3rd IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2008, Sanya, 6-9 January 2008This paper reports a magnetic microvalve based on iron-powder filled polydimethysiloxane (PDMS) for implantable drug delivery systems, which allows transcutaneous control when implanted under the skin. It does not require any implanted power source or receiver including batteries, RF coils, piezoelectric materials, etc. Only a magnet is required to open the microvalve for drug delivery. A pressurized balloon reservoir is used to pump the drug when the microvalve is open. This simplifies the structure design and reduces components for implanted devices. Only a single mask is required to define the silicon cavity for valve plug ...
In this study, a manual micro-valve system (dimension: w × h: 1000 × 50 μm with 8-integrated channel...
In this report, the novel idea of using a magnetic elastomer by mixing Polyimethylsiloxane (PDMS) wi...
This paper presents the fabrication process of a single-chamber planar valveless micropump driven by...
Drug therapy efficacy depends on therapeutic concentrations of drugs at disease sites. An ideal cont...
We have developed a cylindrical shape magnetically-actuated MEMS drug delivery device for localized ...
We introduce a novel, on-demand drug delivery device based on a biocompatible magnetic sponge. The s...
In this paper, a polydimethylsiloxane (PDMS) fabrication method is introduced. It eliminates the nee...
Despite the advancements made in conventional drug delivery over the years, there are many difficult...
Biomedical applications of Micro-Electro-Mechanical System (MEMS) technology have sprung growth in t...
Implantable drug delivery is becoming an increasingly important field of research, providing great p...
Implantable drug delivery systems can provide long-term reliability, controllability, and biocompati...
MEMS based Drug Delivery System (DDS) using an in-plane micropump enables us to make a compact, inex...
We report the design, fabrication, and characterization of magnetically responsive elastic microsphe...
A therapeutic amount of drug at proper site in the body and its maintenance for a specific period of...
Microelectrode arrays now allow the simultaneous electrical recording and stimulation of large numbe...
In this study, a manual micro-valve system (dimension: w × h: 1000 × 50 μm with 8-integrated channel...
In this report, the novel idea of using a magnetic elastomer by mixing Polyimethylsiloxane (PDMS) wi...
This paper presents the fabrication process of a single-chamber planar valveless micropump driven by...
Drug therapy efficacy depends on therapeutic concentrations of drugs at disease sites. An ideal cont...
We have developed a cylindrical shape magnetically-actuated MEMS drug delivery device for localized ...
We introduce a novel, on-demand drug delivery device based on a biocompatible magnetic sponge. The s...
In this paper, a polydimethylsiloxane (PDMS) fabrication method is introduced. It eliminates the nee...
Despite the advancements made in conventional drug delivery over the years, there are many difficult...
Biomedical applications of Micro-Electro-Mechanical System (MEMS) technology have sprung growth in t...
Implantable drug delivery is becoming an increasingly important field of research, providing great p...
Implantable drug delivery systems can provide long-term reliability, controllability, and biocompati...
MEMS based Drug Delivery System (DDS) using an in-plane micropump enables us to make a compact, inex...
We report the design, fabrication, and characterization of magnetically responsive elastic microsphe...
A therapeutic amount of drug at proper site in the body and its maintenance for a specific period of...
Microelectrode arrays now allow the simultaneous electrical recording and stimulation of large numbe...
In this study, a manual micro-valve system (dimension: w × h: 1000 × 50 μm with 8-integrated channel...
In this report, the novel idea of using a magnetic elastomer by mixing Polyimethylsiloxane (PDMS) wi...
This paper presents the fabrication process of a single-chamber planar valveless micropump driven by...