The Effects of 24-Weeks Community-based Brisk Walking in People With Parkinson's Disease
For patients and families
In plain language
An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.
- What is being studied
- The protocol lists: WALK, ACTIVE, CON.
- Who it may be relevant to
- Registry conditions: Parkinson Disease. Basic parameters: from 40 years · All.
- What needs checking
- Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
- Where it takes place
- Denmark
- Next step
- Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
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Official title
The Effects of 24 Weeks Community-based Brisk Walking on Physical Function, Comorbidities, Cognition, Disease Severity, and Health-related Quality of Life in People With Parkinson's Disease.
Overview
The goal of this clinical trial is to investigate if brisk walking can improve walking function in people with Parkinson's disease and what kind of brisk walking intervention that is most effective. The main questions are: If brisk walking can reduce self-perceived walking difficulty What type of exercise intervention is most effective. Researchers will compare a brisk walking group receiving a personalized walking program with a group receiving an activity tracker and a control group. Participants will * be tested at baseline (0 weeks), post the intervention period (24 weeks) and after a follow-up period (48 weeks). * be randomly allocated to one of three groups at baseline. * follow the prescribed intervention they are allocated to.
Detailed description
Background Parkinson's disease is a progressive neurodegenerative disorder and one of the leading causes of disability worldwide. Impaired walking is considered one of the most bothersome symptoms that people with Parkinson's disease wish to improve, affecting independence, ability to work, and quality of life. Walking impairment is present from the early stage of the disease with an expected progression and a more frequent presentation along the course of the disease. Currently, only few medical treatments exist that target walking, and these show minor effects while causing side effects. Non-pharmacological interventions that can improve or prevent loss of walking ability are therefore highly warranted.
Exercise is a promising non-pharmacological intervention in people with Parkinson's disease with studies reporting improved walking performance following different exercise modalities, including high-intensity aerobic exercise. Despite extensive research investigating the effects of various exercise interventions on walking, few have examined more traditional walking training. This is somewhat surprising as walking is task-specific training for walking itself, while also being feasible and showing promising results in people with Parkinson's disease. In addition, walking is easily accessible and a potential efficient low-cost intervention that is commonly used and therefore well-known in clinical rehabilitation practice. Yet only two long-term studies could be located applying walking training. Despite being long-term, these studies are limited by 1) not considering possible factors facilitating adherence, 2) not performing follow-up testing, 3) not applying any inclusion criterion for walking impairment implying that any potential effects might be diminished due to well-functioning participants without walking impairments, 4) not including a comprehensive test battery (i.e., no registration of comorbidities, physical activity level, health-related quality of life), and 5) not investigating the effect on perceived walking difficulties despite the relevance of understanding the subjective impact of walking training. Further evaluation of walking interventions is therefore needed in people with Parkinson's disease.
Despite the importance of a physically active lifestyle, only 27% (potentially less) of people with Parkinson's disease meet the established physical activity recommendations (≥ 150 min/week of moderate to vigorous physical activity). Therefore, it is very challenging to design a walking intervention that increases physical activity levels while being sustainable. To do so, it is essential to incorporate motivational factors that facilitate adherence. These include high self-efficacy, low cost, less travel, self-perceived positive effects of walking, and support from family/carers and health professionals. To comply with these factors, remotely or partly supervised home-based exercise has been suggested as a feasible and effective strategy to alleviate Parkinson's disease motor symptoms. Another aspect to consider is group vs. individually based exercise sessions. Both have shown equally effective in improving functional capacity in healthy individuals, but combined group- and individual-based exercise has been recommended as the most attractive model for the broadest range of people with Parkinson's disease. Overall, by incorporating these strategies in walking training, this exercise modality might offer a sustainable, cost-effective, and easy-to-apply intervention that can be offered in local communities worldwide. This would also include people with Parkinson's disease living without easy access to training facilities or who are governed by poor healthcare systems. Another even more easy-to-apply and low-cost intervention to increase physical activity, is to offer a wearable activity tracker. One study reported increased physical activity level in people with Multiple sclerosis when offering a wearable activity tracker and engaging in group- and individual motivational online meetings compared to a control group. However, to the investigator's knowledge, this has not been assessed in people with Parkinson's disease.
