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Updated: Dec 28, 2025

Video Movement Analysis Using Smartphones ViMAS: A Pilot Study
Published on: March 14, 2017
Video-assisted cardiopulmonary resuscitation via smartphone improves quality of resuscitation: A randomised
Hannes Ecker1, Falko Lindacher, Niels Adams
1From the University of Cologne, Faculty of Medicine and University Hospital of Cologne, Department of Anaesthesiology and Intensive Care Medicine (HE, FL, NA, SW, RS, BWB, WAW); University of Cologne, Faculty of Medicine and University Hospital of Cologne, Institute of Medical Statistics and Computational Biology (IMSB), Cologne, (SH) Germany.
Background:
Despite intensive research, cardiac arrest remains a leading cause of death. It is of paramount importance to undertake every possible effort to increase the overall quality of cardiopulmonary resuscitation (CPR) and improve patient outcome. CPR initiated by a bystander is one of the key factors in survival of such an incident. Telephone-assisted CPR (T-CPR) has proved to be an effective measure in improving layperson resuscitation.
Objective:
We hypothesised that adding video-telephony to the emergency call (video-CPR, V-CPR) enhances the quality of layperson resuscitation.
Design:
This randomised controlled simulation trial was performed from July to August 2018. Laypersons were randomly assigned to video-assisted (V-CPR), telephone-assisted (T-CPR) or control (unassisted CPR) groups. Participants were instructed to perform first aid on a mannequin during a simulated cardiac arrest.
Setting:
This study was conducted in the Skills Lab of the University Hospital of Cologne.
Participants:
One hundred and fifty healthy adult volunteers.
Intervention:
The participants received a smartphone to call emergency services, with Emergency Eye video-call in V-CPR group, and normal telephone functionality in the other groups. T-CPR and V-CPR groups received standardised CPR assistance via phone.
Main Outcome Measures:
Our primary endpoint was resuscitation quality, quantified by compression frequency and depth, and correct hand position.
Results:
Mean compression frequency of V-CPR group was 106.4 ± 11.7 min, T-CPR group 98.9 ± 12.3 min (NS), unassisted group 71.6 ± 32.3 min (P < 0.001). Mean compression depth was 55.4 ± 12.3 mm in V-CPR, 52.1 ± 13.3 mm in T-CPR (P < 0.001) and 52.9 ± 15.5 mm in unassisted (P < 0.001). Total percentage of correct chest compressions was significantly higher (P < 0.001) in V-CPR (82.6%), than T-CPR (75.4%) and unassisted (77.3%) groups.
Conclusion:
V-CPR was shown to be superior to unassisted CPR, and was comparable to T-CPR. However, V-CPR leads to a significantly better hand position compared with the other study groups. V-CPR assistance resulted in volunteers performing chest compressions with more accurate compression depth. Despite reaching statistical significance, this may be of little clinical relevance.
Trial Registration:
ClinicalTrials.gov (Identifier: NCT03527771).
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