Ducati A, Fava E, Motti E D
Institute of Neurosurgery, University of Milan, Italy.
Electroencephalogr Clin Neurophysiol. 1988 Mar-Apr;71(2):89-99. doi: 10.1016/0168-5597(88)90010-x.
Flash and pattern reversal visual evoked potentials were recorded in awake patients undergoing stereotactic procedures for severe dyskinetic disorders resistant to medical treatment. The nucleus ventralis lateralis thalami was reached via an occipital approach. VEPs were recorded on the scalp at the entrance of the intracerebral electrode, and serially from sites at different depths. A polarity reversal of the surface recorded wave form took place as the intracerebral electrode was advanced beneath the surface cortical layers. As concerns F-VEPs, most of the scalp activity mirrored the potentials recorded down to the depth of 70-65 mm from the thalamus. The largest amplitude of intracerebral F-VEPs was obtained from recording sites at 50-70 mm from the thalamus, i.e., in the depth of the calcarine fissure. A negative wave, peaking around 47-50 msec, became evident in recording sites at 30-40 mm from the thalamus but vanished as the electrode was advanced farther. In only one patient could we record a small negative wave, peaking at 33 msec, in the vicinity of the corpus geniculatum externum. Furthermore, the oscillatory activity recorded from the scalp appeared to be generated in the cortical layers. PR-VEPs also underwent polarity reversal as the electrode traversed the cortex. PR-VEPs disappeared more superficially than F-VEPs. No PR-evoked activity could be recorded in the vicinity of the corpus geniculatum externum. We conclude that slow and fast components of VEPs recorded from the scalp are entirely generated in cortical layers.
对因严重运动障碍且药物治疗无效而接受立体定向手术的清醒患者记录了闪光和模式反转视觉诱发电位。通过枕部入路到达丘脑腹外侧核。在脑内电极进入头皮处记录视觉诱发电位,并在不同深度的部位连续记录。当脑内电极推进到表面皮质层下方时,表面记录的波形发生极性反转。关于闪光视觉诱发电位,大部分头皮活动反映了从丘脑向下至70 - 65毫米深度记录的电位。脑内闪光视觉诱发电位的最大振幅是在距丘脑50 - 70毫米的记录部位获得的,即在距状裂深度处。一个在47 - 50毫秒左右达到峰值的负波在距丘脑30 - 40毫米的记录部位变得明显,但随着电极进一步推进而消失。仅在一名患者中,我们在外侧膝状体附近记录到一个在33毫秒达到峰值的小负波。此外,从头皮记录的振荡活动似乎是在皮质层产生的。模式反转视觉诱发电位在电极穿过皮质时也发生极性反转。模式反转视觉诱发电位比闪光视觉诱发电位在更浅的层面消失。在外侧膝状体附近未记录到模式反转视觉诱发电位诱发的活动。我们得出结论,从头皮记录的视觉诱发电位的慢波和快波成分完全是在皮质层产生的。