Cite as: Cold Spring Harb. Protoc.; 2007; doi:10.1101/pdb.prot4792
| Protocol |
1Stowers Institute for Medical Research, Kansas City, MO 64110, USA
2Montana State University, Department of Cell Biology and Neuroscience, Bozeman, MT 59717, USA
3Corresponding author (pmk{at}stowers-institute.org)
INTRODUCTION
Intravital imaging of embryogenesis has the potential to provide valuable information on cell proliferation, cell shape changes, and cell migratory behaviors. However, most embryo model systems require a temperature-controlled environment. Several expensive commercially available temperature control devices have emerged, including microscope stages surrounded by custom-fit Plexiglas boxes, heated plates for culture dishes, and objective warmers for water-immersion lenses, that strictly control temperature and, in some cases, help control local gas mixtures. This protocol describes an easy-to-assemble, cost-effective, custom-made cardboard box and incubator, adaptable to each users specifications and microscope set-up. The cardboard box fits around the microscope, primarily the stage area, to assist in maintaining a prescribed temperature near the microscope stage. Warmed air, blown into the box enclosure from an incubator, circulates around the stage. The heated incubation box maintains a set temperature with minimal fluctuations and has been tested and utilized for studies of chick, mouse, and zebrafish embryogenesis.
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