A major issue brought about by the current pandemic concerns the discontinuation of a large proportion of outpatient services provided locally, especially in the rehabilitation field. Added to this situation is the ever-increasing demand for rehabilitation for post-COronaVIrus Disease 19 (COVID-19) patients. Data show that respiratory and motor rehabilitation for people infected with COVID-19 is necessary at all stages of the disease, even in the medium to long term after discharge from acute hospital care. Also to be taken into account are the logistical difficulties imposed by restrictions on the movement of individuals within the territory for both patients and caregivers, which are amplified in remote or poorly served areas, such as many cross-border territories. In this context, telerehabilitation can provide solutions to assist healthcare facilities in managing the demand for rehabilitation in the territory using a 'digital' therapist. The main objective of this project is therefore to identify the appropriate technology to administer the rehabilitation programme to patients and apply to a group of post-COVID-19 patients a customised respiratory and/or motor rehabilitation programme to be carried out directly at the patients' home after hospital discharge in order to evaluate its effects.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
SUPPORTIVE_CARE
Masking
NONE
Enrollment
30
Application of customised respiratory and/or motor rehabilitation exercises to be carried out directly at the patients' home after hospital discharge in order to evaluate its effects.
Istituto Auxologico Italiano IRCCS
Oggebbio, VB, Italy
Clinica Hildebrand
Brissago, Switzerland
Change from baseline aerobic endurance.
Measurement of aerobic endurance using the six-minutes walk test (6MWT) at baseline (upon admission, T0), 3-4 weeks later after multidisciplinary rehabilitation + respiratory and motor training (at discharge, T1) and after 3-4 weeks of telerehabilitation (T2).
Time frame: up to 8 weeks
Change from baseline balance and functional mobility.
Measurement of balance and functional mobility using Timed Up and Go test (TUG) at baseline (upon admission, T0), 3-4 weeks later after multidisciplinary rehabilitation + respiratory and motor training (at discharge, T1) and after 3-4 weeks of telerehabilitation (T2).
Time frame: up to 8 weeks
Change from baseline isometric strength.
Measurement of isometric strength using the handgrip test (kg) at baseline (upon admission, T0), 3-4 weeks later after multidisciplinary rehabilitation + respiratory and motor training (at discharge, T1) and after 3-4 weeks of telerehabilitation (T2).
Time frame: up to 8 weeks
Change from baseline in several respiratory measures.
Performing force vital capacity (FVC), maximum inspiratory (MIP) and expiratory (MEP) pressure and two one-minute maximum voluntary ventilation respiratory tests with the SpiroTiger device (first test with a ventilatory rate of 26 acts/min with increased load on the inspiratory muscles and second test with a ventilatory rate of 34 acts/min with increased load on the expiratory muscles) at baseline (upon admission, T0), 3-4 weeks later after multidisciplinary rehabilitation + respiratory and motor training (at discharge, T1) and after 3-4 weeks of telerehabilitation (T2).
Time frame: up to 8 weeks
Change from baseline in the pulmonary function test.
Performing a spirometry test with diffusing capacity of the lungs for carbon monoxide (DLCO) at baseline (upon admission, T0), 3-4 weeks later after multidisciplinary rehabilitation + respiratory and motor training (at discharge, T1) and after 3-4 weeks of telerehabilitation (T2).
Time frame: up to 8 weeks
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