Deep brain stimulation induces BOLD activation in motor and non-motor networks: An fMRI comparison study of STN and EN/GPi DBS in large animals

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...

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Veröffentlicht in:NeuroImage (Orlando, Fla.) Fla.), 2012-11, Vol.63 (3), p.1408-1420
Hauptverfasser: Min, Hoon-Ki, Hwang, Sun-Chul, Marsh, Michael P., Kim, Inyong, Knight, Emily, Striemer, Bryan, Felmlee, Joel P., Welker, Kirk M., Blaha, Charles D., Chang, Su-Youne, Bennet, Kevin E., Lee, Kendall H.
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Sprache:eng
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Zusammenfassung: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
ISSN:1053-8119
1095-9572
DOI:10.1016/j.neuroimage.2012.08.006