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  4. Tracking motion kinematics and tremor with intrinsic oscillatory property of instrumental mechanics
 
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Tracking motion kinematics and tremor with intrinsic oscillatory property of instrumental mechanics

Journal
Bioengineering & translational medicine
Journal Volume
8
Journal Issue
2
Start Page
e10432
ISSN
2380-6761
Date Issued
2023-03
Author(s)
Ni, Chun-Lun
Lin, Yi-Ting
Lu, Liang-Yin
Wang, Jia-Huei
Liu, Wen-Chuan
Kuo, Sheng-Han
Pan, Ming-Kai  
DOI
10.1002/btm2.10432
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/719954
Abstract
Tracking kinematic details of motor behaviors is a foundation to study the neuronal mechanism and biology of motor control. However, most of the physiological motor behaviors and movement disorders, such as gait, balance, tremor, dystonia, and myoclonus, are highly dependent on the overall momentum of the whole-body movements. Therefore, tracking the targeted movement and overall momentum simultaneously is critical for motor control research, but it remains an unmet need. Here, we introduce the intrinsic oscillatory property (IOP), a fundamental mechanical principle of physics, as a method for motion tracking in a force plate. The overall kinetic energy of animal motions can be transformed into the oscillatory amplitudes at the designed IOP frequency of the force plate, while the target movement has its own frequency features and can be tracked simultaneously. Using action tremor as an example, we reported that force plate-based IOP approach has superior performance and reliability in detecting both tremor severity and tremor frequency, showing a lower level of coefficient of variation (CV) compared with video- and accelerometer-based motion tracking methods and their combination. Under the locomotor suppression effect of medications, therapeutic effects on tremor severity can still be quantified by dynamically adjusting the overall locomotor activity detected by IOP. We further validated IOP method in optogenetic-induced movements and natural movements, confirming that IOP can represent the intensity of general rhythmic and nonrhythmic movements, thus it can be generalized as a common approach to study kinematics.
Subjects
essential tremor
force plate
motion tracking
movement disorder
Type
journal article

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