Evaluation of incense-resinous wood formation in agarwood (Aquilaria malaccensis Lam.) using sonic tomography

Authors

  • Nadya Putri Department of Forest Product, Faculty of Forestry, Bogor Agricultural University (IPB), Kampus IPB Darmaga, Bogor, Indonesia
  • Lina Karlinasari Department of Forest Product, Faculty of Forestry, Bogor Agricultural University (IPB), Kampus IPB Darmaga, Bogor, Indonesia
  • Maman Turjaman Forestry Research and Development Agency, Ministry of Forestry Republic of Indonesia, Bogor, Indonesia
  • Imam Wahyudi Department of Forest Product, Faculty of Forestry, Bogor Agricultural University (IPB), Kampus IPB Darmaga, Bogor, Indonesia
  • Dodi Nandika Department of Forest Product, Faculty of Forestry, Bogor Agricultural University (IPB), Kampus IPB Darmaga, Bogor, Indonesia

Keywords:

Agarwood, Deteriorated zone, Sonic tomography, Sound waves

Abstract

Incense-resinous wood of agarwood is a high-value non-timber forest product found in the trunk or branches of Aquliaria and Gyrinops species. Incense-resinous wood of agarwood is formed as a response to tree damage caused by wounding or fungal attack. Detection of such wood in trees has generally been carried out based on natural signs such as dark spots or black marks when peeling back tree bark, but these often yield uncertain results. Sonic tomography can be applied to predict the presence of incenseresinous wood in standing trees. The objective of this study was to evaluate sonic tomography at various trunk heights based on variations in the sound velocity associated with the presence of incense- resinous wood. Ten agarwood trees (Aquilaria malaccensis) were selected for this study; five trees were artificially inoculated with Fusarium solani fungus and the other five were untreated. The results showed that the height of the measurement did not significantly affect the propagation velocity of sound waves or the tomographic results. Sonic tomography revealed that prediction of the deteriorated zone which is indicative of incense-resinous wood formation was 1.1% greater in inoculated trees than in uninoculated trees.

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Published

2017-04-30

How to Cite

Putri, Nadya, Lina Karlinasari, Maman Turjaman, Imam Wahyudi, and Dodi Nandika. 2017. “Evaluation of Incense-Resinous Wood Formation in Agarwood (Aquilaria Malaccensis Lam.) Using Sonic Tomography”. Agriculture and Natural Resources 51 (2). Bangkok, Thailand:84-90. https://li01.tci-thaijo.org/index.php/anres/article/view/240166.

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Section

Research Article