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3D bioprinting directly onto moving human anatomy

J. J. O’Neill, Reed A. Johnson, Rodney Dockter, Timothy M. Kowalewski

Year
2017
Citations
17

Abstract

This paper establishes the feasibility of robotically 3D printing biomaterials such as alginate hydrogels onto moving human anatomy and a stationary plane. The alginate hydrogels used are in-vivo compatible and a proven biomaterial for tissue scaffolds. We developed a control scheme for precision material deposition via piezo microjetting while tracking in real-time to continuously sense anatomy location and deposits material in a predefined trajectory derived from two pre-selected target geometries. We show that multilayer 3D structures can be created on a moving human hand with 1.6 mm average error and 87.8 % overall accuracy.

Keywords

Self-healing hydrogelsBiomedical engineeringTrajectory3D bioprintingTracking (education)Computer scienceHuman anatomyBiomaterialMaterials scienceComputer vision

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