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DWI and DCE-MRI approaches for differentiating reversibly electroporated penumbra from irreversibly electroporated ablation zones in a rabbit liver model

机译:DWI和DCE-MRI用于将可逆电动的PENUMBRA与兔肝脏模型中不可逆转的电穿孔消融区分化的方法

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The purpose of our study was to investigate the hypothesis that DWI-MRI and DCE-MRI cab be used to distinguish between IRE and RE zones of IRE treatment in a rabbit liver model. 6 rabbits underwent baseline and post-procedure MR imaging with DWI and DCE-MRI as well as IRE (10 pulses, 2000 V, 10 μs/pulse, 10 ms between pulses). Rabbits were euthanized immediately after post-procedure MRI to acquire liver tissue for histology. Liver tissues were fixed and then stained with HE and TUNEL. T1w and T2w intensities in different treatment zones were calculated and normalized to paraspinal muscle signal. ADC maps were generated from DWI. AUC, PE, TTP, WIS, K trans , K ep , and V E were calculated from DCE-MRI. Apoptosis index was calculated from TUNEL stained tissues. P0.05 was considered statistically significant. Entire IRE treated region was hyperintense compared with untreated tissues on T1w, with the RE zone having a higher signal intensity. On DWI, IRE treated tissue had decreased ΔADC. The IRE zone has a lower ΔADC than the RE zone within the treated region. On DCE-MRI, IRE zone demonstrated the highest TTP and the lowest PE, WIS, K trans , K ep , and V E , followed by the RE zone then the untreated tissue. TUNEL staining of liver tissues showed that the IRE zone had the highest apoptosis index, followed by the RE zone and then untreated tissue. In conclusion, DCE-MRI and DWI parameters allow differentiation between RE and IRE zones in a rabbit liver model.
机译:我们研究的目的是调查DWI-MRI和DCE-MRI驾驶室用于区分兔肝模型中的IRE治疗的IRE和RE区域的假设。 6只兔子接受基线和程序后的MR成像与DWI和DCE-MRI以及IRE(10个脉冲,2000 V,10μs/脉冲,脉冲之间的10ms)。在程序后MRI后立即被安乐死,以获得组织学的肝组织。肝脏组织被固定,然后用他和TUNEL染色。计算不同治疗区的T1W和T2W强度,并归一化到垂直肌肉信号。 ADC地图是从DWI生成的。从DCE-MRI计算AUC,PE,TTP,WIS,K Trans,K EP和V E.从Tunel染色组织计算凋亡指数。 P& 0.05被认为是统计学意义的。与T1W上的未经处理的组织相比,整个IRE处理区域与T1W上的未处理组织相比,具有较高的信号强度。在DWI上,IRE处理的组织减少了ΔADC。 IRE区具有比处理区域内的RE区域的ΔADC较低。在DCE-MRI上,IRE区证明了最高的TTP和最低PE,WIS,K Trans,K EP和V E,然后是RE区,然后是未处理的组织。肝脏组织的Tunel染色表明,IRE区具有最高的凋亡指数,其次是RE区域,然后是未经处理的组织。总之,DCE-MRI和DWI参数允许兔肝模型中的RE和IRE区之间分化。

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