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Ultrasound method and apparatus for evaluating, in vivo, bone conditions

机译:用于在体内评估骨骼状况的超声方法和装置

摘要

A system for analyzing bone conditions, particularly (but not solely) for diagnosing osteoporosis and periodontal bone disease in humans. An ultrasonic signal (generally a pulse) having at least two components of distinguishable waveshape or frequency content in a range from about 100 kHz to about 3 MHz is launched transdermally into the patient, through a bony member such as the patella, and received at the other side. The transmission through the bony member and surrounding soft tissue varies in both amplitude and phase as a function of frequency, and the velocity of transmission varies between the bony member and the soft tissue. A variety of techniques are employed for analyzing the transmission of the ultrasonic signal to assess bone condition. These include at least: comparing the transit times through the bony member of energy in a first frequency range and energy in a second frequency; evaluating the transfer function through the bony member (i.e., gain and/or phase) of the portion of the signal travelling through the bony member; evaluating a gain function of the power spectrum of the portion of the signal transmitted through the bone, including the evaluation of the area under such gain function and/or the magnitude and location of its peak amplitude. The velocity of ultrasound energy through the bony member also may be deduced by determining the duration of travel of the ultrasound signal through the bony member and soft tissue and adjusting such composite velocity by a soft tissue normalization factor. Such information is then compared to a data base of prior measurements for the same patient and/or for the population at large, to determine a probability that the patient's bone condition is abnormal.
机译:一种用于分析骨骼状况的系统,特别是(但不仅限于)用于诊断人的骨质疏松症和牙周骨疾病的系统。具有至少两个可区分的波形或频率含量在从大约100 kHz到大约3 MHz范围内的分量的超声信号(通常是脉冲)通过骨构件(例如骨)经皮进入患者体内,并被接收到。另一边。通过骨构件和周围软组织的传输在振幅和相位上均随频率变化,并且在骨构件和软组织之间的传输速度也变化。采用了多种技术来分析超声信号的传输以评估骨骼状况。这些至少包括:比较在第一频率范围内的能量和在第二频率范围内的能量通过骨构件的传播时间;通过骨构件评估传递通过骨构件的信号部分的传递函数(即增益和/或相位);评估通过骨骼传输的信号部分的功率谱的增益函数,包括评估该增益函数下的面积和/或其峰值幅度的大小和位置。通过确定穿过骨构件和软组织的超声信号的行进持续时间,并通过软组织归一化因子来调节这种复合速度,也可以推导出通过骨构件的超声能量的速度。然后,将该信息与同一患者和/或整个人群的先前测量的数据库进行比较,以确定患者的骨骼状况异常的可能性。

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