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ProMade Shoulder

ProMade for highly complex Shoulder cases


A Dedicated Engineering Design Service to develop truly bespoke solutions for complex glenoid reconstructions.


According to the anatomical defect, the implant can be developed in order to perfectly fit the damaged anatomy.


On top of custom glenoid implants, proximal humeral implants as well as more invasive reconstructions, such as scapular implants, are possible.


Thanks to the 3D printing technology and know-how, compatibility with Enovis portfolio is guaranteed.



To open a Custom Case Request, VISIT THE PROMADE PORTAL.

3D Printing Technology

Leveraging proprietary technology and long-lasting experience in 3D printing and Trabecular Titanium. This technology allows a design versatility to properly restore the glenoid’s anatomy, filling the defects considering patient clinical history and life conditions.

Modularity

Expanded modularity and connection with Enovis’ portfolio to provide a wide range of options on both glenoid and humeral side, providing preoperative and intraoperative solutions to augment the biomechanical reconstruction.

Fully Planned Biomechanical Restoration

Using exclusive advanced software to provide reliable anatomic data for the surgeon to design, in collaboration with a dedicated engineer, the best bespoke biomechanical restoration for each patient.

About

For over a decade, the ProMade Team has partnered with surgeons to develop patient-specific solutions for complex orthopedic reconstructions, leveraging the capabilities of 3D printing.

Each case is planned using CT imaging data and clinical insights to precisely achieve the desired patient biomechanics. A dedicated online portal streamlines case submission and facilitates direct collaboration with engineers.
Engineering Team works closely with surgeons throughout the entire process, co-developing not only the implant design but also the surgical approach and technique.


To open a Custom Case Request, visit the ProMade Portal.


The ProMade solutions are driven by the design pillars of: Confidence in Primary Stability, Longevity through Natural Load Transfer, and a Fully planned Biomechanical Restoration. With these design pillars setting the foundation of the solutions developed, the extensive surgeon / engineer collaboration and the associated collaborative intelligence continue to advance solutions. For example, to reduce the associated morbidity related to the dissection for large flanges and screws of “classic triflange” designs the number and sizes of the flanges and number of screws in acetabular solutions have been reduced. In one example, the flanges were reduced in size and and number. The number of screws required were reduced from 13 to 8. In addition, the use of Trabecular Titanium has been expanded to allow more Natural Load Transfer and associated bone health. The same example, going from 7% of total volume to 30% of total volume.

Clinical Papers

Malhas 2016

Glenoid bone loss in primary and revision shoulder arthroplasty

Ortmaier 2022 JClinMed

Functional and Radiological Outcomes after Treatment with Custom-Made Glenoid Components in Revision Reverse Shoulder Arthroplasty

Petermann 2021

Implantation accuracy of custom-made glenoid implants for treating severe glenoid bone deficiencies with reverse shoulder arthroplasty

Porcellini 2021

Custom-made reverse shoulder arthroplasty for severe glenoid bone loss: review of the literature and our preliminary results

Rashid 2023

Clinical and radiologic outcomes of Lima ProMade custom 3D-printed glenoid components in primary and revision reverse total shoulder arthroplasty with severe glenoid bone loss: a minimum 2-year follow-up

Resources

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