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三维高分辨率 MRI 融合技术对面神经痛患者神经血管压迫特征的研究。

Characteristics of neurovascular compression in facial neuralgia patients by 3D high-resolution MRI and fusion technology.

机构信息

Radiology Department, Hospital Municipal of Haikou, 43 People's Blvd, Haikou 570208, Hainan Province, China.

出版信息

Asian Pac J Trop Med. 2012 Dec;5(12):1000-3. doi: 10.1016/S1995-7645(12)60190-4.

Abstract

OBJECTIVE

To evaluate the anatomical characteristics and patterns of neurovascular compression in patients suffering trigeminal neuralgia, using 3D high-resolution magnetic resonance imaging methods and fusion technologies.

METHODS

The analysis of the anatomy of the facial nerve, brain stem and the vascular structures related to this nerve was made in 100 consecutive patients for TN. 3D high resolution MRI studies (3D SPGR, T1 enhanced 3D MP-RAGE and T2/T1 3D FIESTA) simultaneous visualization were used to assessed using the software 3D DOCTOR.

RESULTS

In 93 patients (93%), there were one or several locals of neurovascular compression (NVC). The superior cerebellar artery was involved in 71 cases (76%), the other vessels including the antero-inferior cerebellar artery, the basilar artery, the vertebral artery, and some venous structures. The mean distance between NVC and nerve origin site in the brainstem was (3.76 ± 2.90) mm). In 39 patients (42%), the vascular compression was located proximally and in 42 (45%) the compression was located distally. Nerve dislocation or distortion by the vessel was observed in 30 cases (32%).

CONCLUSIONS

This 3D high resolution MRI and image fusion technology could be useful for diagnostic and therapeutic decisions in TN.

摘要

目的

使用 3D 高分辨率磁共振成像方法和融合技术,评估三叉神经痛患者的神经血管压迫的解剖学特征和模式。

方法

对 100 例连续的 TN 患者的面神经、脑干和与该神经相关的血管结构的解剖进行分析。使用 3D 医生软件对 3D SPGR、T1 增强 3D MP-RAGE 和 T2/T1 3D FIESTA 同时进行 3D 高分辨率 MRI 研究,以进行评估。

结果

在 93 例患者(93%)中,存在一处或多处神经血管压迫(NVC)。小脑上动脉受累 71 例(76%),其他血管包括前下小脑动脉、基底动脉、椎动脉和一些静脉结构。NVC 和脑干神经起源部位之间的平均距离为(3.76±2.90)mm。在 39 例患者(42%)中,血管压迫位于近端,在 42 例患者(45%)中,压迫位于远端。在 30 例患者(32%)中观察到血管对神经的脱位或扭曲。

结论

这种 3D 高分辨率 MRI 和图像融合技术可用于三叉神经痛的诊断和治疗决策。

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