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For 25 years, Q'Straint has remained focused on one vision: to develop the world's most effective wheelchair passenger safety solutions for public and private transportation. Today, Q'Straint is a global company with a local network of representatives
Since its inception in 1970, Microcopy has been at the forefront in the design and development of diamond and carbide burs for the dental industry. Our NeoDiamond product line—America`s #1 selling diamond—is among the most respected in the dental marketplace. Our team of engineers, marketers and production experts design, package and perform complete product inspections following our ISO-certified quality management system. Because we are a full-service solution for our customers, we are able to provide unparalleled support complete with a 100% performance guarantee. Our mission at Microcopy is to provide a strong sense of satisfaction to each customer by offering truly innovative, effective, high-value products. This combined with a courteous and responsive customer service team is what keeps our loyal customers coming back and inspires them to spread the word about our products to their peers.
Nosaj Disposables Inc is a Paterson, NJ-based company in the Healthcare, Pharmaceuticals, and Biotech sector.
Founded in 1998, REVA Medical is dedicated to developing minimally invasive medical devices that leverage its proprietary biomaterial and stent technologies to improve the treatment of coronary artery disease. Guided by an executive management team and scientific advisors with extensive product development and clinical interventional cardiology experience, REVA’s initial focus is the development of a drug-eluting bioresorbable coronary scaffold to advance the treatment of cardiovascular disease, the leading cause of death worldwide.
At Spineology, we are dedicated to transforming spine surgery by providing innovative, anatomy-conserving technologies for surgeons and their patients. Our proprietary mesh technology is used in the OptiMesh and Duo implants, which expand in three dimensions to create large footprints and allow placement of anatomy-conforming interbody fusion devices through very small incisions. This technology preserves spinal anatomy, increases procedural efficiency, and accelerates patient recovery.