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Biomechanical evaluation of optimal humeral fracture fixation devices
David Hughes
, Farhad Nabhani
, S.N.B. Hodgson
SCEDT Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
96
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Dive into the research topics of 'Biomechanical evaluation of optimal humeral fracture fixation devices'. Together they form a unique fingerprint.
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Keyphrases
Fixation Method
100%
Humeral Fractures
100%
Fracture Fixation Devices
100%
Biomechanical Testing
100%
Finite Element Model
66%
Orthopedic Surgeons
66%
Glenohumeral Joint
66%
Optimal Treatment
66%
Proximal Humeral Fracture
33%
Surgical Intervention
33%
Quality of Life
33%
Activities of Daily Living
33%
Living with
33%
Proximal Humerus
33%
Human Body
33%
In Vivo Forces
33%
Multiple Tests
33%
Joint Mechanics
33%
Mechanical Testing
33%
Shoulder Complex
33%
Bone Properties
33%
Humerus
33%
Effective Application
33%
Motion Capture Technology
33%
Humeral Fixation
33%
Functional Movement
33%
Cyclic Loading
33%
Patient Type
33%
Medicine and Dentistry
Fracture Fixation
100%
Shoulder Joint
100%
Orthopedic Surgeon
100%
Humerus Fracture
100%
Quality of Life
50%
Surgery
50%
Proximal Humerus
50%
Humerus
50%
Proximal Humerus Fracture
50%
Activities of Daily Living
50%
Finite Element Analysis
50%
Engineering
Joints (Structural Components)
100%
Fracture Fixation Device
100%
Individual Patient
40%
Collected Data
20%
Finite Element Modeling
20%
Test Rig
20%
Applied Stress
20%
Surgical Intervention
20%