Recently developed lab-on-a-chip technologies integrate multiple traditional assays on a single chip with higher sensitivity, faster assay time, and more streamlined sample operation. We discuss the prospects of the lab-on-a-tip platform, where assays can be integrated on a miniaturized tip for in situ and in vivo analysis. It will resolve some of the limitations of available lab-on-a-chip platforms and enable next generation multifunctional in vivo sensors, as well as analytical techniques at the single cell or even sub-cellular levels
Discovering the properties of individual biological particles is in its early stages. Parallel advan...
A microfluidic system achieves miniaturization without the need for extra equipment, bringing chip-b...
A universal goal of technological development is the enrichment of human life. The fast developments...
Recently developed lab-on-a-chip technologies integrate multiple traditional assays on a single chip...
Over the past decade, miniaturization of analytical techniques has become a dominant trend in resear...
This book focuses on a research field that is rapidly emerging as one of the most promising ones for...
With the rapid developments in fields such as medicine, biotechnology, and genomics, the need for ch...
151 pages“Lab-on-a-chip” technology refers to the concept of shrinking normally macroscopic laborato...
Lab-on-a-chip technology is a rapidly growing research area. Joining together several disciplines, s...
The development of photonic-based point of care (POC) devices requires the use of compact integrated...
Approximately two decades ago, a handful of researchers began discussing an intriguing idea: Could t...
The collection, selection, amplification and detection of minimum genetic samples became a part of e...
A combination of waveguides and microfluidics is easily achieved through femtosecond-laser micromach...
The integration of optical circuits with microfluidic lab-on-chip (LoC) devices has resulted in a ne...
Microfabricated devices, manufactured in silicon, glass or plastic materials, have established a wel...
Discovering the properties of individual biological particles is in its early stages. Parallel advan...
A microfluidic system achieves miniaturization without the need for extra equipment, bringing chip-b...
A universal goal of technological development is the enrichment of human life. The fast developments...
Recently developed lab-on-a-chip technologies integrate multiple traditional assays on a single chip...
Over the past decade, miniaturization of analytical techniques has become a dominant trend in resear...
This book focuses on a research field that is rapidly emerging as one of the most promising ones for...
With the rapid developments in fields such as medicine, biotechnology, and genomics, the need for ch...
151 pages“Lab-on-a-chip” technology refers to the concept of shrinking normally macroscopic laborato...
Lab-on-a-chip technology is a rapidly growing research area. Joining together several disciplines, s...
The development of photonic-based point of care (POC) devices requires the use of compact integrated...
Approximately two decades ago, a handful of researchers began discussing an intriguing idea: Could t...
The collection, selection, amplification and detection of minimum genetic samples became a part of e...
A combination of waveguides and microfluidics is easily achieved through femtosecond-laser micromach...
The integration of optical circuits with microfluidic lab-on-chip (LoC) devices has resulted in a ne...
Microfabricated devices, manufactured in silicon, glass or plastic materials, have established a wel...
Discovering the properties of individual biological particles is in its early stages. Parallel advan...
A microfluidic system achieves miniaturization without the need for extra equipment, bringing chip-b...
A universal goal of technological development is the enrichment of human life. The fast developments...