BACKGROUND: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration. HYPOTHESIS: An implant of degradable polycaprolacton-polyurethane should act as a temporary scaffold enabling regeneration of a new meniscus by slow degradation of the polymer and simultaneous in-growth and differentiation of tissues into the typical cartilage-like tissue of the meniscus. STUDY DESIGN: Controlled laboratory study. METHODS: In 13 dogs' knees, the lateral meniscus was replaced with a porous polymer implant (6 and 7 for 6- and 24-month follow-up, respectively); in 7 knees only a meniscectomy was performed. In 6 knees, no surgery was performed. After 6 and 24 months, the implants and the articular cartilage were histologically ...
Contains fulltext : 50359.pdf (publisher's version ) (Closed access)BACKGROUND: Me...
PURPOSE: To evaluate the long-term effects of implantation of a biodegradable polymer meniscus impla...
Purpose: To evaluate the long-term effects of implantation of a biodegradable polymer meniscus impla...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
BACKGROUND: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Contains fulltext : 50359.pdf (publisher's version ) (Closed access)BACKGROUND: Me...
PURPOSE: To evaluate the long-term effects of implantation of a biodegradable polymer meniscus impla...
Purpose: To evaluate the long-term effects of implantation of a biodegradable polymer meniscus impla...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
Background: Replacement of the meniscus by an implant could potentially avoid cartilage degeneration...
BACKGROUND: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Background: Meniscectomy will lead to articular cartilage degeneration in the long term. Therefore, ...
Contains fulltext : 50359.pdf (publisher's version ) (Closed access)BACKGROUND: Me...
PURPOSE: To evaluate the long-term effects of implantation of a biodegradable polymer meniscus impla...
Purpose: To evaluate the long-term effects of implantation of a biodegradable polymer meniscus impla...