Zobrazeno 1 - 10
of 42
pro vyhledávání: '"Chi-Jen Chung"'
Publikováno v:
Journal of Applied Biomaterials & Functional Materials, Vol 19 (2021)
Here, we present a bone implant system of phase-oriented titanium dioxide (TiO 2 ) fabricated by the micro-arc oxidation method (MAO) on β-Ti to facilitate improved osseointegration. This (101) rutile-phase-dominant MAO TiO 2 (R-TiO 2 ) is biocompat
Externí odkaz:
https://doaj.org/article/53ba0aafd8394b87b81a395a85b9e081
Publikováno v:
Nanomaterials, Vol 12, Iss 10, p 1627 (2022)
Gold nanoparticles conjugated with collagen molecules and fibers have been proven to improve structure strength, water and enzyme degradation resistance, cell attachment, cell proliferation, and skin wound healing. In this study, high-power impulse m
Externí odkaz:
https://doaj.org/article/2e981b1aa3544b479022cac5369f90ba
Autor:
Chi-Jen Chung, 鍾騏任
100
Nanomaterials and nanotechnologies have widespread applications in biomedical fields. In this research, we intend to acquire the core-shell nanoparticles with the optical and magnetic properties for those needs. Synthesis of FePt/TiO2 nanoco
Nanomaterials and nanotechnologies have widespread applications in biomedical fields. In this research, we intend to acquire the core-shell nanoparticles with the optical and magnetic properties for those needs. Synthesis of FePt/TiO2 nanoco
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/z3nh3t
Autor:
Chi-Jen Chung, 鍾騏任
97
Due to the busy life styles,for the sake of knowledge, often overtime, long-term stay up,that breaks the right biological clock for most people,and this is the so-called biorhythms disorders,this phenomenon will lead to many adverse physiolog
Due to the busy life styles,for the sake of knowledge, often overtime, long-term stay up,that breaks the right biological clock for most people,and this is the so-called biorhythms disorders,this phenomenon will lead to many adverse physiolog
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/81576297642393747680
Autor:
Chi-Jen Chung, 鍾啟仁
96
Titanium dioxide (TiO2) has been developed and applied extensively in the form of coatings, in particular for its unique properties such as non-toxicity, high photocatalytic activity and strong self-cleaning ability. TiO2 films have great pot
Titanium dioxide (TiO2) has been developed and applied extensively in the form of coatings, in particular for its unique properties such as non-toxicity, high photocatalytic activity and strong self-cleaning ability. TiO2 films have great pot
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/32284377700550245279
Publikováno v:
Journal of Applied Biomaterials & Functional Materials, Vol 19 (2021)
Here, we present a bone implant system of phase-oriented titanium dioxide (TiO2) fabricated by the micro-arc oxidation method (MAO) on β-Ti to facilitate improved osseointegration. This (101) rutile-phase-dominant MAO TiO2 (R-TiO2) is biocompatible
Publikováno v:
Surface and Coatings Technology. 427:127819
This study developed a surface modification technique to obtain nearly superamphiphobic films on AISI 304 stainless steel substrates, which are usually made into dental appliances in orthodontics for malocclusion. Direct fabrication of micro- and nan
Publikováno v:
Thin Solid Films. 620:88-93
Super-hydrophobicity, enabling self-cleaning and antifouling capability, has attracted intensive researches by using different surface techniques. To achieve super-hydrophobicity on metal surfaces, morphological control of the surface shares equal im
Autor:
Chih Han Chang, Chun Ting Li, Chih Hsien Chen, Yung-Heng Lee, Yen Nien Chen, Peng Yao-Te, Chih-Wei Wang, Chi-Jen Chung
Publikováno v:
Computers in Biology and Medicine. 71:35-45
This study investigated the biomechanical response of porous cages and lumbar spine segments immediately after surgery and after bone fusion, in addition to the long-term effects of various posterior lumbar interbody fusion (PLIF) techniques, by usin
Publikováno v:
Materials Science and Engineering: C. 57:58-66
This study utilizes a novel technique, high power impulse magnetron sputtering (HIPIMS), which provides a higher ionization rate and ion bombardment energy than direct current magnetron sputtering (DCMS), to deposit high osteoblast compatible titaniu