Nakashima R, Yamashita Y, Tomiguchi S, Tsuji A, Takahashi M
Department of Radiology, Kumamoto University School of Medicine, Japan.
Radiat Med. 1996 Sep-Oct;14(5):251-6.
We evaluated the usefulness of dynamic turbo FLASH MR imaging in the differential diagnosis of complications after renal transplantation in 17 patients (10 from living relatives and 7 from cadavers). Coronal turbo FLASH dynamic images were obtained every 5 sec for 5 min after an intravenous bolus injection of Gd-DTPA. Corticomedullary differentiation (CMD) on spin echo coronal T1-weighted images and MR renogram patterns of the renal cortex and medulla were obtained for quantitative analysis of the Gd-DTPA-enhanced dynamic turbo-FLASH images. The signal intensity ratio of the medulla to cortex after Gd-DTPA enhancement was compared among four groups: normal (n = 9), acute tubular necrosis (ATN) or cyclosporine A (CyA) tubulopathy (n = 6), acute rejection (AR) in the living related donor kidney (n = 4), and AR in the cadaveric kidney (n = 5). Although loss of CMD was seen in severe renal dysfunction in the transplanted kidneys, there was considerable overlap among the four groups. On dynamic study, there was significant differences in the signal intensity ratio of the medulla to cortex between normally functioning kidneys or ATN/CyA tubulopathy and AR (p < 0.01). In patients with severe renal dysfunction, the arterial cortical peak was indistinct. In conclusion, MR renograms obtained from dynamic turbo FLASH MR imaging played a significant role in evaluating dysfunction of the renal transplant.
我们评估了动态涡轮FLASH磁共振成像在17例肾移植患者(10例来自活体亲属,7例来自尸体供肾)术后并发症鉴别诊断中的应用价值。静脉推注钆喷酸葡胺(Gd-DTPA)后,每5秒获取一次冠状位涡轮FLASH动态图像,共持续5分钟。获取自旋回波冠状位T1加权图像上的皮髓质分化(CMD)以及肾皮质和髓质的磁共振肾图模式,用于对Gd-DTPA增强的动态涡轮FLASH图像进行定量分析。比较了四组在Gd-DTPA增强后髓质与皮质的信号强度比:正常组(n = 9)、急性肾小管坏死(ATN)或环孢素A(CyA)肾小管病变组(n = 6)、活体亲属供肾的急性排斥反应(AR)组(n = 4)以及尸体供肾的AR组(n = 5)。虽然移植肾严重肾功能不全时可见CMD消失,但四组之间存在相当程度的重叠。动态研究显示,功能正常的肾脏或ATN/CyA肾小管病变与AR之间,髓质与皮质的信号强度比存在显著差异(p < 0.01)。在严重肾功能不全的患者中,动脉期皮质峰值不明显。总之,动态涡轮FLASH磁共振成像获得的磁共振肾图在评估肾移植功能障碍方面发挥了重要作用。