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首页> 外文期刊>Frontiers in Neuroscience >Quantitative analysis of axonal fiber activation evoked by deep brain stimulation via activation density heat maps
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Quantitative analysis of axonal fiber activation evoked by deep brain stimulation via activation density heat maps

机译:通过激活密度热图定量分析深部大脑刺激引起的轴突纤维激活

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Background: Cortical modulation is likely to be involved in the various therapeutic effects of deep brain stimulation (DBS). However, it is currently difficult to predict the changes of cortical modulation during clinical adjustment of DBS. Therefore, we present a novel quantitative approach to estimate anatomical regions of DBS-evoked cortical modulation. Methods : Four different models of the subthalamic nucleus (STN) DBS were created to represent variable electrode placements (model I: dorsal border of the posterolateral STN; model II: central posterolateral STN; model III: central anteromedial STN; model IV: dorsal border of the anteromedial STN). Axonal fibers of passage near each electrode location were reconstructed using probabilistic tractography and modeled using multi-compartment cable models. Stimulation-evoked activation of local axon fibers and corresponding cortical projections were modeled and quantified. Results : Stimulation at the border of the STN (models I and IV) led to a higher degree of fiber activation and associated cortical modulation than stimulation deeply inside the STN (models II and III). A posterolateral target (models I and II) was highly connected to cortical areas representing motor function. Additionally, model I was also associated with strong activation of fibers projecting to the cerebellum. Finally, models III and IV showed a dorsoventral difference of preferentially targeted prefrontal areas (models III: middle frontal gyrus; model IV: inferior frontal gyrus). Discussion : The method described herein allows characterization of cortical modulation across different electrode placements and stimulation parameters. Furthermore, knowledge of anatomical distribution of stimulation-evoked activation targeting cortical regions may help predict efficacy and potential side effects, and therefore can be used to improve the therapeutic effectiveness of individual adjustments in DBS patients.
机译:背景:皮质调节可能与深部脑刺激(DBS)的各种治疗作用有关。但是,目前很难预测在临床调整DBS期间皮质调节的变化。因此,我们提出了一种新颖的定量方法来估计DBS诱发的皮质调制的解剖区域。方法:创建四种不同的丘脑下丘脑核(STN)DBS模型来代表可变的电极位置(模型I:后外侧STN背边界;模型II:中央后外侧STN;模型III:中央前内侧STN;模型IV:背部边界前STN)。每个电极位置附近的通道的轴突纤维均使用概率束摄影术进行重建,并使用多室电缆模型进行建模。刺激引起的局部轴突纤维的激活和相应的皮质投影被建模和量化。结果:与深深刺激STN内部(模型II和III)相比,对STN边界(模型I和IV)的刺激导致更高程度的纤维活化和相关的皮层调节。后外侧目标(I型和II型)与代表运动功能的皮质区域高度相连。另外,模型I还与突出到小脑的纤维的强激活有关。最后,模型III和IV显示了优先靶向的前额叶区域的背腹差异(模型III:中额额回;模型IV:额下额回)。讨论:本文所述的方法允许表征跨不同电极位置和刺激参数的皮质调制。此外,有关刺激诱发的激活靶向皮层区域的解剖分布的知识可能有助于预测功效和潜在的副作用,因此可用于提高DBS患者个体调整的治疗效果。

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