Electrical Impedance Tomography
19
3
3
5
Key Insights
Highlights
Success Rate
100% trial completion (above average)
Clinical Risk Assessment
Based on trial outcomes
Moderate Risk
Score: 50/100
0.0%
0 terminated out of 19 trials
100.0%
+13.5% vs benchmark
0%
0 trials in Phase 3/4
0%
0 of 5 completed with results
Key Signals
Data Visualizations
Phase Distribution
Trial Status
Trial Success Rate
Benchmark: 86.5%
Based on 5 completed trials
Clinical Trials (19)
EIT-Guided PEEP Optimization in Trauma and Postoperative ARDS
Effects of Inspiratory vs Expiratory Breath-Hold on Lung Perfusion Measured by EIT Saline Indicator Method: A Self-Controlled Study
PEEP Titration Guided by Electrical Impedance Tomography in Laparoscopic Surgery The PEaRL Study
Evaluate the Effect of Prone Ventilation on Ventilated-blood Flow Ratio in Patients With ARDS by EIT
Improvement of ARDS Ventilation-perfusion Matching by Prone Positioning Assessed by EIT
Recruitment Maneuvers and PEEP-guided Electrical Impedance Tomography for Abdominal Laparoscopic Surgery Patients
By Assessing the Continuous Respiratory Physiological Changes Through Prone Position, Determine the Optimal Duration for Prone Position
The Role of Chest Electrical Impedance Tomography in the Pediatric Ventilator Weaning
V/Q Matching in Pressure Support Ventilation
Monitorings the Physiological Mechanism of Airway Pressure Release Ventilation in ARDS Patients by EIT
Evaluation of Postoperative Ventilation Distribution With Electrical Impedance Tomography
Epidural Block Impairs HPV During One-lung Ventilation: an EIT- Based Prospective Observation Study
Determine the Effect of Prone Positioning in Adults With ARDS by Electrical Impedance Tomography
Effects of PEEP on Heart and Lungs in Obese Subjects
Effects of High-Flow Nasal Cannula Therapy Assessed by Electrical Impedance Tomography
Inhomogeneous Ventilation in Adult Post-neurosurgical Patients
Effect of Non Invasive Ventilation on Lung Volumes Determined by Electrical Impedance Tomography
Effect of High-flow Nasal Cannula Oxygen on Lung Volumes Determined by Electrical Impedance Tomography
Lung Aeration During WEANing From Mechanical Ventilation Determined by Electrical Impedance Tomography and Lung Ultrasound