confirms the ability of the golden-angle radial sparse parallel technique to evaluate the permeability characteristics of the pituitary gland and establishes 120 seconds as the ideal acquisition time for dynamic pituitary gland imaging.
机译:背景与目的:垂体位于血脑屏障的外部。动态T1加权对比度增强序列被认为是评估该区域的金标准。但是,它不允许评估腺体的固有渗透性。我们的目的是证明利用黄金角放射状稀疏平行技术进行放射状体积内插脑检查可用于评估垂体各个组成部分(前腺和后腺以及中位隆起)的通透性特征以及差异增强区域。以优化研究获取时间。材料与方法:对52例患者进行回顾性研究(第1组,垂体正常的25名患者;第2组,诊断为微腺瘤的27名患者)。使用基于ROI的方法评估了采用Goldenangle径向稀疏并行技术进行的放射状内插脑检查序列,以获取信号时间曲线以及垂体内和差异增强区域的单个正常结构的通透性测量值。进行统计分析以评估这些单个区域的渗透率参数差异,并优化研究采集时间。结果:垂体后叶和中位隆起的信号时间曲线显示,与垂体前叶相比,洗净和最大增强时间更快,增强峰较低(P≤.005)。时间优化分析表明120秒是动态垂体评估的理想选择。在没有临床病史的情况下,信号时间曲线的差异使得可以轻松地区分简单的囊肿和微腺瘤。结论:这项回顾性研究证实了金角放射状稀疏平行技术评估垂体渗透性特征的能力,并建立了120秒作为动态垂体成像的理想采集时间。

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