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Muscular Rehabilitation by Eccentric Exercise After Severe COVID-19 Infection

Muscular Rehabilitation by Eccentric Exercise After Severe COVID-19 Infection: Research Protocol for Randomized Controlled Trial (CovExc)

Status
Terminated
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04649086
Acronym
CovExc
Enrollment
60
Registered
2020-12-02
Start date
2020-06-05
Completion date
2022-01-07
Last updated
2026-08-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Covid19, Muscle Weakness, Sarcopenia

Keywords

Covid19, Sarcopenia, Muscle Weakness, Eccentric exercises, Rehabilitation

Brief summary

With the COVID-19 pandemic, the number of patients to be treated in rehabilitation increased . Hospitalization for severe infection can induce muscular atrophy and muscular dysfunction that persists for several months and rehabilitation capacities may be exceeded. Exercises in eccentric mode could be performed, inducing greater muscular hypertrophy, muscle strength, power and speed than concentric exercises. The goal of this study was to compare functional recovery at 2 months after a training program in eccentric and concentric mode after severe COVID-19. An effective rehabilitation could help reduce costs and duration of care.

Detailed description

This is a prospective, open, controlled randomized study (2 x 60 individuals) performed in 3 centers. Participants will perform 24 exercise sessions on cycloergometer (3 sessions/week, 8 weeks). The experimental group (eccentric) will perform 5 habituation sessions: the initial power of the exercise will be set to 10 Watts and then increased by 10% each session, depending on the muscle tolerance. The training power must correspond to 3 times that of the control group to obtain a similar metabolic stimulation. The control group (concentric) will perform exercise training at an intensity of 60% of the reserve heart rate determined during an initial cardiorespiratory test. The primary outcome will be the change in distance covered during the 6-min walk test between the initial assessment and month 2. Secondary outcomes will include study of sarcopenia, muscle strength, general and muscular fatigue, quality of life, blood metabolomic data, ex vitro data for mitochondrial and histo-biochemical functionality from muscle biopsies of the Vastus Lateralis.

Interventions

OTHERRehabilitation by Eccentric exercises

Participants will perform 24 exercises sessions (30 minutes) with cycloergometer in eccentric mode (while resisting against self-paced pedaling), inducing a greater muscular hypertrophy as compared with concentric mode, the mechanical stimulation being 3 to 4 times greater at the same level metabolic stimulation.

OTHERRehabilitation by Concentric exercises

The control group (concentric) will perform exercise training at an intensity of 60% of the reserve heart rate determined during an initial cardiorespiratory test. The power will be adjusted weekly to stay within the target heart rate range.

Sponsors

University Hospital, Clermont-Ferrand
Lead SponsorOTHER
GIRCI Auvergne Rhone-Alpes
CollaboratorOTHER
Ministry of Health, France
CollaboratorOTHER_GOV

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Masking description

Evaluations will be carried out with blinding by investigators different from those involved in the exercise training sessions. Patients will be blinded to the training mode hypothesis.

Intervention model description

All included participants will be randomly assigned (1:1) using the REDCap software, , at the experimental group or the control group. Participants will perform 24 exercise sessions on cycloergometer (3 sessions/week, 8 weeks). The experimental group (eccentric) will perform 5 habituation sessions: the initial power of the exercise will be set to 10 Watts and then increased by 10% each session, depending on the muscle tolerance. The training power must correspond to 3 times that of the control group to obtain a similar metabolic stimulation. The control group (concentric) will perform exercise training at an intensity of 60% of the reserve heart rate determined during an initial cardiorespiratory test.

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

* Male or female, 18 to 80 years old * Diagnosed for SARS-CoV-2 infection (COVID-19) requiring a rehabilitation program at least 1 month after the hospitalization * Autonomy in daily life activities 1 month after diagnosis * Able to walk for 6 min (discontinuous walking possible) * Giving informed written consent to participate in the study * Health insurance coverage

Exclusion criteria

* Cardiovascular or respiratory contraindication to the rehabilitation program * Difficulty to perform an eccentric exercise on a seated ergometer * Pregnant or breastfeeding * Under guardianship, curatorship or deprived of liberty * Taking antivitamin K anticoagulation (muscle biopsy) * Refusal to participate

Design outcomes

Primary

MeasureTime frameDescription
Functional walking capacityDay 0, Month 1, Month 2 and Month 6Average change from baseline walking capacity measured by the 6-minutes walk test (6MWT), expressed in meters. All patients will be asked to cover the longest distance over a 30-meters distance in 6 min with or without stopping and with standardized verbal encouragements according to standard recommendations; to take into account a learning effect, the test will be performed twice, with the longer distance retained, expressed in meters. To prevent adverse effect, pulsed oxygen saturation (% of pSO²) and heart rate (heartbeat per minute) will be monitored continuously throughout the test by using a digital oximeter.

