Pain, Acute Clinical Trial
— KinesioPointOfficial title:
Adaptation of the Motor System to Experimental Pain
Verified date | May 2024 |
Source | Universite du Littoral Cote d'Opale |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Interventional |
This study aims to measure the impact of an experimental pain on electromyography, kinematics of motion and motor cortical excitability.
Status | Completed |
Enrollment | 30 |
Est. completion date | October 31, 2023 |
Est. primary completion date | October 28, 2022 |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | All |
Age group | 18 Years to 65 Years |
Eligibility | Inclusion Criteria: - Healthy subjects (who do not have self-reported neurological disorders) - Subjects who have signed an informed consent (who have a good command of French) - Subjects affiliated with or receiving social security benefits Exclusion Criteria: - Psychiatric history obtained through physician questioning: individuals with mental retardation or severe impairment of cognitive, behavioral, or emotional function that precludes understanding the protocol and signing informed consent - Neurological history (epilepsy, stroke, surgeries performed on the brain or spinal cord, and history of neurological diseases affecting motor skills and sensation) - Subjects who are unable to receive informed information (dementia, hearing problems, poor French proficiency, etc.) - Contraindications to MST (epilepsy, intracranial metal foreign bodies, hearing aids or cochlear implants) - Taking psychotropic medications - Persons under guardianship or conservatorship - Pregnant and nursing women - Subjects with pacemakers |
Country | Name | City | State |
---|---|---|---|
France | Eurasport | Loos | Nord |
Lead Sponsor | Collaborator |
---|---|
Universite du Littoral Cote d'Opale |
France,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Corticospinal excitability | It will be measured using transcranial magnetic stimulation at different intensities in order to model I/O curves for each participant. Measurements will be taken before (pain-free condition) and after (pain condition) the application of a patch of capsaicin 1%, at the shoulder. Electromyographic signals, induced by the magnetic stimuli, will be captured with surface electrodes glued to the skin the anterior deltoid and upper trapezius muscles. To facilitate obtaining deltoid MEPs, participants will be asked to voluntarily contract 8-12% of their maximum voluntary contraction. The Boltzmann sigmoidal function will be used to fit the data points to construct the I/O curves. The mathematical modeling of the I/O curves allows the calculation of three parameters: the slope, the plateau, and the S50, the intensity allowing to obtain a response twice less than the maximum response. These 3 parameters will be used to compare them with the 2 conditions (before and after pain). | 1 hour | |
Primary | Kinesiophobia | Kinesiophobia will be assessed using the French-Canadian version of the Tampa Kinesiophobia Questionnaire (EKT-CF). It takes the form of a self-reported questionnaire of 17 items using a Likert scale ranging from 1 (strongly disagree) to 4 (strongly agree), with an acceptable degree of internal consistency (Cronbach's alpha = 0.71), satisfactory construct validity, and high sensitivity to change (intra-class correlation coefficient > 0.7). The total score is obtained by adding the value of the responses and is between 17 and 68. The value of 40/68 is considered as the threshold value at which kinesiophobia becomes significant. | 5 minutes | |
Secondary | Activation synergies | Surface electromyogram recordings of the anterior deltoid and upper trapezius muscles will be made on the dominant upper limb performing a pointing task and on which the experimental pain will be induced (pre-post measurements).
The activation synergies will be recorded (relative durations between the onset of different surface EMG puffs of the targeted muscles). |
1 hour | |
Secondary | Kinematic parameters: Linearity of motion | Trajectory length ratio (TLR), defined as the ratio of the total length of the trajectory traveled by the hand divided by the shortest length between the start and end points. A ratio of 1 indicates an ideal trajectory; as the ratio increases, the trajectory becomes less direct. | 1 hour | |
Secondary | Kinematic parameters: Smoothness of motion | The number of velocity peaks on the kinematic path of the index. The higher this number, the less regular the motion. | 1 hour | |
Secondary | Kinematic parameters: Maximum directional error | Maximum orthogonal distance between the hand position and the straight line connecting the start and end points. | 1 hour | |
Secondary | EMG data and cumulative summation: The area of the puffs | The value of the area under the curves between the beginning and the end of the puffs. | 1 hour | |
Secondary | EMG data and cumulative summation: CUSUMs | The value of the CUSUMs of each puff, which represents the small variations that may appear in surface EMG and may be masked by background fluctuations. | 1 hour |
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