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Biomechanik neuer Implantate für die HTO
Translated title of the contribution
:
Biomechanics of new implants for HTO
D. Pape
*
, A. Diffo Kaze
, A. Hoffmann
, S. Maas
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
Research
›
peer-review
4
Citations (Scopus)
Overview
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Keyphrases
TomoFix
100%
IBalance
80%
PEEKPower
80%
ContourLock
60%
Fatigue Strength
60%
Failure Test
40%
Static Compression
40%
Small Stature
40%
Plate Design
40%
Compression Load
40%
Load to Failure
40%
Published Results
20%
Cortex
20%
Strength Increase
20%
Knee Joint Osteoarthritis
20%
Mechanical Strength
20%
High Fatigue Strength
20%
High Mechanical Strength
20%
Maximum Load
20%
Number of Cycles
20%
Static Strength
20%
Static Loading
20%
TomoFix Plate
20%
Bone Healing
20%
Mechanical Stiffness
20%
Vertical Plate
20%
Fusion Rate
20%
Low Pt Loading
20%
Bone Composite
20%
Screw Breakage
20%
Interfragmentary Motion
20%
Cyclic Fatigue
20%
Osteotomy
20%
Loading Conditions
20%
Medial Knee
20%
Open-wedge High Tibial Osteotomy (OWHTO)
20%
Proximal End
20%
Mechanical Fatigue
20%
Load Control
20%
Tibia Bone
20%
Cyclic Fatigue Test
20%
Mechanical Features
20%
Engineering
Biomechanics
100%
Fatigue Strength
100%
Implant
100%
Compression Load
50%
Cyclic Fatigue
50%
Joints (Structural Components)
25%
Fatigue Failure
25%
Loading Condition
25%
Static Loading
25%
Fatigue Testing
25%
Proximal End
25%
Fourth Generation
25%
Static Strength
25%
Breakage
25%
Rigidity
25%
Medicine and Dentistry
Implant
100%
Short Stature
66%
Knee Osteoarthritis
33%
Osteotomy
33%
High Tibial Osteotomy
33%
Bone Healing
33%
Material Science
Compression Load
100%
Strength of Materials
100%
Static Loading
50%