Arachnoiditis Ossificans - A Rare Cause of Progressive Myelopathy.

Q4 Medicine
Open Neuroimaging Journal Pub Date : 2015-08-31 eCollection Date: 2015-01-01 DOI:10.2174/1874440001509010013
Christopher J Steel, Erik L Abrames, William T O'Brien
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引用次数: 11

Abstract

Arachnoiditis ossificans is a rare cause of chronic, progressive myelopathy. In contrast to the more common benign causes of meningeal calcification, arachnoiditis ossificans results in replacement of portions of the spinal arachnoid by bone as an end-stage complication of adhesive arachnoiditis. It is usually the sequela of prior trauma or interventional procedures. Prognosis and treatment options depend upon the location and degree of spinal stenosis with thoracic involvement being more common and more severe than lumbar spine involvement. The imaging findings on magnetic resonance imaging may be confusing; however, the findings of intraspinal ossification on computed tomography are characteristics and diagnostic. We present a classic case of arachnoiditis ossificans in an elderly man who presented with progressive myelopathy and a recent fall, along with a review of the literature. The imaging in this case not only identified the characteristic findings of arachnoiditis ossificans but also identified secondary findings of the underlying causative etiology.

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Abstract Image

Abstract Image

骨化性蛛网膜炎——进行性脊髓病的罕见病因。
骨化性蛛网膜炎是一种罕见的慢性进行性脊髓病。与更常见的脑膜钙化的良性原因相反,蛛网膜炎骨化导致部分脊髓蛛网膜被骨替代,这是粘连性蛛网膜炎的终末期并发症。它通常是先前创伤或介入手术的后遗症。预后和治疗方案取决于椎管狭窄的位置和程度,累及胸椎比累及腰椎更为常见和严重。磁共振成像的成像结果可能令人困惑;然而,椎管内骨化的计算机断层扫描结果是特征和诊断。我们提出一个典型的病例的蛛网膜炎骨化在一个老年男子谁提出进行性脊髓病和最近跌倒,随着文献回顾。本病例的影像学检查不仅确定了蛛网膜炎骨化的特征性表现,而且确定了潜在病因学的继发性发现。
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来源期刊
Open Neuroimaging Journal
Open Neuroimaging Journal Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
0.70
自引率
0.00%
发文量
3
期刊介绍: The Open Neuroimaging Journal is an Open Access online journal, which publishes research articles, reviews/mini-reviews, and letters in all important areas of brain function, structure and organization including neuroimaging, neuroradiology, analysis methods, functional MRI acquisition and physics, brain mapping, macroscopic level of brain organization, computational modeling and analysis, structure-function and brain-behavior relationships, anatomy and physiology, psychiatric diseases and disorders of the nervous system, use of imaging to the understanding of brain pathology and brain abnormalities, cognition and aging, social neuroscience, sensorimotor processing, communication and learning.
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