Recent events have heightened the need for fast, accurate, and reliable biological/chemical sensor systems for critical locations. As droplet-based microelectrofluidic sensor systems become widespread in these safety-critical biomedical applications, reliability emerges as a critical performance parameter. In order to ensure the operational health of such safety-critical systems, they need to be monitored for defects, not only after manufacturing, but also during in-field operation. In this paper, we present a cost-effective concurrent test methodology for droplet-based microelectrofluidic systems. We present a classification of catastrophic and parametric faults in such systems and show how faults can be detected by electrostatically contr...
Dependability is an important attribute for microfluidic biochips that are used for safety-critical ...
Biosensors are ubiquitous in a variety of disciplines, such as biochemical, electrochemical, agricul...
In this paper we introduce a Microfluidic Fault Simulator, MFS, which uses a novel method of fault m...
Dependability is an important attribute for microfluidic biochips that are used for safety-critical ...
We present a concurrent testing methodology for detecting catastrophic faults in digital microfluidi...
Microfluidics-based biochips consist of microfluidic arrays on rigid substrates through which, movem...
Abstract—Efficient droplet routing is one of the key approaches for realizing fault-tolerant microfl...
Abstract—Efficient droplet routing is one of the key approaches for realizing fault-tolerant microfl...
Defect tolerance is an important design consideration for microfluidics-based biochips that are used...
Microfluidics-based biochips offer exciting possibilities for highthroughput sequencing, parallel im...
Microfluidic biochips require continued online test to ensure their functionality, performance, and ...
Abstract—Microfluidic-based biochips are replacing the con-ventional biochemical analyzers, and are ...
Abstract Conventional biomedical analysers are replaced by digital microfluidic biochips and they ar...
Microfluidics-based biochips are soon expected to revolutionize biosensing, clinical diagnostics and...
Microfluidic technologies offer benefits to the biological sciences by miniaturizing and automating ...
Dependability is an important attribute for microfluidic biochips that are used for safety-critical ...
Biosensors are ubiquitous in a variety of disciplines, such as biochemical, electrochemical, agricul...
In this paper we introduce a Microfluidic Fault Simulator, MFS, which uses a novel method of fault m...
Dependability is an important attribute for microfluidic biochips that are used for safety-critical ...
We present a concurrent testing methodology for detecting catastrophic faults in digital microfluidi...
Microfluidics-based biochips consist of microfluidic arrays on rigid substrates through which, movem...
Abstract—Efficient droplet routing is one of the key approaches for realizing fault-tolerant microfl...
Abstract—Efficient droplet routing is one of the key approaches for realizing fault-tolerant microfl...
Defect tolerance is an important design consideration for microfluidics-based biochips that are used...
Microfluidics-based biochips offer exciting possibilities for highthroughput sequencing, parallel im...
Microfluidic biochips require continued online test to ensure their functionality, performance, and ...
Abstract—Microfluidic-based biochips are replacing the con-ventional biochemical analyzers, and are ...
Abstract Conventional biomedical analysers are replaced by digital microfluidic biochips and they ar...
Microfluidics-based biochips are soon expected to revolutionize biosensing, clinical diagnostics and...
Microfluidic technologies offer benefits to the biological sciences by miniaturizing and automating ...
Dependability is an important attribute for microfluidic biochips that are used for safety-critical ...
Biosensors are ubiquitous in a variety of disciplines, such as biochemical, electrochemical, agricul...
In this paper we introduce a Microfluidic Fault Simulator, MFS, which uses a novel method of fault m...