Three-dimensional imaging of neurons by confocal fluorescence microscopy
- 1 July 1989
- journal article
- research article
- Published by Wiley in Journal of Microscopy
- Vol. 155 (1), 15-26
- https://doi.org/10.1111/j.1365-2818.1989.tb04296.x
Abstract
The study of neuronal architecture by means of confocal laser microscopy is described. Optical serial sectioning has been performed on whole-mount specimens, and the resulting stacks of digitally recorded images have been processed with the help of a computer. Specimen preparation is described, as well as the instrument and its performance. It is shown that the limits in photometric quality are set by photon quantum noise. As both light absorption and scattering was low in the studied specimens, the maximum scanning depth was limited mainly by the working distance of the objectives. Compared with traditional methods, confocal microscopy in combination with digital image processing has the following advantages: (1) a truly three-dimensional (3-D) reconstruction is obtained, (2) the specimen remains intact, (3) a higher resolution can be obtained, (4) the process is automated and less time-consuming and (5) various kinds of data processing are possible.Keywords
This publication has 16 references indexed in Scilit:
- A confocal laser microscope scanner for digital recording of optical serial sectionsJournal of Microscopy, 1989
- Confocal scanning laser microscopy, a new technique used in an embryological study of Dactylorhiza maculata (Orchidaceae)Nordic Journal of Botany, 1988
- Confocal imaging for 3-D digital microscopyApplied Optics, 1987
- Transmitters, membrane properties and network circuitry in the control of locomotion in lampreyTrends in Neurosciences, 1987
- Three-dimensional microscopy using a confocal laser scanning microscopeOptics Letters, 1985
- Tandem scanning reflected light microscopy of internal features in whole bone and tooth samplesJournal of Microscopy, 1983
- Mechanical scan system for microscopic applicationsReview of Scientific Instruments, 1983
- Three-dimensional architecture of a polytene nucleusNature, 1983
- Confocal scanning light microscopy with high aperture immersion lensesJournal of Microscopy, 1979
- Scanning Laser Microscope for Biological InvestigationsApplied Optics, 1971