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功能磁共振成像在大鼠伏隔核的电刺激和光遗传学深脑刺激。

Functional Magnetic Resonance Imaging of Electrical and Optogenetic Deep Brain Stimulation at the Rat Nucleus Accumbens.

机构信息

Department of Neurology, University of North Carolina, Chapel Hill, NC, 27599, USA.

Biomedical Research Imaging Center, University of North Carolina, Chapel Hill, NC, 27599, USA.

出版信息

Sci Rep. 2016 Sep 7;6:31613. doi: 10.1038/srep31613.

Abstract

Deep brain stimulation of the nucleus accumbens (NAc-DBS) is an emerging therapy for diverse, refractory neuropsychiatric diseases. Although DBS therapy is broadly hypothesized to work through large-scale neural modulation, little is known regarding the neural circuits and networks affected by NAc-DBS. Using a healthy, sedated rat model of NAc-DBS, we employed both evoked- and functional connectivity (fc) MRI to examine the functional circuit and network changes achieved by electrical NAc stimulation. Optogenetic-fMRI experiments were also undertaken to evaluate the circuit modulation profile achieved by selective stimulation of NAc neurons. NAc-DBS directly modulated neural activity within prefrontal cortex and a large number of subcortical limbic areas (e.g., amygdala, lateral hypothalamus), and influenced functional connectivity among sensorimotor, executive, and limbic networks. The pattern and extent of circuit modulation measured by evoked-fMRI was relatively insensitive to DBS frequency. Optogenetic stimulation of NAc cell bodies induced a positive fMRI signal in the NAc, but no other detectable downstream responses, indicating that therapeutic NAc-DBS might exert its effect through antidromic stimulation. Our study provides a comprehensive mapping of circuit and network-level neuromodulation by NAc-DBS, which should facilitate our developing understanding of its therapeutic mechanisms of action.

摘要

伏隔核深部脑刺激(NAc-DBS)是一种新兴的治疗多种难治性神经精神疾病的方法。尽管 DBS 治疗广泛地被假设通过大规模的神经调节起作用,但对于 NAc-DBS 影响的神经回路和网络知之甚少。我们使用了一个健康、镇静的大鼠 NAc-DBS 模型,使用诱发和功能连接(fc)MRI 来检查电 NAc 刺激所实现的功能回路和网络变化。我们还进行了光遗传 fMRI 实验,以评估对 NAc 神经元的选择性刺激所实现的回路调制谱。NAc-DBS 直接调节前额叶皮层和大量皮质下边缘区域(如杏仁核、外侧下丘脑)内的神经活动,并影响感觉运动、执行和边缘网络之间的功能连接。通过诱发 fMRI 测量的回路调制的模式和程度对 DBS 频率相对不敏感。NAc 细胞体的光遗传刺激在 NAc 中诱导了 fMRI 正信号,但没有其他可检测到的下游反应,表明治疗性 NAc-DBS 可能通过逆行刺激发挥其作用。我们的研究提供了 NAc-DBS 对回路和网络水平神经调节的全面映射,这应该有助于我们深入了解其治疗作用的机制。

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