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颈椎钩椎孔区域韧带和骨性结构的临床重要性

Clinical importance of ligamentous and osseous structures in the cervical uncovertebral foraminal region.

作者信息

Yilmazlar Selcuk, Kocaeli Hasan, Uz Aysun, Tekdemir Ibrahim

机构信息

Department of Neurosurgery, School of Medicine, Uludag University, Bursa, Turkey.

出版信息

Clin Anat. 2003 Sep;16(5):404-10. doi: 10.1002/ca.10158.

Abstract

The vertebral artery, cervical spinal nerves, spinal nerve roots, and the bony and ligamentous tissue related to the cervical vertebrae are structures whose anatomy determines the path of a surgical approach. Defining the anatomy and, in particular, determining the precise location of vulnerable structures at the intervertebral foramen and the uncovertebral foraminal region (UVFR), a region defined by the uncinate process anteriorly, the facet joint posteriorly and the foramen transversarium laterally, has critical significance when selecting the safest surgical approach. We studied the anatomy of the vertebral artery, cervical spinal nerves, and spinal nerve roots within the UVFR in six cadaver specimens. We also obtained measurements of bony structures in 35 dry cervical vertebral columns, from C3-C7. The uncinate process (UP) projects superiorly from the posterolateral aspect of each cervical vertebral body, except for the first and second vertebrae. Because the posterior part of the UP lies adjacent to the vertebral artery, spinal nerve, and spinal nerve roots, its resection creates sufficient space to decompress these structures directly. The posterolateral surface of the UP is covered by ligamentous tissue that originates from the posterior longitudinal ligament and protects the neural and vascular structures during their decompression in the UVFR.

摘要

椎动脉、颈脊神经、脊神经根以及与颈椎相关的骨骼和韧带组织,其解剖结构决定了手术入路的路径。明确这些结构的解剖情况,尤其是确定椎间孔和钩椎孔区域(UVFR,该区域由前方的钩突、后方的关节突关节和外侧的横突孔界定)中易损结构的精确位置,对于选择最安全的手术入路具有至关重要的意义。我们在六个尸体标本中研究了UVFR内椎动脉、颈脊神经和脊神经根的解剖结构。我们还对35个C3至C7的干燥颈椎柱的骨骼结构进行了测量。除第一和第二颈椎外,每个颈椎椎体的后外侧均有钩突(UP)向上突出。由于UP的后部与椎动脉、脊神经和脊神经根相邻,切除它可创造足够的空间直接对这些结构进行减压。UP的后外侧表面覆盖有源自后纵韧带的韧带组织,在UVFR对神经和血管结构进行减压时可保护它们。

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