Biosensors are used for the detection of biochemical molecules such as proteins and nucleic acids. Traditional techniques, such as enzyme-linked immuno-sorbent assay (ELISA), are sensitive but require several hours to yield a result and usually require the attachment of a fluorophore molecule to the target molecule. Micromachined biosensors that employ electrical detection are now being developed. Here we describe one such device, which is ultrasensitive, real-time, label free and localized. It is called the nanoneedle biosensor and shows promise to overcome some of the current limitations of biosensors. The key element of this device is a 10 nm wide annular gap at the end of the needle, which is the sensitive part of the sensor. The t...
[[abstract]]This paper proposes a novel protein micro arrayer employing 3-in-1 chip system, instantl...
The sensing and characterisation of biomolecules is crucial for medical diagnostics and an understan...
One of the most promising ways to improve clinical diagnostic tools is to use microfluidic Lab-on-a-...
Pressing performance demands require next-generation biosensors to detect target chemical and biolog...
The detection and quantification of cardiac biomarkers in serum is crucial to diagnose patients in t...
Liquid biopsy has the potential to enable diagnosis, prognosis, and monitoring of some diseases at a...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Nanostructured biosensors have pioneered biomedical engineering by providing highly sensitive analys...
As personalized medicine advances, the need continues to grow for new sensors in applications rangin...
This dissertation outlines the design, fabrication, and optimization of microfluidic systems for the...
2011-10-27This dissertation presents one-dimensional nanostructures for novel biosensors and transpa...
Nowadays a rapid diseases diagnosis and timely appropriate and personalized treatments are critical ...
For nearly 50 years, the vision of using single molecules in circuits has been seen as providing the...
We present the design of a mixed-technology microsystem for electronically manipulating and opticall...
With the success of high-throughput DNA microarrays, protein biochips have been intensively investig...
[[abstract]]This paper proposes a novel protein micro arrayer employing 3-in-1 chip system, instantl...
The sensing and characterisation of biomolecules is crucial for medical diagnostics and an understan...
One of the most promising ways to improve clinical diagnostic tools is to use microfluidic Lab-on-a-...
Pressing performance demands require next-generation biosensors to detect target chemical and biolog...
The detection and quantification of cardiac biomarkers in serum is crucial to diagnose patients in t...
Liquid biopsy has the potential to enable diagnosis, prognosis, and monitoring of some diseases at a...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Nanostructured biosensors have pioneered biomedical engineering by providing highly sensitive analys...
As personalized medicine advances, the need continues to grow for new sensors in applications rangin...
This dissertation outlines the design, fabrication, and optimization of microfluidic systems for the...
2011-10-27This dissertation presents one-dimensional nanostructures for novel biosensors and transpa...
Nowadays a rapid diseases diagnosis and timely appropriate and personalized treatments are critical ...
For nearly 50 years, the vision of using single molecules in circuits has been seen as providing the...
We present the design of a mixed-technology microsystem for electronically manipulating and opticall...
With the success of high-throughput DNA microarrays, protein biochips have been intensively investig...
[[abstract]]This paper proposes a novel protein micro arrayer employing 3-in-1 chip system, instantl...
The sensing and characterisation of biomolecules is crucial for medical diagnostics and an understan...
One of the most promising ways to improve clinical diagnostic tools is to use microfluidic Lab-on-a-...