Cardiovascular biomaterials (CB) dominate the category of biomaterials based on the demand and investments in this field. This review article classifies the CB into three major classes, namely, metals, polymers, and biological materials and collates the information about the CB. Blood compatibility is one of the major criteria which limit the use of biomaterials for cardiovascular application. Several key players are associated with blood compatibility and they are discussed in this paper. To enhance the compatibility of the CB, several surface modification strategies were in use currently. Some recent applications of surface modification technology on the materials for cardiovascular devices were also discussed for better understanding. Fi...
The types of compounds used in the production of biomaterials, namely metals, ceramics, synthetic an...
Abstract Myocardial infarction (MI) is a cardiovascular emergency and the leading cause of death wor...
Cardiovascular tissue engineering aims to find solutions for the suboptimal regeneration of heart va...
Cardiovascular biomaterials (CB) dominate the category of biomaterials based on the demand and inves...
Copyright © 2014 Saravana Kumar Jaganathan et al. This is an open access article distributed under t...
Cardiac medical devices (CMDs) are required when the patient’s cardiac capacity or activity is compr...
A variety of material classes are used in biomedical applications: metals, ceramics, polymers, and c...
Biomaterials are natural, synthetic, or hybrid materials, which are used in medical devices or impla...
The evaluation of biological host response to implanted materials permits the determination of the s...
Nanomaterials such as nanostructured surfaces, nanoparticles, and nanocomposites represent new viabl...
The work is a review of the methods of the surface modification performed by the authors dedicated f...
Nanomaterials such as nanostructured surfaces, nanoparticles, and nanocomposites represent new viabl...
Introduction. Cardiovascular diseases have become the leading mortality cause, requiring a novel tec...
The therapeutic efficacy of a cardiovascular device after implantation is highly dependent on the ho...
Cardiovascular (CV) implants are still associated with thrombogenicity due to insufficient hemocompa...
The types of compounds used in the production of biomaterials, namely metals, ceramics, synthetic an...
Abstract Myocardial infarction (MI) is a cardiovascular emergency and the leading cause of death wor...
Cardiovascular tissue engineering aims to find solutions for the suboptimal regeneration of heart va...
Cardiovascular biomaterials (CB) dominate the category of biomaterials based on the demand and inves...
Copyright © 2014 Saravana Kumar Jaganathan et al. This is an open access article distributed under t...
Cardiac medical devices (CMDs) are required when the patient’s cardiac capacity or activity is compr...
A variety of material classes are used in biomedical applications: metals, ceramics, polymers, and c...
Biomaterials are natural, synthetic, or hybrid materials, which are used in medical devices or impla...
The evaluation of biological host response to implanted materials permits the determination of the s...
Nanomaterials such as nanostructured surfaces, nanoparticles, and nanocomposites represent new viabl...
The work is a review of the methods of the surface modification performed by the authors dedicated f...
Nanomaterials such as nanostructured surfaces, nanoparticles, and nanocomposites represent new viabl...
Introduction. Cardiovascular diseases have become the leading mortality cause, requiring a novel tec...
The therapeutic efficacy of a cardiovascular device after implantation is highly dependent on the ho...
Cardiovascular (CV) implants are still associated with thrombogenicity due to insufficient hemocompa...
The types of compounds used in the production of biomaterials, namely metals, ceramics, synthetic an...
Abstract Myocardial infarction (MI) is a cardiovascular emergency and the leading cause of death wor...
Cardiovascular tissue engineering aims to find solutions for the suboptimal regeneration of heart va...