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Anatomical study of the paraspinal approach to the lumbar spine

机译:脊柱旁脊柱入路的解剖学研究

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摘要

The original description of the paraspinal posterior approach to the lumbar spine was for spinal fusion, especially regarding lumbosacral spondylolisthesis treatment. In spite of the technical details described by Wiltse, exact location of the area where the sacrospinalis muscle has to be split remains somewhat unclear. The goal of this study was to provide topographic landmarks to facilitate this surgical approach. Thirty cadavers were dissected in order to precisely describe the anatomy of the trans-muscular paraspinal approach. The level of the natural cleavage plane between the multifidus and the longissimus part of the sacrospinalis muscle was noted and measurements were done between this level and the midline at the level of the spinous process of L4. A natural cleavage plane between the multifidus and the longissimus part of the sacrospinalis muscle was present in all cases. There was a fibrous separation between the two muscular parts in 55 out of 60 cases. The mean distance between the level of the cleavage plane and the midline was 4 cm (2.4–5.5 cm). In all cases, small arteries and veins were present, precisely at the level of the cleavage plane. We found it possible to easily localize the anatomical cleavage plane between the multifidus part and the longissimus part of the sacrospinalis muscle. First the superficial muscular fascia is opened near the midline, exposing the posterior aspect of the sacrospinalis muscle. Then, the location of the muscular cleft can be found by identifying the perforating vessels leaving the anatomical inter-muscular space.
机译:腰椎脊柱后路入路的最初描述是用于脊柱融合术,尤其是关于腰s部腰椎滑脱的治疗。尽管Wiltse描述了技术细节,但s棘肌必须分开的区域的确切位置仍不清楚。这项研究的目的是提供地形标志,以促进这种手术方法。解剖了30具尸体,以准确描述经肌旁脊柱入路的解剖结构。记下fi棘肌的多裂肌和纵肌部分之间的自然分裂平面的水平,并在L4棘突水平的水平与中线之间进行测量。在所有情况下,multi肌之间的多裂肌和最长肌部分之间均存在自然的分裂平面。 60例病例中有55例在两个肌肉部分之间有纤维分离。劈裂平面与中线之间的平均距离为4厘米(2.4-5.5厘米)。在所有情况下,都存在小动脉和静脉,恰好在卵裂平面处。我们发现可以很容易地在sa棘肌的多裂部分和最长肌部分之间定位解剖切割平面。首先,在中线附近打开浅表肌筋膜,露出pin棘肌的后侧。然后,可以通过识别离开解剖肌间空间的穿孔血管来找到肌肉裂口的位置。

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