Therefore, the primary aim is to investigate the efficacy of a 24-week combined supervised group- and non-supervised individual-based walking intervention (WALK) compared to both a group receiving a wearable activity tracker (HOME) and a control group (CON) on perceived walking difficulties in people with Parkinson's disease. The secondary aims are to identify and characterize responders and non-responders to walking training and to investigate the cost-effectiveness of these exercise interventions.
The hypothesis is that the WALK group will be superior to HOME and CON, while HOME will be superior to CON after 24 weeks in reducing perceived walking difficulties, which will be sustained after a 24-week follow up.
Methods and materials The project includes one main study and two embedded studies. Study 1 (main study): A single-blinded randomized controlled trial including three interventions (WALK, HOME and CON). Tests will be conducted at 0, 24 and 48 weeks.
Study 2: Identification and characterization of responders (i.e., ≥3 point decrease in the generic walking scale or ≥6% increase in maximal oxygen consumption) and non-responders to walking training.
Study 3: Economic evaluation of WALK compared to HOME and CON.
Statistical considerations The study sample size is powered based on descriptive Parkinson's disease data on the primary outcome (i.e., generic walking scale) and the assumption that a clinically meaningful change of ≥3 points will be detected between all three groups after 24 weeks (i.e. WALK \> HOME \> CON). Moreover, based on the inclusion criteria, a more homogeneous population sample compared to the previous study is expected, and thus a lower standard deviation. Lastly, it is expected that 15% will drop out. A one-way ANOVA was used to estimate the sample size (a=0.05, power=0.8, 24-weeks post mean values for CON, HOME and WALK = 15, 12, 9 ± 8, and dropout proportion = 15%). The calculation showed that 43 people with Parkinson's disease should be enrolled into each group.
Interventions
- Behavioral WALK
The intervention covers a personalized 24-week progressive brisk walking program. The program consists of moderate to high-intensity walking (i.e., 55-85% maximal heart rate) performed as both continuous and interval training sessions 2-3 times/week lasting 30-60 min/session. Four individually supervised sessions will be conducted in the first 2 weeks, while 1 supervised group session will be received bi-weekly. Furthermore, the group will receive an activity tracker and monthly telephone calls - Behavioral ACTIVE
Will receive an activity tracker is provided alongside monthly telephone calls and walking advice after the baseline test. Similar to WALK, 3 telephone calls are provided during the follow-up period. - Behavioral CON
Receives a brief educational session (walking advice) is provided at baseline, after which no further contacts are made.
Primary outcome measures
- The Generic Walking Scale - 12 items (Walk-12G) [Time frame: From enrollment to the end of follow-up at 48 weeks]
Secondary outcome measures (12)
- Demographic measures [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Chair rise [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Movement Disorder Society-sponsored revision of the Unified Parkinson's Disease Rating scale (MDS-UPDRS) part I, II, III, and IV [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Mini Balance Evaluation Systems Test (MiniBESTest) [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Timed-up and Go (TUG) [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Six-Spot Step Test (SSST) [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Six-minute walk test (6MWT) [Time frame: From enrollment to the end of follow-up at 48 weeks]
- The Montreal Cognitive Assessment (MoCA) test [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Symbol Digit Modalities Test (SDMT) [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Maximal oxygen consumption test (VO2max test) [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Borg scale (part of VO2max test) [Time frame: From enrollment to the end of follow-up at 48 weeks]
- Maximal heart rate (part of VO2max test) [Time frame: From enrollment to the end of follow-up at 48 weeks]
Eligibility criteria
Inclusion criteria
- clinically diagnosed with Parkinson's disease
- aged ≥40 years
- Hoehn and Yahr stage ≤3
- able to independently undertake transportation back and forth from test days and training sessions
- expectedly able to complete ≥85% of the training sessions
- experience walking difficulties (the generic walking scale (Walk-12G) score ≥8.5).
