Involuntary Movements Clinical Trial
— DYNAMIC SYSTEMOfficial title:
Performance Evaluation of the NETTI Wheelchair in Dynamic Mode for Subjects With Involuntary Movements With an Impact on Sitting Position Compared With Its Static Mode. Single-case Experimental Design.
This study compares two modes of the NETTI wheelchair (dynamic or sitting) for patients with hyperkinetic syndromes, to discover which mode is the most comfortable and best suited to these patients. It is a prospective, single-center pilot study comparing two medical devices evaluated using SCED (Single Case Experimental Design) ABAB methodology: NETTI DYNAMIC chair in dynamic mode (intervention group; phase B) versus the same chair in static mode (control group; phase A). The subject will be his/her own control
Status | Recruiting |
Enrollment | 5 |
Est. completion date | August 1, 2026 |
Est. primary completion date | June 1, 2025 |
Accepts healthy volunteers | |
Gender | All |
Age group | 16 Years and older |
Eligibility | Inclusion Criteria: - Patient with involuntary extension movements with a frequency greater than (>) 3/hour and requiring at least one wheelchair repositioning every 2 hours. - Patient using a wheelchair and requiring to be in a seated position at least 4 hours per day. - Patient and/or representative with free and informed consent. - Patient and/or representative having signed the consent form. - Patient affiliated or beneficiary of a health insurance plan. - Patient over 16 years of age (=16 years). Exclusion Criteria: - Patient unable to sit in chair for at least 3 hours a day. - Patient unable to sit in the chair without the use of a thermoformed corset. - Patients weighing over 135kg. - Patient participating in a drug study. - Patient in an exclusion period determined by another study. - Patient/legal representative for whom it is impossible to provide informed information. - Pregnant or breast-feeding patient |
Country | Name | City | State |
---|---|---|---|
France | CHU de Nîmes | Nîmes |
Lead Sponsor | Collaborator |
---|---|
Centre Hospitalier Universitaire de Nimes |
France,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Other | Sex | The sex of each patient will be recorded as MALE/FEMALE/NON-BINARY | Day 0 | |
Other | Age | The age of each patient will be recorded in YEARS | Day 0 | |
Other | Height | The height of each patient will be recorded in centimeters | Day 0 | |
Other | Weight | The weight of each patient will be recorded in kilograms | Day 0 | |
Other | Body mass index | The patient's body mass index (= kg/m2 ) will be calculated via a computerized procedure. | Day 0 | |
Primary | Forward slippage in static mode (PHASE A) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 7 | |
Primary | Forward slippage in static mode (PHASE A) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 14 | |
Primary | Forward slippage in static mode (PHASE A) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 21 | |
Primary | Forward slippage in static mode (PHASE A) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 28 | |
Primary | Forward slippage in dynamic mode (PHASE B) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 7 | |
Primary | Forward slippage in dynamic mode (PHASE B) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 14 | |
Primary | Forward slippage in dynamic mode (PHASE B) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 21 | |
Primary | Forward slippage in dynamic mode (PHASE B) | Measurement of forward slippage (mm) of the pelvis in relation to the backrest of the chair. This assessment will be made after each involuntary movement over the 3-hour observation period.Collection tools/methods :
Go pro positioning: see face + torso Sensor positioning: 4 motion sensors record continuously throughout the sequence: one on the back of the chair, one on the thorax over the sternum, one on the anterior superior iliac spine and one on the top of the homolateral thigh. Motion sensor data are sent by e-mail ( .csv file), together with a timeline (word file) of the occurrence of abnormal movements. They are sent pseudonymized simultaneously to Mike Dongelmans (ALU REHAB AS, Norway) and MotionCatch / Denmark (which carries out the analysis on behalf of ALU REHAB AS). In order to mark the "involuntary movement" events on the video, the collaborator will have to be able to identify which chair it is, but then, for the forward-slippage data analysis, this will be done under |
End of the 3-hour period on Day 28 | |
Secondary | Peak force in static mode (PHASE A) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 7 | |
Secondary | Peak force in static mode (PHASE A) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 14 | |
Secondary | Peak force in static mode (PHASE A) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 21 | |
Secondary | Peak force in static mode (PHASE A) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 28 | |
Secondary | Peak force in dynamic mode (PHASE B) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 7 | |
Secondary | Peak force in dynamic mode (PHASE B) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 14 | |
Secondary | Peak force in dynamic mode (PHASE B) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 21 | |
Secondary | Peak force in dynamic mode (PHASE B) | Measurement of the peak force (F max ) exerted on the user's back during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 28 | |
Secondary | Maximum downward force in static mode (PHASE A) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 7 | |
Secondary | Maximum downward force in static mode (PHASE A) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 14 | |
Secondary | Maximum downward force in static mode (PHASE A) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 21 | |
Secondary | Maximum downward force in static mode (PHASE A) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 28 | |
Secondary | Maximum downward force in dynamic mode (PHASE B) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 7 | |
