Knee arthroscopy has evolved greatly from its inception in the 20th century. Arthroscopic synovectomy is performed in the case of infection or significant synovitis. We continue to develop more minimally invasive procedures, and the NanoScope (Arthrex, Naples, FL) has provided a new generation of possibilities. The system does not require the use of a standard incision or portal, and using the GraftNet (Arthrex), we can harvest tissue with a standard shaver for further evaluation. This technique provides an option to perform a synovectomy and biopsy without the use of standard arthroscopy portals through an incisionless approach.
Arthroscopic meniscus repair is one of the commonly used arthroscopic surgical procedures. Open treatment was the standard for meniscus repairs and recently arthroscopic all-inside treatment has become popular. Novel and more minimally invasive techniques to common arthroscopic procedures are paving the foundation to better patient outcomes. With the use of the NanoScope and nanoinstruments, we continue to develop new minimally invasive diagnostic and treatment techniques that do not require standard portals. The nanoscopic medial meniscus repair technique described here uses a less-invasive approach to a meniscus repair.
The quad tendon has increasingly became a very common option for anterior cruciate ligament reconstruction. Minimally invasive approaches are one of the many advantages to the quad tendon graft. One of the issues with a small incision is assuring appropriate proximal closure. In this technique, we use the arthroscope to view proximally and a Scorpion (Arthrex) device to close our proximal quad harvest. We also describe the updated preparation of the quad tendon with FiberTag TightRope (Arthrex) and FiberTag ABS (Arthrex). These implants have FiberTag incorporated to the suspensory devices that creates a stable construct that is faster to incorporate into the quad with the slotted clamp. Together, these updates to the preparation and harvest should make the construct more reproducible and decrease donorsite morbidity respectively.
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