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Assessing Renal Ischemia/Reperfusion Injury in Mice Using Time-Dependent BOLD and DTI at 9.4 T

机译:使用9.4 T时变BOLD和DTI评估小鼠肾缺血/再灌注损伤

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The primary goal of this study was to quantitatively assess regional changes in function and pathophysiological characteristics in renal ischemia/reperfusion (IR)-injured mice and compare data obtained at baseline and following injury. The second goal was to correlate blood oxygenation level-dependent (BOLD) and diffusion tensor imaging (DTI) data obtained in renal IR-injured mice at baseline using time-dependent scans. The analyses were conducted using a mouse model of IR injury. T2*, apparent diffusion coefficient (ADC), and fractional anisotropy (FA) values were acquired to pathophysiologically evaluate three renal regions. The T2* values obtained in the renal cortex and medulla demonstrated no significant differences between baseline and after IR injury. According to DTI results, ADC values in both renal regions were significantly lower at 0 h, and then gradually increased within 48 h. The FA values of both renal regions decreased at 0 h, and then gradually increased by 8 h after IR injury. BOLD and DTI correlations were not significant in renal cortex. However, significantly positive correlations were found between baseline and time-dependent data obtained from renal medulla of IR-injured kidneys. Our current findings suggest that magnetic resonance imaging could be used to obtain pathophysiological data from separate renal compartments in IR-injured mice. Hence, BOLD and DTI may also provide functional and pathophysiological data on allograft status following kidney transplant without the need to use a contrast agent.
机译:这项研究的主要目的是定量评估肾缺血/再灌注(IR)损伤的小鼠的功能和病理生理特征的区域变化,并比较基线和损伤后获得的数据。第二个目标是使用时间依赖性扫描,将基线时肾脏IR损伤的小鼠中获得的血液氧合水平依赖性(BOLD)和扩散张量成像(DTI)数据进行关联。使用IR损伤的小鼠模型进行分析。获得T2 *,表观扩散系数(ADC)和分数各向异性(FA)值以对三个肾脏区域进行病理生理评估。肾皮质和延髓中获得的T2 *值显示基线与IR损伤之间无显着差异。根据DTI结果,两个肾脏区域的ADC值在0 h显着降低,然后在48 h内逐渐升高。 IR损伤后,两个肾区的FA值均在0 h下降,然后在8 h逐渐升高。肾皮质中BOLD和DTI相关性不显着。然而,从IR损伤的肾脏的肾髓质获得的基线和时间依赖性数据之间发现显着正相关。我们目前的发现表明,磁共振成像可用于从IR损伤小鼠的单独肾区室中获取病理生理数据。因此,BOLD和DTI也可以提供肾脏移植后同种异体移植状态的功能和病理生理数据,而无需使用造影剂。

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