Zhang Xiaoming, Kinnick Randall R, Greenleaf James F
Department of Physiology and Biomedical Engineering, Mayo Clinic College of Medicine, Rochester, MN 55095, USA.
Ultrasonics. 2009 Jan;49(1):26-30. doi: 10.1016/j.ultras.2008.04.003. Epub 2008 Apr 14.
Air-coupled ultrasound stimulated optical vibrometry is proposed to generate and detect the resonances of a rubber tube in air. Amplitude-modulated (AM) focused ultrasound radiation force from a broadband air-coupled ultrasound transducer with center frequency of 500 kHz is used to generate a low frequency vibration in the tube. The resonances of several modes of the tube are measured with a laser vibrometer of 633 nm wavelength. A wave propagation approach is used to calculate the resonances of the tube from its known material properties. Theoretical and experimental resonance frequencies agree within 5%. This method may be useful in measuring the in vitro elastic properties of arteries from the resonance measurements in air. It may also be helpful to better understand the coupling effects of the surrounding tissue and interior blood on the vessel wall by measuring the resonance of the vessel in vitro and in vivo.
提出了空气耦合超声激发光学振动测量法来产生并检测空气中橡胶管的共振。来自中心频率为500 kHz的宽带空气耦合超声换能器的调幅(AM)聚焦超声辐射力用于在管中产生低频振动。用波长为633 nm的激光振动计测量管的几种模式的共振。采用波传播方法根据管的已知材料特性计算其共振。理论和实验共振频率在5%以内相符。该方法可能有助于通过在空气中的共振测量来测量动脉的体外弹性特性。通过在体外和体内测量血管的共振,对于更好地理解周围组织和内部血液对血管壁的耦合效应也可能有帮助。