Digital holographic microscopy (DHM) has its intrinsic ability to refocusing a sample by numerically propagating an object wave from its hologram plane to its image plane. In this paper opposite-view digital holographic microscopy (OV-DHM) is demonstrated for autofocusing, namely, digitally determining the location of the image plane, and refocusing the object wave without human intervention. In OV-DHM, a specimen is illuminated from two sides in a 4π-alike configuration, and two holograms are generated and recorded by a CCD camera along two orthogonal polarization orientations. The image plane of the sample is determined by finding the minimal variation between the two object waves, and consequently refocusing is performed by propagating the waves to the image plane. Furthermore, the field of view (FOV) of OV-DHM can be extended by combining the two object waves which have an angle in-between. The proposed technique also has the potential to reduce speckle noise and out-of-focus background.

译文

数字全息显微镜(DHM)具有通过将物波从其全息图平面数字传播到其图像平面来重新聚焦样品的固有能力。在本文中,对视图数字全息显微镜(OV-DHM)进行了自动聚焦演示,即以数字方式确定图像平面的位置,并在无需人工干预的情况下重新聚焦物波。在OV-DHM中,标本从两侧以4π相似的配置进行照明,然后由CCD相机沿着两个正交的偏振方向生成并记录两个全息图。通过找到两个物波之间的最小变化来确定样本的图像平面,因此,通过将波传播到图像平面来执行重新聚焦。此外,可以通过组合在两者之间具有一定角度的两个物波来扩展OV-DHM的视场(FOV)。所提出的技术还具有减少斑点噪声和离焦背景的潜力。

+1
+2
100研值 100研值 ¥99课程
检索文献一次
下载文献一次

去下载>

成功解锁2个技能,为你点赞

《SCI写作十大必备语法》
解决你的SCI语法难题!

技能熟练度+1

视频课《玩转文献检索》
让你成为检索达人!

恭喜完成新手挑战

手机微信扫一扫,添加好友领取

免费领《Endnote文献管理工具+教程》

微信扫码, 免费领取

手机登录

获取验证码
登录