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查看斯高帕斯 (Scopus) 概要
翁 培鈞
助理教授
,
生醫光機電研究所
https://orcid.org/0000-0001-8357-5616
電子郵件
pcwong0424
tmu.edu
tw
h-index
322
引文
9
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
2016
2023
每年研究成果
概覽
指紋
網路
專案
(2)
研究成果
(22)
類似的個人檔案
(10)
如果您對這些純文本內容做了任何改變,很快就會看到。
指紋
查看啟用 Pei-Chun Wong 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Engineering & Materials Science
Metallic glass
97%
Biocompatibility
42%
Orthopedics
31%
Bone
27%
Composite materials
20%
Stem cells
19%
Mechanical properties
19%
Hydrogels
19%
Tissue engineering
18%
Phase structure
18%
Osteoblasts
17%
Scaffolds
16%
Degradation
15%
Cells
15%
Graphene quantum dots
14%
Hyaluronic acid
13%
Foams
13%
Shear bands
13%
Porosity
12%
Chitosan
11%
Graphene oxide
10%
Strontium
9%
Cytotoxicity
9%
Metal foams
9%
Drug delivery
9%
Biofilms
9%
Cartilage
9%
Platelets
8%
Escherichia coli
8%
Zirconium
8%
Calcium
8%
Strength of materials
8%
Tendons
7%
Acids
7%
Rats
6%
Titanium
6%
Defects
6%
Nitrogen
6%
Plasmas
6%
Pore size
6%
Artificial intelligence
6%
Skin
6%
Plasticity
5%
Surface roughness
5%
Nanoparticles
5%
Repair
5%
Photoluminescence
5%
Forster resonance energy transfer
5%
Compressive strength
5%
Intercellular Signaling Peptides and Proteins
5%
Chemical Compounds
Metallic Glass
100%
Implant
39%
Osteogenic
27%
Application
19%
Composite Material
17%
Hydrogel
17%
Nanocarrier
16%
Porosity
16%
Biocompatible Material
13%
Foam
12%
Degradation Rate
12%
Hyaluronic Acid
9%
Shear
9%
Compression Strength
8%
Cord
8%
Fibrin
8%
Cell Viability
7%
Plastic Property
7%
Gelatin
7%
Surface Roughness
6%
Nanoparticle
6%
Calcium(0)
5%
Magnesium Atom
5%
Graphene Oxide
5%
Pore Size
5%
Strength
5%
Physics & Astronomy
metallic glasses
42%
biocompatibility
25%
orthopedics
24%
bones
17%
porosity
15%
foams
13%
osteoblasts
13%
fibrin
10%
artificial intelligence
10%
tissue engineering
9%
stem cells
9%
biofilms
9%
tendons
9%
gelatins
8%
Escherichia
8%
rabbits
7%
progressions
7%
cells
7%
platelets
7%
spacers
7%
degradation
7%
acids
6%
surface roughness
5%
titanium
5%
calcium
5%
adhesion
5%
osteogenesis
5%
wound healing
5%
synthesis
5%