The purpose of this study is to address the need for targeted treatments that induce functional and structural changes in the brain, ultimately improving neurobehavioral functioning, the investigators propose examining the therapeutic effectiveness of repetitive Transcranial Magnetic Stimulation (rTMS). The objective is to improve functional recovery for persons remaining in vegetative (VS) and minimally conscious (MCS) states 3 to 24 months after severe TBI. The approach is to determine the neurobehavioral effect of rTMS, the relationship between neurobehavioral changes and net neural effects, and to identify and define the neural mechanisms related to neurobehavioral improvements by providing 30 active or placebo rTMS sessions.
The specific aims (SA) of the CDMRP study are: SA-1: To determine presence, direction and sustainability of rTMS induced neurobehavioral effects using the DRS (lower scores indicate more function). SA-2: To determine presence, direction and sustainability of rTMS-induced changes in functional neural activation and whether these changes correlate with improving neurobehavioral function. SA-3: To determine the rTMS effect on white fiber tracts and whether rTMS-related effects correlate with neurobehavioral gains. White fiber tracts will be examined according to changes in Fractional Anisotropy (FA), Mean Diffusivity (MD), Radial Diffusivity (RD), and Axial Diffusivity (AD). SA-4: To confirm rTMS safety for severe TBI. The investigators hypothesize that there will be no difference between active and placebo groups according to average number of research related adverse events (AE) during treatment. To accomplish these aims, the investigators will conduct a double blind, randomized, placebo controlled clinical trial where 58 persons remaining in states of disordered consciousness for 3 to 24 months after TBI are randomized to the active rTMS group or the placebo rTMS group. The primary outcome is neurobehavioral recovery slope as measured by the total Disability Rating Scale (DRS), which will be collected at bedside at Baseline, Midpoint (15th rTMS Session) and Endpoint (30th rTMS Session). The DRS-PI will be collected weekly via telephone interview for the three weeks between Endpoint and Follow up (3 weeks after 30th rTMS session). Secondary outcomes include four measures of functional neural activation: task related functional magnetic resonance imaging (fMRI), functional connectivity MRI (fcMRI), EEG-Rest and EEG-Task. The functional neural activation measures will be collected at baseline, endpoint and follow up. Motor Threshold Testing and Neurobehavioral measures in addition to the DRS and physical measures will also be collected as secondary outcomes. Motor Threshold testing, neurobehavioral and physical measures will be collected at baseline, midpoint, endpoint and follow up. The additional Neurobehavioral and physical measures are the Disorders of Consciousness Scale-25 (DOCS-25), Coma Recovery Scale Revised (CRS-R), Coma Near Coma Scale (CNC), Modified Tardieu Scale, Modified Ashworth Scale, Spaulding Limb Movement Protocol and the Consciousness Screening Algorithm.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
58
Repetitive TMS is a non-invasive neural stimulation technique achieved via electromagnetic induction. An insulated metal coil is placed on the scalp and short discharges of electric current are directed through the coil producing a magnetic field. This magnetic field is accompanied by an electric field that passes through the skull inducing currents in the tissue beneath the coil. If a cell beneath the coil is viable, then rTMS initiates or inhibits an action potential affecting ongoing neural activity. 30 sessions of active rTMS are provided.
The placebo coil simulates magnetic stimulation, but does not actually emit a pulse. The placebo coil looks, sounds and feels like an active rTMS coil. The placebo coil, visually identical to the active coil, provides a slight sensory sensation and discharge noise (i.e., clicking) nearly identical to that of the active coil.
Northwestern University
Chicago, Illinois, United States
RECRUITINGEdward Hines, Jr. VA Hospital
Hines, Illinois, United States
RECRUITINGDisability Rating Scale
The DRS consists of 8 items that address: arousability, awareness and responsivity; cognitive ability for self-care; dependence on others; and psychosocial adaptability. Scores on the DRS range from 0 to 29 with higher scores indicating greater levels of disability.
Time frame: Change from Baseline in DRS total score at an average 22 days
Disorders of Consciousness Scale-25
Neurobehavioral measure that evaluates the subject's responses to sounds, touch, objects, people, tastes, movements and smells
Time frame: Change from Baseline in DOCS-25 score at 7 days, 14 days, 21 days, 28 days and 50 days
Coma Near Coma Scale
Neurobehavioral measure that evaluates the subject's responses to sounds, touch, objects, people, tastes, movements and smells
Time frame: Change from Baseline in CNC total score at an average 22 days
Coma Recovery Scale-Revised
Neurobehavioral measure that evaluates the subject's responses to sounds, touch, objects, people, tastes, movements and smells
Time frame: Change from Baseline in CRS-R total score at an average 22 days
Modified Tardieu Scale
Spasticity measure for the following muscles: shoulder flexion, elbow flexion/extension, wrist flexion/extension, hip flexion/extension, knee flexion/extension and ankle extension. The scoring is based on 3 velocities of movement where the higher the rating, the higher degree of muscle tone.
Time frame: Change from Baseline in Modified Tardieu total score at an average 22 days
Modified Ashworth Scale
Spasticity measure for the following muscles: shoulder flexion, elbow flexion/extension, wrist flexion/extension, hip flexion/extension, knee flexion/extension and ankle extension. The individual muscle scores will be compared between time points. The higher the rating on the Modified Ashworth the greater degree of muscle tone demonstrated during testing.
Time frame: Change from Baseline in Modified Ashworth total score at an average 22 days
Spaulding Limb Movement Protocol
Measures limb movement in response to execution of motor commands in response to 1-step commands that engage upper extremity movements with and without object use.
Time frame: Change from Baseline in Spaudling Limb Movement total score at an average 22 days
Consciousness Screening Algorithm
Time frame: Change from Baseline in consciousness level at 7 days, 14 days, 21 days, 28 days and 50 days
Functional Neuroimaging
Activation in response to a task, resting state and diffusion tensor imaging
Time frame: Change from Baseline in amount of activation and connectivity at an average 22 days
EEG Power Spectrum
Time frame: Change Baseline in EEG frequency power at an average 22 days
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