Within this paper we will describe the investigations of biocompatibility testing of certain materials used for MEMS packaging and MEMS fabrication. Next to these typical semiconductor materials also nano patterned surfaces were evaluated regarding their influence to cell growth and their potential for implantable devices. Both topics were necessarily expected to be relevant for in-vivo patient monitoring applications
Nowadays, implants and prostheses are widely used to repair damaged tissues or to treat different di...
Introduction to the interactions between cells and surfaces of biomaterials. Surface chemistry and p...
The array of polymeric, biologic, metallic, and ceramic biomaterials will be reviewed with respect t...
Abstract The biocompatibility and biofouling of the microfabrication materials for a MEMS drug deliv...
A novel biocompatible packaging process for implantable electronic systems is described, combining e...
In recent years, the innovative use of microelectromechanical systems (MEMSs) and nanoelectromechani...
The paper shows the potential of micro machined sensors for implantation and monitoring of patients....
Biomicroelectromechanical systems (bio-MEMS) are MEMS which are designed for medical or biological a...
Microfabricated systems provide an excellent platform for the culture of cells, and are an extremely...
International audienceBiomicroelectromechanical systems (bio-MEMS) are MEMS which are designed for m...
Most electronic biomedical implants are packaged with an epoxy coating that reduces the lifetime of ...
The Micro-Electro-Mechanical Systems (MEMS) have found wide application in medicine these days. Lots...
The rapid development of micro/nanofabrication technologies to engineer a variety of materials has e...
[[abstract]]In the tissue engineering research field, nanobiomaterials highlight the impact of novel...
MEMS devices are manufactured using similar microfabrica-tion techniques as those used to create int...
Nowadays, implants and prostheses are widely used to repair damaged tissues or to treat different di...
Introduction to the interactions between cells and surfaces of biomaterials. Surface chemistry and p...
The array of polymeric, biologic, metallic, and ceramic biomaterials will be reviewed with respect t...
Abstract The biocompatibility and biofouling of the microfabrication materials for a MEMS drug deliv...
A novel biocompatible packaging process for implantable electronic systems is described, combining e...
In recent years, the innovative use of microelectromechanical systems (MEMSs) and nanoelectromechani...
The paper shows the potential of micro machined sensors for implantation and monitoring of patients....
Biomicroelectromechanical systems (bio-MEMS) are MEMS which are designed for medical or biological a...
Microfabricated systems provide an excellent platform for the culture of cells, and are an extremely...
International audienceBiomicroelectromechanical systems (bio-MEMS) are MEMS which are designed for m...
Most electronic biomedical implants are packaged with an epoxy coating that reduces the lifetime of ...
The Micro-Electro-Mechanical Systems (MEMS) have found wide application in medicine these days. Lots...
The rapid development of micro/nanofabrication technologies to engineer a variety of materials has e...
[[abstract]]In the tissue engineering research field, nanobiomaterials highlight the impact of novel...
MEMS devices are manufactured using similar microfabrica-tion techniques as those used to create int...
Nowadays, implants and prostheses are widely used to repair damaged tissues or to treat different di...
Introduction to the interactions between cells and surfaces of biomaterials. Surface chemistry and p...
The array of polymeric, biologic, metallic, and ceramic biomaterials will be reviewed with respect t...