Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2008.Page 146 blank.Includes bibliographical references.The cellular microenvironment is remarkably complex. In the small space near each cell, growth factors are liberated from extracellular matrix, cytokines are secreted from neighboring cells, and hormones arrive from distant organs. These spatially and temporally diverse cues are integrated by signal transduction cascades to modulate the activity of transcription factors, the principle regulators of gene expression. To date, experimental investigation of spatial and temporal transcription factor activation patterns has been limited by the use of destructive measurement techniques that require averaging responses ov...
Binding of the antigen receptor on T cells initiates a rapid series of signaling events leading to a...
Microfluidic designs are versatile examples of technology miniaturisation that find their applicatio...
Regulatory processes are responsible for the organization, division and death of cells in multicellu...
Observation of single-cell behavior has become increasingly important to our understanding of comple...
We present a microfluidic system that facilitates long-term measurements of single cell response to ...
Dynamic environments are commonplace in the natural world, from fluctuations in nutrient sources tha...
Over the past decade, interest in microfluidics has surged as applications have trended towards nove...
Profiling immune cell signaling pathways requires techniques that allow for precise spatial cell pos...
Abstract Background Current methods of measuring tran...
Thesis: Ph. D. in Medical Engineering and Medical Physics, Harvard-MIT Program in Health Sciences an...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Ca...
Decoding the complexity of multicellular organisms requires analytical procedures to overcome the li...
This work develops microfluidic technologies to advance the state-of-the-art in living cell-based as...
We introduce a new approach to study cellular responses in different cell subpopulations while not d...
Genome-scale technologies have transformed our understanding of the biomolecular signaling networks ...
Binding of the antigen receptor on T cells initiates a rapid series of signaling events leading to a...
Microfluidic designs are versatile examples of technology miniaturisation that find their applicatio...
Regulatory processes are responsible for the organization, division and death of cells in multicellu...
Observation of single-cell behavior has become increasingly important to our understanding of comple...
We present a microfluidic system that facilitates long-term measurements of single cell response to ...
Dynamic environments are commonplace in the natural world, from fluctuations in nutrient sources tha...
Over the past decade, interest in microfluidics has surged as applications have trended towards nove...
Profiling immune cell signaling pathways requires techniques that allow for precise spatial cell pos...
Abstract Background Current methods of measuring tran...
Thesis: Ph. D. in Medical Engineering and Medical Physics, Harvard-MIT Program in Health Sciences an...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2017.Ca...
Decoding the complexity of multicellular organisms requires analytical procedures to overcome the li...
This work develops microfluidic technologies to advance the state-of-the-art in living cell-based as...
We introduce a new approach to study cellular responses in different cell subpopulations while not d...
Genome-scale technologies have transformed our understanding of the biomolecular signaling networks ...
Binding of the antigen receptor on T cells initiates a rapid series of signaling events leading to a...
Microfluidic designs are versatile examples of technology miniaturisation that find their applicatio...
Regulatory processes are responsible for the organization, division and death of cells in multicellu...