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Thalamic stimulation for parkinsonian tremor: correlation between regional cerebral blood flow and physiological tremor characteristics.

机译:丘脑刺激帕金森病性震颤:区域性脑血流量与生理性震颤特征之间的相关性。

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We used (15)O-labeled water (H(2)(15)O) positron emission tomography (PET) to study eight Parkinson's disease (PD) patients with unilateral ventral intermediate (Vim) thalamic nucleus deep brain stimulation (DBS) for severe tremor. Triaxial accelerometry (TRIAX) was used during imaging to obtain on-line measures of tremor characteristics. Regional cerebral blood flow (rCBF) scans together with TRIAX recordings were collected in three stimulation conditions (OFF, MID, and ON, corresponding, respectively, to 0%, 50%, and 100% reductions in mean accelerometry signal). Statistical Parametric Mapping (SPM99) revealed significant rCBF reductions during stimulation in the ipsilateral sensorimotor cortex (SMC) and the contralateral cerebellum, as well as concurrent increases in the ipsilateral ventral thalamus (P < 0.05, corrected). Covariate analysis of rCBF with physiological tremor characteristics revealed that tremor acceleration correlated positively with changes in the SMC and supplementary motor cortex ipsilaterally (P < 0.05, uncorrected), and negatively with changes in the ipsilateral cuneus (P < 0.05, corrected). After removing tremor acceleration effects, changes in tremor frequency correlated negatively with changes in the contralateral dentate nucleus and pons (P < 0.05, uncorrected). Our results suggest that Vim DBS for PD tremor modulates the activity of cerebello-thalamo-cortical pathways. Specific tremor characteristics relate to activity in different nodes of this system.
机译:我们使用(15)O标记的水(H(2)(15)O)正电子发射断层显像(PET)研究了八名帕金森病(PD)患者的单侧腹侧中间(Vim)丘脑核深脑刺激(DBS),严重的震颤。在成像过程中使用三轴加速度计(TRIAX)获得震颤特征的在线测量。在三种刺激条件下(OFF,MID和ON分别对应于平均加速度计信号降低0%,50%和100%)收集了局部脑血流(rCBF)扫描和TRIAX记录。统计参数映射(SPM99)显示,同侧感觉运动皮层(SMC)和对侧小脑在刺激期间rCBF显着降低,同侧腹丘脑同时增加(P <0.05,已校正)。 rCBF与生理性震颤特征的协变量分析显示,震颤加速与同侧SMC和补充运动皮层的变化呈正相关(P <0.05,未校正),与同侧楔形变化呈负相关(P <0.05,已校正)。消除震颤加速作用后,震颤频率的变化与对侧齿状核和脑桥的变化呈负相关(P <0.05,未校正)。我们的结果表明,用于PD震颤的Vim DBS可调节小脑-丘脑-皮质途径的活性。特定的震颤特征与该系统不同节点的活动有关。

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