Meemon Panomsak, Yao Jianing, Chu Ying-Ju, Zvietcovich Fernando, Parker Kevin J, Rolland Jannick P
Opt Lett. 2016 Mar 1;41(5):847-50. doi: 10.1364/OL.41.000847.
Elastography is a technique that measures and maps the local elastic property of biological tissues. Aiming for detection of micron-scale inclusions, various optical elastography, especially optical coherence elastography (OCE), techniques have been investigated over the past decade. The challenges of current optical elastography methods include the decrease in elastographic resolution as compared with its parent imaging resolution, the detection sensitivity and accuracy, and the cost of the overall system. Here we report for the first time, we believe, on an elastography technique-crawling wave optical coherence elastography (CRW-OCE)-which significantly lowers the requirements on the imaging speed and opens the path to high-resolution and high-sensitivity OCE at relatively low cost. Methods of crawling wave excitation, data acquisition, and crawling wave tracking are presented.
弹性成像技术是一种测量和绘制生物组织局部弹性特性的技术。为了检测微米级内含物,在过去十年中,人们对各种光学弹性成像技术,尤其是光学相干弹性成像(OCE)技术进行了研究。当前光学弹性成像方法面临的挑战包括与母成像分辨率相比弹性成像分辨率的降低、检测灵敏度和准确性以及整个系统的成本。我们相信,在此首次报告一种弹性成像技术——爬行波光学相干弹性成像(CRW-OCE),该技术显著降低了对成像速度的要求,并以相对较低的成本开辟了通往高分辨率和高灵敏度OCE的道路。本文介绍了爬行波激发、数据采集和爬行波跟踪的方法。