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首页> 外文期刊>Cureus. >Intraoperative Neurophysiological Monitoring During Trigeminal Schwannoma Surgery
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Intraoperative Neurophysiological Monitoring During Trigeminal Schwannoma Surgery

机译:三叉施瓦南瘤手术期间的术中神经生理学监测

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Surgical manipulation during skull base surgeries places various cranial nerves?(CN) at risk, including the nerves innervating the extraocular muscles. It could be very challenging for the surgeon to identify these cranial nerves due to the distortion of the normal anatomy by the tumors. Despite the recent advancement in technology, surgeries involving the third, fourth, fifth, and sixth cranial nerves still carry a risk of temporary or permanent paralysis of the muscles supplied by these cranial nerves. Intraoperative Neurophysiological Monitoring (IONM) with spontaneous and triggered electromyography (EMG) can help in guiding?the surgeon in locating the nerves and avoiding any injury to them during the resection. IONM for extraocular cranial nerves requires highly skilled personnel?with knowledge of anatomy and expertise in the placement of the electrodes.?Benign tumors of the nerve sheath that arise?from the perineural Schwann cells are known as schwannomas. Various cranial nerves might be involved in schwannomas of the head and neck. Trigeminal schwannomas are rare tumors.?In this report, we describe the setup and stimulation?technique?and parameters as well as the benefits of utilizing IONM during the aggressive resection of a trigeminal schwannoma. The main purpose of utilizing IONM during these high-risk surgical procedures is to minimize any intraoperative damage to the neural structures involved.
机译:颅底手术期间的手术操纵将各种颅神经置于风险(CN),包括神经,在内地检查视域肌肉。外科医生由于肿瘤的正常解剖结构而识别这些颅神经可能是非常挑战的。尽管技术最近的技术进步,但涉及第三,第四,第五和第六次颅神经的手术仍然具有这些颅神经供应的肌肉的临时或永久麻痹的风险。具有自发和触发的肌电学(EMG)的术中神经生理学监测(IONM)可以帮助引导外科医生在切除期间定位神经并避免对它们的任何伤害。外潜颅神经的IONM需要高技能人员?在放置电极中的解剖和专业知识了解。出现的神经护套的肿瘤瘤?来自Perineural Schwann细胞称为Schwannomas。各种颅神经可能会参与头部和颈部的施瓦莫玛。 Trigeminal Schwannomas是罕见的肿瘤。本报告中,我们描述了设置和刺激?技术?和参数以及在发生三叉肠施瓦新马瘤的侵袭性切除过程中使用IONM的益处。在这些高风险外科手术过程中使用IONM的主要目的是最大限度地减少对所涉及的神经结构的任何术中损坏。

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