| Literature DB >> 28210188 |
Chao Tian1, Ting Feng2, Cheng Wang3, Shengchun Liu4, Qian Cheng5, David E Oliver6, Xueding Wang7, Guan Xu8.
Abstract
Most current photoacoustic imaging (PAI) systems employ piezoelectric transducers to receive photoacoustic signals, which requires coupling medium to facilitate photoacoustic wave propagation and are not favored in many applications. Here, we report an all-optical non-contact PAI system based on a commercial heterodyne interferometer working at 1550 nm. The interferometer remotely detects ultrasound-induced surface vibration and does not involve any physical contact with the sample. The theoretically predicated and experimentally measured noise equivalent detection limits of the optical sensor are about 4.5 and 810 Pa over 1.2 MHz bandwidth. Using a raster-scan PAI system equipped with the non-contact design, stereotactic boundaries of an artificial tumor in a pig brain were accurately delineated. The non-contact design also enables the tomographic PAI of biological tissue samples in a non-invasive manner. The preliminary results and analyses reveal that the heterodyne interferometer-based non-contact PAI system holds good potential in biomedical imaging.Entities:
Keywords: Biophotonics; interferometry; photoacoustic imaging; remote sensing
Year: 2016 PMID: 28210188 PMCID: PMC5305171 DOI: 10.1109/JSEN.2016.2611569
Source DB: PubMed Journal: IEEE Sens J ISSN: 1530-437X Impact factor: 3.301