Secondary

MeasureTime frameDescription
Evaluating of lower extremity functioning by Short Physical Performance Battery (SPPB) scoreDay 0, Month 2 and Month 6this test consists of assessing balance in a standing position, lifting from a chair (5 stand to-sit repetitions) and measuring 4-m walking speed (20). The patient walks 4 m at a normal and comfortable speed. The "test zone" (4 m) is preceded by an "acceleration zone" (1 m) and is followed by a "deceleration zone" (1 m). The assessor starts and stops the timing when the subject's foot meets the ground when entering and leaving the "test area", respectively.
Evaluating the maximum muscle strength of the quadriceps by Quadriceps Isometric Maximum Strength (QIMS) testDay 0, Month 2maximum muscle strength of the quadriceps, on the dominant limb, will be measured on a bench: - Strength during isometric contraction (at 90° knee flexion) - Standardized position with the arms crossed on the chest, the absence of back support during the measurement and the maintenance of the hips and the contralateral leg to avoid any compensating movement Three reproducible measurements (±10%) will be taken at 1-min intervals, with the highest value retained.
Evaluating the fatigability of the quadriceps by Quadriceps Intermittent Fatigue (QIF) testDay 0, Month 2this test consists of performing 10 knee extensions at 10% QIMS, then gradually increasing the load (10% by 10%) until exhaustion (cannot perform the movement 2 consecutive times). The value retained is the last level (% QIMS) performed.
Evaluating the global fatigability by Modified Fatigue Impact Scale (MFIS)Day 0, Month 2 and Month 6this scale explores cognitive (10 items), physical (9 items) and psychosocial (2 items) fatigue. The MFIS included 21 items with a total score ranging from 0 to 84 with higher scores indicating a greater impact of quality of life.
Evaluating functional capacities with EuroQol - 5 Dimensions (EQ-5D) questionnaireDay 0, Month 2 and Month 6This questionnaire explores 5 dimensions: mobility, self-care, usual activities, pain/discomfort and anxiety/depression. The EQ-5D-5L included 5 items independently scored from 1 to 5 (higher scores indicating a greater impact)and a 0-100 visual analogic scale exploring general health (0 means the worst heath patient can imagine, 100 means the best health patient can imagine).
Evaluating the handgrip strength by standard handgrip strength testDay 0, Month 2measurement is in 90° elbow flexion, wrist in neutral position. Three reproducible measurements (± 10%) will be taken at 1-min intervals, with the highest value retained.
Metabolomic ProfileDay 0, Month 2 (post-training)Plasma metabolome profile assessed by variation of number of blood metabolites. Changes from baseline to post-training intervention in plasma metabolome profile will be compared between excentric and concentric exercise groups.
Cross sectional area measurementDay 0, Month 2 (post-training)Biopsy from the Vastus lateralis will be performed and the variation of cross sectional area measurement of muscle fibers (µm2) will be analysed and compared between excentric and concentric exercise groups from baseline to post-training intervention.
Capillary to fibre ratio.Day 0, Month 2 (post-training)Biopsy from the Vastus lateralis will be performed and the capillarization (variation of capillary to fiber ratio) will be analysed. Muscle adapations from baseline to post-training intervention will be compared between excentric and concentric exercise groups.
Satellite cell numberDay 0, Month 2 (post-training)Biopsy from the Vastus lateralis will be performed and the evolution of number of satellite cell per muscle fiber will be analysed and compared between excentric and concentric exercise groups from baseline to post-training intervention.
Neuromuscular activationDay 0, Month 2 (post-training)Electrophsyiological stimulation of the quadriceps for the measurement of the neuromuscular activation before, during and after the QIF test. During this test, we measure maximal M-wave, contraction time and torque and the percentage of neuromuscular activation. Neuromuscular activation will be analysed and compared between excentric and concentric exercise groups from baseline to post-training intervention.
Quadriceps muscular Oxygen Tissue SaturationDay 0, Month 2 (post-training)An infrared spectroscopy device is localized on the anterior part of the quadriceps. The device measures hemoglobin and desoxyhemoglobin concentration under the placement area. This measure is performed, before, during and after the QIF test. During this test, we measure the hemoglobin and desoxyhemoglobin concentration as well as the tissue saturation index.Quadriceps muscular Oxygen Tissue Saturation will be analysed and compared between excentric and concentric exercise groups from baseline to post-training intervention.
O2 uptake Efficiency during walk testDay 0, Month 2 (post-training)A gaz exchange device records the O2 uptake during the 6 minutes walk test. The O2 uptake efficiency was defined as the volume of O2 per meter used by the participant. An infrared spectroscopy device is localized on the anterior part of the quadriceps. O2 uptake Efficiency during walk test will be analysed and compared between excentric and concentric exercise groups from baseline to post-training intervention.
Creatine Kinase (CPK)Day 0A blood sample collection to measure the CPK concentration.
C-reactive protein (CRP)Day 0A blood sample collection to measure CRP concentration.

Countries

France

Contacts

PRINCIPAL_INVESTIGATORMaxime GROLIER, MD, MSc

University Hospital, Clermont-Ferrand

STUDY_DIRECTOREmmanuel COUDEYRE, MD, PhD

University Hospital, Clermont-Ferrand

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Aug 6, 2026