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Morphological Assessment of
In Vivo
Wear of Orthopeadic Implants Using Multiscalar Wavelets
X. Q. Jiang
,
L. Blunt
School of Computing and Engineering
Department of Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
15
Citations (Scopus)
Overview
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Dive into the research topics of 'Morphological Assessment of
In Vivo
Wear of Orthopeadic Implants Using Multiscalar Wavelets'. Together they form a unique fingerprint.
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Weight
Alphabetically
Chemistry
Carbon Atom
15%
Ceramic
12%
Diamond
32%
Hip
23%
Implant
100%
Surface
32%
Surface Roughness
16%
Tribology
22%
Wear
63%
Wear Rate
21%
Engineering & Materials Science
Carbon
25%
Defects
11%
Diamonds
33%
Orthopedics
20%
Polyethylenes
17%
Surface roughness
14%
Tribology
20%
Ultrahigh molecular weight polyethylenes
67%
Wavelet analysis
20%
Wear of materials
61%
Physics & Astronomy
carbon
22%
causes
10%
ceramics
11%
damage
24%
defects
9%
diamonds
26%
methodology
13%
orthopedics
22%
polyethylenes
15%
requirements
11%
scalars
12%
surface roughness
14%
tribology
23%
wavelet analysis
19%