Sojourn MedTech
Sojourn MedTech develops data-driven simulation tools for training and assessing hemodialysis cannulation. The company builds an instrumented cannulation simulator that combines hardware, sensor instrumentation, and AI-based software to deliver real-time metrics and objective feedback for competency-based training, and collaborates with clinical partners for demonstrations and research validation.
Industries
Nr. of Employees
small (1-50)
Products
Dialysis cannulation simulator (instrumented training system)
A simulator combining instrumented hardware modules, artificial skin and access geometries, and AI-driven software to provide real-time, metrics-based feedback for hemodialysis cannulation training.
Dialysis cannulation simulator (instrumented training system)
A simulator combining instrumented hardware modules, artificial skin and access geometries, and AI-driven software to provide real-time, metrics-based feedback for hemodialysis cannulation training.
Services
Design and delivery of tailored simulation-based training programs for dialysis cannulation competency development.
Collaborative support for research projects using the simulator platform, including data collection and study execution.
Design and delivery of tailored simulation-based training programs for dialysis cannulation competency development.
Collaborative support for research projects using the simulator platform, including data collection and study execution.
Expertise Areas
- Simulation-based clinical skills training
- Hemodialysis cannulation assessment
- Sensor instrumentation and embedded hardware
- Machine learning for procedural assessment
Key Technologies
- Machine learning / AI-driven analytics
- Sensor instrumentation for needle insertion
- Haptic and motion analysis
- 3D anatomical modeling from imaging data
News & Updates
Conference paper on efficacy of an improved cannulation simulator and quantitative metrics for skill assessment.
Journal article describing functional data analysis methods applied to cannulation skill assessment.
Study investigating the impact of needle angle on cannulation skill and outcomes.
Peer-reviewed article on metrics for quantifying vascular palpation skill using a simulator.
Comparison of objective simulator-derived metrics against subjective assessment methods for cannulation skill.
Conference paper on efficacy of an improved cannulation simulator and quantitative metrics for skill assessment.
Journal article describing functional data analysis methods applied to cannulation skill assessment.
Study investigating the impact of needle angle on cannulation skill and outcomes.
Peer-reviewed article on metrics for quantifying vascular palpation skill using a simulator.
Comparison of objective simulator-derived metrics against subjective assessment methods for cannulation skill.