The new and rapid advancement in the complexity of biologics drug discovery has been driven by a deeper understanding of biological systems combined with innovative new therapeutic modalities, paving the way to breakthrough therapies for previously intractable diseases. These exciting times in biomedical innovation require the development of novel technologies to facilitate the sophisticated, multifaceted, high-paced workflows necessary to support modern large molecule drug discovery. A high-level aspiration is a true integration of "lab-on-a-chip" methods that vastly miniaturize cellulmical experiments could transform the speed, cost, and success of multiple workstreams in biologics development. Several microscale bioprocess technologies h...
This PhD research project aimed to develop miniaturised opto-fluidic systems for cell manipulation a...
Single-molecule techniques have shifted the paradigm of biological measurements from ensemble measur...
The manufacturing process for a biologic begins with establishing a clonally derived, stable product...
The new and rapid advancement in the complexity of biologics drug discovery has been driven by a dee...
A universal goal of technological development is the enrichment of human life. The fast developments...
Generating a highly productive cell line is resource intensive and typically involves long timelines...
Single cell analysis is required to decipher a myriad of cellular processes; however, it is very cha...
The introduction of optoelectrokinetics (OEK) into lab-on-a-chip systems has facilitated a new cutti...
Improving the resolution of biological research to the single-cell or sub-cellular level is of criti...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
Emerging BioMicroNanotechnologies have the potential to provide accurate, realtime, high throughput ...
This thesis investigates the application of a variety of optical techniques for the manipulation of ...
Optical manipulation of biological cells in microfluidic devices is a powerful technique for high-th...
In the last decade optical manipulation has evolved from a field of interest for physicists to a ver...
An increasing number of cancer patients have found new hope in the form of recently discovered cell ...
This PhD research project aimed to develop miniaturised opto-fluidic systems for cell manipulation a...
Single-molecule techniques have shifted the paradigm of biological measurements from ensemble measur...
The manufacturing process for a biologic begins with establishing a clonally derived, stable product...
The new and rapid advancement in the complexity of biologics drug discovery has been driven by a dee...
A universal goal of technological development is the enrichment of human life. The fast developments...
Generating a highly productive cell line is resource intensive and typically involves long timelines...
Single cell analysis is required to decipher a myriad of cellular processes; however, it is very cha...
The introduction of optoelectrokinetics (OEK) into lab-on-a-chip systems has facilitated a new cutti...
Improving the resolution of biological research to the single-cell or sub-cellular level is of criti...
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emer...
Emerging BioMicroNanotechnologies have the potential to provide accurate, realtime, high throughput ...
This thesis investigates the application of a variety of optical techniques for the manipulation of ...
Optical manipulation of biological cells in microfluidic devices is a powerful technique for high-th...
In the last decade optical manipulation has evolved from a field of interest for physicists to a ver...
An increasing number of cancer patients have found new hope in the form of recently discovered cell ...
This PhD research project aimed to develop miniaturised opto-fluidic systems for cell manipulation a...
Single-molecule techniques have shifted the paradigm of biological measurements from ensemble measur...
The manufacturing process for a biologic begins with establishing a clonally derived, stable product...