Intravital microscopy is increasingly used to visualize and quantitate dynamic biological processes at the (sub)cellular level in live animals. By visualizing tissues through imaging windows, individual cells (e.g., cancer, host, or stem cells) can be tracked and studied over a time-span of days to months. Several imaging windows have been developed to access tissues including the brain, superficial fascia, mammary glands, liver, kidney, pancreas, and small intestine among others. Here, we review the development of imaging windows and compare the most commonly used long-term imaging windows for cancer biology: the cranial imaging window, the dorsal skin fold chamber, the mammary imaging window, and the abdominal imaging window. Moreover, we...
Until recently, the idea of observing life deep within the tissues of a living mouse, at a resolutio...
Recently, light microscopy-based techniques have been extended to live mammalian models leading to t...
In the last decade, intravital microscopy of breast tumors in mice and rats at single-cell resolutio...
High-resolution intravital microscopy through imaging windows has become an indispensable technique ...
Intravital microscopy (IVM) enables visualization of cell movement, division, and death at single-ce...
International audienceIntravital microscopy (IVM) is a powerful technique that enables imaging of in...
Intravital imaging can provide unique insights into cancer biology and has been particularly useful ...
The ability to microscopically image diseased or damaged tissue throughout a longitudinal study in l...
Cell dynamics in subcutaneous and breast tumors can be studied through conventional imaging windows ...
Tumors contain many components in addition to the cancer cells, including blood vessels, fibroblasts...
Radiation therapy is an effective cancer treatment used in over 50% of cancer patients. Preclinical ...
Homeostasis of tissues is tightly regulated at the cellular, tissue and organismal level. Interestin...
Homeostasis of tissues is tightly regulated at the cellular, tissue and organismal level. Interestin...
Tissue engineering is a promising branch of regenerative medicine, but its clinical application rema...
The rodent dorsal window chamber is a widely used in vivo model of the microvasculature. The model c...
Until recently, the idea of observing life deep within the tissues of a living mouse, at a resolutio...
Recently, light microscopy-based techniques have been extended to live mammalian models leading to t...
In the last decade, intravital microscopy of breast tumors in mice and rats at single-cell resolutio...
High-resolution intravital microscopy through imaging windows has become an indispensable technique ...
Intravital microscopy (IVM) enables visualization of cell movement, division, and death at single-ce...
International audienceIntravital microscopy (IVM) is a powerful technique that enables imaging of in...
Intravital imaging can provide unique insights into cancer biology and has been particularly useful ...
The ability to microscopically image diseased or damaged tissue throughout a longitudinal study in l...
Cell dynamics in subcutaneous and breast tumors can be studied through conventional imaging windows ...
Tumors contain many components in addition to the cancer cells, including blood vessels, fibroblasts...
Radiation therapy is an effective cancer treatment used in over 50% of cancer patients. Preclinical ...
Homeostasis of tissues is tightly regulated at the cellular, tissue and organismal level. Interestin...
Homeostasis of tissues is tightly regulated at the cellular, tissue and organismal level. Interestin...
Tissue engineering is a promising branch of regenerative medicine, but its clinical application rema...
The rodent dorsal window chamber is a widely used in vivo model of the microvasculature. The model c...
Until recently, the idea of observing life deep within the tissues of a living mouse, at a resolutio...
Recently, light microscopy-based techniques have been extended to live mammalian models leading to t...
In the last decade, intravital microscopy of breast tumors in mice and rats at single-cell resolutio...