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Prosthesis Durability clinical trials

View clinical trials related to Prosthesis Durability.

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NCT ID: NCT04968470 Recruiting - Complication Clinical Trials

SEBBIN Silicone Gel-filled Testicular Implants

Start date: March 16, 2021
Phase:
Study type: Observational

This study is part of the clinical evaluation of SEBBIN silicone gel-filled testicular implants, included in the technical file of the device. The aim of the study is to gather additional data about the safety and effectiveness of the device.

NCT ID: NCT03595423 Recruiting - Valve Heart Disease Clinical Trials

SPAnish Aortic VALVE Multicentric Study

SPAVALVE
Start date: July 10, 2018
Phase:
Study type: Observational

Currently there is an increase in the use of bioprosthesis worldwide (> 70% according to national data of the Spanish Society of Thoracic and Cardiovascular Surgery). There is conflicting evidence regarding the long-term survival of patients aged 50-65 years with mechanical (M) or biological (B) aortic prostheses. General consensus of greater complications associated with the use of long-life anticoagulation in M and of reoperation in B. Similar survival with lower MACCE complications in bioprosthesis could reconsider their choice in patients aged 50-65 years, specially in the current TAVI era. The investigators are going to perform a multicentric retrospective observational study (Registry) about 15 year-outcomes Following Bioprosthetic vs Mechanical Isolated Aortic Valve Replacement for Aortic Stenosis in Patients Aged 50 to 65 Years in 30 Cardiovascular Surgery Centers in Spain

NCT ID: NCT03469687 Completed - Hip Osteoarthritis Clinical Trials

Symax International Study

Start date: November 2, 2004
Phase: N/A
Study type: Interventional

The uncemented Symax hip stem is developed through optimization of the uncemented Omnifit hip stem. The Symax stem design combines an anatomical anteverted proximal geometry with a straight distal section. The proximal part is coated with a biomimetic hydroxyapatite (HA) coating for improved osseointegration to enhance load transfer and to minimize proximal bone loss. The distal part is treated with an anodization surface treatment in order to prevent distal bone apposition, which is expected to prevent distal loading and reduce proximal stress shielding. Aim of this study is to report mid-term clinical performance and evaluate whether the radiographic features are in line with the design principles of the Symax hip in an international clinical study with 5 years of follow-up.