Department of Mechanical Engineering, The University of Texas at Austin, Austin, TX 78712, USA.
Phys Med Biol. 2012 Aug 7;57(15):4871-84. doi: 10.1088/0031-9155/57/15/4871. Epub 2012 Jul 13.
A high pulse repetition frequency ultrasound system for an ex vivo measurement of mechanical properties of an animal crystalline lens was developed and validated. We measured the bulk displacement of laser-induced microbubbles created at different positions within the lens using nanosecond laser pulses. An impulsive acoustic radiation force was applied to the microbubble, and spatio-temporal measurements of the microbubble displacement were assessed using a custom-made high pulse repetition frequency ultrasound system consisting of two 25 MHz focused ultrasound transducers. One of these transducers was used to emit a train of ultrasound pulses and another transducer was used to receive the ultrasound echoes reflected from the microbubble. The developed system was operating at 1 MHz pulse repetition frequency. Based on the measured motion of the microbubble, Young's moduli of surrounding tissue were reconstructed and the values were compared with those measured using the indentation test. Measured values of Young's moduli of four bovine lenses ranged from 2.6 ± 0.1 to 26 ± 1.4 kPa, and there was good agreement between the two methods. Therefore, our studies, utilizing the high pulse repetition frequency ultrasound system, suggest that the developed approach can be used to assess the mechanical properties of ex vivo crystalline lenses. Furthermore, the potential of the presented approach for in vivo measurements is discussed.
我们开发并验证了一种用于离体测量动物晶状体机械性能的高脉冲重复频率超声系统。我们使用纳秒激光脉冲测量了在晶状体不同位置产生的激光诱导微泡的整体位移。向微泡施加脉冲式声辐射力,并使用由两个 25 MHz 聚焦超声换能器组成的定制高脉冲重复频率超声系统评估微泡位移的时空测量结果。其中一个换能器用于发射一连串超声脉冲,另一个换能器用于接收来自微泡的超声回波。所开发的系统工作在 1 MHz 的脉冲重复频率下。基于微泡的运动测量结果,重建了周围组织的杨氏模量,并将其与压痕试验测量的值进行了比较。四个牛晶状体的杨氏模量测量值范围为 2.6 ± 0.1 至 26 ± 1.4 kPa,两种方法之间具有良好的一致性。因此,我们的研究利用高脉冲重复频率超声系统表明,所开发的方法可用于评估离体晶状体的机械性能。此外,还讨论了所提出方法用于体内测量的潜力。