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Local and Global Changes in Brain Metabolism during Deep Brain Stimulation for Obsessive-Compulsive Disorder

机译:强迫症深层脑刺激过程中脑代谢的局部和全局变化

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摘要

Recent approaches have suggested that deep brain stimulation (DBS) for obsessive-compulsive disorder relies on distributed networks rather than local brain modulation. However, there is insufficient data on how DBS affects brain metabolism both locally and globally. We enrolled three patients with treatment-refractory obsessive-compulsive disorder with ongoing DBS of the bilateral ventral capsule/ventral striatum. Patients underwent resting-state 18F-fluorodeoxyglucose and positron emission tomography in both stimulation ON and OFF conditions. All subjects showed relative hypometabolism in prefronto-basal ganglia-thalamic networks compared to a healthy control cohort when stimulation was switched OFF. Switching the stimulation ON resulted in differential changes in brain metabolism. Locally, volumes of activated tissue at stimulation sites (n = 6) showed a significant increase in metabolism during DBS ON compared to DBS OFF (Mean difference 4.5% ± SD 2.8; p = 0.012). Globally, differential changes were observed across patients encompassing prefrontal increase in metabolism in ON vs. OFF condition. Bearing in mind limitations of the small sample size, we conclude that DBS of the ventral capsule/ventral striatum for obsessive-compulsive disorder increases brain metabolism locally. Across distributed global networks, DBS appears to exert differential effects, possibly depending on localization of stimulation sites and response to the intervention.
机译:最近的方法表明,强迫症的深层脑刺激(DBS)依赖于分布式网络,而不是局部的大脑调节。但是,关于DBS如何影响局部和全局脑代谢的数据尚不足。我们招募了三名患有难治性强迫症且双侧腹膜囊/腹侧纹状体正在进行DBS的患者。在刺激ON和OFF条件下,患者均进行静息状态的 18 F-氟脱氧葡萄糖和正电子发射断层扫描。当关闭刺激时,与健康对照组相比,所有受试者在前额叶基底神经节-丘脑网络中均表现出相对的低代谢。接通刺激会导致脑代谢发生差异性变化。与DBS OFF相比,DBS ON期间在刺激部位(n = 6)的活化组织的体积局部显示出新陈代谢的显着增加(平均值差异4.5%±SD 2.8; p = 0.012)。在全球范围内,观察到不同患者的变化,包括在开与关状态下新陈代谢的前额叶增加。考虑到小样本量的局限性,我们得出结论,强迫症的腹囊/腹侧纹状体的DBS会局部增加脑代谢。在分布式全球网络中,星展银行似乎发挥了不同的作用,这可能取决于刺激部位的位置和对干预措施的反应。

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