The promotion‐like effect of the M1‐STN hyperdirect pathway induced by ccPAS enhanced balance performances: From the perspective of brain connectivity

Author:

Li Yu‐Lin12,Wu Jia‐Jia3,Hua Xu‐Yun4,Zheng Mou‐Xiong4,Xu Jian‐Guang135ORCID

Affiliation:

1. Engineering Research Center of Traditional Chinese Medicine Intelligent Rehabilitation Ministry of Education Shanghai China

2. Department of Rehabilitation Medicine, Huashan Hospital Fudan University Shanghai China

3. Department of Rehabilitation Medicine, Yueyang Hospital of Integrated Traditional Chinese and Western Medicine Shanghai University of Traditional Chinese Medicine Shanghai China

4. Department of Traumatology and Orthopedics, Yueyang Hospital of Integrated Traditional Chinese and Western Medicine Shanghai University of Traditional Chinese Medicine Shanghai China

5. School of Rehabilitation Science Shanghai University of Traditional Chinese Medicine Shanghai China

Abstract

AbstractAimsThe present study aimed to explore the effect of cortico‐cortical paired‐associative stimulation (ccPAS) in modulating hyperdirect pathway and its influence on balance performance.MethodsForty healthy participants were randomly allocated to the active ccPAS group (n = 20) or the sham ccPAS group (n = 20). The primary motor cortex and subthalamic nucleus were stimulated sequentially with ccPAS. Unlike the active ccPAS group, one wing of coil was tilted to form a 90° angle with scalp of stimulation locations for the sham ccPAS group. Magnetic resonance imaging, functional reach test (FRT), timed up and go (TUG) test, and limit of stability (LOS) test were performed, and correlation between them was also analyzed.ResultsThree participants in the sham ccPAS group were excluded because of poor quality of NIfTI images. The active group had strengthened hyperdirect pathway, increased functional connectivity (FC) between orbital part of frontal cortex and bilateral precuneus, and decreased FC among basal ganglia (all p < 0.05). Regional network properties of triangular and orbital parts of IFG, middle cingulate cortex, and hippocampus increased. The active group performed better in FRT and LOS (all p < 0.05). FRT positively correlated with FC of the hyperdirect pathway (r = 0.439, p = 0.007) and FCs between orbital part of frontal cortex and bilateral precuneus (all p < 0.05).ConclusionThe ccPAS enhanced balance performance by promotion‐like plasticity mechanisms through the hyperdirect pathway.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Science and Technology Commission of Shanghai Municipality

Publisher

Wiley

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