UZLeuven
Leuven, Vlaams-Brabant, 3000, Belgium
Location status: Recruiting
NCT Number: NCT06426615
The CONSCIUS study is a prospective, interventional study including patients with acute brain injury and impaired consciousness implanted with intracranial electrodes. The aim of the study is to investigate seizures and thalamocortical neural dynamics underlying behavioral unresponsiveness.
Interested in participating?
Request Info18 year and older
All sexes
Interventional
Not applicable
Leuven, Vlaams-Brabant, 3000, Belgium
Location status: Recruiting
Individuals with severe brain injury often require extensive treatment in intensive care units (ICU) and hospitalization wards while uncertainty prevails about the recovery of consciousness and cognitive abilities. Especially in the acute phase after injury, treatment decisions have a tremendous impact on outcome, but rely on assessments of behavioral responsiveness which are known to be unreliable and subject to many confounders. Objective, quantifiable diagnostic and prognostic measures that can be deployed at the bedside during the ICU stay are lacking. Development of new metrics are hampered by our lack of a fundamental understanding of (i) thalamocortical network mechanisms underlying consciousness and (ii) brain-injury induced neural dynamics impacting both consciousness and outcome. Continuous EEG monitoring has been used to aid in this respect to (i) predict recovery of consciousness and outcome, and (ii) diagnose nonconvulsive seizures in unresponsive patients. Although promising, it lacks sensitivity, spatial resolution, and causal power. There is an urgent need for techniques allowing high-precision detection of pathological dynamics, patient stratification and prediction of a capacity for consciousness recovery in acute unresponsive patients with brain injury. Intracranial electrodes as part of multimodal monitoring in subjects with impaired consciousness and severe brain injury allow continuous bedside recordings of high spatiotemporal resolution in different network nodes and allows inducing brain perturbations, transcending correlational evidence of network analysis. This technique could increase the detection and treatment of nonconvulsive seizures contributing to brain injury and unresponsiveness and simultaneously allows to study networks supporting consciousness. This can lead to new diagnostic and prognostic biomarkers for recovery based on thalamocortical profiles of activity, reactivity (complexity) and connectivity, ultimately paving to way for the development of biomarker-driven treatments to support early recovery such as deep brain stimulation. Eventually this can contribute to clinical decision making: abstaining from aggressive treatment in patients with no potential for recovery, and more importantly, continuing treatment in subjects with a responsive brain but without clear behavioural correlate.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Placement of intracranial electrodes in the cortico-subcortical system
Other names: Depth electrodes
Time frame: A maximum of 4 weeks after electrode implantation.
The primary aim is to compare the incidence of ictal and ictal-interictal continuum epileptiform activity on intracranial versus scalp EEG.
Time frame: A maximum of 4 weeks after electrode implantation.
Correlation of profiles of neural activity and reactivity with the behavioral state using the Coma Recovery Scale-Revised (CRS-R).
Time frame: During electrical stimulation trials, performed in the first 4 weeks after electrode implantation.
Effects of electrical stimulation on behavioral responsiveness will be measured using the Coma Recovery Scale Revised (CRS-R).
Time frame: At 6 months and 1 year follow-up.
Profiles of activity and reactivity identified during the acute stage of the disease will be correlated with long-term outcome measures mainly at 6m and 1y, using Coma Recovery Scale-Revised and Glasgow Outcome Scale-Extended.
Contact information is provided by the study sponsor or research team.
Steven Smeijers, MD
CONTACT
Tom Theys, MD PhD
CONTACT
Universitaire Ziekenhuizen KU Leuven
Other
Connectivity and Neural Signatures of Consciousness In Unresponsive States (CONSCIUS) - a Study of Brain Activity in Disorders of Consciousness
Acronym: CONSCIUS
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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