Department of Neurologic Surgery, Mayo Clinic, Rochester, MN, USA.
Neuroimage. 2012 Nov 15;63(3):1408-20. doi: 10.1016/j.neuroimage.2012.08.006. Epub 2012 Aug 10.
The combination of deep brain stimulation (DBS) and functional MRI (fMRI) is a powerful means of tracing brain circuitry and testing the modulatory effects of electrical stimulation on a neuronal network in vivo. The goal of this study was to trace DBS-induced global neuronal network activation in a large animal model by monitoring the blood oxygenation level-dependent (BOLD) response on fMRI. We conducted DBS in normal anesthetized pigs, targeting the subthalamic nucleus (STN) (n=7) and the entopeduncular nucleus (EN), the non-primate analog of the primate globus pallidus interna (n=4). Using a normalized functional activation map for group analysis and the application of general linear modeling across subjects, we found that both STN and EN/GPi DBS significantly increased BOLD activation in the ipsilateral sensorimotor network (FDR<0.001). In addition, we found differential, target-specific, non-motor network effects. In each group the activated brain areas showed a distinctive correlation pattern forming a group of network connections. Results suggest that the scope of DBS extends beyond an ablation-like effect and that it may have modulatory effects not only on circuits that facilitate motor function but also on those involved in higher cognitive and emotional processing. Taken together, our results show that the swine model for DBS fMRI, which conforms to human implanted DBS electrode configurations and human neuroanatomy, may be a useful platform for translational studies investigating the global neuromodulatory effects of DBS.
深部脑刺激 (DBS) 和功能磁共振成像 (fMRI) 的结合是追踪大脑回路并测试电刺激对体内神经网络调制效果的有力手段。本研究的目的是通过 fMRI 监测血氧水平依赖 (BOLD) 反应来追踪 DBS 诱导的大型动物模型中的全局神经元网络激活。我们在正常麻醉的猪中进行了 DBS,目标是丘脑底核 (STN)(n=7)和红核脚间核 (EN),这是非灵长类动物内囊苍白球的类似物(n=4)。使用归一化功能激活图进行组分析,并在受试者之间应用广义线性模型,我们发现 STN 和 EN/GPi DBS 均显著增加了同侧感觉运动网络的 BOLD 激活(FDR<0.001)。此外,我们发现了具有靶向特异性的不同非运动网络效应。在每组中,激活的脑区显示出独特的相关模式,形成一组网络连接。结果表明,DBS 的范围不仅超出了消融样效应,而且它可能不仅对促进运动功能的回路具有调制作用,而且对涉及更高认知和情感处理的回路也具有调制作用。总之,我们的结果表明,符合人类植入 DBS 电极配置和人类神经解剖学的猪 DBS fMRI 模型可能是一个有用的平台,可用于研究 DBS 的全局神经调制作用的转化研究。