Secondary | Maximum downward force in dynamic mode (PHASE B) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 14 | |
Secondary | Maximum downward force in dynamic mode (PHASE B) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 21 | |
Secondary | Maximum downward force in dynamic mode (PHASE B) | Measurement of the maximum downward force (Newton) exerted on the user's seat during an involuntary movement. This assessment will be made after each involuntary movement over the 3-hour observation period. | After each involuntary movement over the 3-hour observation period on Day 28 | |
Secondary | Patient's comfort in static mode (PHASE A) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Patient's comfort in static mode (PHASE A) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Patient's comfort in static mode (PHASE A) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Patient's comfort in static mode (PHASE A) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Patient's comfort in dynamic mode (PHASE B) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Patient's comfort in dynamic mode (PHASE B) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Patient's comfort in dynamic mode (PHASE B) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Patient's comfort in dynamic mode (PHASE B) | Self-assessment of the comfort felt by the patient when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Caregiver's comfort in static mode (PHASE A) | Hetero-assessment of the comfort felt by the patient's caregiver when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Caregiver's comfort in dynamic mode (PHASE B) | Hetero-assessment of the comfort felt by the patient's caregiver when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Caregiver's comfort in dynamic mode (PHASE B) | Hetero-assessment of the comfort felt by the patient's caregiver when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Caregiver's comfort in dynamic mode (PHASE B) | Hetero-assessment of the comfort felt by the patient's caregiver when using the chair (Visual Analog Scale between 0 and 100mm) at the end of each measurement phase. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Number of repositionings required in static mode (PHASE A) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Number of repositionings required in static mode (PHASE A) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Number of repositionings required in static mode (PHASE A) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Number of repositionings required in static mode (PHASE A) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Number of repositionings required in dynamic mode (PHASE B) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Number of repositionings required in dynamic mode (PHASE B) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Number of repositionings required in dynamic mode (PHASE B) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Number of repositionings required in dynamic mode (PHASE B) | Number of repositionings required during the test phase. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Discomfort perceived by the caregiver in static mode (PHASE A) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Discomfort perceived by the caregiver in static mode (PHASE A) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Discomfort perceived by the caregiver in static mode (PHASE A) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Discomfort perceived by the caregiver in static mode (PHASE A) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Discomfort perceived by the caregiver in dynamic mode (PHASE B) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Discomfort perceived by the caregiver in dynamic mode (PHASE B) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Discomfort perceived by the caregiver in dynamic mode (PHASE B) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Discomfort perceived by the caregiver in dynamic mode (PHASE B) | Caregiver's self-assessment of the discomfort felt over the observation period using a Visual Analog Scale scale from 0 to 100mm. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Safety as perceived by the caregiver/carer in static mode (PHASE A) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Safety as perceived by the caregiver/carer in static mode (PHASE A) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Safety as perceived by the caregiver/carer in static mode (PHASE A) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Safety as perceived by the caregiver/carer in static mode (PHASE A) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Safety as perceived by the caregiver/carer in dynamic mode (PHASE B) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Safety as perceived by the caregiver/carer in dynamic mode (PHASE B) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Safety as perceived by the caregiver/carer in dynamic mode (PHASE B) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Safety as perceived by the caregiver/carer in dynamic mode (PHASE B) | Hetero-evaluation by Visual Analog Scale scale (0-100mm) of the safety felt by the caregiver/carer when using the chair during the observation phase. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Average of peak forces exerted on the wheelchair's backrest in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the rear support of the wheelchair. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in static mode (PHASE A) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 28 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 7 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 14 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 21 | |
Secondary | Average of peak forces exerted on the wheelchair's seat in dynamic mode (PHASE B) | Calculation of the average of the peak forces (Fmax) exerted on the seat of the wheelchair measured for all involuntary movements. | At the end of the 3-hour observation period on Day 28 |
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