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Prospective Validation of Facial Nerve Monitoring to Prevent Nerve Damage During Robotic Drilling

机译:预防机器人钻孔过程中神经损伤的面部神经监测的前瞻性验证

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摘要

Facial nerve damage has a detrimental effect on a patient's life, therefore safety mechanisms to ensure its preservation are essential during lateral skull base surgery. During robotic cochlear implantation a trajectory passing the facial nerve at <0.5 mm is needed. Recently a stimulation probe and nerve monitoring approach were developed and introduced clinically, however for patient safety no trajectory was drilled closer than 0.4 mm. Here we assess the performance of the nerve monitoring system at closer distances. In a sheep model eight trajectories were drilled to test the setup followed by 12 trajectories during which the ENT surgeon relied solely on the nerve monitoring system and aborted the robotic drilling process if intraoperative nerve monitoring alerted of a distance <0.1 mm. Microcomputed tomography images and histopathology showed prospective use of the technology prevented facial nerve damage. Facial nerve monitoring integrated in a robotic system supports the surgeon's ability to proactively avoid damage to the facial nerve during robotic drilling in the mastoid.
机译:面神经损伤对患者的生活有不利影响,因此在侧颅底手术中确保其保存的安全机制至关重要。在机器人人工耳蜗植入过程中,需要通过<0.5 mm的面神经的轨迹。最近,开发了一种刺激探针和神经监测方法,并在临床上引入了这种方法,但是为了患者安全起见,没有在0.4mm附近钻出任何轨迹。在这里,我们评估了近距离神经监控系统的性能。在绵羊模型中,钻了8条轨迹以测试设置,然后是12条轨迹,在此期间,如果术中神经监测提示距离小于0.1毫米,则耳鼻喉科医生完全依赖神经监测系统,并中止了机器人的钻孔过程。微型计算机断层扫描图像和组织病理学表明,该技术的前瞻性使用防止了面神经损伤。集成在机器人系统中的面部神经监控功能支持外科医生在乳突机器人钻孔过程中主动避免对面部神经造成损害的能力。

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