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Detection of incipient decay in tree stems with sonic tomography after wounding and fungal inoculation
Authors:Giuliana Deflorio  Siegfried Fink  Francis W M R Schwarze
Institution:(1) Forest Botany Institute, University of Freiburg, Bertoldstrasse 17 Freiburg i.Brsg, 79085 Freiburg, Germany;(2) Swiss Federal Laboratories for Material Testing and Research (EMPA), Wood Laboratory, Lerchenfeldstr. 5, 9014 St. Gallen, Switzerland
Abstract:Picus® acoustic tomography was used to map incipient stages of fungal decay in the sapwood of standing Douglas fir, beech, oak, and sycamore trees 2, 16, and 27 months after wounding and artificial inoculation with brown-, soft-, and white-rot decay fungi. Some wood properties were additionally measured before (velocity of sound) and after (moisture content, weight loss, and density of sound, discoloured and/or decayed wood) tree felling (28 months). With the exception of Trametes versicolor in sycamore, wood decay was not evident from the tomograms in any host-fungus combination. In comparison to measurements after two months, the device recorded a reduction in sound velocity in some host-fungus combinations after 16 and 27 months. In beech, there was a significant reduction in sound velocity after inoculation with Ganoderma applanatum, Kretzschmaria deusta, and Trametes versicolor. Similarly, a reduction in sound velocity was recorded in sycamore inoculated with Kretzschmaria deusta and Trametes versicolor. In all these combinations, losses in wood weight and wood density were also found. Results showed that the detection of incipient fungal decay at the periphery of tree stems needs to be improved such that tomograms of the Picus® acoustic tomograph are capable of identifying decay progressing from the sapwood inwards.
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