A Modular Magnetic Resonance Imaging-Compatible Pipette Simulator to Evaluate How Design Affects the Basilar Thumb Joint Mechanics

Author:

Norton Nolan M.1,Fischer Kenneth J.234

Affiliation:

1. Bioengineering Program, University of Kansas , Lawrence, KS 66045

2. Bioengineering Program, University of Kansas , Lawrence, KS 66045 ; , Kansas City, KS 66160 ; , Lawrence, KS 66045

3. Orthopedics and Sports Medicine, University of Kansas Medical Center , Lawrence, KS 66045 ; , Kansas City, KS 66160 ; , Lawrence, KS 66045

4. Mechanical Engineering, University of Kansas , Lawrence, KS 66045 ; , Kansas City, KS 66160 ; , Lawrence, KS 66045

Abstract

Abstract People who frequently use micropipettes experience hand and upper limb disorders. The basilar thumb joint, also known as the first carpometacarpal or trapeziometacarpal joint, is commonly affected by osteoarthritis (OA). Mechanical factors are associated with OA initiation and progression. We developed a magnetic resonance imaging (MRI)-compatible modular micropipette simulator to improve understanding of how micropipette design affects basilar thumb joint contact mechanics. The micropipette simulator also addresses limitations of current techniques for studying pipetting and basilar thumb joint mechanics. Its modularity will allow future studies to examine handle design parameters such as handle diameter, cross-sectional shape, and other features. A micropipette simulator with a cylindrical handle (length 127 mm, diameter 25 mm) was used with one subject to demonstrate the system's feasibility. Contact areas were within the range of prior data from basilar thumb joint models in power grasp and lateral pinch, and contact pressures were the same order of magnitude.

Publisher

ASME International

Subject

Biomedical Engineering,Medicine (miscellaneous)

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