Cervical Spinal Cord Injury
54
21
26
12
Key Insights
Highlights
Success Rate
75% trial completion
Clinical Risk Assessment
Based on trial outcomes
High Risk
Score: 62/100
7.4%
4 terminated out of 54 trials
75.0%
-11.5% vs benchmark
2%
1 trials in Phase 3/4
33%
4 of 12 completed with results
Key Signals
Data Visualizations
Phase Distribution
Trial Status
Trial Success Rate
Benchmark: 86.5%
Based on 12 completed trials
Clinical Trials (54)
A User-friendly, Non-invasive Neuro-orthosis That Restores Volitionally Controlled Grasp Functions for SCI Survivors With Tetraplegia
Brain Controlled Spinal Cord Stimulation in Participants With Cervical Spinal Cord Injury for Upper Limb Rehabilitation
Connect-One: Early Feasibility Study of Connexus® Brain-Computer Interface (BCI)
ExaStim Upper Limb Home Use Clinical Validation Study
Augmenting Rehabilitation Outcomes and Functional Neuroplasticity Using Epidural Stimulation of Cervical Spinal Cord
Spinal Stimulation for Upper Extremity Recovery in the Home
Improving Upper Extremity Function and Trunk Stability After Cervical Spinal Cord Injury (SCI)
Rebuilding Inter-limb Transfer in Cervical SCI
Nerve Transfer to Improve Function in High Level Tetraplegia
Incomplete Cervical SCI Without Instability
Spinal Cord Neuromodulation for Spinal Cord Injury
Precise Robotically IMplanted Brain-Computer InterfacE
Feasibility and Safety of a Combined Augmented Reality and Functional Electrical Stimulation System
Feasibility of the BrainGate2 Neural Interface System in Persons With Tetraplegia (BG-Tablet-01)
Targeting Cervical Epidural Spinal Cord Stimulation for Functional Recovery
VOICE: An Early Feasibility Study of a Precise Robotically Implanted Brain-Computer Interface for Communication Restoration
Safety and Feasibility of Paired Vagus Nerve Stimulation With Rehabilitation for Improving Upper Extremity Function in People With Cervical Spinal Cord Injury
GB-PRIME: An Early Feasibility Study of a Precise Robotically Implanted Brain-Computer Interface for the Control of External Devices
Combined Therapeutic Air Mixture and Electrical Stimulation to Improve Breathing and Hand Function in Spinal Cord Injury
Efficacy of a Brain-Computer Interface Controlled Functional Electrical Stimulation Therapy for Spinal Cord Injury Neurorehabilitation