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首页> 外文期刊>AJNR. American journal of neuroradiology >The role of preload and leakage correction in gadolinium-based cerebral blood volume estimation determined by comparison with MION as a criterion standard
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The role of preload and leakage correction in gadolinium-based cerebral blood volume estimation determined by comparison with MION as a criterion standard

机译:通过与MION进行比较确定标准前负荷和泄漏校正在基于based的脑血容量估计中的作用

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BACKGROUND AND PURPOSE: Contrast extravasation in DSC-MRI potentiates inaccurate and imprecise estimates of glioma rCBV. We tested assertions that preload and postprocessing algorithms minimize this error by comparing Gd-rCBV using permutations of these 2 techniques with criterion standard rCBV using MION, an intravascular agent. MATERIALS AND METHODS: We imaged 7 Fisher rats with 9L gliosarcomas, by using 3T gradient-echo DSC-MRI with MION (2.0 mg Fe/kg) and staged injection of Gd-diethylene triamine pentaacetic acid: a 0.1-mmol/kg bolus provided no preload (P-) data and served as preload (P+) for a subsequent 0.2-mmol/kg bolus. We computed MION-rCBV (steady-state ΔR2&z.ast;, tumor versus normal brain) and Gd-rCBV ΔR2&z.ast; [t] integration) without (C-) and with (C+) postprocessing correction, thereby testing 4 correction permutations: P-C-, P-C+, P+C-, and P+C+. We tested whether each permutation reduced bias and variance of the Gd/MION rCBV differences by using generalized estimating equations and Fmax statistics (P < .05 significant). RESULTS: Gd-rCBV progressively better approximated MION-rCBV with increasing leakage correction. There was no statistically significant bias for the mean percentage deviation of Gd-rCBV from MION-rCBV for any correction permutation, but there was significantly reduced variance by using P+C- (22-fold), P-C+ (32-fold), and P+C+ (267-fold) compared with P-C-. P+C+ provided significant additional variance reduction compared with P+C+ (12-fold) and P-C+ (8-fold). Linear regression of Gd-rCBV versus MION-rCBV revealed P+C+ to have the closest slope and intercept compared with the ideal, substantially better than P+C-. CONCLUSIONS: Preload and postprocessing correction significantly reduced the variance of Gd-rCBV estimates, and bias reduction approached significance. Postprocessing correction provide significant benefit beyond preload alone.
机译:背景与目的:DSC-MRI中的对比外渗可增强神经胶质瘤rCBV的不准确和不准确的估计。我们通过比较使用这两种技术的排列的Gd-rCBV与使用血管内媒介物MION的标准标准rCBV的比较,测试了预加载和后处理算法将错误最小化的说法。材料与方法:我们使用3T梯度回波DSC-MRI和MION(2.0 mg Fe / kg)并分阶段注射Gd-二亚乙基三胺五乙酸注射成像,对7只9L滑膜肉瘤的Fisher大鼠进行了成像,并提供了0.1 mmol / kg的大剂量推注没有预加载(P-)数据,并用作随后的0.2 mmol / kg推注的预加载(P +)。我们计算了MION-rCBV(稳态与正常脑的关系ΔR2&z.ast;)和Gd-rCBVΔR2&z.ast;。 [t]积分)不具有(C-)和具有(C +)后处理校正,从而测试4个校正置换:P-C-,P-C +,P + C-和P + C +。我们通过使用广义估计方程和Fmax统计量(P <0.05),测试了每个排列是否减少了Gd / MION rCBV差异的偏差和方差。结果:随着泄漏校正的增加,Gd-rCBV逐渐逼近MION-rCBV。对于任何校正置换,Gd-rCBV与MION-rCBV的平均百分比偏差均无统计学显着性偏差,但使用P + C-(22倍),P-C +(32倍)可显着降低方差,和PC +相比,P + C +(267倍)。与P + C +(12倍)和P-C +(8倍)相比,P + C +提供了显着的额外方差降低。 Gd-rCBV与MION-rCBV的线性回归表明,与理想值相比,P + C +具有最接近的斜率和截距,大大优于P + C-。结论:前负荷和后处理校正显着降低了Gd-rCBV估计值的方差,并且偏差减少已达到显着水平。后处理校正不仅提供单独的预加载,还具有显着的优势。

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