Smith D B, Sidman R D, Henke J S, Flanigin H, Labiner D, Evans C N
Electroencephalogr Clin Neurophysiol. 1983 Feb;55(2):145-50. doi: 10.1016/0013-4694(83)90180-3.
A balanced square wave was introduced between two adjacent depth electrodes implanted in the course of studying patients with intractable epilepsy and who were being considered for surgery. The stimulus current was designed so that charge density loading was well within limits of safety to avoid tissue damage. No neuronal activation was seen, and the stimulus intensity was significantly less than that used in subsequent stimulation session for the purpose of eliciting a clinical response and after-discharges. Averaging techniques were used to record the stimulus at distant electrodes both within the cerebrum and on the scalp. The recorded voltage decrement from the source was nearly identical with the theoretical voltage decrement predicted using principles of electric field theory in which the brain was assumed to be a homogeneous conductive medium. When the voltage recorded on the scalp was compared with the voltages recorded from depth electrodes, it was found that the effect of the highly resistive skull on voltage decrement was relatively less the more centric the source. This result also confirmed predictions based on electric field theory. Most significantly, voltages well within the physiologic range introduced in deep mesial temporal lobe structures were recorded from the scalp.
在对顽固性癫痫患者进行研究并考虑手术时,在两个相邻的深度电极之间引入了平衡方波。刺激电流的设计使得电荷密度负荷完全在安全范围内,以避免组织损伤。未观察到神经元激活,且刺激强度明显低于后续为引发临床反应和后放电而进行的刺激疗程中所使用的强度。采用平均技术记录大脑内部和头皮上远处电极处的刺激。从源记录的电压衰减与使用电场理论原理预测的理论电压衰减几乎相同,其中假设大脑为均匀导电介质。当将头皮上记录的电压与深度电极记录的电压进行比较时,发现源越靠近中心,高电阻颅骨对电压衰减的影响相对越小。这一结果也证实了基于电场理论的预测。最显著的是,从头皮记录到了在颞叶内侧深部结构中引入的完全在生理范围内的电压。