The purpose of this study is to evaluate disease progression in persons with early Parkinson disease, as assessed by digital and electronic sensor data collection to be correlated with typical clinical assessments.
Subjects will be evaluated via both in-clinic and at-home assessments. The in-clinic assessments are designed to compare the ability of current Parkinson disease clinical trial measures with the ability of mobile and wearable devices to detect disease progression in the early stage of disease. The at-home assessments are designed to determine the feasibility of motor and non-motor assessments of disease progression using a commercially available wearable device/mobile application platform and to determine how this data compares with traditional clinical measures.
Study Type
OBSERVATIONAL
Enrollment
132
Banner Sun Research Institute
Sun City, Arizona, United States
University of California San Francisco
San Francisco, California, United States
Change and variability in inertial sensor-derived measures of motor function from baseline to 12 months during performance of the MDS-UPDRS part 3 motor exam.
Features will be extracted from continuous accelerometer and gyroscope signals, obtained via a set of body-worn inertial sensors, during performance of the MDS-UPDRS part 3, and the change and variability of these features will be assessed.
Time frame: 12 months
Correlations between inertial sensor-derived measures of motor function and clinician ratings during performance of the MDS-UPDRS part 3 and total exam at baseline, 1, 3, 6, 9, and 12 months.
Features extracted from continuous accelerometer and gyroscope signals recorded during each relevant component of the UPDRS part 3 will be correlated with corresponding clinician ratings to quantify the relationship between these measures.
Time frame: 12 months
Correlations between sensor-derived measures of motor function (accelerometer, gyroscope) and patient-reported outcomes measured by MDS-UPDRS parts 1b and 2 at baseline, 1, 3, 6, 9, and 12 months.
Features extracted from continuous accelerometer and gyroscope signals, recorded during the UPDRS part 3 will be correlated with scores on the UPDRS 1b and 2 subtests to examine how sensor-derived measures relate to patient reported activities of daily living and quality of life.
Time frame: 12 months
Correlations between sensor-derived measures of motor function (accelerometer, gyroscope) and patient-reported outcomes measured by PDQ-8 at baseline, 1, 3, 6, 9, and 12 months.
Features extracted from continuous accelerometer and gyroscope signals, recorded during the UPDRS part 3 will be correlated with scores on the PDQ-8 to examine how sensor-derived measures relate to patient reported quality of life.
Time frame: 12 months
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University of Colorado Denver
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