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B Klapthor

Publications and source records attributed to B Klapthor.

2 recordsLinked to original sources

Evidence for characteristic vascular patterns in solid tumours: quantitative studies using corrosion casts.

The vascular architecture of four different tumour cell lines (CaX, CaNT, SaS, HEC-1B) transplanted subcutaneously in mice was examined by means of microvascular corrosion casting in order to determine whether there is a characteristic vascular pattern for different tumour types and whether it differs significantly from two normal tissues, muscle and gut. Three-dimensional reconstructed scanning electron microscope images were used for quantitative measurements. Vessel diameters, intervessel and interbranch distances showed large differences between tumour types, whereas the branching angles were similar. In all tumours, the variability of the vessel diameters was significantly higher than in normal tissue. The quantitative data provide strong evidence for a characteristic vascular network determined by the tumour cells themselves.

Adenocarcinoma↗

A simple and accurate method for 3-D measurements in microcorrosion casts illustrated with tumour vascularization.

Microvascular corrosion casting is an established method to investigate vascular patterns of nearly all organs. Trying to evaluate these specimens quantitatively using native scanning electron microscope (SEM) pictures always implied a big error, because the information of depth cannot be taken into account. However, SEM stereo pairs allow for exact measurements. Tumour microcorrosion casts were used to demonstrate the feasibility of this 3-D quantification method. The information of depth was calculated for each measuring point using the parallax. From the resulting coordinates the intervascular distances, the interbranching distances as well as the interbranching angles were determined. We found significant differences between all investigated tumours. Reproducibility tests and tests for the greatest error possibilities resulted in a maximum deviation of 2.5% to be expected. Consequently this method is suitable for all application ranges of microvascular corrosion casting as a quantitative determination method.

Animals↗