CT测量肾深度可优化活体肾移植的肾小球滤过率

Yan Liu, Aomei Zhao, Xueni Lu, Qi Wang, Lulu Yang, Yuemin Zhang, Aimin Yang, P. Tian, Jianjun Xue
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引用次数: 1

摘要

目的探讨CT肾深度在活体肾移植供者肾小球滤过率(GFR)测定中的意义。方法将167例活体肾移植供者分别用Tonnesen、Taylor和Li Qian公式估算的肾脏深度与CT测量值进行比较。在137例99mTc-DTPA肾脏动态成像病例中,在保持肾脏感兴趣的活动区域和背景不变的情况下,采用Gates方法测量GFR,并将Tonnesen、Taylor和Li Qian公式的估计值与CT测量值进行比较。结果CT、Tonnesen、Taylor、Li Qian公式测得左/右肾深度分别为6.82±0.96/7.02±1.00、5.67±0.58/5.71±0.59、6.43±0.77/6.81±0.72、7.03±0.76/7.06±0.70 cm;GFR分别为45.44±9.04/46.61±9.06、37.54±6.34/37.37±6.02、43.39±7.59/44.62±6.94和46.99±8.04/46.70±7.30 ml/min。Taylor和Li Qian计算的个体肾深度和GFR均高于Tonnesen公式(P < 0.05)。结论CT测量肾深度可提高Gates法估算肾深度的准确性,优化活体供者肾移植GFR。关键词:肾移植;肾小球滤过率;肾脏深度
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Renal depth measured by CT optimize the glomerular filtration rate using the Gates method in living donor kidney transplantation
Objective To evaluate the significance of kidney depth obtained by computed tomography (CT) in measuring glomerular filtration rate (GFR) by Gates method in living kidney transplant donors. Methods Individual kidney depth was compared among the estimates of Tonnesen, Taylor and Li Qian formulas and CT measurements in 167 living-related kidney transplant donors respectively. While maintaining the active region of interest of kidney and background unchanged in 137 99mTc-DTPA renal dynamic imaging cases, GFR was measured by Gates' method and individual kidney compared among the estimates of Tonnesen, Taylor and Li Qian formulas and CT measurements. Results Left/right kidney depth obtained by CT, Tonnesen, Taylor and Li Qian formula was 6.82±0.96/7.02±1.00, 5.67±0.58/5.71±0.59, 6.43±0.77/6.81±0.72 and 7.03±0.76/7.06±0.70 cm; GFR 45.44±9.04/46.61±9.06, 37.54±6.34/37.37±6.02, 43.39±7.59/44.62±6.94 and 46.99±8.04/46.70±7.30 ml/min respectively. Individual kidney depth and GFR calculated by Taylor and Li Qian were higher than those of Tonnesen formula (P 0.05). Conclusions Kidney depth measured by CT improves the accuracy of kidney depth estimated by Gates method and optimizes GFR in living donors for renal transplant. Key words: Kidney transplantation; Glomerular filtration rate; Kidney depth
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