Resting-State fMRI Functional Connectivity Strength Predicts Local Activity Change in the Dorsal Cingulate Cortex: A Multi-Target Focused rTMS Study

Author:

Feng Zi-Jian123,Deng Xin-Ping123ORCID,Zhao Na123,Jin Jing123,Yue Juan123,Hu Yun-Song123,Jing Ying123,Wang Hong-Xiao123,Knösche Thomas R4,Zang Yu-Feng123,Wang Jue5

Affiliation:

1. Center for Cognition and Brain Disorders, The Affiliated Hospital of Hangzhou Normal University, Hangzhou 310015, China

2. Institute of Psychological Sciences, Hangzhou Normal University, Hangzhou 311121, China

3. Zhejiang Key Laboratory for Research in Assessment of Cognitive Impairments, Hangzhou 310015, China

4. Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig 04103, Germany

5. Institute of sports medicine and health, Chengdu Sport University, Chengdu 610041, China

Abstract

Abstract Previous resting state functional magnetic resonance imaging (RS-fMRI) studies suggested that repetitive transcranial magnetic stimulation (rTMS) can modulate local activity in distant areas via functional connectivity (FC). A brain region has more than one connection with the superficial cortical areas. The current study proposed a multi-target focused rTMS protocol for indirectly stimulating a deep region, and to investigate 1) whether FC strength between stimulation targets (right middle frontal gyrus [rMFG] and right inferior parietal lobule [rIPL]) and effective region (dorsal anterior cingulate cortex [dACC]) can predict local activity changes of dACC and 2) whether multiple stimulation targets can focus on the dACC via FC. A total of 24 healthy participants received rTMS with two stimulation targets, both showing strong FC with the dACC. There were four rTMS conditions (>1 week apart, 10 Hz, 1800 pulses for each): rMFG-target, rIPL-target, Double-targets (900 pulses for each target), and Sham. The results failed to validate the multi-target focused rTMS hypothesis. But rMFG-target significantly decreased the local activity in the dACC. In addition, stronger dACC-rMFG FC was associated with a greater local activity change in the dACC. Future studies should use stronger FC to focus stimulation effects on the deep region.

Funder

National Natural Science Foundation of China

Key Medical Discipline of Hangzhou, and Key Realm R&D Program of Guangdong Province

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

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