Magnetic nanoparticles are used to enhance the image contrast of magnetic resonance imaging (MRI). However, the development of magnetic nanoparticles with a low dose/high image contrast and non-toxicity is currently a major challenge. In this study, cobalt-substituted hydroxyapatite nanoparticles deposited on titanium (Ti-CoHA) and cobalt-substituted hydroxyapatite nanoparticles deposited on titanium dioxide nanotubes (TNT-CoHA) were synthesized by the electrochemical deposition method. The particle sizes of Ti-CoHA and TNT-CoHA were 418.6 nm and 127.5 nm, respectively, as observed using FE-SEM. It was shown that CoHA can be obtained with a smaller particle size using a titanium dioxide nanotube (TNT) electrode plate. However, the particle ...
Magnetic materials are of interest for biomedical applications for the ability to remotely control m...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
Hydroxyapatite has excellent biocompatibility and osteo-conductivity and, as the main inorganic comp...
[[abstract]]In this study, synthetic hydroxyapatite nanoparticles (Hap NPs) were rendered magnetic b...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Background: Magnetic Nanoparticles (MNP) have been used for contrast enhance-ment in Magnetic Resona...
Inadequate mechanical properties of pure hydroxyapatite (HA) coating layers make it an unsuitable ca...
With an increasingly active and aging population, a growing number of orthopedic procedures are perf...
Titanium has been used for dental and orthopaedic implants since decades due to its suitable surface...
Cobalt ferrite magnetic nanostructures were synthesized via a high temperature solution phase method...
International audienceAbstract: For the first time, titanate nanotubes (TiONts) coated with USPIO (u...
Nanoscale materials continue to amaze researchers due to their fascinating versatile properties. One...
This study focuses on the physical, magnetic, biological and antibacterial behaviour of cobalt-doped...
Sudip Mondal,1 Panchanathan Manivasagan,1 Subramaniyan Bharathiraja,1 Madhappan Santha Moorthy,1 Hye...
Magnetic materials are of interest for biomedical applications for the ability to remotely control m...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
Hydroxyapatite has excellent biocompatibility and osteo-conductivity and, as the main inorganic comp...
[[abstract]]In this study, synthetic hydroxyapatite nanoparticles (Hap NPs) were rendered magnetic b...
Biomedical applications utilizing magnetic nanoparticles have the ability to impact diagnostic and t...
Background: Magnetic Nanoparticles (MNP) have been used for contrast enhance-ment in Magnetic Resona...
Inadequate mechanical properties of pure hydroxyapatite (HA) coating layers make it an unsuitable ca...
With an increasingly active and aging population, a growing number of orthopedic procedures are perf...
Titanium has been used for dental and orthopaedic implants since decades due to its suitable surface...
Cobalt ferrite magnetic nanostructures were synthesized via a high temperature solution phase method...
International audienceAbstract: For the first time, titanate nanotubes (TiONts) coated with USPIO (u...
Nanoscale materials continue to amaze researchers due to their fascinating versatile properties. One...
This study focuses on the physical, magnetic, biological and antibacterial behaviour of cobalt-doped...
Sudip Mondal,1 Panchanathan Manivasagan,1 Subramaniyan Bharathiraja,1 Madhappan Santha Moorthy,1 Hye...
Magnetic materials are of interest for biomedical applications for the ability to remotely control m...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...
The identification of alternative biocompatible magnetic NPs for advanced clinical application is be...