Home
About Us Engineering Solutions Research and Development Products and Services News and Events Careers
Research & Development
Advanced Materials
Robotics
Electromagnetics & Electric Machines
Thermal Systems
Structures & Analysis
Embedded Software
Diagnostics & Prognostics
Magnetic Bearings
Foil Bearings
Sensors
Biomedical
Tools for Minimally Invasive Surgery


Minimally invasive surgery offers advantages to the patient in quicker recovery times and shorter hospital stays compared to traditional surgery. In spite of these benefits, the potential for new procedures is limited by the lack of instruments designed for this type of surgery.

Foster-Miller has developed a concept for an orthopaedic power stapler that would provide the reach, angle, and force needed by the surgeon to insert staples. An articulated staple head permits tangential insertion of staples from a wide range of pitch angles to 30 degrees. The staple drive system is designed to minimize recoil forces to ensure safe, accurate placement of the staples. In a related development, a microarticulated bone removal system has been conceptualized for less invasive surgical techniques, with initial application to spinal stenosis. The design features a high-speed rotating cutter and a triple-jointed articulating support arm. 


 

Return to Electromagnetics & Electric Machines

Printable Version

Project Examples

Advanced Linear Motor (ALM)
More >

Electromagnetic Aircraft Launch System (EMALS)
More >

Electromagnetic Aircraft Recovery System (EARS)
More >

High-Speed Switch for Maglev Transportation
More >

Holloman High-Speed Test Track
More >

Maglifter
More >

Magnetic Suspension Systems
More >



See all related Project Examples for...
Research & Development


Literature on this subject
Contact Us | Site Map    AS9100 Certified Company
Foster-Miller, Inc. - QinetiQ North America | 350 Second Avenue, Waltham, MA 02451