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Navigated Endoport in the Purely Endoscopic Microsurgery of Intraventricular and Other Deep-Seated Brain Lesions A Case Report

机译:静脉内和其他深脑卒中纯净的内窥镜显微外科的导航内窥镜案例报告

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Objective. Brain parenchyma retraction is often necessary to reach various deep brain lesions during surgery. In order to minimise the incidence of the brain retraction injury, an endoport system may be employed. We present a report of a navigated endoport system in conjunction with an purely endoscopic microsurgery that was used in a patient with a deep-seated subependymoma.Case Report. A navigated endoport with purely endoscopic microsurgery were used in a patient with a tumourlocated in the frontal horn of the left lateral ventricle. The endoport channel was made of a polyvinyl sheet that was cut into a 7 cm square, rolled into a tubular structure that was wrapped around the neuronavigational probe, and inserted in the access trajectory to the tumour. The endoport tube was then expanded with a balloon to a diameter of 7 mm and a surgical corridor was thus formed. During the purely endoscopic microsurgical lesionectomy, the tumour was completely removed from the frontal horn. The foramen of Monro was released and the septum pellucidum was perforated for better cerebrospinal fluid circulation. Histopathological examination confirmed the tumour as subependymoma. The recovery of the patient was unremarkable.Conclusion. The expandable endoport system supplemented with neuronavigation is a safe and efficient option for deep-seated tumour removal. The tubular shape of the retractor enables standard microsurgical techniques through minimally invasive approaches and offers an excellent visualization of the underlying lesion.
机译:客观的。脑实质缩回通常需要在手术期间达到各种深脑病变。为了最小化脑收缩损伤的发生率,可以采用内拓系统。我们提出了一份导航的内oport系统的报告,与纯粹的内窥镜显微镜相关,所述内窥镜显微镜在患者中使用深层依赖的子依任词.Case报告。具有纯内镜显微外科的导航内骨折在左侧肠道前喇叭中的患者中使用。内oport通道由聚乙烯片制成,该聚乙烯片切成7cm正方形,卷成缠绕在神经和谐探针周围的管状结构中,并插入肿瘤的进入轨迹中。然后用球囊膨胀底模管以直径为7mm,因此形成手术走廊。在纯粹的内窥镜显微外科病变切除术期间,从额头角完全除去肿瘤。 Monro的粉刺被释放,隔膜颗粒状膜被穿孔以进行更好的脑脊液循环。组织病理学检查证实了肿瘤作为子依任性。患者的恢复是不起眼的。结论。补充有神经元的可扩展内拷贝系统是一种安全有效的选择,用于深坐姿肿瘤去除。牵开器的管状形状通过微创方法实现标准的显微外科技术,并提供潜在病变的优异可视化。

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