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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Ultrasonic characterization of human cancellous bone in vitro using three different apparent backscatter parameters in the frequency range 0.6-15.0 mhz
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Ultrasonic characterization of human cancellous bone in vitro using three different apparent backscatter parameters in the frequency range 0.6-15.0 mhz

机译:在频率范围0.6-15.0 mhz内使用三个不同的表观反向散射参数在体外对人松质骨进行超声表征

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Ultrasonic techniques based on measurements of apparent backscatter may provide a useful means for diagnosing bone diseases such as osteoporosis. The term "apparent" means that the backscattered signals are not compensated for the frequency-dependent effects of attenuation and diffraction. We performed in vitro apparent backscatter measurements on 23 specimens of human cancellous bone prepared from the left and right femoral heads of seven donors. A mechanical scanning system was used to obtain backscattered signals from each specimen at several sites. Scans were performed using five different ultrasonic transducers with center frequencies of 1, 2.25, 5, 7.5, and 10 MHz. The -6 dB bandwidths of these transducers covered a frequency range of 0.6-15.0 MHz. The backscattered signals were analyzed to determine three ultrasonic parameters: apparent integrated backscatter (AIB), frequency slope of apparent backscatter (FSAB), and time slope of apparent backscatter (TSAB). Linear regression analysis was used to examine the correlation of these ultrasonic parameters with five measured physical characteristics of the specimens: mass density, X-ray bone mineral density, Young''s modulus, yield strength, and ultimate strength. A total of 75 such correlations were examined (3 ultrasonic parameters times 5 specimen characteristics times 5 transducers). Good correlations were observed for AIB using the 5 MHz (r = 0.70 - 0.89) and 7.5 MHz (r = 0.75-0.93) transducers; for FSAB using the 2.25 MHz (r = 0.70 - 0.88), 5 MHz (r = 0.79 - 0.94), and 7.5 MHz (r = 0.80 - 0.92) transducers; and for TSAB using the 5 MHz (r = 0.68 - 0.89), 7.5 MHz (r = 0.75 - 0.89), and 10 MHz (r = 0.75 - 0.92) transducers.
机译:基于表观反向散射测量的超声技术可为诊断骨质疏松等骨病提供有用的手段。术语“视在”是​​指后向散射信号没有针对衰减和衍射的频率相关效应进行补偿。我们对23个人体松质骨标本进行了体外表观背向散射测量,这些标本由7个供体的左右股骨头制成。使用机械扫描系统从每个样本的多个位置获取反向散射信号。使用五个不同的超声换能器进行扫描,中心频率分别为1、2.25、5、7.5和10 MHz。这些换能器的-6 dB带宽覆盖0.6-15.0 MHz的频率范围。分析反向散射信号以确定三个超声参数:视在积分反向散射(AIB),视在反向散射的频率斜率(FSAB)和视在反向散射的时间斜率(TSAB)。线性回归分析用于检查这些超声参数与五个测得的样品物理特性的相关性:质量密度,X射线骨矿物质密度,杨氏模量,屈服强度和极限强度。总共检查了75种这种相关性(3个超声参数乘以5个样品特性乘以5个换能器)。使用5 MHz(r = 0.70-0.89)和7.5 MHz(r = 0.75-0.93)传感器观察到的AIB具有良好的相关性;对于使用2.25 MHz(r = 0.70-0.88),5 MHz(r = 0.79-0.94)和7.5 MHz(r = 0.80-0.92)传感器的FSAB;对于TSAB,使用5 MHz(r = 0.68-0.89),7.5 MHz(r = 0.75-0.89)和10 MHz(r = 0.75-0.92)传感器。

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