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利用定向深部脑刺激电极在苍白球内侧部激活不同体积组织的研究:一项关于组织异质性特性的建模研究

Steering the Volume of Tissue Activated With a Directional Deep Brain Stimulation Lead in the Globus Pallidus Pars Interna: A Modeling Study With Heterogeneous Tissue Properties.

作者信息

Zhang Simeng, Tagliati Michele, Pouratian Nader, Cheeran Binith, Ross Erika, Pereira Erlick

机构信息

Neuromodulation Division, Abbott, Plano, TX, United States.

Cedars Sinai Medical Center, Los Angeles, CA, United States.

出版信息

Front Comput Neurosci. 2020 Sep 25;14:561180. doi: 10.3389/fncom.2020.561180. eCollection 2020.

Abstract

To study the effect of directional deep brain stimulation (DBS) electrode configuration and vertical electrode spacing on the volume of tissue activated (VTA) in the globus pallidus, pars interna (GPi). Directional DBS leads may allow clinicians to precisely direct current fields to different functional networks within traditionally targeted brain areas. Modeling the shape and size of the VTA for various monopolar or bipolar configurations can inform clinical programming strategies for GPi DBS. However, many computational models of VTA are limited by assuming tissue homogeneity. We generated a multimodal image-based detailed anatomical (MIDA) computational model with a directional DBS lead (1.5 mm or 0.5 mm vertical electrode spacing) placed with segmented contact 2 at the ventral posterolateral "sensorimotor" region of the GPi. The effect of tissue heterogeneity was examined by replacing the MIDA tissues with a homogeneous tissue of conductance 0.3 S/m. DBS pulses (amplitude: 1 mA, pulse width: 60 μs, frequency: 130 Hz) were used to produce VTAs. The following DBS contact configurations were tested: single-segment monopole (2B-/Case+), two-segment monopole (2A-/2B-/Case+ and 2B-/3B-/Case+), ring monopole (2A-/2B-/2C-/Case+), one-cathode three-anode bipole (2B-/3A+/3B+/3C+), three-cathode three-anode bipole (2A-/2B-/2C-/3A+/3B+/3C+). Additionally, certain vertical configurations were repeated with 2 mA current amplitude. Using a heterogeneous tissue model affected both the size and shape of the VTA in GPi. Electrodes with both 0.5 mm and 1.5 mm vertical spacing (1 mA) modeling showed that the single segment monopolar VTA was entirely contained within the GPi when the active electrode is placed at the posterolateral "sensorimotor" GPi. Two segments in a same ring and ring settings, however, produced VTAs outside of the GPi border that spread into adjacent white matter pathways, e.g., optic tract and internal capsule. Both stacked monopolar settings and vertical bipolar settings allowed activation of structures dorsal to the GPi in addition to the GPi. Modeling of the stacked monopolar settings with the DBS lead with 0.5 mm vertical electrode spacing further restricted VTAs within the GPi, but the VTA volumes were smaller compared to the equivalent settings of 1.5 mm spacing.

摘要

为研究定向性脑深部电刺激(DBS)电极配置及垂直电极间距对内侧苍白球(GPi)组织激活体积(VTA)的影响。定向性DBS电极可使临床医生将电流场精确导向传统靶点脑区内的不同功能网络。对各种单极或双极配置下VTA的形状和大小进行建模,可为GPi DBS的临床编程策略提供参考。然而,许多VTA计算模型因假设组织均匀性而受到限制。我们生成了一个基于多模态图像的详细解剖学(MIDA)计算模型,将定向性DBS电极(垂直电极间距为1.5 mm或0.5 mm)的分段触点2置于GPi腹后外侧“感觉运动”区域。通过用导电率为0.3 S/m的均匀组织替换MIDA组织来研究组织异质性的影响。使用DBS脉冲(幅度:1 mA,脉冲宽度:60 μs,频率:130 Hz)来产生VTA。测试了以下DBS触点配置:单段单极(2B-/病例+)、两段单极(2A-/2B-/病例+和2B-/3B-/病例+)、环形单极(2A-/2B-/2C-/病例+)、一阴极三阳极双极(2B-/3A+/3B+/3C+)、三阴极三阳极双极(2A-/2B-/2C-/3A+/3B+/3C+)。此外,对某些垂直配置以2 mA电流幅度重复测试。使用异质性组织模型会影响GPi中VTA的大小和形状。垂直间距为0.5 mm和1.5 mm(1 mA)的电极建模显示,当有源电极置于GPi后外侧“感觉运动”区域时,单段单极VTA完全包含在GPi内。然而,同一环内的两段及环形设置产生的VTA超出了GPi边界,延伸至相邻的白质通路,如视束和内囊。堆叠单极设置和垂直双极设置除了激活GPi外,还能激活GPi背侧的结构。对垂直电极间距为0.5 mm的DBS电极进行堆叠单极设置建模,进一步将VTA限制在GPi内,但与1.5 mm间距的等效设置相比,VTA体积较小。

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