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Efficacy of personalized repetitive transcranial magnetic stimulation based on functional reserve to enhance ambulatory function in patients with Parkinson’s disease: study protocol for a randomized controlled trial

  • Seo Jung Yun
  • , Ho Seok Lee
  • , Dae Hyun Kim
  • , Sun Im
  • , Yeun Jie Yoo
  • , Na Young Kim
  • , Jungsoo Lee
  • , Donghyeon Kim
  • , Hae Yeon Park
  • , Mi Jeong Yoon
  • , Young Seok Kim
  • , Won Hyuk Chang
  • , Han Gil Seo
  • Seoul National University
  • Samsung Medical Center, Sungkyunkwan university
  • Yonsei University
  • Kumoh National Institute of Technology
  • Neurophet Inc.
  • Catholic University of Korea
  • The Catholic University of Korea, St. Vincent's Hospital
  • Sungkyunkwan University

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Background: Repetitive transcranial magnetic stimulation (rTMS) is one of the non-invasive brain stimulations that modulate cortical excitability through magnetic pulses. However, the effects of rTMS on Parkinson’s disease (PD) have yielded mixed results, influenced by factors including various rTMS stimulation parameters as well as the clinical characteristics of patients with PD. There is no clear evidence regarding which patients should be applied with which parameters of rTMS. The study aims to investigate the efficacy and safety of personalized rTMS in patients with PD, focusing on individual functional reserves to improve ambulatory function. Methods: This is a prospective, exploratory, multi-center, single-blind, parallel-group, randomized controlled trial. Sixty patients with PD will be recruited for this study. This study comprises two sub-studies, each structured as a two-arm trial. Participants are classified into sub-studies based on their functional reserves for ambulatory function, into either the motor or cognitive priority group. The Timed-Up and Go (TUG) test is employed under both single and cognitive dual-task conditions (serial 3 subtraction). The motor dual-task effect, using stride length, and the cognitive dual-task effect, using the correct response rate of subtraction, are calculated. In the motor priority group, high-frequency rTMS targets the primary motor cortex of the lower limb, whereas the cognitive priority group receives rTMS over the left dorsolateral prefrontal cortex. The active comparator for each sub-study is bilateral rTMS of the primary motor cortex of the upper limb. Over 4 weeks, the participants will undergo 10 rTMS sessions, with evaluations conducted pre-intervention, mid-intervention, immediately post-intervention, and at 2-month follow-up. The primary outcome is a change in TUG time between the pre- and immediate post-intervention evaluations. The secondary outcome variables are the TUG under cognitive dual-task conditions, Movement Disorder Society-Unified Parkinson’s Disease Rating Scale Part III, New Freezing of Gait Questionnaire, Digit Span, trail-making test, transcranial magnetic stimulation-induced motor-evoked potentials, diffusion tensor imaging, and resting state functional magnetic resonance imaging. Discussion: The study will reveal the effect of personalized rTMS based on functional reserve compared to the conventional rTMS approach in PD. Furthermore, the findings of this study may provide empirical evidence for an rTMS protocol tailored to individual functional reserves to enhance ambulatory function in patients with PD. Trial registration: ClinicalTrials.gov NCT06350617. Registered on 5 April 2024.

Original languageEnglish
Article number543
JournalTrials
Volume25
Issue number1
DOIs
StatePublished - Dec 2024

Bibliographical note

Publisher Copyright:
© The Author(s) 2024.

Keywords

  • Functional reserve
  • Gait
  • Parkinson’s disease
  • Repetitive transcranial magnetic stimulation

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