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首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >DCD Pigs' Kidneys Analyzed by MRI to Assess Ex Vivo Their Viability
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DCD Pigs' Kidneys Analyzed by MRI to Assess Ex Vivo Their Viability

机译:DCD猪的肾脏通过MRI分析,评估离体的活力

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BACKGROUND: Magnetic resonance imaging (MRI) gadolinium-perfusion was applied in simulated Donation after Cardiac Death (DCD) in porcine kidneys to measure intrarenal perfusion. Adenosine triphosphate (ATP) resynthesis during oxygenated hypothermic perfusion was compared to evaluate the "ex vivo organ viability". Adenine nucleotide (AN) was measured by P nuclear magnetic resonance (NMR) spectroscopy. Whereas this latter technique requires sophisticated hardware, gadolinium-perfusion can be realized using any standard proton-MRI scanner. The aim of this work was to establish a correlation between the two methods. METHODS: Twenty-two porcine kidneys presenting up to 90 min warm ischemia were perfused with oxygenation at 4 C using our magnetic resonance-compatible machine. During the perfusion, P NMR spectroscopy and gadolinium-perfusion sequences were performed. Measures obtained from the gadolinium-perfusion were the speed of elimination of the cortical gadolinium and the presence or absence of a corticomedullar shunt. For ATP resynthesis analysis, P chemical shift imaging was acquired and analyzed. All the kidneys have been submitted to histologic examination. RESULTS: ATP resynthesis was observed in all organs presenting a cortical gadolinium elimination slope of (-) 23 or greater. In organs with lower gadolinium elimination, no AN or only precursors were detected. This study reveals a link between the two methods and demonstrates ex vivo viability in 93% of the analyzed kidneys. Benefits and side effects of both methods are discussed. CONCLUSION: Oxygenated hypothermic perfusion enables the evaluation of kidneys in DCD simulated situation; gadolinium-perfusion can be introduced into any center equipped with a proton-MRI scanner allowing results superposable with ATP measurement.
机译:背景:磁共振成像(MRI)在猪肾脏(DCD)后的模拟捐赠中施用钆 - 灌注,以测量intrarenal灌注。比较氧化低温灌注期间的腺苷三磷酸(ATP)重新合成,以评价“离体器官活力”。通过P核磁共振(NMR)光谱法测量腺嘌呤核苷酸(AN)。然而,后一种技术需要复杂的硬件,可以使用任何标准质子-MRI扫描仪实现钆灌注。这项工作的目的是建立两种方法之间的相关性。方法:使用我们的磁共振相容的机器,在4℃下呈氧合呈现高达90分钟的猪肾脏的二十二猪肾。在灌注期间,进行P NMR光谱和钆 - 灌注序列。从钆灌注中获得的措施是消除皮质钆的消除速度以及皮质髓鞘分流的存在或不存在。对于ATP再合成分析,获得并分析了P化学换档成像。所有肾脏都提交给组织学检查。结果:在呈现( - )23或更大的皮质钆消除斜率的所有器官中观察到ATP重新合作。在钆消除较低的器官中,没有检测到或仅前体。本研究揭示了两种方法之间的联系,并在分析的肾脏的93%中显示出前体内活力。讨论了两种方法的益处和副作用。结论:含氧低温灌注能够评估DCD模拟情况的肾脏;可以将钆 - 灌注引入配备有质子-MRI扫描仪的任何中心,允许结果可具有可置位的ATP测量。

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