Super-resolution imaging and autofocusing via compressive-sensing-based twin-image-free holography

被引:1
作者
Zhang, Cheng [1 ,2 ]
Shi, Jisen [1 ]
Zhou, Jiaxuan [1 ]
Han, Peng [1 ]
Zhou, Hao [1 ]
Yang, Hairong [3 ]
Shen, Chuan [1 ]
Wei, Sui [1 ]
机构
[1] Anhui Univ, Key Lab Intelligent Comp & Signal Proc, Minist Educ, Hefei 230601, Anhui, Peoples R China
[2] Tsinghua Univ, Dept Elect Engn, Beijing 100084, Peoples R China
[3] Hefei Normal Univ, Dept Math, Hefei 230069, Anhui, Peoples R China
基金
中国国家自然科学基金;
关键词
super-resolution imaging; autofocusing; compressive-sensing; twin-image-free holography; DIGITAL HOLOGRAPHY; RECONSTRUCTION; MICROSCOPY; CONTRAST;
D O I
10.1088/1402-4896/ad4c20
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
This paper presents an iterative reconstruction framework for super-resolution imaging and autofocusing via compressive-sensing-based twin-image-free holography (SRI-AF-CS-TIFH) for 3D (multi-plane) object in compressed holographic imaging. In our proposed framework, in the first step, the Hough transform edge detection method is incorporated into the eigenvalue-based autofocusing algorithm (dubbed as EIG-AF-Hough) to accurately estimate the focus distances for each plane of multi-plane objects from the snapshot measurements; In the second step, nonlinear optimization is used to achieve the super-resolution reconstruction from the same snapshot measurements. Experimental results demonstrate the effectiveness of our proposed framework for achieving autofocusing and super-resolution in compressed holographic imaging simultaneously in both simulated and real holographic scenarios.
引用
收藏
页数:13
相关论文
共 34 条
[1]  
[Anonymous], 2014, "Digital holography". Digital Holography and Wavefront Sensing:Principles
[2]   Holographic tomography: techniques and biomedical applications [Invited] [J].
Balasubramani, Vinoth ;
Kus, Arkadiusz ;
Tu, Han-Yen ;
Cheng, Chau-Jern ;
Baczewska, Maria ;
Krauze, Wojciech ;
Kujawinska, Malgorzata .
APPLIED OPTICS, 2021, 60 (10) :B65-B80
[3]   Lensfree on-chip microscopy over a wide field-of-view using pixel super-resolution [J].
Bishara, Waheb ;
Su, Ting-Wei ;
Coskun, Ahmet F. ;
Ozcan, Aydogan .
OPTICS EXPRESS, 2010, 18 (11) :11181-11191
[4]   Compressive Holography [J].
Brady, David J. ;
Choi, Kerkil ;
Marks, Daniel L. ;
Horisaki, Ryoichi ;
Lim, Sehoon .
OPTICS EXPRESS, 2009, 17 (15) :13040-13049
[5]  
Candès EJ, 2008, IEEE SIGNAL PROC MAG, V25, P21, DOI 10.1109/MSP.2007.914731
[6]   Near-optimal signal recovery from random projections: Universal encoding strategies? [J].
Candes, Emmanuel J. ;
Tao, Terence .
IEEE TRANSACTIONS ON INFORMATION THEORY, 2006, 52 (12) :5406-5425
[7]   Compressive holography with a single-pixel detector [J].
Clemente, Pere ;
Duran, Vicente ;
Tajahuerce, Enrique ;
Andres, Pedro ;
Climent, Vicent ;
Lancis, Jesus .
OPTICS LETTERS, 2013, 38 (14) :2524-2527
[8]   Single-pixel digital ghost holography [J].
Clemente, Pere ;
Duran, Vicente ;
Tajahuerce, Enrique ;
Torres-Company, Victor ;
Lancis, Jesus .
PHYSICAL REVIEW A, 2012, 86 (04)
[9]   Simultaneous amplitude-contrast and quantitative phase-contrast microscopy by numerical reconstruction of Fresnel off-axis holograms [J].
Cuche, E ;
Marquet, P ;
Depeursinge, C .
APPLIED OPTICS, 1999, 38 (34) :6994-7001
[10]   Accurate single-shot quantitative phase imaging of biological specimens with telecentric digital holographic microscopy [J].
Doblas, Ana ;
Sanchez-Ortiga, Emilio ;
Martinez-Corral, Manuel ;
Saavedra, Genaro ;
Garcia-Sucerquia, Jorge .
JOURNAL OF BIOMEDICAL OPTICS, 2014, 19 (04)