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菱形窝的小脑上脚周围入路。第二部分。神经生理学基础。

Pericollicular approaches to the rhomboid fossa. Part II. Neurophysiological basis.

作者信息

Strauss C, Romstöck J, Fahlbusch R

机构信息

Department of Neurosurgery, University of Erlangen, Nuremberg, Germany.

出版信息

J Neurosurg. 1999 Nov;91(5):768-75. doi: 10.3171/jns.1999.91.5.0768.

Abstract

OBJECT

The authors describe their technique of electrophysiological mapping to assist pericollicular approaches into the rhomboid fossa.

METHODS

Surgical approaches to the rhomboid fossa can be optimized by direct electrical stimulation of superficially located nuclei and fibers. Electrophysiological mapping allows identification of facial nerve fibers, nuclei of the abducent and hypoglossal nerves, motor nucleus of the trigeminal nerve, and the ambiguous nucleus. Stimulation at the surface of the rhomboid fossa performed using the threshold technique allows localization above the area that is located closest to the surface. Simultaneous bilateral electromyographic (EMG) recordings from cranial motor nerves obtained during stimulation document the selectivity of evoked EMG responses. With respect to stimulation parameters and based on morphometric measurements, the site of stimulation can be assumed to be the postsynaptic fibers at the axonal cone. Strict limitation to 10 Hz with a maximum stimulation intensity not exceeding 2 mA can be considered safe. Direct side effects of electrical stimulation were not observed.

CONCLUSIONS

Electrical stimulation based on morphometric data obtained on superficial brainstem anatomy defines two safe paramedian supra- and infracollicular approaches to the rhomboid fossa and is particularly helpful in treating intrinsic brainstem lesions that displace normal anatomical structures.

摘要

目的

作者描述了他们的电生理标测技术,以辅助经小脑上蚓部入路进入菱形窝。

方法

通过直接电刺激位于表面的核团和纤维,可以优化进入菱形窝的手术入路。电生理标测可识别面神经纤维、展神经和舌下神经核、三叉神经运动核以及疑核。使用阈值技术在菱形窝表面进行刺激,可定位到最接近表面的区域上方。刺激期间从颅神经运动神经获得的双侧同步肌电图(EMG)记录证明了诱发EMG反应的选择性。根据刺激参数并基于形态测量,可认为刺激部位是轴突圆锥处的突触后纤维。严格限制在10Hz,最大刺激强度不超过2mA可被认为是安全的。未观察到电刺激的直接副作用。

结论

基于脑干表面解剖学获得的形态学数据进行电刺激,确定了两种安全的经小脑上蚓部和下蚓部旁正中入路进入菱形窝,尤其有助于治疗使正常解剖结构移位的脑干内病变。

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