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利用定量磁化传递成像可靠评估猪肾纤维化。

Reliable Assessment of Swine Renal Fibrosis Using Quantitative Magnetization Transfer Imaging.

机构信息

From the Division of Nephrology and Hypertension.

Department of Diagnostic Radiology, Mayo Clinic, Rochester, MN.

出版信息

Invest Radiol. 2022 May 1;57(5):334-342. doi: 10.1097/RLI.0000000000000843.

Abstract

OBJECTIVES

Quantitative magnetization transfer (qMT) is useful for measurement of murine renal fibrosis at high and ultrahigh field strengths. However, its utility at clinical field strengths and in human-like kidneys remains unknown. We tested the hypothesis that qMT would successfully detect fibrosis in swine kidneys with unilateral renal artery stenosis (RAS) at 3.0 T.

METHODS

The qMT protocol is composed of MT scans with variable flip angles and offset frequencies, and of B0, B1, and T1 mapping. Pigs were scanned 10 weeks after RAS or control. A 2-pool model was used to fit the bound pool fraction f of the renal cortex (CO) and outer medulla (OM). Then qMT-derived f in 5 normal and 10 RAS pigs was compared with histological fibrosis determined using Masson's trichrome staining and to renal perfusion assessed with computed tomography.

RESULTS

The qMT 2-pool model provided accurate fittings of data collected on swine kidneys. Stenotic kidneys showed significantly elevated f in both the CO (9.8% ± 2.7% vs 6.4% ± 0.9%, P = 0.002) and OM (7.6% ± 2.2% vs 4.7% ± 1.1%, P = 0.002), as compared with normal kidneys. Histology-measured renal fibrosis and qMT-derived f correlated directly in both the cortex (Pearson correlation coefficient r = 0.93, P < 0.001) and OM (r = 0.84, P = 0.002), and inversely with stenotic kidney perfusion (r = 0.85, P = 0.002).

CONCLUSIONS

This study demonstrates the feasibility of qMT for measuring fibrosis in human-like swine kidneys, and the association between tissue macromolecule content and renal perfusion. Therefore, qMT may be useful as a tool for noninvasive assessment of renal fibrosis in subjects with RAS at clinical field strengths.

摘要

目的

定量磁化转移(qMT)可用于在高场和超高场强度下测量鼠肾纤维化。然而,其在临床场强和类似人类肾脏中的应用尚不清楚。我们检验了这样一个假设,即在 3.0T 场强下,qMT 可成功检测单侧肾动脉狭窄(RAS)猪肾脏纤维化。

方法

qMT 方案由可变翻转角和偏移频率的 MT 扫描以及 B0、B1 和 T1 映射组成。在 RAS 或对照后 10 周对猪进行扫描。使用双池模型拟合肾皮质(CO)和外髓(OM)的结合池分数 f。然后,将 5 只正常猪和 10 只 RAS 猪的 qMT 衍生 f 与用 Masson 三色染色确定的组织纤维化以及用 CT 评估的肾灌注进行比较。

结果

qMT 双池模型为猪肾数据的收集提供了准确的拟合。狭窄肾脏的 CO(9.8%±2.7%比 6.4%±0.9%,P=0.002)和 OM(7.6%±2.2%比 4.7%±1.1%,P=0.002)中 f 值显著升高,与正常肾脏相比。组织学纤维化与 qMT 衍生 f 在皮质(Pearson 相关系数 r=0.93,P<0.001)和 OM(r=0.84,P=0.002)中直接相关,与狭窄肾脏灌注呈负相关(r=0.85,P=0.002)。

结论

本研究证明了 qMT 在测量类似人类猪肾脏纤维化和组织大分子含量与肾脏灌注之间的可行性。因此,qMT 可能成为临床场强下 RAS 患者肾纤维化无创评估的有用工具。

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