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The growth of mouse osteoblast cell under vibration wave in vitro
P. P. Yu
, C. M. Hsu
, B. W. Huang
, J. G. Tseng
, K. T. Yen
, J. Y. Ko
, F. S. Wang
, W. H. Jhong
Cheng Shiu University Taiwan
National Kaohsiung University of Science and Technology
Mackay Memorial Hospital Taiwan
Research output
:
Contribution to journal
›
Journal Article
›
peer-review
1
Scopus citations
Overview
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Medicine and Dentistry
Cells
100%
In Vitro
100%
Growth
100%
Osteoblast
100%
Osteoporosis
60%
Stimulation
40%
Bone Cell
40%
Excitation
40%
Therapeutic Procedure
20%
Cell Proliferation
20%
Disease
20%
Tissues
20%
Cardiovascular Disease
20%
Aging
20%
Lifespan
20%
Medicine
20%
Side Effect
20%
Mononuclear Cell
20%
Organism
20%
Culture
20%
Physiotherapy
20%
Researcher
20%
Massage
20%
Skeleton
20%
MC3T3
20%
Bone
20%
Physics
Growth
100%
Vibration
100%
Frequencies
66%
Supersonics
66%
Act
33%
Independent Variables
33%
Tissue
33%
Amplitudes
33%
Temperature
33%
Utilization
33%
Organism
33%
Heat
33%
Therapy
33%
Society
33%
Waveform
33%
Sound Wave
33%
Chemistry
Vibration
100%
Wave
100%
Bone
100%
Energy
66%
Reaction Temperature
33%
Application
33%
Number
33%
Density
33%
Heat
33%
Material Science
Osteoblast
100%
Temperature
25%
Density
25%
Cell Proliferation
25%
Biochemistry, Genetics and Molecular Biology
Osteoid
25%