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A multiple electrode scheme for optimal non-invasive electrical stimulation

机译:最佳无创电刺激的多电极方案

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Transcranial electrical stimulation involves the delivery of weak electrical currents to the brain via scalp electrodes to elicit neuromodulatory effects. The current is conventionally passed through two large electrodes resulting in diffused electric fields. In this paper, we propose a novel paradigm in which multiple small electrodes with independent current controls are systematically optimized to yield targeted and effective stimulation under safety constraints. We employ the finite element method, in conjunction with a magnetic resonance imagery based model of the human head, to formulate a linear system relating the applied scalp current to the resulting electric field. Optimization techniques are then applied to derive stimulation parameters which maximize either intensity or focality at the target location. Results demonstrate that the optimal electrode configuration is strongly dependent on both the desired field orientation and the optimization criterion. The proposed scheme yields improvements of 98% in target intensity and 80% in focality compared to the conventional two-electrode montage. Additionally, the presented framework effectively optimizes electrode placement in the classical bipolar configuration, which is useful if only a single channel current source is available. Consequently, the proposed scheme promises to deliver increased efficacy and improved patient safety to clinical settings in which the target site is identified by a clinician.
机译:经颅电刺激涉及通过头皮电极向大脑输送微弱的电流,以引起神经调节作用。电流通常流经两个大电极,从而产生扩散电场。在本文中,我们提出了一种新颖的范例,其中系统地优化了具有独立电流控制的多个小电极,以在安全约束下产生有针对性的有效刺激。我们采用有限元方法,结合基于人头磁共振图像的模型,来制定一个线性系统,将所施加的头皮电流与所产生的电场联系起来。然后,应用优化技术来得出刺激参数,该参数可使目标位置处的强度或聚焦度最大化。结果表明,最佳的电极配置在很大程度上取决于所需的场方向和优化标准。与传统的两电极蒙太奇相比,该方案可将目标强度提高98%,将聚焦提高80%。另外,提出的框架有效地优化了经典双极型配置中的电极放置,如果仅单通道电流源可用,这将很有用。因此,提出的方案有望为临床医生在其中确定目标部位的临床环境提供更高的功效和更高的患者安全性。

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