An innovative 3D printed breast implant

Advanced 3D printed materials for customized, regenerative and bio-integrated prothesis.

Engineered 3D printed materials

Advanced microstructured materials optimize the prothesis for bio-compatibility, preventing fibrosis.

A regenerative approach

Bio-resorbable polymers and vascularizing biogels create a regenerative prothesis, optimized for biological stability and cell growth.

Customized for every patient

The design process is powered by METAMAT™, a proprietary software for fast and automatic design and optimization of the prothesis based on real photogrammetry data of the patient.

From University to real world applications

Magnolia springs from academic research in advanced materials and optimization to provide a solution to the problems of traditional mammary implants.

Patented microstructures

Unit cells of gradable geometries and properties are used for optimization.

Advanced optimization

State-of-the-art optimization techniques provide the engine for patient-specific desing.

Academic research

Magnolia is under active collaborations with flagship European academic centers on optimization and numerical modeling.

Regenerative and Patient-specific

Phase I : Patient photogrammetry

The protheses are designed on real 3D data of the body of the patient to conform on the natural anatomy and prevent ruptures and dislocations.

Phase II : Shape and material optimization

The patient specifies the wanted final volume and shape, and the advanced optimization software tailors the inner microstructure to give a natural look and sensations.

Phase III : Implant and regeneration

The high porosity of the protheses allow for a facilitated insert, and the bio-resorbable polymers and biogels favor a gradual regeneration process of the natural biological tissue.

Powered by METAMAT™

A powerful proprietary design software, developed for space applications, is at the core of our innovation, enabling patient-specific optimization for the most fit solution for every patient.