Compton scrattering study using ludlum configuration for tissue-equivalent phantom material made from soy-lignin bonded Rhizophora spp. particleboard

Siti Hajar Zuber, and Muhammad Fahmi Rizal Abdul Hadi, and Oluwafemi, Samson Damilola and Mohd Fahmi Mohd Yusof, and Nurul Ab. Aziz Hashikin, and Mohd Zahri Abdul Aziz, and Rokiah Hashim, and Norriza Mohd Isa, (2022) Compton scrattering study using ludlum configuration for tissue-equivalent phantom material made from soy-lignin bonded Rhizophora spp. particleboard. Sains Malaysiana, 51 (6). pp. 1895-1904. ISSN 0126-6039

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Official URL: https://www.ukm.my/jsm/malay_journals/jilid51bil6_...

Abstract

Rhizophora spp. particleboards were prepared at approximately (20.0 × 20.0 × 1.0) cm3 and at 1.0 g·cm-3 target density. The mass attenuation coefficient of the soy-lignin bonded Rhizophora spp. particleboard was measured by Compton scattering using Ludlum configuration utilizing the Cesium-137 (137Cs). Monte Carlo (MC) GATE code was employed to simulate the scattering by using the same set-up. Compton scattering results from both experimental and simulation methods were compared with XCOM value of water. Half value layer (HVL) and mean free path (MFP) were calculated and analyzed. For Compton scattering method in comparison to XCOM value of water, both non-coated and coated samples showed a statistically non-significant value with p-value more than 0.05. The overall results suggested that the mass attenuation coefficient, HVL and MFP of soy-lignin bonded Rhizophora spp. particleboard based on Compton scattering study is within close agreement with XCOM value for water, exhibiting its potential as phantom materials.

Item Type:Article
Keywords:Compton scattering; Monte Carlo simulation; Rhizophora spp.; Soy-lignin bonded; Tissue-equivalent phantom
Journal:Sains Malaysiana
ID Code:19761
Deposited By: ms aida -
Deposited On:13 Sep 2022 03:39
Last Modified:19 Sep 2022 07:08

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