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This book provides an essential overview of existing
state-of-the-art quantitative imaging methodologies and protocols
(intensity-based ratiometric and FLIM/ PLIM). A variety of
applications are covered, including multi-parametric quantitative
imaging in intestinal organoid culture, autofluorescence imaging in
cancer and stem cell biology, Ca2+ imaging in neural ex vivo tissue
models, as well as multi-parametric imaging of pH and viscosity in
cancer biology. The current state-of-the-art of 3D tissue models
and their compatibility with live cell imaging is also covered.
This is an ideal book for specialists working in tissue engineering
and designing novel biomaterial.
Biological O2 sensing probes and measurement techniques were
first introduced in the late 80s. In the last 3-5 years they have
undergone major development that have made them available and
affordable for a broad range of applications in various disciplines
of the life and biomedical sciences. These new chemistries and
technologies, which are significantly different from the majority
of other fluorescence-based probes and detection techniques, have
already demonstrated their high utility. This book will provide a
systematic overview of the existing and emerging O2 sensing
technologies in their different modifications, a practical guide to
their rational selection and use, and examples of biological
applications/case studies, including details on how to set up and
conduct such experiments, troubleshoot and interpret the data.
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