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Computational study of subdural and epidural cortical stimulation of the motor cortex

机译:硬脑膜硬膜外和硬膜外刺激的计算研究

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Cortical stimulation (CS) has gained wide attention for its use in augmenting neurological recovery in various conditions. Noninvasive cortical stimulations using transcranial magnetic stimulation (TMS) and transcranial direct current stimulation (tDCS) are less invasive when delivering the electrical current to the patient's brain, but have several limitations. Direct cortical stimulation (DCS) using an implantable stimulation system consisting of epidurally or subdurally placed electrodes and pulse generators, provides cortical stimulation and concurrent rehabilitative training in a stable fashion without limiting a patient's activities. The effectiveness of these two types of DCS — epidural cortical stimulation (ECS) and subdural cortical stimulation (SCS) — has not been compared. In this work, a computer simulation study was conducted to predict the current density distributions (CDD) through cortical stimulations using subdurally or epidurally placed electrodes. The simulation study is based on the human motor cortex model with a three-dimensional finite element model (FEM). The change in CDD depending on the shape of the electrode (disc or ring) is discussed. The output current induced by SCS was about four times larger than that of ECS when voltage stimulations with the same magnitude were regulated. Thus, SCS showed substantially better penetration of the current into gray or white matter. Further, the ring electrode performed comparably or slightly inferior to the disc electrode in both cortical stimulations.
机译:皮质刺激(CS)在各种情况下可用于增强神经功能恢复,因此受到广泛关注。当向患者的大脑输送电流时,使用经颅磁刺激(TMS)和经颅直流电刺激(tDCS)的非侵入性皮层刺激的侵入性较小,但存在一些局限性。使用由硬膜外或硬膜外放置的电极和脉冲发生器组成的可植入刺激系统进行的直接皮层刺激(DCS),可以在不限制患者活动的情况下以稳定的方式提供皮层刺激和同时的康复训练。尚未比较这两种类型的DCS的有效性-硬膜外皮层刺激(ECS)和硬膜下皮层刺激(SCS)。在这项工作中,进行了计算机模拟研究,以通过使用硬膜下或硬膜外放置的电极进行皮层刺激来预测电流密度分布(CDD)。该仿真研究基于带有三维有限元模型(FEM)的人体运动皮质模型。讨论了CDD随电极(碟形或环形)形状的变化。当调节相同幅度的电压激励时,SCS感应的输出电流大约是ECS的四倍。因此,SCS显示出电流更好地渗透到灰或白质中。此外,在两种皮层刺激中,环形电极的性能均与椎间盘电极相当或略逊于椎间盘电极。

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