Influence of Prone Positioning on Potential Risk of Aorta Injury From Pedicle Screw Misplacement in Adolescent Idiopathic Scoliosis Patients

医学 主动脉 俯卧位 磁共振成像 脊柱侧凸 放射科 特发性脊柱侧凸 前瞻性队列研究 胸主动脉 核医学 外科
作者
Xusheng Qiu,Hua Jiang,Bangping Qian,Weijun Wang,Feng Zhu,Zezhang Zhu,Yong Qiu
出处
期刊:Journal of Spinal Disorders & Techniques [Ovid Technologies (Wolters Kluwer)]
卷期号:27 (5): E162-E167 被引量:9
标识
DOI:10.1097/bsd.0000000000000075
摘要

A prospective magnetic resonance imaging (MRI) study.The aim of this study was to quantitatively analyze the potential risks of aorta injury from thoracic pedicle screw (TPS) misplacement in right thoracic adolescent idiopathic scoliosis (RT-AIS) patients who are in the prone position.The aorta injuries are rare during posterior spinal surgery, but they can result in catastrophic complications when they do occur. However, we are aware of no prior studies that have used MRI images obtained with patients in the prone position for the purpose of systematically evaluating the potential risks of aorta injury due to TPS misplacement.This prospective study included 38 RT-AIS patients who underwent MRI scans in the prone position. We evaluated on the MRI images the aorta position relative to the scoliotic spine, and simulated placement of a left TPS with a lateral deviation different from the medium trajectory using Surgimap Spine imaging software. The maximum error of lateral direction was set to 10, 20, or 30 degrees (3 scenarios), and the length of the TPS was set at 30, 35, or 40 mm (3 scenarios). Sensitivity analysis was performed by variable direction errors and TPS lengths. The potential risk of aorta impingement was defined as the virtual TPS crossing the aorta. The percentages of potential risk of aorta impingement were calculated at each level in 9 scenarios.In the RT-AIS patients, the aorta shifted gradually from the left side of the vertebrae at midthoracic levels to a more anterior position at the lower thoracic levels, and was close to the vertebral body at T5-T6 and far away from the left cortex of vertebrae at T12. In 9 scenarios, with the increment of the lengths or/and direction errors of the simulated TPS, the risks of aorta impingement were consistently elevated at all the levels. The simulated 40 mm TPS at T5, T6, and T11 posed a higher potential risk of aorta injury (66%-74%) with a 30-degree lateral direction error.Prone positioning may increase the potential risk of aorta injury in RT-AIS patients, particularly at T5-T6 and T11 even if a left TPS just barely touches the anteriolateral or lateral cortex of the vertebrae. Laterally misplaced TPSs should be removed at these high aorta-at-risk levels.
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