Image cytometry technology has been extended to 3D based on high-speed multiphoton microscopy. This technique allows in situ study of tissue specimens preserving important cell-cell and cell-extracellular matrix interactions. The imaging system was based on high-speed multiphoton microscopy (HSMPM) for 3D deep tissue imaging with minimal photodamage. Using appropriate fluorescent labels and a specimen translation stage, we could quantify cellular and biochemical states of tissues in a high throughput manner. This approach could assay tissue structures with subcellular resolution down to a few hundred micrometers deep. Its throughput could be quantified by the rate of volume imaging: 1.45 mm(3)/h with high resolution. For a tissue containing...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
The current image speed of multi-photon microscopy is not enough for fast biological processes such ...
MasterThis thesis describes the implementation and characterization of a high-speed two-photon micro...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includ...
3-D tissue cytometry has been successfully developed to optimize biological specimen throughput allo...
Three-dimensional (3-D) tissue imaging offers substantial benefits to a wide range of biomedical inv...
This thesis presents the ongoing technological development of high throughput 3-D tissue cytometry.a...
A high throughput 3D image cytometer have been developed that improves imaging speed by an order of ...
Optical microscopy is an imaging technique that allows morphological mapping of intracellular struct...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
In recent years, the advances in tissue engineering and regenerative medicine have resulted in intro...
High-throughput optical sensing and imaging instrument for capture and analysis of cells are among t...
A holistic understanding of tissue and organ structure and function requires the detection of molecu...
The advent of personalized medicine has driven the development of novel approaches for obtaining det...
We develop a high-throughput technique to relate positions of individual cells to their three-dimens...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
The current image speed of multi-photon microscopy is not enough for fast biological processes such ...
MasterThis thesis describes the implementation and characterization of a high-speed two-photon micro...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2007.Includ...
3-D tissue cytometry has been successfully developed to optimize biological specimen throughput allo...
Three-dimensional (3-D) tissue imaging offers substantial benefits to a wide range of biomedical inv...
This thesis presents the ongoing technological development of high throughput 3-D tissue cytometry.a...
A high throughput 3D image cytometer have been developed that improves imaging speed by an order of ...
Optical microscopy is an imaging technique that allows morphological mapping of intracellular struct...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2014.Ca...
In recent years, the advances in tissue engineering and regenerative medicine have resulted in intro...
High-throughput optical sensing and imaging instrument for capture and analysis of cells are among t...
A holistic understanding of tissue and organ structure and function requires the detection of molecu...
The advent of personalized medicine has driven the development of novel approaches for obtaining det...
We develop a high-throughput technique to relate positions of individual cells to their three-dimens...
Quantitative three dimensional maps of cellular structure, activity and function provide the key to ...
The current image speed of multi-photon microscopy is not enough for fast biological processes such ...
MasterThis thesis describes the implementation and characterization of a high-speed two-photon micro...