Literature DB >> 7577752

How thick is your section? The influence of section thickness on DNA-cytometry on histological sections.

A Gschwendtner1, T Mairinger.   

Abstract

The exact determination of the thickness of paraffin sections used for DNA cytometry on histological slides is an inevitable prerequisite to obtain reliable and reproducible results. Although section thickness can be measured with great precision and accuracy using highly specialized equipment (e.g. confocal laser microscope, microinterferometer), their cost restricts availability for many laboratories. This paper describes a simple method to determine the actual thickness of routinely processed paraffin sections used for DNA cytometry employing standard laboratory equipment. To achieve this goal the given section is divided into two parts. One part is used for DNA quantitation whereas the other is re-embedded and resectioned orthogonally through its original thickness. The thickness of the re-embedded section can now easily be determined with any standard length measurement device available in light microscopy. Recalculation of the genuine DNA-content out of the measured fractioned nuclei with commercial software based on the section thickness determined by this method generated histograms with a 2c equivalent peak, whereas correction based on the microtome settings resulted in significant deviations as demonstrated on rat liver tissue.

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Year:  1995        PMID: 7577752

Source DB:  PubMed          Journal:  Anal Cell Pathol        ISSN: 0921-8912            Impact factor:   2.916


  2 in total

1.  Technical Note: Measuring the thickness of histological sections by detecting fluorescence intensity of embedding foam.

Authors:  David Ibsen Dadash-Khanlou; Benedicte Heegaard; Henrik Holten-Rossing; Thomas Hartvig Lindkær Jensen
Journal:  J Pathol Inform       Date:  2022-08-01

2.  Practicable methods for histological section thickness measurement in quantitative stereological analyses.

Authors:  Cyrill Matenaers; Bastian Popper; Alexandra Rieger; Rüdiger Wanke; Andreas Blutke
Journal:  PLoS One       Date:  2018-02-14       Impact factor: 3.240

  2 in total

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