Sahlev Maya Aviv, Rivenson Yair, Meiri Amihai, Zalevsky Zeev
Bar Ilan University, Faculty of Engineering, Ramat Gan 5290002, Israel.
J Biomed Opt. 2016 Sep 1;21(9):96008. doi: 10.1117/1.JBO.21.9.096008.
Tissues are characterized by a strong scattering of visible optical radiation, which prevents one from achieving deep-tissue imaging. We propose a computational imaging technique for the inference of specific macroscopic, spatial phase distribution features of the scattering media. The spatial phase distribution is reconstructed from several defocused intensity images. We empirically demonstrate the method by reconstructing the location of two fibula chicken bones, embedded within chicken breast tissue. The suggested technique is safe, using visible laser illumination, and noninvasive. It is also cost-effective since a simple optical system is used and the images are acquired using a conventional camera, and it does not require interferometric detection as well as direct access to the object in absence of the layer.
组织的特征是对可见光学辐射有强烈散射,这使得无法实现深层组织成像。我们提出一种计算成像技术,用于推断散射介质的特定宏观空间相位分布特征。空间相位分布是从几个散焦强度图像重建的。我们通过重建嵌入鸡胸组织内的两根腓骨鸡骨的位置,从实验上证明了该方法。所提出的技术是安全的,使用可见激光照明且是非侵入性的。它还具有成本效益,因为使用了简单的光学系统,并且图像是使用传统相机采集的,并且在没有该层的情况下不需要干涉检测以及直接接触物体。