Single-molecule detection (SMD) has demonstrated some attractive benefits for many types of biomolecular analyses including enhanced processing speed by eliminating processing steps, elimination of ensemble averaging and single-molecule sensitivity. However, it's wide spread use has been hampered by the complex instrumentation required for its implementation when using fluorescence as the readout modality. We report herein a simple and compact fluorescence single-molecule instrument that is straightforward to operate and consisted of fiber optics directly coupled to a microfluidic device. The integrated fiber optics served as waveguides to deliver the laser excitation light to the sample and collecting the resulting emission, simplifying th...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
The ability to detect low concentrations of analytes and in particular low-abundance biomarkers is o...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...
The search for increased sensitivity ofbio-analytical techniques has recently shifted from signal ge...
Traditionally, molecular analysis is performed in laboratories equipped with desktop instruments ope...
The realization of high throughput sample processing has become a primary ambition in many research ...
In this paper we present a novel highly sensitive detection system for diagnostic applications. The ...
Cost-effective pharmaceutical drug discovery depends on increasing assay throughput while reducing r...
Hollars CW, Puls J, Bakajin O, et al. Bio-assay based on single molecule fluorescence detection in m...
Optofluidics, the science that integrates photonics and microfluidics, has produced a number of prom...
In later years polymer replication techniques have become a frequently employed fabrication method f...
Abstract: This paper reviews the current state-of-the-art development of single-molecule detection (...
This experimental study investigates the feasibility of using a lens-less charge-coupled device (CCD...
Instruments with single-molecule level detection capabilities can potentially benefit a wide variety...
A single-molecule flow analyzer based on laser induced fluorescence and hydrodynamic focusing was de...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
The ability to detect low concentrations of analytes and in particular low-abundance biomarkers is o...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...
The search for increased sensitivity ofbio-analytical techniques has recently shifted from signal ge...
Traditionally, molecular analysis is performed in laboratories equipped with desktop instruments ope...
The realization of high throughput sample processing has become a primary ambition in many research ...
In this paper we present a novel highly sensitive detection system for diagnostic applications. The ...
Cost-effective pharmaceutical drug discovery depends on increasing assay throughput while reducing r...
Hollars CW, Puls J, Bakajin O, et al. Bio-assay based on single molecule fluorescence detection in m...
Optofluidics, the science that integrates photonics and microfluidics, has produced a number of prom...
In later years polymer replication techniques have become a frequently employed fabrication method f...
Abstract: This paper reviews the current state-of-the-art development of single-molecule detection (...
This experimental study investigates the feasibility of using a lens-less charge-coupled device (CCD...
Instruments with single-molecule level detection capabilities can potentially benefit a wide variety...
A single-molecule flow analyzer based on laser induced fluorescence and hydrodynamic focusing was de...
We report on monolithic optical sensor integration in a lab-on-a-chip toward onchip diagnosis of all...
The ability to detect low concentrations of analytes and in particular low-abundance biomarkers is o...
The development of microfluidics-based quantitative real-time polymerase chain reaction for molecula...