Taki Hirofumi, Nagatani Yoshiki, Matsukawa Mami, Kanai Hiroshi, Izumi Shin-Ichi
Graduate School of Biomedical Engineering, Tohoku University, Sendai 980-8575, Japan.
Department of Electronics, Kobe City College of Technology, Kobe 651-2194, Japan.
J Acoust Soc Am. 2017 Oct;142(4):2322. doi: 10.1121/1.5008502.
Ultrasound signals that pass through cancellous bone may be considered to consist of two longitudinal waves, which are called fast and slow waves. Accurate decomposition of these fast and slow waves is considered to be highly beneficial in determination of the characteristics of cancellous bone. In the present study, a fast decomposition method using a wave transfer function with a phase rotation parameter was applied to received signals that have passed through bovine bone specimens with various bone volume to total volume (BV/TV) ratios in a simulation study, where the elastic finite-difference time-domain method is used and the ultrasound wave propagated parallel to the bone axes. The proposed method succeeded to decompose both fast and slow waves accurately; the normalized residual intensity was less than -19.5 dB when the specimen thickness ranged from 4 to 7 mm and the BV/TV value ranged from 0.144 to 0.226. There was a strong relationship between the phase rotation value and the BV/TV value. The ratio of the peak envelope amplitude of the decomposed fast wave to that of the slow wave increased monotonically with increasing BV/TV ratio, indicating the high performance of the proposed method in estimation of the BV/TV value in cancellous bone.
穿过松质骨的超声信号可被视为由两个纵波组成,这两个纵波被称为快波和慢波。准确分解这些快波和慢波被认为对确定松质骨的特性非常有益。在本研究中,在一项模拟研究中,将一种使用具有相位旋转参数的波传递函数的快速分解方法应用于已穿过具有不同骨体积与总体积(BV/TV)比的牛骨标本的接收信号,该模拟研究采用弹性时域有限差分法,且超声波平行于骨轴传播。所提出的方法成功地准确分解了快波和慢波;当标本厚度在4至7毫米范围内且BV/TV值在0.144至0.226范围内时,归一化残余强度小于-19.5分贝。相位旋转值与BV/TV值之间存在很强的关系。分解后的快波的峰值包络幅度与慢波的峰值包络幅度之比随着BV/TV比的增加而单调增加,表明所提出的方法在估计松质骨的BV/TV值方面具有高性能。