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Simulated gastrocnemius traction alters interfragmentary motion in Hoffa fracture fixation
Marianne Hollensteiner
*
, Marlene Stallinger
, Christof Hofmann
, Mischa Mühling
, Markus Greinwald
, Sabrina Sandriesser
, Dirk Baumeister
, Peter Augat
*
Corresponding author for this work
Center of Excellence Medical Engineering/TIMed Center
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Keyphrases
Gastrocnemius
100%
Fracture Fixation
100%
Interfragmentary Motion
100%
Hoffa Fracture
100%
Muscle Traction
40%
Failure Load
40%
Axial Load
20%
Physiologically Relevant
20%
3D Tracking
20%
Fiber Loop
20%
Synthetic Femur
20%
Novel Object Recognition
20%
Expansion Gap
20%
Construct Failure
20%
Distal Femur Fracture
20%
Uniaxial Cyclic Loading
20%
Biomechanical Investigation
20%
Intra-articular
20%
High Strength Fiber
20%
Muscle Simulation
20%
Gap Opening
20%
Medicine and Dentistry
Fracture Fixation
100%
Gastrocnemius
100%
Distal Femur Fracture
20%
Engineering
Failure Load
100%
Axial Loading
50%
Axial Load
50%