Optoelectronic and Laser Technology Group (GOTL), Carlos III de Madrid University, 28911 Leganes, Madrid, Spain.
Opt Lett. 2009 Dec 1;34(23):3695-7. doi: 10.1364/OL.34.003695.
An interferometric sensor based on nonmetallic silica optical fiber is presented as an ultrasonic wideband transducer for optoacoustic imaging applications. We have characterized the sensitivity of the optical fiber sensor by detecting optoacoustic signals from an optically absorbing object embedded in a tissue-mimicking phantom and have compared the signals recorded with those detected from the same phantom using an array of piezoelectric transducers. The optical fiber sensor was also scanned along the phantom surface in order to reconstruct two-dimensional optoacoustic images of the phantom. These images have been compared with images obtained using the Laser Optoacoustic Imaging System, LOIS-64B, demonstrating the feasibility of our fiber-optic sensor as a wideband ultrasonic transducer.
一种基于非金属二氧化硅光纤的干涉传感器被提出作为一种超声宽带换能器,用于光声成像应用。我们通过检测嵌入在组织模拟体中的光学吸收物体的光声信号来表征光纤传感器的灵敏度,并将记录的信号与使用压电换能器阵列从同一模拟体检测到的信号进行了比较。光纤传感器还沿着模拟体表面进行了扫描,以便重建模拟体的二维光声图像。这些图像与使用激光光声成像系统(LOIS-64B)获得的图像进行了比较,证明了我们的光纤传感器作为宽带超声换能器的可行性。