通过透射超声光谱法测量牛松质骨的超声参数作为孔隙率范围内频率的函数

IF 1.3 Q3 ACOUSTICS Acoustics (Basel, Switzerland) Pub Date : 2022-05-03 DOI:10.3390/acoustics4020025
A. Karki, Junru Wu
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引用次数: 0

摘要

探讨超声参数(衰减系数和速度)与牛松质骨孔隙度的关系,了解超声诊断骨质疏松相关骨折风险的可能性。采用透透射超声光谱法对21个牛胫骨松质骨样品进行了超声参数的体外测定。三种不同中心频率的换能器用于覆盖1.0-7.8 MHz之间的宽诊断频率范围。孔隙度与归一化衰减系数(nATTN)和归一化宽带衰减系数(nBUA)的非线性关系可以用三阶多项式拟合很好地描述,而孔隙度与相速度(UV)的线性相关系数分别为- 0.93、- 0.89和- 0.83,分别为2.25、5.00和7.50 MHz。结果表明,在孔隙率范围内,超声参数在孔隙率最低的骨样品中达到最大值,在孔隙率较大的骨样品中减小。超声参数的空间变化是由不均匀的孔径分布引起的,在同一骨标本的五个不同位置进行了检查。然而,在这些频率下,超声参数与孔隙率的关系不受影响。
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Measurement of Ultrasound Parameters of Bovine Cancellous Bone as a Function of Frequency for a Range of Porosities via Through-Transmission Ultrasonic Spectroscopy
The relationship between ultrasonic parameters (attenuation coefficients and velocity) and bone porosity in bovine cancellous bone is explored to understand the possibility of fracture risk diagnosis associated with osteoporosis by applying ultrasound. In vitro measurements of ultrasonic parameters on twenty-one bovine cancellous bone samples from tibia were conducted, using ultrasonic spectroscopy in the through-transmission mode. Transducers of three different center frequencies were used to cover a wide diagnostic frequency range between 1.0–7.8 MHz. The nonlinear relationship of porosity and normalized attenuation coefficient (nATTN) and normalized broadband attenuation coefficient (nBUA) were well described by a third-order polynomial fit, whereas porosity and the phase velocity (UV) were found to be negatively correlated with the linear correlation coefficients of −0.93, −0.89 and −0.83 at 2.25, 5.00 and 7.50 MHz, respectively. The results imply that the ultrasound parameters attain maximum values for the bone sample with the lowest porosity, and then decrease for samples with greater porosity for the range of porosities in our samples for all frequencies. Spatial variation in the ultrasound parameters was found to be caused by non-uniform pore size distribution, which was examined at five different locations within the same bone specimen. However, it did not affect the relationship of ultrasound parameters and porosity at these frequencies.
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3.70
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11 weeks
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