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用于精确识别由棘状脊柱骨赘引起的高流量脑脊液漏的超快动态计算机断层脊髓造影术。

Ultrafast dynamic computed tomography myelography for the precise identification of high-flow cerebrospinal fluid leaks caused by spiculated spinal osteophytes.

作者信息

Thielen Kent R, Sillery John C, Morris Jonathan M, Hoxworth Joseph M, Diehn Felix E, Wald John T, Rosebrock Richard E, Yu Lifeng, Luetmer Patrick H

机构信息

Department of Radiology, Mayo Clinic, Rochester, Minnesota;

出版信息

J Neurosurg Spine. 2015 Mar;22(3):324-31. doi: 10.3171/2014.10.SPINE14209. Epub 2015 Jan 2.

Abstract

OBJECT

Precise localization and understanding of the origin of spontaneous high-flow spinal CSF leaks is required prior to targeted treatment. This study demonstrates the utility of ultrafast dynamic CT myelography for the precise localization of high-flow CSF leaks caused by spiculated spinal osteophytes.

METHODS

This study reports a series of 14 patients with high-flow CSF leaks caused by spiculated spinal osteophytes who underwent ultrafast dynamic CT myelography between March 2009 and December 2010. There were 10 male and 4 female patients, with an average age of 49 years (range 37-74 years). The value of ultrafast dynamic CT myelography in depicting the CSF leak site was qualitatively assessed.

RESULTS

In all 14 patients, ultrafast dynamic CT myelography was technically successful at precisely demonstrating the site of the CSF leak, the causative spiculated osteophyte piercing the dura, and the relationship of the implicated osteophyte to adjacent structures. Leak sites included 3 cervical, 11 thoracic, and 0 lumbar levels, with 86% of the leaks occurring from C-5 to T-7. Information obtained from the ultrafast dynamic CT myelogram was considered useful in all treated CSF leaks.

CONCLUSIONS

Spinal osteophytes piercing the dura are a more frequent cause of high-flow CSF leaks than previously recognized. Ultrafast dynamic CT myelography adds value beyond standard dynamic myelography or digital subtraction myelography in the diagnosis and anatomical characterization of high-flow spinal CSF leaks caused by these osteophytes. This information allows for appropriate planning for percutaneous or surgical treatment.

摘要

目的

在进行靶向治疗之前,需要精确定位并了解自发性高流量脊髓脑脊液漏的起源。本研究证明了超快速动态CT脊髓造影在精确定位由棘状脊柱骨赘引起的高流量脑脊液漏方面的实用性。

方法

本研究报告了一系列14例由棘状脊柱骨赘引起的高流量脑脊液漏患者,他们在2009年3月至2010年12月期间接受了超快速动态CT脊髓造影。其中男性10例,女性4例,平均年龄49岁(范围37 - 74岁)。对超快速动态CT脊髓造影在描绘脑脊液漏部位方面的价值进行了定性评估。

结果

在所有14例患者中,超快速动态CT脊髓造影在技术上成功地精确显示了脑脊液漏的部位、穿透硬脑膜的致病棘状骨赘以及相关骨赘与相邻结构的关系。漏出部位包括3个颈椎节段、11个胸椎节段和0个腰椎节段,86%的漏出发生在C - 5至T - 7节段。从超快速动态CT脊髓造影获得的信息在所有接受治疗的脑脊液漏中均被认为是有用的。

结论

穿透硬脑膜的脊柱骨赘是高流量脑脊液漏比先前认识到的更常见的原因。在诊断和解剖学特征描述由这些骨赘引起的高流量脊髓脑脊液漏方面,超快速动态CT脊髓造影比标准动态脊髓造影或数字减影脊髓造影更具价值。这些信息有助于为经皮或手术治疗进行适当的规划。

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