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Computational modeling analysis of a spinal cord stimulation paddle lead reveals broad, gapless dermatomal coverage

机译:脊髓刺激桨导线的计算模型分析揭示了广泛,无间隙的皮肤覆盖

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Spinal cord stimulation (SCS) is an effective therapy for treating chronic pain. The St. Jude Medical PENTA paddle lead features a 4×5 contact array for achieving broad, selective coverage of dorsal column (DC) fibers. The objective of this work was to evaluate DC activation regions that correspond to dermatomal coverage with use of the PENTA lead in conjunction with a lateral sweep programming algorithm. We used a two-stage computational model, including a finite element method model of field potentials in the spinal cord during stimulation, coupled to a biophysical cable model of mammalian, myelinated nerve fibers to determine fiber activation within the DC. We found that across contact configurations used clinically in the sweep algorithm, the activation region shifted smoothly between left and right DC, and could achieve gapless medio-lateral coverage in dermatomal fiber tract zones. Increasing stimulation amplitude between the DC threshold and discomfort threshold led to a greater area of activation and number of dermatomal zones covered on the left and/or right DC, including L1-2 zones corresponding to dermatomes of the lower back. This work demonstrates that the flexibility in contact selection offered by the PENTA lead may enable patient-specific tailoring of SCS.
机译:脊髓刺激(SCS)是治疗慢性疼痛的有效疗法。 St. Jude Medical的PENTA桨状引线具有4×5触点阵列,可实现对背柱(DC)纤维的广泛,选择性覆盖。这项工作的目的是结合PENTA导线和横向扫描编程算法,评估与皮肤覆盖范围相对应的DC激活区域。我们使用了一个两阶段的计算模型,包括在刺激过程中脊髓中场电位的有限元方法模型,以及哺乳动物有髓神经纤维的生物物理电缆模型,以确定DC中的纤维活化。我们发现,在临床上在扫掠算法中使用的接触配置中,激活区域在左右DC之间平滑移动,并且可以在皮层纤维束区域实现无间隙的中外侧覆盖。 DC阈值和不适阈值之间的刺激幅度增加导致更大的激活区域和覆盖在左侧和/或右侧DC上的皮肤区域的数量,包括对应于下背部皮肤区域的L1-2区域。这项工作表明,由PENTA主管提供的灵活的联系人选择方式可以实现针对患者的SCS定制。

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