open access articleAs the understanding of disease grows, so does the opportunity for personalization of therapies targeted to the needs of the individual. To bring about a step change in the personalization of medical devices it is shown that multi-material inkjet-based 3D printing can meet this demand by combining functional materials, voxelated manufacturing, and algorithmic design. In this paper composite structures designed with both controlled deformation and reduced biofilm formation are manufactured using two formulations that are deposited selectively and separately. The bacterial biofilm coverage of the resulting composites is reduced by up to 75% compared to commonly used silicone rubbers, without the need for incorporating bioac...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...
As the understanding of disease grows, so does the opportunity for personalization of therapies targ...
As the understanding of disease grows, so does the opportunity for personalization of therapies targ...
As the understanding of disease grows, so does the opportunity for personalization of therapies targ...
Abstract As the understanding of disease grows, so does the opportunity for personalization of thera...
Chronic infection as a result of bacterial biofilm formation on implanted medical devices is a major...
Chronic infection as a result of bacterial biofilm formation on implanted medical devices is a major...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Biofilm formation on the surface of medical devices is a major source of health-care associated inf...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Biofilm formation on the surface of medical devices is a major source of health-care associated inf...
The ability to three-dimensionally interweave biological and functional materials into 3D composites...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...
As the understanding of disease grows, so does the opportunity for personalization of therapies targ...
As the understanding of disease grows, so does the opportunity for personalization of therapies targ...
As the understanding of disease grows, so does the opportunity for personalization of therapies targ...
Abstract As the understanding of disease grows, so does the opportunity for personalization of thera...
Chronic infection as a result of bacterial biofilm formation on implanted medical devices is a major...
Chronic infection as a result of bacterial biofilm formation on implanted medical devices is a major...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Biofilm formation on the surface of medical devices is a major source of health-care associated inf...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Biofilm formation on the surface of medical devices is a major source of health-care associated inf...
The ability to three-dimensionally interweave biological and functional materials into 3D composites...
Purpose: This paper aims to print 3D structures from polymers that resist bacterial attachment by re...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...
Bacterial biofilms are three-dimensional networks of cells entangled in a self-generated extracellul...