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Novel Non-invasive Transcranial Electrical Stimulation for Parkinson’s Disease

Rui Ni, Ye Yuan, Yang Li, Qiujian Meng, Ying Zhu, Yiya Zhong, Zhenqian Cao, Shengzhao Zhang, Wenjun Yao, Daping Lv, Xin Chen, Xianwen Chen, Junjie Bu

2022Frontiers in Aging Neuroscience13 citationsDOIOpen Access PDF

Abstract

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.

Topics & Concepts

Parkinson's diseaseNeuroscienceStimulationMedicineTranscranial direct-current stimulationBrain stimulationDiseasePhysical medicine and rehabilitationPsychologyInternal medicineTranscranial Magnetic Stimulation StudiesConducting polymers and applicationsMuscle activation and electromyography studies
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