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Vibratory and conventional impaction of acetabular components into porcine acetabula Y.
From Institute of Biomechanics, Hamburg University of Technology, Hamburg, Germany
Vibratory insertion of press-fit acetabular components requires less force than a single blow technique – a pilot study
From Institute of Biomechanics, Hamburg University of Technology, Hamburg, Germany
Characterization of Acetabular Cup Insertion Forces in Cancellous Bone Proxy for Validation of an Invasive Sensing Model and Development of Automatic Prosthesis Installation Device: A Preliminary Study
Published in Journal of Medical Devices, Transactions of the American Society of Mechanical Engineers
Characterization of Acetabular Cup Insertion Forces in Cancellous Bone Proxy for Validation of an Invasive Sensing Model and Development of Automatic Intelligent Prosthesis Installation Device
Published in the Proceedings of the 2020 Design of Medical Devices Conference (DMD2020), April 6, 7-9, 2020, Minneapolis, MN, USA
This paper was presented at these events:
– International Society for Technology in Arthroplasty’s 32nd Annual Congress (ISTA), October, 2019, Toronto, Canada
– 2020 Design of Medical Devices Conference (DMD2020), April, 2020, Minneapolis, MN, USA
The Social Antiviral System
Hybrid Ultrasonic Saw Concept
ePoster at Toronto ISTA
October 2, 2019
Published in the Proceedings of the 2020 Design of Medical Devices Conference (DMD2020), April 6, 7-9, 2020, Minneapolis, MN, USA
How we can make press fit arthroplasty more reliable?
Better Implants for Arthroplasty and Fracture Healing
The Mechanics Frontier in Orthopedics: From Geometry to Mechanics: Closed-Loop Implantation and Load-Path Design
February 22, 2026
Force-Aware Orthopedic Implantation as a Closed-Loop Mechanical System: Energetic Control and Load-Path Architectural Design for Durable Fixation
February 14, 2026
Force-Aware Orthopedics as a Physical AI Platform
February 8, 2026
The Force Frontier: From Kinematic Precision to Kinetic Intelligence in Orthopedics
January 2026
The Next Inflection Point in Orthopedics: From Geometry to Biology
December 2025
The Holy Trinity of Orthopedic Implant Design: Strength, Flexibility, and Porosity Achieved Through Load Path Cellular Metal (LPCM)
December 2025
Autonomous Orthopedic Systems (Aut-O-Sys): Overcoming the Limitations of Current Robotic Surgery: The Need for Force-Adaptive Intelligence
June 21, 2025
Revolutionizing Orthopedic Surgery: AI-Driven, Force-Adaptive Robotics
May 5, 2025
Why Total Hip Implants Fail and How to Solve the Problem of Bone Resorption and Stress Shieldling
February 20, 2024
Surgeon Controlled Factors Eliminating Trunnionosis
ePoster at Toronto ISTA October 2, 2019
How to make Total Hip Arthroplasty a More Reliable Operation.
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