The driving idea of this project is to use new imaging techniques during 0functional movements to study relearning during a typical rehabilitation session. The novelty of this project is to move from studies inquiring changes in brain activity patterns before and after rehabilitation toward a paradigm in which cortical activity is studied during the execution of the exercise. This would allow better understanding of cortical mechanisms underpinning functional improvements. The project builds on preceding studies, partially funded by FISM, from the three research units involved in this project, aimed at assessing the impact of rehabilitation on mobility and balance and at assessing the effects of neurorehabilitation on brain plasticity. In this study, we will include 40 healthy subjects and a sample of 20 consecutive People with Multiple Sclerosis (PwMS), and we will investigate brain cortical activity during a typical session of task-oriented exercises. In specific, participants will undergo a treadmill training in which they will be required to keep their trunk and head stable in space using a biofeedback device. To study the effects of the session in improving dynamic stability, Head/trunk movements will be registered by inertial measurement units, while cortical activity will be concurrently assessed by functional near-infrared spectroscopy (fNIRS). The first phase of the project will include healthy subjects and will be useful to understand the main cortical areas involved in the proposed motor tasks, in order to design the appropriate montage and protocol for fNIRS acquisition in PwMS. Finally, the analysis of the possible differences in cortical activation during different experimental conditions (e.g., biofeedback rehabilitation) in healthy subjects and PwMS will serve to develop a model for neurological rehabilitation.
Study Type
OBSERVATIONAL
Enrollment
40
Università di Genova
Genova, Italy
RECRUITINGIRCCS Santa Maria Nascente - Fondazione Don Carlo Gnocchi
Milan, Italy
RECRUITINGUniversità degli Studi di Milano
Milan, Italy
ACTIVE_NOT_RECRUITINGHead and trunk movements quantified with Inertial Measurement Units (IMU)
The following variables are calculated: (1) the angular displacements in the sagittal and frontal planes, calculated as 1 standard deviation (SD) from the angular displacement data; and the head and angular velocities, which are the root mean square of the first derivative of angular displacements in the sagittal and frontal planes.
Time frame: Baseline
Cortical activation with Functional Infrared Spettroscopy (fNIRS)
fNIRS data analysis will identify the acquisition channels (and hence the cortical areas) significantly active in the different experimental conditions.
Time frame: Baseline
10 Meters walking test
The 10-Meter Walking Test (10MWT) is a commonly used assessment to measure walking speed and functional mobility, especially in individuals with neurological conditions like multiple sclerosis
Time frame: Baseline
Twelve-Item Multiple Sclerosis Walking Scale (MSWS_12)
to assess walking perceived ability of people with multiple sclerosis. The score ranges from 12 to 60, with higher scores indicating a higher degree of walking impairment.
Time frame: Baseline
Modified Fatigue Impact Scale (MFIS)
To assess the perceived impact of fatigue in people with multiple sclerosis. The score ranges from 0 to 84, with higher scores indicating a higher degree of fatigue.
Time frame: Baseline
Beck Depression Inventory (BDI-II)
To monitor anxiety and depression. The score ranges from 0 to 63, with higher scores indicating a higher degree of depression.
Time frame: Baseline
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.