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使用科斯曼-罗伯茨-韦尔斯立体定向器械进行影像引导功能神经外科手术。

Image-directed functional neurosurgery with the Cosman-Roberts-Wells stereotactic instrument.

作者信息

Martínez R, Vaquero J

机构信息

Department of Neurosurgery, Puerta de Hierro Clinic, Autonomous University of Madrid, Spain.

出版信息

Acta Neurochir (Wien). 1991;113(3-4):176-9. doi: 10.1007/BF01403204.

Abstract

An isocentered system for functional stereotactic procedures with the Cosman-Roberts-Wells frame and a CT localizer that allows extrapolation of target data directly from the CT slice is presented. Based on anatomical landmarks and on the scaled corresponding transverse plates of the Schaltenbrand and Wahren atlas, we delineate the thalamic and cerebellar nuclei. Twenty three image-directed functional procedures were performed in one year on 18 patients (7 with Parkinson's disease, 4 with dystonia, 3 persons with essential tremor, 2 patients with choreo-athetosis and 2 with de-afferentiation pain). The 23 procedures included 19 thalamotomies, two dentatotomies and two stereotactic implantations of deep seated brain electrodes. Successful targeting was verified by intra-operative electrical stimulation and postoperative CT scan. Complete reduction of symptoms was observed in 4 persons with Parkinson's disease and in 2 patients with essential tremor with significant improvement observed in the rest of the patients with the exception of the individual with choreo-athetosis. There were no operation-related complications. The reported technique is safer and less distressing for patients than previous radiological procedures and it makes image-directed stereotactic functional neurosurgery available to many units with the CRW frame.

摘要

本文介绍了一种用于功能性立体定向手术的等中心系统,该系统配备科斯曼-罗伯茨-韦尔斯框架和CT定位仪,可直接从CT切片推断目标数据。基于解剖学标志以及沙尔滕布兰德和瓦伦图谱中相应的横向缩放板,我们描绘了丘脑和小脑核。一年内,对18例患者进行了23例图像引导的功能性手术(7例帕金森病患者、4例肌张力障碍患者、3例特发性震颤患者、2例舞蹈手足徐动症患者和2例去传入性疼痛患者)。这23例手术包括19例丘脑切开术、2例齿状核切开术和2例深部脑电极立体定向植入术。术中电刺激和术后CT扫描验证了靶点定位成功。4例帕金森病患者和2例特发性震颤患者症状完全缓解,其余患者(除舞蹈手足徐动症患者外)症状明显改善。未发生与手术相关的并发症。与以往的放射学手术相比,所报道的技术对患者更安全、痛苦更小,并且使许多配备CRW框架的单位能够开展图像引导的立体定向功能性神经外科手术。

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