RESULTS:An accuracy of 95% could be achieved by considering perfusion index, time-to-peak activity, accumulation index and excretion index for both pre- and post-challenge studies. This varied as the parameters were either included or excluded.

CONCLUSION:Artificial neural network analysis is a useful technique to evaluate the most appropriate criteria for interpreting captopril transplant renography investigations.

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UNLABELLED:Severe renal artery stenosis (RAS) is a relatively uncommon complication after renal transplantation but is a curable cause of hypertension, which demands reliable early diagnosis to reduce morbidity, mortality and graft loss. Captopril renography has been used for a number of years as a method of detecting RAS but controversy still exists as to the diagnostic accuracy of this test and as to the most appropriate interpretation criteria with which to establish a positive result.

METHODS:This report presents the results of using artificial neural networks to impartially assess these interpretation criteria. Data comprised 31 99mTc-MAG3 captopril renography investigations undertaken on hypertensive renal transplant patients with a suspected diagnosis of RAS. Each renogram study was correlated with an arteriogram as the "gold standard". Training of the network was performed using the round-robin technique.

RESULTS:An accuracy of 95% could be achieved by considering perfusion index, time-to-peak activity, accumulation index and excretion index for both pre- and post-challenge studies. This varied as the parameters were either included or excluded.

CONCLUSION:Artificial neural network analysis is a useful technique to evaluate the most appropriate criteria for interpreting captopril transplant renography investigations.

译文

未加标签:严重的肾动脉狭窄(RAS)是肾移植术后相对不常见的并发症,但是可治愈的高血压病,需要可靠的早期诊断以降低发病率,死亡率和移植物丢失。卡托普利肾病学检查作为检测RAS的一种方法已经使用了很多年,但是关于该测试的诊断准确性以及确定阳性结果的最合适的解释标准仍存在争议。

方法:该报告介绍了使用人工神经网络公正评估这些解释标准的结果。数据包括对怀疑患有RAS的高血压肾移植患者进行的31项99mTc-MAG3卡托普利肾病学检查。每个肾图研究都与动脉造影相关联,作为“黄金标准”。使用循环技术进行网络训练。

结果:通过考虑灌注指数,峰间活动时间,累积指数可以达到95%的准确度攻击前和攻击后研究的排泄指数。

结论:人工神经网络分析是一种有用的技术,可用于评估解释卡托普利移植肾造影研究的最适当标准。

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