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磁共振显微神经成像及应用于糖尿病性神经病变的分割协议

MR Micro-Neurography and a Segmentation Protocol Applied to Diabetic Neuropathy.

作者信息

Felisaz P F, Maugeri G, Busi V, Vitale R, Balducci F, Gitto S, Leporati P, Pichiecchio A, Baldi M, Calliada F, Chiovato L, Bastianello S

机构信息

Radiology Department, University of Pavia, Pavia, Italy.

Postgraduation School in Radiodiagnostics, Università degli Studi di Milano, Milan, Italy.

出版信息

Radiol Res Pract. 2017;2017:2761818. doi: 10.1155/2017/2761818. Epub 2017 Apr 16.

Abstract

The aim of this study was to assess with MRI morphometric ultrastructural changes in nerves affected by diabetic peripheral neuropathy (DPN). We used an MR micro-neurography imaging protocol and a semiautomated technique of tissue segmentation to visualize and measure the volume of internal nerve components, such as the epineurium and nerve fascicles. The tibial nerves of 16 patients affected by DPN and of 15 healthy volunteers were imaged. Nerves volume (NV), fascicles volume (FV), fascicles to nerve ratio (FNR), and nerves cross-sectional areas (CSA) were obtained. In patients with DPN the NV was increased and the FNR was decreased, as a result of an increase of the epineurium (FNR in diabetic neuropathy 0,665; in controls 0,699, = 0,040). CSA was increased in subjects with DPN (12,84 mm versus 10,22 mm, = 0,003). The FV was increased in patients with moderate to severe DPN. We have demonstrated structural changes occurring in nerves affected by DPN, which otherwise are assessable only with an invasive biopsy. MR micro-neurography appears to be suitable for the study of microscopic changes in tibial nerves of diabetic patients.

摘要

本研究的目的是利用磁共振成像(MRI)评估受糖尿病周围神经病变(DPN)影响的神经的形态计量学和超微结构变化。我们采用了磁共振显微神经成像方案和半自动组织分割技术,以可视化并测量神经内部成分(如神经外膜和神经束)的体积。对16例DPN患者和15名健康志愿者的胫神经进行了成像。获得了神经体积(NV)、神经束体积(FV)、神经束与神经比率(FNR)以及神经横截面积(CSA)。在DPN患者中,由于神经外膜增加,NV增加而FNR降低(糖尿病神经病变患者的FNR为0.665;对照组为0.699,P = 0.040)。DPN患者的CSA增加(12.84mm²对10.22mm²,P = 0.003)。中度至重度DPN患者的FV增加。我们已经证明了受DPN影响的神经中发生的结构变化,否则这些变化只能通过侵入性活检来评估。磁共振显微神经成像似乎适用于研究糖尿病患者胫神经的微观变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d09a/5439248/bf871b1ffd90/RRP2017-2761818.001.jpg

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