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Stroke onset time determination using MRI relaxation times without non-ischaemic reference in a rat stroke model

机译:在没有中风参考的大鼠中风模型中使用MRI弛豫时间确定中风发作时间

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摘要

BACKGROUND: Objective timing of stroke in emergency departments is expected to improve patient stratification. Magnetic resonance imaging (MRI) relaxations times, T2 and T1ρ, in abnormal diffusion delineated ischaemic tissue were used as proxies of stroke time in a rat model.METHODS: Both ‘non-ischaemic reference’-dependent and -independent estimators were generated. Apparent diffusion coefficient (ADC), T2 and T1ρ, were sequentially quantified for up to 6 hours of stroke in rats (n = 8) at 4.7T. The ischaemic lesion was identified as a contiguous collection of voxels with low ADC. T2 and T1ρ in the ischaemic lesion and in the contralateral non-ischaemic brain tissue were determined. Differences in mean MRI relaxation times between ischaemic and non-ischaemic volumes were used to create reference-dependent estimator. For the reference-independent procedure, only the parameters associated with log-logistic fits to the T2 and T1ρ distributions within the ADC-delineated lesions were used for the onset time estimation.RESULT: The reference-independent estimators from T2 and T1ρ data provided stroke onset time with precisions of ±32 and ±27 minutes, respectively. The reference-dependent estimators yielded respective precisions of ±47 and ±54 minutes.CONCLUSIONS: A ‘non-ischaemic anatomical reference’-independent estimator for stroke onset time from relaxometric MRI data is shown to yield greater timing precision than previously obtained through reference-dependent procedures.
机译:背景:急诊室中风的客观时机有望改善患者分层。在大鼠模型中,以异常扩散划定的缺血组织中的磁共振成像(MRI)弛豫时间T2和T1ρ作为中风时间的代理。方法:生成了“非局部缺血参考”依赖性和非依赖性估计量。在4.7T时,对大鼠(n = 8)中风长达6小时的表观扩散系数(ADC)T2和T1ρ进行了定量。缺血性病变被确定为具有低ADC的体素的连续集合。测定缺血性病变和对侧非缺血性脑组织中的T2和T1ρ。缺血和非缺血体积之间的平均MRI弛豫时间差异用于创建参考依赖的估计量。对于与参考无关的程序,仅将与ADC划定的病变内T2和T1ρ分布的对数逻辑拟合相关的参数用于开始时间估计。结果:从T2和T1ρ数据得出的与参考无关的估计量可提供卒中起始时间分别为±32分钟和±27分钟。依赖于参考的估计量分别具有±47和±54分钟的精度。结论:从弛张MRI数据中得出的非“非局部解剖参考”的卒中发作时间独立估计量比以前通过参考获得的定时精度更高。依赖程序。

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