Phan Kevin, Li Julian, Giang Gloria, Teng Ian, Phan Steven, Chang Nicholas, Mobbs Ralph
University of New South Wales, Faculty of Medicine, Australia; Neurospine Research Group (NSURG), Australia; University of Sydney, Faculty of Medicine, Australia.
University of New South Wales, Faculty of Medicine, Australia; Neurospine Research Group (NSURG), Australia.
J Clin Neurosci. 2017 Nov;45:324-327. doi: 10.1016/j.jocn.2017.08.049. Epub 2017 Sep 8.
Sacral-iliac fixation techniques may be indicated in the management of various lumbosacral pathologies including spinal degeneration, infection, tumour resection, fracture, pseudarthrosis, correction of spinal deformities involving long fusion constructs to the sacrum and cases with poor sacral fixation. There are a number of options for lumbosacral fixation each with their own advantages and disadvantages. Though S2-alar-iliac (S2AI) have demonstrated promising advantages over alternatives, the complex anatomy of the spinopelvic region demands precise insertion of the screws to create a biomechanically robust construct safely. As such, we present a novel technique of using intra-operative CT navigation and K-wires to establish and secure a planned trajectory, thereby ensuring solid spinopelvic fixation with S2AI screws. This was performed as part of a long fusion construct for correction of kyphosis deformity in a male patient.
骶髂固定技术可用于治疗各种腰骶部疾病,包括脊柱退变、感染、肿瘤切除、骨折、假关节、涉及骶骨的长节段融合结构的脊柱畸形矫正以及骶骨固定不佳的病例。腰骶部固定有多种选择,每种都有其优缺点。尽管S2-翼-髂骨(S2AI)固定相较于其他方法已显示出有前景的优势,但脊柱骨盆区域复杂的解剖结构要求精确置入螺钉,以安全地构建生物力学稳固的结构。因此,我们提出一种新技术,即使用术中CT导航和克氏针来建立并确保预定的轨迹,从而确保用S2AI螺钉实现稳固的脊柱骨盆固定。这是作为一名男性患者脊柱后凸畸形矫正长节段融合结构的一部分进行的。