Exclusion criteria
- have another neurological disorder or other disorders that affect gait and balance (e.g., severe arthritis or arthrosis)
- are pregnant
- have dementia (Montreal Cognitive Assessment score \<18)
- are suffering from alcohol abuse (i.e., exceeding ten units per week, according to the Danish Health Authority recommendation
- have cardiovascular, respiratory, orthopedic, or metabolic disorders or other medical comorbidities hindering participation in maximal exercise testing.
- have a depression
- use an activity tracker during exercise
- performing high-intensity brisk walking three or more times during a week.
Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.
Healthy volunteers: No
Study design
- Allocation
- Randomized
- Model
- Parallel assignment
- Masking
- Single blind
- Primary purpose
- Supportive care
Study locations
Denmark · 1 center
- Aarhus University, Department of Public Health, Sport Science — Aarhus C
Publications
- Lindh-Rengifo M, Jonasson SB, Ullen S, Mattsson-Carlgren N, Nilsson MH. Perceived walking difficulties in Parkinson's disease - predictors and changes over time. BMC Geriatr. 2021 Apr 1;21(1):221. doi: 10.1186/s12877-021-02113-0. PMID 33794786
- Frost R, Levati S, McClurg D, Brady M, Williams B. What Adherence Measures Should Be Used in Trials of Home-Based Rehabilitation Interventions? A Systematic Review of the Validity, Reliability, and Acceptability of Measures. Arch Phys Med Rehabil. 2017 Jun;98(6):1241-1256.e45. doi: 10.1016/j.apmr.2016.08.482. Epub 2016 Oct 1. PMID 27702555
- Rudmik L, Drummond M. Health economic evaluation: important principles and methodology. Laryngoscope. 2013 Jun;123(6):1341-7. doi: 10.1002/lary.23943. Epub 2013 Mar 11. PMID 23483522
- Chaudhuri KR, Martinez-Martin P, Brown RG, Sethi K, Stocchi F, Odin P, Ondo W, Abe K, Macphee G, Macmahon D, Barone P, Rabey M, Forbes A, Breen K, Tluk S, Naidu Y, Olanow W, Williams AJ, Thomas S, Rye D, Tsuboi Y, Hand A, Schapira AH. The metric properties of a novel non-motor symptoms scale for Parkinson's disease: Results from an international pilot study. Mov Disord. 2007 Oct 15;22(13):1901-11. PMID 17674410
- Baecke JA, Burema J, Frijters JE. A short questionnaire for the measurement of habitual physical activity in epidemiological studies. Am J Clin Nutr. 1982 Nov;36(5):936-42. doi: 10.1093/ajcn/36.5.936. PMID 7137077
- Schrag A, Selai C, Jahanshahi M, Quinn NP. The EQ-5D--a generic quality of life measure-is a useful instrument to measure quality of life in patients with Parkinson's disease. J Neurol Neurosurg Psychiatry. 2000 Jul;69(1):67-73. doi: 10.1136/jnnp.69.1.67. PMID 10864606
- Peto V, Jenkinson C, Fitzpatrick R. PDQ-39: a review of the development, validation and application of a Parkinson's disease quality of life questionnaire and its associated measures. J Neurol. 1998 May;245 Suppl 1:S10-4. doi: 10.1007/pl00007730. PMID 9617716
- Pascoe M, Alamri Y, Dalrymple-Alford J, Anderson T, MacAskill M. The Symbol-Digit Modalities Test in Mild Cognitive Impairment: Evidence from Parkinson's Disease Patients. Eur Neurol. 2018;79(3-4):206-210. doi: 10.1159/000485669. Epub 2018 Mar 29. PMID 29597229
Identifiers
NCT: NCT06707402 · Walking and PD