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Detection of trabecular bones' axis for accurate diagnosis of osteoporosis by analyzing scattered ultrasonic waves

机译:通过分析散射超声波检测小梁骨轴以准确诊断骨质疏松症

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Describes the first successful estimation of both the axis direction and the interval of trabecular bone for human heel in-vivo. This is needed to estimate the thickness and the interval of trabecular bone analyzing the ultrasonic scattered by the cancellous bone. When trabecular bone axis is normal to the detecting plane, the significant peaked signals are detected in frequency domain. The frequency, where the significant peaked signals can be detected, is varied with the scattering angle and can be calculated by the scattering function. The transmitting transducer (center frequency; 2.25 MHz/diameter; 1 inch) and the receiving transducer (center frequency; 2.25 MHz/diameter; 0.5 inch) are used in the water tank. The pulsed burst electric signal drives the transmitting transducer, and the movable receiving transducer detects the ultrasound scattered by the specimen. The proposed procedure is applied for some human heels in-vivo and the estimated values of the interval are about 1.6 mm. This value is reasonable for human heels.
机译:描述了人脚后跟体内小梁骨的轴方向和间隔的首次成功估算。这是估计小梁骨的厚度和间隔的必要条件,以分析由松质骨散射的超声。当小梁骨轴垂直于检测平面时,会在频域中检测到明显的峰值信号。可以检测到明显峰值信号的频率随散射角而变化,并且可以通过散射函数进行计算。水箱中使用发射传感器(中心频率; 2.25 MHz /直径; 1英寸)和接收传感器(中心频率; 2.25 MHz /直径; 0.5英寸)。脉冲的脉冲电信号驱动发射换能器,而可移动的接收换能器检测被样本散射的超声波。拟议的程序适用于一些人体内脚跟,间隔的估计值约为1.6毫米。该值对于人的脚后跟是合理的。

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