Patients with severe brain injury may develop impaired respiratory drive, diaphragm dysfunction, prolonged mechanical ventilation, and difficulty recovering spontaneous breathing. Epidural spinal cord stimulation may activate preserved spinal respiratory circuits and improve respiratory muscle activity. This prospective, single-center, non-randomized, single-arm exploratory study will enroll 10 patients with stroke or traumatic brain injury who have impaired consciousness and require invasive mechanical ventilation. Participants will undergo epidural spinal cord stimulation in addition to standard clinical care. Diaphragmatic electrical activity, respiratory function, diaphragm ultrasound findings, diaphragm electromyography, duration of mechanical ventilation, pulmonary infection, length of stay, mortality, safety events, and 6-month neurological outcome will be assessed. The study aims to evaluate the safety and preliminary efficacy of epidural spinal cord stimulation for improving respiratory function after brain injury.
Severe central nervous system injury, including stroke and traumatic brain injury, may impair respiratory drive and disrupt descending pathways between brainstem respiratory centers and spinal respiratory motor networks. This can lead to diaphragm weakness, ineffective cough, secretion retention, prolonged mechanical ventilation, pulmonary infection, and difficulty with ventilator liberation. Epidural spinal cord stimulation is a neuromodulation approach that may increase the excitability of preserved spinal neural circuits and facilitate respiratory motor output. Preclinical and early clinical evidence suggests that spinal stimulation can enhance respiratory muscle activation and improve ventilatory performance. This study is a prospective, single-center, interventional, non-randomized, single-arm exploratory trial. Ten adults with imaging-confirmed stroke or traumatic brain injury, a Glasgow Coma Scale score of 3 to 8, and a requirement for invasive mechanical ventilation for at least 24 hours will be enrolled. All participants will undergo epidural spinal cord stimulation in addition to standard treatment. Respiratory physiological measurements will be obtained before and after stimulation. Participants will be followed until hospital discharge and subsequently assessed for survival and neurological outcome at 6 months after injury. The study will evaluate changes in diaphragmatic electrical activity and other respiratory parameters, as well as pulmonary infection, duration of mechanical ventilation, intensive care unit and hospital length of stay, in-hospital mortality, neurological outcome, and intervention-related adverse events.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
10
Participants will undergo surgical implantation of an epidural spinal cord stimulation electrode under anesthesia. The electrode will be positioned at the spinal level specified in the final surgical protocol and connected to a stimulation system.
Chinese PLA General Hospital
Beijing, Beijing Municipality, China
Zhongda Hospital, Southeast University
Nanjing, Jiangsu, China
The 904th Hospital of the Joint Logistic Support Force of the Chinese People's Liberation Army
Suzhu, Jiangsu, China
Change in Peak Electrical Activity of the Diaphragm From Before to After Spinal Cord Stimulation
Peak electrical activity of the diaphragm will be measured using an electrical activity of the diaphragm catheter. The change from the pre-stimulation value to the post-stimulation value will be reported in microvolts (μV).
Time frame: Immediately before stimulation and within 1 hour after stimulation, upto 30 days
Change in Diaphragmatic Electrical Activity Frequency From Before to After Spinal Cord Stimulation
The frequency of diaphragmatic electrical activity signals will be measured using an electrical activity of the diaphragm catheter. The change from before to after stimulation will be reported as events per minute.
Time frame: Immediately before stimulation and within 1 hour after stimulation, upto 30 days
Change in the Frequency of Diaphragmatic Electrical Activity Signals With Peak Amplitude of at Least 3 μV
The number of diaphragmatic electrical activity signals with a peak amplitude of at least 3 μV will be determined using an electrical activity of the diaphragm catheter. The change from before to after stimulation will be reported as events per minute.
Time frame: Immediately before stimulation and within 1 hour after stimulation, upto 30 days
Change in the Frequency of Spontaneous Inspiratory Efforts Detected by Diaphragmatic Electrical Activity
Spontaneous inspiratory efforts generated by the participant's neural respiratory drive will be detected using an electrical activity of the diaphragm catheter. Ventilator-delivered breaths without a corresponding diaphragmatic electrical activity signal will not be counted. The change from before to after stimulation will be reported as inspiratory efforts per minute.
Time frame: Immediately before stimulation and within 1 hour after stimulation, upto 30 days
Spontaneous Respiratory Rate
The participant's spontaneous respiratory rate will be determined from respiratory monitoring and reported as breaths per minute. Ventilator-mandated breaths will be excluded.
Time frame: Immediately before stimulation and within 1 hour after stimulation, upto 30 days
Change in Tidal Volume From Before to After Spinal Cord Stimulation
Tidal volume will be measured using the mechanical ventilator under standardized ventilator settings and reported in milliliters (mL).
Time frame: Immediately before stimulation and within 1 hour after stimulation, upto 30 days
Diaphragmatic Excursion
Diaphragmatic excursion will be measured by bedside M-mode ultrasonography with the participant in the supine position. Values will be reported in millimeters (mm).
Time frame: Immediately before stimulation and within 1 hour after stimulation upto 30 days
Diaphragm Thickening Fraction
Diaphragm thickening fraction will be calculated from inspiratory and expiratory diaphragm thickness measured by bedside ultrasonography and reported as a percentage.
Time frame: Immediately before stimulation and within 1 hour after stimulation upto 30 days
Duration of Mechanical Ventilation
Cumulative duration of invasive mechanical ventilation from enrollment until successful liberation from mechanical ventilation, hospital discharge, or death, whichever occurs first. Values will be reported in hours.
Time frame: From enrollment through hospital discharge, up to 6 months
ICU Length of Stay
Time from enrollment or intensive care unit admission to intensive care unit discharge or death, reported in hours.
Time frame: From enrollment through intensive care unit discharge, up to 6 months
Hospital Length of Stay
Time from hospital admission to hospital discharge or in-hospital death, reported in hours.
Time frame: From hospital admission through hospital discharge, up to 6 months
In-Hospital Mortality
Number and percentage of participants who die before hospital discharge.
Time frame: From enrollment through hospital discharge, up to 6 months
Adverse Events Related to the Procedure or Device
Number and percentage of participants experiencing adverse events considered possibly, probably, or definitely related to epidural electrode implantation or spinal cord stimulation, including infection, bleeding or hematoma, cerebrospinal fluid leakage, neurological injury, device malfunction, stimulation-related discomfort, or other complications.
Time frame: From implantation through the 6-month follow-up
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