Huang Yongzhi, Luo Huichun, Green Alexander L, Aziz Tipu Z, Wang Shouyan
Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou, China; University of Chinese Academy of Sciences, Beijing, China.
Nuffield Department of Surgery, John Radcliffe Hospital, University of Oxford, Oxford, UK.
Clin Neurophysiol. 2016 Jul;127(7):2573-80. doi: 10.1016/j.clinph.2016.04.011. Epub 2016 Apr 22.
To investigate the link between neuronal activity recorded from the sensory thalamus and periventricular gray/periaqueductal gray (PVAG) and pain relief by deep brain stimulation (DBS).
Local field potentials (LFPs) were recorded from the sensory thalamus and PVAG post-operatively from ten patients with neuropathic pain. The LFPs were quantified using spectral and time-frequency analysis, the relationship between the LFPs and pain relief was quantified with nonlinear correlation analysis.
The theta oscillations of both sensory thalamus and PVAG correlated inversely with pain relief. The high beta oscillations in the sensory thalamus and the alpha oscillations in the PVAG correlated positively with pain relief. Moreover, the ratio of high-power duration to low-power duration of theta band activity in the sensory thalamus and PVAG correlated inversely with pain relief. The duration ratio at the high beta band in the sensory thalamus correlated positively with pain relief.
Our results reveal distinct neuronal oscillations at the theta, alpha, and beta frequencies correlating with pain relief by DBS.
The study provides quantitative measures for predicting the outcomes of neuropathic pain relief by DBS as well as potential biomarkers for developing adaptive stimulation strategies.
研究从感觉丘脑和脑室周围灰质/导水管周围灰质(PVAG)记录的神经元活动与深部脑刺激(DBS)缓解疼痛之间的联系。
术后从10例神经性疼痛患者的感觉丘脑和PVAG记录局部场电位(LFP)。使用频谱和时频分析对LFP进行量化,用非线性相关分析量化LFP与疼痛缓解之间的关系。
感觉丘脑和PVAG的θ振荡均与疼痛缓解呈负相关。感觉丘脑的高β振荡和PVAG的α振荡与疼痛缓解呈正相关。此外,感觉丘脑和PVAG中θ频段活动的高功率持续时间与低功率持续时间之比与疼痛缓解呈负相关。感觉丘脑中高β频段的持续时间比与疼痛缓解呈正相关。
我们的结果揭示了与DBS缓解疼痛相关的θ、α和β频率下不同的神经元振荡。
该研究为预测DBS缓解神经性疼痛的结果提供了定量指标,也为开发适应性刺激策略提供了潜在的生物标志物。