Mather Melissa L, De Deene Yves, Whittaker Andrew K, Simon George P, Rutgers Rulande, Baldock Clive
Centre for Medical, Health and Environmental Physics, Queensland University of Technology, Brisbane, Australia.
Phys Med Biol. 2002 Dec 21;47(24):4397-409. doi: 10.1088/0031-9155/47/24/307.
Ultrasonic speed of propagation and attenuation were investigated as a function of absorbed radiation dose in PAG and MAGIC polymer gel dosimeters. Both PAG and MAGIC gel dosimeters displayed a dependence of ultrasonic parameters on absorbed dose with attenuation displaying significant changes in the dose range investigated. The ultrasonic attenuation dose sensitivity at 4 MHz in MAGIC gels was determined to be 4.7 +/- 0.3 dB m(-1) Gy(-1) and for PAG 3.9 +/- 0.3 dB m(-1) Gy(-1). Ultrasonic speed dose sensitivities were 0.178 +/- 0.006 m s(-1) Gy(-1) for MAGIC gel and -0.44 +/- 0.02 m s(-1) Gy(-1) for PAG. Density and compressional elastic modulus were investigated to explain the different sensitivities of ultrasonic speed to radiation for PAG and MAGIC gels. The different sensitivities were found to be due to differences in the compressional elastic modulus as a function of dose for the two formulations. To understand the physical phenomena underlying the increase in ultrasonic attenuation with dose, the viscoelastic properties of the gels were studied. Results suggest that at ultrasonic frequencies, attenuation in polymer gel dosimeters is primarily due to volume viscosity. It is concluded that ultrasonic attenuation significantly increases with absorbed dose. Also, the ultrasonic speed in polymer gel dosimeters is affected by changes in dosimeter elastic modulus that are likely to be a result of polymerization. It is suggested that ultrasound is a sufficiently sensitive technique for polymer gel dosimetry.
研究了PAG和MAGIC聚合物凝胶剂量计中超声传播速度和衰减与吸收辐射剂量之间的函数关系。PAG和MAGIC凝胶剂量计的超声参数均显示出对吸收剂量的依赖性,在所研究的剂量范围内,衰减呈现出显著变化。MAGIC凝胶在4 MHz时的超声衰减剂量灵敏度确定为4.7±0.3 dB m(-1) Gy(-1),PAG为3.9±0.3 dB m(-1) Gy(-1)。MAGIC凝胶的超声速度剂量灵敏度为0.178±0.006 m s(-1) Gy(-1),PAG为-0.44±0.02 m s(-1) Gy(-1)。研究了密度和压缩弹性模量,以解释PAG和MAGIC凝胶超声速度对辐射的不同灵敏度。发现不同的灵敏度是由于两种配方的压缩弹性模量随剂量的差异所致。为了理解超声衰减随剂量增加的物理现象,研究了凝胶的粘弹性特性。结果表明,在超声频率下,聚合物凝胶剂量计中的衰减主要是由于体积粘度。得出的结论是,超声衰减随吸收剂量显著增加。此外,聚合物凝胶剂量计中的超声速度受剂量计弹性模量变化的影响,而弹性模量的变化可能是聚合作用的结果。建议超声是一种对聚合物凝胶剂量测定足够灵敏的技术。