Multiphoton intravital microscopy of rodents

Tissues are heterogeneous with respect to cellular and non-cellular components and in the dynamic interactions between these elements. To study the behaviour and fate of individual cells in these complex tissues, intravital microscopy (IVM) techniques such as multiphoton microscopy have been develop...

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Veröffentlicht in:Nature Reviews Methods Primers 2022-01, Vol.2 (1), Article 89
Hauptverfasser: Scheele, Colinda L G J, Herrmann, David, Yamashita, Erika, Celso, Cristina Lo, Jenne, Craig N, Oktay, Maja H, Entenberg, David, Friedl, Peter, Weigert, Roberto, Meijboom, Franck L B, Ishii, Masaru, Timpson, Paul, van Rheenen, Jacco
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Sprache:eng
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Zusammenfassung:Tissues are heterogeneous with respect to cellular and non-cellular components and in the dynamic interactions between these elements. To study the behaviour and fate of individual cells in these complex tissues, intravital microscopy (IVM) techniques such as multiphoton microscopy have been developed to visualize intact and live tissues at cellular and subcellular resolution. IVM experiments have revealed unique insights into the dynamic interplay between different cell types and their local environment, and how this drives morphogenesis and homeostasis of tissues, inflammation and immune responses, and the development of various diseases. This Primer introduces researchers to IVM technologies, with a focus on multiphoton microscopy of rodents, and discusses challenges, solutions and practical tips on how to perform IVM. To illustrate the unique potential of IVM, several examples of results are highlighted. Finally, we discuss data reproducibility and how to handle big imaging data sets.
ISSN:2662-8449
2662-8449
DOI:10.1038/s43586-022-00168-w