Kurozumi Kazuhiko, Kameda Masahiro, Ishida Joji, Date Isao
Department of Neurological Surgery, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, 2-5-1 Shikata-cho, Okayama, 700-8558, Japan.
Acta Neurochir (Wien). 2017 Jun;159(6):1043-1048. doi: 10.1007/s00701-017-3111-6. Epub 2017 Feb 11.
The combination of electromagnetic navigation with continuous monitoring techniques allows for the best available anatomic and real-time functional intraoperative monitoring. Methodological aspects and technical adaptations for this combination of methods and the results from 19 patients with tumors in the pituitary region are reported.
We retrospectively identified 19 patients who were treated with transsphenoidal surgery using high-resolution endoscopy (eTSS) at our hospital between June 2015 and June 2016. All patients underwent surgery under electromagnetic navigation with visual evoked potential (VEP) monitoring. The cases were reviewed for information on disease, and the distance between the patient tracker and emitter was measured.
In 19 patients, 17 had pituitary adenomas, 1 had a Rathke cleft cyst, and 1 had an arachnoid cyst. The optimal distance between the patient tracker and emitter was 20-25 cm. VEP monitoring could be performed with unaffected recording quality under electromagnetic navigation. Also we were able to perform the registration and eTSS at this distance using both navigation and VEP monitoring.
We performed eTSS for pituitary tumor by simultaneously using electromagnetic navigation and VEP. The optimal distance between the emitter and tracker minimizes VEP monitoring noise and allows accurate electromagnetic navigation.
电磁导航与连续监测技术相结合可实现术中最佳的解剖结构及实时功能监测。本文报道了垂体区域肿瘤患者应用此联合方法的方法学要点、技术调整及19例患者的结果。
回顾性分析2015年6月至2016年6月在我院接受高分辨率内镜经蝶窦手术(eTSS)治疗的19例患者。所有患者均在视觉诱发电位(VEP)监测下接受电磁导航手术。对病例的疾病信息进行回顾,并测量患者跟踪器与发射器之间的距离。
19例患者中,17例为垂体腺瘤,1例为拉克氏囊肿,1例为蛛网膜囊肿。患者跟踪器与发射器之间的最佳距离为20 - 25厘米。在电磁导航下可进行VEP监测,记录质量不受影响。在此距离下,我们还能同时使用导航和VEP监测进行配准和eTSS。
我们通过同时使用电磁导航和VEP对垂体肿瘤进行了eTSS。发射器与跟踪器之间的最佳距离可将VEP监测噪声降至最低,并实现精确的电磁导航。