Moving Yourself in Space and Time: MYSTIC
Start Date
3/25/2022
Completion Date
12/1/2028
Summary
This study is being done to answer the question: Do people with Parkinson's benefit from a new stepping therapy, and how do people with Parkinson's best learn new steps and rhythms set to music? Researchers will also compare individuals with Parkinson's Disease with people with Mild Cognitive Impairment, and with people with neither of these conditions. The purpose of this study is to identify principles of human-music interactions to establish underlying guiding theories for application to music-based rehabilitation for older populations with neurodegenerative disease, leading to more refined and targeted music-based rhythmic movement therapies.
Detailed Description
This study aims to analyze the effects of an innovative rehabilitation intervention comprising complex rhythmic movement sequence (CRMS) rehabilitation (aka, Spatiotemporal Activity Modification (STEAM)) training for adults. The central hypothesis is that the spatial and temporal components of CRMS are learned at slower rates in mild cognitive impairment (MCI) than in controls, and that CRMS-based rehabilitation strategies can improve cognitive and mobility status in MCI. Researchers hypothesize that people with cognitive impairment or Parkinson's disease (PD) will show reduced capacity and slower responses when modulating their movements to auditory cues encoded within complex musical-rhythmic patterns. Musical rhythm, which includes the timing and pattern of sound in music, can be communicated through touch or via audible cues. Objective 1: Evaluate the hypothesis that people with cognitive impairment or Parkinson's disease (PD) will show reduced capacity and slower responses when modulating their movements to auditory cues encoded within complex musical-rhythmic patterns. Aim 1. Determine whether the temporal and spatial components of movement are learned at different timescales during human-music movement sequence learning. Researchers will draw on research in music theory to develop a novel, task-specific set of musical patterns that map and facilitate learning of complex spatiotemporal rhythms during walking tasks. The research team will measure spatial, temporal, and kinematic variables during the physical human-music interaction and will alter combinations of spatial and temporal relationships within movements, in healthy younger (18-35 years), a subset of whom (n=10) are experienced dancers, and individuals (age older than 50 years), individuals with MCI, and individuals with PD. Researchers will analyze data from single-session time courses of learning rhythm, within-session changes, and short-term (24-hour) retention. Hypothesis: Compared to healthy older adults and younger adults, older adults with MCI and older adults with PD will show (H1a) smaller magnitude and slower learning rates for spatial and temporal movement components, and (H1b) greater challenge with learning-coupled spatio-temporal (more complex) rhythmic movements versus spatial or temporal rhythmic movement components alone. Data from the subset of experienced dancers will help us establish biomechanical markers of expert performance. Objective 2: Evaluate the preliminary effects, safety, acceptability, and tolerability of rhythmic movement training in healthy younger adults, healthy older adults, older adults with mild cognitive impairment, and older adults with Parkinson's disease. Aim 2: Explore the thoughts, perceptions, and attitudes of people with MCI and their caregivers, regarding their relationship to music, to dance, and a therapeutic program involving popular music, rhythm, and movement sequences designed for people with MCI. Aim 2 Approach: Participants with MCI will be interviewed for their thoughts, perceptions, and attitudes regarding CRMS. Aim 3: Evaluate the feasibility and preliminary effects of a 3-week daily (e.g., 3-5 times per week; 1.5-hour classes) program of varied rhythmic movement sequences performed to music for people with MCI and people with PD. Researchers will also assess participants before and after the program for clinical, biomechanical, functional, and cognitive measures. Intensive programs have previously been shown to be feasible and effective for similar forms of training and will allow efficient collection of data as well as testing of a useful schedule of treatment.
Eligibility Criteria
Age Range: 18 years to 79 years
Interventions
Complex Rhythmic Movement Sequences (CRMS) Sessions
Conditions
Locations
Emory University, Executive Park, Wesley Woods
Atlanta, Georgia 30329
United States