Disorder of Consciousness Clinical Trial
Official title:
Effectiveness Research for Severe Disorders of Consciousness Patients Treated With Spinal Cord Stimulation (SCS)
NCT number | NCT04010838 |
Other study ID # | KY2017-329 |
Secondary ID | |
Status | Recruiting |
Phase | N/A |
First received | |
Last updated | |
Start date | July 1, 2019 |
Est. completion date | June 30, 2023 |
Disorders of consciousness(DOC) is the most serious complications and has been widely paid attention to by the government. DOC patients cause large social and economic burden to our society for there has no effective cure so far. Spinal cord stimulation(SCS) for wake-promoting therapy has aroused scholars' attention and become a hot area recently. There was much debate about the effectiveness of SCS therapy, but because of the limitation of our understanding of consciousness and the uncertainty of parameters of the stimulation, So, to figure out the indications and effectiveness of neuromodulation therapy should be the first step, and finding individual treatment and parameter may have important implications for DOC patients.
Status | Recruiting |
Enrollment | 40 |
Est. completion date | June 30, 2023 |
Est. primary completion date | December 31, 2021 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 14 Years to 65 Years |
Eligibility |
Inclusion Criteria: 1. Patients ages 14 to 65 years old; 2. DOC patients, including vegetative state and minimally consciousness state. 3. With normal body temperature, stable vital signs, spontaneous breathing without an extra oxygen supply, no tracheotomy using metal trachea cannula, and feasible for magnetic resonance inspectors; 4. Written informed consent from patient families Exclusion Criteria: 1. History of nervous or spirit disorders, or some other serious diseases such as cardiac or pulmonary problems; 2. With contraindications of spinal cord operations. 3. Body temperature is abnormal, vital signs are not stable, still need a ventilator to support breathing; Plentiful sputum needed suction during MRI scans. |
Country | Name | City | State |
---|---|---|---|
China | Department of Neurosurgery, Huashan Hospital | Shanghai | Shanghai |
Lead Sponsor | Collaborator |
---|---|
Huashan Hospital |
China,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | the JFK Coma Recovery Scale-Revised (CRS-R) scale | The CRS-R is a tool used to characterise the level of consciousness.The CRS-R is a tool used to characterize the level of consciousness and to monitor neurobehavioural recovery in DOC. The scale consists of 23 hierarchically arranged items that comprise six subscales addressing the auditory, visual, motor, oromotor/verbal, communication and arousal processes. The lowest item on each subscale represents reflexive activity whereas the highest item represents cognitively mediated behaviors. | at baseline (T0), which means 1 month before stimulation. | |
Primary | the JFK Coma Recovery Scale-Revised (CRS-R) scale | The CRS-R is a tool used to characterise the level of consciousness.The CRS-R is a tool used to characterize the level of consciousness and to monitor neurobehavioural recovery in DOC. The scale consists of 23 hierarchically arranged items that comprise six subscales addressing the auditory, visual, motor, oromotor/verbal, communication and arousal processes. The lowest item on each subscale represents reflexive activity whereas the highest item represents cognitively mediated behaviors. | 2 weeks after the end of the treatment (T1) | |
Primary | the JFK Coma Recovery Scale-Revised (CRS-R) scale | The CRS-R is a tool used to characterise the level of consciousness.The CRS-R is a tool used to characterize the level of consciousness and to monitor neurobehavioural recovery in DOC. The scale consists of 23 hierarchically arranged items that comprise six subscales addressing the auditory, visual, motor, oromotor/verbal, communication and arousal processes. The lowest item on each subscale represents reflexive activity whereas the highest item represents cognitively mediated behaviors. | 3 months after the end of the treatment (T2) | |
Primary | the JFK Coma Recovery Scale-Revised (CRS-R) scale | The CRS-R is a tool used to characterise the level of consciousness.The CRS-R is a tool used to characterize the level of consciousness and to monitor neurobehavioural recovery in DOC. The scale consists of 23 hierarchically arranged items that comprise six subscales addressing the auditory, visual, motor, oromotor/verbal, communication and arousal processes. The lowest item on each subscale represents reflexive activity whereas the highest item represents cognitively mediated behaviors. | 6 months after the end of the treatment(T3) | |
Secondary | EEG recording in resting state with Phase Coherence analysis(PC index) | EEG data will be collected using a 256-channel EEG recording system(GES300, Electrical Geodesic, Inc., USA). Phase Coherence index will be performed in MATLAB by first taking the phase of the spectral signals(A), and the caculating as the following: mean[cos(A),2]^2 + mean[sin(A),2]^2 | at baseline (T0), which means 1 month before stimulation. | |
Secondary | EEG recording in resting state with Phase Coherence analysis(PC index) | EEG data will be collected using a 256-channel EEG recording system(GES300, Electrical Geodesic, Inc., USA). Phase Coherence index will be performed in MATLAB by first taking the phase of the spectral signals(A), and the caculating as the following: mean[cos(A),2]^2 + mean[sin(A),2]^2 | 2 weeks after the end of the treatment (T1) | |
Secondary | EEG recording in resting state with Phase Coherence analysis(PC index) | EEG data will be collected using a 256-channel EEG recording system(GES300, Electrical Geodesic, Inc., USA). Phase Coherence index will be performed in MATLAB by first taking the phase of the spectral signals(A), and the caculating as the following: mean[cos(A),2]^2 + mean[sin(A),2]^2 | 3 months after the end of the treatment (T2) | |
Secondary | EEG recording in resting state with Phase Coherence analysis(PC index) | EEG data will be collected using a 256-channel EEG recording system(GES300, Electrical Geodesic, Inc., USA). Phase Coherence index will be performed in MATLAB by first taking the phase of the spectral signals(A), and the caculating as the following: mean[cos(A),2]^2 + mean[sin(A),2]^2 | 6 months after the end of the treatment (T3) |
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