RMR Ortho, Inc. develops advanced Nitinol fixation devices for extremity and trauma orthopedic surgeries, leveraging shape‑memory alloy technology to provide continuous, dynamic compression that promotes reliable bone healing. Their flagship A’TOMIC™ device features a low‑profile, round‑leg design that enhances surgical efficiency and construct stability while delivering long‑term, fatigue‑resistant performance. The company supplies these implants to surgeons and distributors throughout the United States.
Funding
Funding not disclosed
Founders
Product
Problem
Extremity and trauma surgeries often rely on rigid fixation devices that cannot accommodate micro‑movement of bone, leading to stress shielding, loss of compression over time, and delayed healing.
Solution
RMR Ortho addresses this gap with its A’TOMIC™ continuous compression system, a low‑profile Nitinol implant that provides dynamic, shape‑memory‑driven compression throughout the healing process. The device’s round‑leg geometry and smooth contours reduce soft‑tissue irritation while maintaining stable fixation. Fatigue‑resistant alloy construction ensures long‑term reliability under cyclic loading. By delivering sustained, adaptive compression, the system promotes biological healing and improves construct stability without requiring additional intra‑operative adjustments. The technology integrates with standard orthopedic instrumentation, allowing surgeons to adopt the solution without extensive workflow changes.
Target Audience
Primary customers are orthopedic surgeons performing extremity and trauma procedures, as well as hospital and surgical‑center procurement teams seeking advanced fixation solutions.
Features
- Shape‑memory Nitinol alloy that generates continuous compression as the implant returns to its preset geometry
- Low‑profile, round‑leg design for minimal soft‑tissue disruption and easy insertion
- Fatigue‑resistant material engineered for long‑term durability under cyclic loading
- Smooth, bridging contours that enhance construct stability and reduce stress concentrations
- Compatibility with conventional orthopedic instrument sets for seamless intra‑operative use