Ni Rui, Yuan Ye, Yang Li, Meng Qiujian, Zhu Ying, Zhong Yiya, Cao Zhenqian, Zhang Shengzhao, Yao Wenjun, Lv Daping, Chen Xin, Chen Xianwen, Bu Junjie
Department of Intelligent Medical Engineering, School of Biomedical Engineering, Anhui Medical University, Hefei, China.
Department of Life Sciences, Imperial College London, London, United Kingdom.
Front Aging Neurosci. 2022 Apr 12;14:880897. doi: 10.3389/fnagi.2022.880897. eCollection 2022.
Conventional transcranial electrical stimulation (tES) is a non-invasive method to modulate brain activity and has been extensively used in the treatment of Parkinson's disease (PD). Despite promising prospects, the efficacy of conventional tES in PD treatment is highly variable across different studies. Therefore, many have tried to optimize tES for an improved therapeutic efficacy by developing novel tES intervention strategies. Until now, these novel clinical interventions have not been discussed or reviewed in the context of PD therapy. In this review, we focused on the efficacy of these novel strategies in PD mitigation, classified them into three categories based on their distinct technical approach to circumvent conventional tES problems. The first category has novel stimulation modes to target different modulating mechanisms, expanding the rang of stimulation choices hence enabling the ability to modulate complex brain circuit or functional networks. The second category applies tES as a supplementary intervention for PD hence amplifies neurological or behavioral improvements. Lastly, the closed loop tES stimulation can provide self-adaptive individualized stimulation, which enables a more specialized intervention. In summary, these novel tES have validated potential in both alleviating PD symptoms and improving understanding of the pathophysiological mechanisms of PD. However, to assure wide clinical used of tES therapy for PD patients, further large-scale trials are required.
传统经颅电刺激(tES)是一种调节大脑活动的非侵入性方法,已广泛应用于帕金森病(PD)的治疗。尽管前景广阔,但传统tES在PD治疗中的疗效在不同研究中差异很大。因此,许多人试图通过开发新的tES干预策略来优化tES以提高治疗效果。到目前为止,这些新的临床干预措施尚未在PD治疗的背景下进行讨论或综述。在本综述中,我们关注这些新策略在减轻PD方面的疗效,根据其解决传统tES问题的不同技术方法将它们分为三类。第一类具有针对不同调节机制的新型刺激模式,扩大了刺激选择范围,从而能够调节复杂的脑回路或功能网络。第二类将tES作为PD的辅助干预措施,从而增强神经或行为改善。最后,闭环tES刺激可以提供自适应个性化刺激,实现更具针对性的干预。总之,这些新型tES在减轻PD症状和增进对PD病理生理机制的理解方面都具有已验证的潜力。然而,为确保tES疗法在PD患者中的广泛临床应用,还需要进一步的大规模试验。