Spinal cord stimulation for gait disorders in Parkinson's disease and atypical parkinsonism: a systematic review of preclinical and clinical data
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Published version
Author(s)
Ciocca, Matteo
Seemungal, Barry M
Tai, Yen F
Type
Journal Article
Abstract
Background
Falls in extrapyramidal disorders, particularly Parkinson’s disease (PD), multisystem atrophy (MSA), and progressive supranuclear palsy (PSP), are key milestones affecting patients’ quality of life, incurring increased morbidity/mortality and high healthcare costs. Unfortunately, gait and balance in parkinsonisms respond poorly to currently available treatments. A serendipitous observation of improved gait and balance in patients with PD receiving spinal cord stimulation (SCS) for back pain kindled an interest in using SCS to treat gait disorders in parkinsonisms.
Objectives
We reviewed preclinical and clinical studies of SCS to treat gait dysfunction in parkinsonisms, covering its putative mechanisms and efficacies.
Materials and Methods
Preclinical studies in animal models of PD and clinical studies in patients with PD, PSP, and MSA who received SCS for gait disorders were included. The main outcome assessed was clinical improvement in gait, together with outcome measures used and possible mechanism of actions.
Results
We identified 500 references, and 45 met the selection criteria and have been included in this study for analysis. Despite positive results in animal models, the outcomes in human studies are inconsistent.
Conclusions
The lack of blind and statistically powered studies, the heterogeneity in patient selection and study outcomes, and the poor understanding of the underlying mechanisms of action of SCS are some of the limiting factors in the field. Addressing these limitations will allow us to draw more reliable conclusions on the effects of SCS on gait and balance in extrapyramidal disorders.
Falls in extrapyramidal disorders, particularly Parkinson’s disease (PD), multisystem atrophy (MSA), and progressive supranuclear palsy (PSP), are key milestones affecting patients’ quality of life, incurring increased morbidity/mortality and high healthcare costs. Unfortunately, gait and balance in parkinsonisms respond poorly to currently available treatments. A serendipitous observation of improved gait and balance in patients with PD receiving spinal cord stimulation (SCS) for back pain kindled an interest in using SCS to treat gait disorders in parkinsonisms.
Objectives
We reviewed preclinical and clinical studies of SCS to treat gait dysfunction in parkinsonisms, covering its putative mechanisms and efficacies.
Materials and Methods
Preclinical studies in animal models of PD and clinical studies in patients with PD, PSP, and MSA who received SCS for gait disorders were included. The main outcome assessed was clinical improvement in gait, together with outcome measures used and possible mechanism of actions.
Results
We identified 500 references, and 45 met the selection criteria and have been included in this study for analysis. Despite positive results in animal models, the outcomes in human studies are inconsistent.
Conclusions
The lack of blind and statistically powered studies, the heterogeneity in patient selection and study outcomes, and the poor understanding of the underlying mechanisms of action of SCS are some of the limiting factors in the field. Addressing these limitations will allow us to draw more reliable conclusions on the effects of SCS on gait and balance in extrapyramidal disorders.
Date Issued
2023-10
Date Acceptance
2023-06-11
Citation
Neuromodulation: Technology at the Neural Interface, 2023, 26 (7), pp.1339-1361
ISSN
1094-7159
Publisher
Elsevier
Start Page
1339
End Page
1361
Journal / Book Title
Neuromodulation: Technology at the Neural Interface
Volume
26
Issue
7
Copyright Statement
© 2023 The Authors. Published by Elsevier Inc. on behalf of the
International Neuromodulation Society. This is an open access article
under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
International Neuromodulation Society. This is an open access article
under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
License URL
Identifier
https://www.sciencedirect.com/science/article/pii/S1094715923006761?via%3Dihub
Subjects
Clinical Neurology
FALLS
Freezing of gait
Life Sciences & Biomedicine
LOCOMOTION
MECHANISMS
Medicine, Research & Experimental
MODEL
MOTOR
multiple system atrophy
Neurosciences & Neurology
Parkinson's disease
PATIENT
progressive supranuclear palsy
Research & Experimental Medicine
Science & Technology
spinal cord stimulation
Publication Status
Published
Date Publish Online
2023-07-13