Design and analysis of a totally implantable self-driving venous assist assist device for fontan patients

Palliative repair of single ventricle defects involves a series of open-heart surgeries where a single-ventricle (Fontan) circulation is established. As the patient ages, this paradoxical circulation gradually fails, because of its high venous pressure levels. Reversal of the Fontan paradox requires

2025-06-28 16:31:09 - Adil Khan

Project Title

Design and analysis of a totally implantable self-driving venous assist assist device for fontan patients

Project Area of Specialization Mechanical EngineeringProject Summary

Palliative repair of single ventricle defects involves a series of open-heart surgeries where a single-ventricle (Fontan) circulation is established. As the patient ages, this paradoxical circulation gradually fails, because of its high venous pressure levels. Reversal of the Fontan paradox requires an extra subpulmonic energy that can be provided through mechanical assist devices.

The objective of this project is to design, analyze and evaluate the hydraulic and hemolytic  performance of a totally implantable integrated aortic-turbine venous-assist (iATVA) system, which does not need an external drive power and maintains low venous pressure chronically, for the Fontan circulation.

Computational fluid dynamics (CFD) is a powerful tool to virtually characterize different designs of turbomachinery of all types including turbines and pumps. Design and analysis of a blood turbine coupled with a centrifugal pump, acting as a venous assist device will be done to find the optimal design with reduced hemolysis and other related risks. Computational fluid dynamics analysis will be performed on different initial designs. A stress based CFD code to estimate the quantitative hemolysis will also be implemented. The best design with aortic steal in a safe range and optimum performance will be selected. The best design, then, will be manfactured for further experimentation.

Project Objectives Project Implementation Method Benefits of the Project Technical Details of Final Deliverable Final Deliverable of the Project Hardware SystemCore Industry MedicalOther Industries Health Core Technology Wearables and ImplantablesOther Technologies Clean TechSustainable Development Goals Good Health and Well-Being for People, Industry, Innovation and Infrastructure, Life on LandRequired Resources
Item Name Type No. of Units Per Unit Cost (in Rs) Total (in Rs)
Total in (Rs) 80000
Ceramic Bearings Equipment215003000
Magnets Equipment204008000
3D Printing of Parts Equipment6300018000
CNC Machining of Parts Equipment6400024000
Pressure Transducers Equipment4300012000
Flow rate Censers Equipment225005000
Piping System Miscellaneous 410004000
Pump to Generate Pulsating Flow Miscellaneous 150005000
Joints and Sockets Miscellaneous 52001000

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