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Modeling dermatome selectivity of single-and multiple-current source spinal cord stimulation systems

机译:模拟单电流源和多电流源脊髓刺激系统的皮肤刀选择性

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A recently published computational modeling study of spinal cord stimulation (SCS) predicted that a multiple current source (MCS) system could generate a greater number of central points of stimulation in the dorsal column (DC) than a single current source (1CS) system. However, the clinical relevance of this finding has not been established. The objective of this work was to compare the dermatomal zone selectivity of MCS and 1CS systems. A finite element method (FEM) model was built with a representation of the spinal cord anatomy and a 2×8 paddle electrode array. Using a contact configuration with two aligned tripoles, the FEM model was used to solve for DC field potentials across incremental changes in current between the two cathodes, modeling the MCS and 1CS systems. The activation regions within the DC were determined by coupling the FEM output to a biophysical nerve fiber model, and coverage was mapped to dermatomal zones. Results showed marginal differences in activated dermatomal zones between 1CS and MCS systems. This indicates that a MCS system may not provide incremental therapeutic benefit as suggested in prior analysis.
机译:最近发表的脊髓刺激(SCS)计算模型研究预测,与单电流源(1CS)系统相比,多电流源(MCS)系统可以在背柱(DC)中产生更多数量的刺激中心点。但是,尚未确定该发现的临床意义。这项工作的目的是比较MCS和1CS系统在皮肤区域的选择性。建立了有限元方法(FEM)模型,其中包含脊髓解剖结构和2×8桨状电极阵列的表示。通过使用带有两个对齐的三极管的接触配置,FEM模型被用来解决跨两个阴极之间电流增量变化的DC场电势,从而对MCS和1CS系统进行建模。通过将FEM输出耦合到生物物理神经纤维模型来确定DC内的激活区域,并将覆盖范围映射到皮肤区域。结果显示,在1CS和MCS系统之间,在激活的皮肤区域中存在边缘差异。这表明,MCS系统可能无法提供先前分析中所建议的增量治疗益处。

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