Kubota Shigeru, Rubin Jonathan E
Graduate School of Science and Engineering, Yamagata University, 4-3-16 Jonan, Yonezawa, Yamagata, 992-8510, Japan.
Department of Mathematics, University of Pittsburgh, 301 Thackeray Hall, Pittsburgh, PA, 15260, USA.
J Comput Neurosci. 2018 Aug;45(1):45-58. doi: 10.1007/s10827-018-0690-z. Epub 2018 Jun 7.
Excessive synchronization in neural activity is a hallmark of Parkinson's disease (PD). A promising technique for treating PD is coordinated reset (CR) neuromodulation in which a neural population is desynchronized by the delivery of spatially-distributed current stimuli using multiple electrodes. In this study, we perform numerical optimization to find the energy-optimal current waveform for desynchronizing neuronal network with CR stimulation, by proposing and applying a new optimization method based on the direct search algorithm. In the proposed optimization method, the stimulating current is described as a Fourier series, and each Fourier coefficient as well as the stimulation period are directly optimized by evaluating the order parameter, which quantifies the synchrony level, from network simulation. This direct optimization scheme has an advantage that arbitrary changes in the dynamical properties of the network can be taken into account in the search process. By harnessing this advantage, we demonstrate the significant influence of externally applied oscillatory inputs and non-random network topology on the efficacy of CR modulation. Our results suggest that the effectiveness of brain stimulation for desynchronization may depend on various factors modulating the dynamics of the target network. We also discuss the possible relevance of the results to the efficacy of the stimulation in PD treatment.
神经活动的过度同步是帕金森病(PD)的一个标志。一种有前景的治疗PD的技术是协调重置(CR)神经调节,即通过使用多个电极施加空间分布的电流刺激,使神经群体去同步化。在本研究中,我们通过提出并应用一种基于直接搜索算法的新优化方法,进行数值优化以找到用于CR刺激使神经元网络去同步化的能量最优电流波形。在所提出的优化方法中,刺激电流被描述为傅里叶级数,并且通过从网络模拟中评估量化同步水平的序参量,直接优化每个傅里叶系数以及刺激周期。这种直接优化方案的一个优点是在搜索过程中可以考虑网络动态特性的任意变化。利用这一优势,我们证明了外部施加的振荡输入和非随机网络拓扑对CR调制效果的显著影响。我们的结果表明,脑刺激去同步化的有效性可能取决于调节目标网络动态的各种因素。我们还讨论了这些结果与PD治疗中刺激效果的可能相关性。