IEEE Trans Neural Syst Rehabil Eng. 2021;29:2203-2210. doi: 10.1109/TNSRE.2021.3122202. Epub 2021 Oct 29.
Neurological disorder such as stroke can adversely affect one's weight-bearing symmetry leading to dysfunctional postural control. Recovery after stroke is facilitated through functionally-relevant neuroplastic modulation. Functionally-relevant cerebellum coordinates voluntary movements. Specifically, the dentate nuclei and lower limb representations (lobules VII-IX) of the cerebellum are involved in error-correction, crucial for postural control. It is postulated that cerebellar transcranial direct current stimulation (ctDCS) of the dentate nuclei and lobules VII-IX can modulate postural control in chronic stroke survivors. The objectives of this work were to (1) present a refined Virtual Reality (VR)-based balance training platform (VBaT) that can measure Center of Pressure (CoP) and (2) carry out a study to understand the implication of ctDCS stimulating the dentate nuclei (Phase) and lobules VII-IX (Phase) on the postural control of chronic stroke patients when they interacted with VBaT. Also, we investigated whether hemiplegic patients (with intact cerebellum) having Basal Ganglia (BG) infarction had any differential abilities to correct postural sway from those with no BG infarction (while shifting weight to the Affected side). Results of a single-session single-blind crossover study on randomized Phase and Phase stimulation (with an intermediate resting state bipolar bilateral ctDCS) on 12 chronic hemiplegic patients on separate days indicated differentiated findings (post stimulation) on CoP-related indices. We observed an incremental effect on one's postural control during Phase and inhibitory effect on the dentate nuclei during Phase. Clustering analysis showed that those with BG infarction demonstrated poor postural control and deficit in error correction ability irrespective of the ctDCS Phase.
神经障碍,如中风,会对承重的对称性产生不利影响,导致姿势控制失调。中风后的恢复可以通过与功能相关的神经可塑性调节来促进。与功能相关的小脑协调自主运动。具体来说,小脑的齿状核和下肢代表区(VII-IX 叶)参与错误纠正,这对姿势控制至关重要。据推测,小脑经颅直流电刺激(ctDCS)齿状核和 VII-IX 叶可以调节慢性中风幸存者的姿势控制。这项工作的目的是:(1)提出一种改进的基于虚拟现实(VR)的平衡训练平台(VBaT),可以测量中心压力(CoP);(2)进行一项研究,了解 ctDCS 刺激齿状核(相)和 VII-IX 叶(相)对慢性中风患者与 VBaT 交互时的姿势控制的影响。此外,我们还研究了基底节(BG)梗死的偏瘫患者(小脑完整)是否具有从那些没有 BG 梗死的患者(向患侧转移体重)中纠正姿势摆动的任何不同能力。对 12 名慢性偏瘫患者在不同天分别进行单次单盲交叉研究的结果表明,在随机相位和相位刺激(中间休息状态双极双侧 ctDCS)下,与 CoP 相关的指数有不同的发现(刺激后)。我们观察到在相期间对姿势控制有递增作用,在相期间对齿状核有抑制作用。聚类分析表明,无论 ctDCS 相位如何,BG 梗死患者的姿势控制较差,错误纠正能力缺陷。