Ultra-precision manufacturing of biomedical devices/implants (Broken down into smaller proposal as per our feedback)
Principal Investigator
Prof. GL Samuel
Objective
- Design and develop an affordable, high-quality microfluidic device to detect pathogens. Fabrication of the organ-on-chip device for ionic separation and ultra-purification of blood. Development of a Digital twin of the kidney. Fabrication of high-precision surfaces for high-quality bio-implants and surgical instruments.
Description
- Development of high-quality microfluidic device to detect pathogens. Fabrication of the organ-on-chip device for ionic separation and ultra-purification of blood. Development of a Digital twin of the kidney. Fabrication of high-precision surfaces for high-quality bio-implants and surgical instruments.
Impact
- Lab-on-chip devices help create potable laboratory-like environments, enabling better analysis of the samples. Early detection and proactive management of kidney diseases can help avoid costly and complex medical interventions such as dialysis or kidney transplantation. Patients gain a deeper understanding of their kidney health through the device's user-friendly interface and visualizations.
Budget in Lakhs
897.91
Duration
4 Years

