Madhavan Ajay A, Kodet Michelle L, Brinjikji Waleed, Mark Ian T, Schievink Wouter I
From the Division of Neuroradiology (A.A.M., M.L.K., W.B., I.T.M.), Department of Radiology, Mayo Clinic, Rochester, Minnesota
From the Division of Neuroradiology (A.A.M., M.L.K., W.B., I.T.M.), Department of Radiology, Mayo Clinic, Rochester, Minnesota.
AJNR Am J Neuroradiol. 2025 Jun 3;46(6):1282. doi: 10.3174/ajnr.A8820.
Spinal CSF leaks are the primary cause of spontaneous intracranial hypotension, with the most common types of leaks including CSF-venous fistulas and dural tears. These leaks necessitate advanced myelographic techniques for accurate localization. Digital subtraction myelography is one such technique used at some institutions. Although digital subtraction myelography has excellent temporal and spatial resolution, it does not provide high-resolution cross-sectional images. Here, we describe our technique for conebeam CT myelography performed immediately after digital subtraction myelography, which generates high-resolution cross-sectional images. We illustrate how this technique enhances detection and characterization of some spinal CSF leaks.
脊髓脑脊液漏是自发性颅内低压的主要原因,最常见的漏出类型包括脑脊液静脉瘘和硬脑膜撕裂。这些漏出需要先进的脊髓造影技术来准确定位。数字减影脊髓造影就是一些机构使用的这样一种技术。尽管数字减影脊髓造影具有出色的时间和空间分辨率,但它不能提供高分辨率的横断面图像。在此,我们描述了在数字减影脊髓造影后立即进行的锥束CT脊髓造影技术,该技术可生成高分辨率的横断面图像。我们展示了这种技术如何增强对一些脊髓脑脊液漏的检测和特征描述。