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Short Pulse and Conventional Deep Brain Stimulation Equally Improve the Parkinsonian Gait Disorder

Authors :
Carsten Buhmann
Christian K.E. Moll
Wolfgang Hamel
Alessandro Gulberti
Eik Vettorazzi
Aline Seger
Christian Gerloff
Monika Pötter-Nerger
Hanna Braa
Source :
Journal of Parkinson's Disease. 11:1455-1464
Publication Year :
2021
Publisher :
IOS Press, 2021.

Abstract

Background: Gait disturbances and balance remain challenging issues in Parkinsonian patients (PD) with deep brain stimulation (DBS). Short pulse deep brain stimulation (spDBS) increases the therapeutic window in PD patients, yet the effect on gait and postural symptoms remains unknown. Objective: We assessed the efficacy of spDBS compared to conventional DBS (cDBS) within the subthalamic nucleus (STN) on Parkinsonian gait. Methods: The study was a single-centre, randomized, double-blind, clinical short-term trial. 20 PD patients were studied postoperatively in three different conditions (DBS stimulation switched off (off DBS), spDBS with 40μs pulse width, cDBS with 60μs pulse width) on regular medication. The primary endpoint was the relative difference of gait velocity at self-paced speed during quantitative gait analysis between stimulation conditions. Secondary endpoints were changes of further measures of quantitative gait analysis, Ziegler course, Berg balance scale, FOG questionnaire, MDS-UPDRS, PDQ-39, and HADS. Mixed-model analysis and post-hoc t-tests were performed. Results: Both spDBS and cDBS improved gait velocity at self-paced speed compared to off DBS, however, there was no significant difference between both stimulation modes. Still, 40% of the patients preferred spDBS over cDBS subjectively. Both stimulation modes were equally effective in improving secondary endpoints of gait, balance, motor and non-motor performances. Conclusion: The use of spDBS and cDBS is equally effective in improving gait and balance in PD and might be beneficial in specified cohorts of PD patients.

Details

ISSN :
1877718X and 18777171
Volume :
11
Database :
OpenAIRE
Journal :
Journal of Parkinson's Disease
Accession number :
edsair.doi.dedup.....eb2c6fe8105bd827e009880d10101e64
Full Text :
https://doi.org/10.3233/jpd-202492