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Magnetic Resonance Imaging of the Craniovertebral Junction Ligaments: Normal Anatomy and Traumatic Injury

机译:颅骨交界韧带的磁共振成像:正常解剖和创伤性损伤

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摘要

The superb stability and flexibility of the craniovertebral junction (CVJ) are enabled by the ligaments that connect the occipital bone and the C1 and C2 vertebral bodies. Radiographically, these ligaments are best assessed with magnetic resonance imaging (MRI), which has excellent soft tissue contrast, but typically poor spatial resolution. With the advent of advanced MRI techniques, including volumetric sequences, high spatial resolution and contrast resolution can both be attained, allowing for detailed analysis of the ligaments, particularly in trauma settings. We have instituted a cervical spine trauma protocol which utilizes a high resolution (1-mm voxel) volumetric proton density sequence to detect injuries to the ligaments of the CVJ in all trauma patients who receive a cervical spine MRI in our emergency room. In this article, we review techniques for imaging the ligaments at the CVJ, the normal imaging anatomy and the function of the CVJ ligaments, and their appearance in cases of traumatic injury.
机译:连接枕骨与C1和C2椎体的韧带使颅脑交界处(CVJ)具有出色的稳定性和柔韧性。放射学上,这些韧带最好用磁共振成像(MRI)进行评估,该成像具有出色的软组织对比度,但空间分辨率通常较差。随着先进的MRI技术(包括体积序列)的出现,可以同时获得高空间分辨率和对比度分辨率,从而可以对韧带进行详细分析,尤其是在创伤情况下。我们制定了颈椎创伤方案,该方案利用高分辨率(1毫米体素)体积质子密度序列来检测在急诊室接受颈椎MRI检查的所有创伤患者的CVJ韧带损伤。在本文中,我们将对CVJ韧带的成像技术,正常的成像解剖结构和CVJ韧带的功能及其在外伤情况下的外观进行回顾。

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