Browse by Subject TURBIDITY SUPPRESSION

Showing results 1 to 14 of 14

1
Deep tissue optical focusing and optogenetic modulation with time-reversed ultrasonically encoded light

Ruan, Haowen; Brake, Joshua; Robinson, J. Elliott; Liu, Yan; Jang, Mooseok; Xiao, Cheng; Zhou, Chunyi; et al, SCIENCE ADVANCES, v.3, no.12, pp.eaao5520, 2017-12

2
Finite-difference time-domain analysis of increased penetration depth in optical coherence tomography by wavefront shaping

Kim, Jong Uk; Choi, Hyun; Park, YongKeun; Shin, Jonghwa, BIOMEDICAL OPTICS EXPRESS, v.9, no.8, pp.3883, 2018-08

3
Focusing through dynamic tissue with millisecond digital optical phase conjugation

Wang, Daifa; Zhou, Edward Haojiang; Brake, Joshua; Ruan, Haowen; Jang, Mooseok; Yang, Changhuei, OPTICA, v.2, no.8, pp.728 - 735, 2015-08

4
Iterative Time-Reversed Ultrasonically Encoded Light Focusing in Backscattering Mode

Ruan, Haowen; Jang, Mooseok; Judkewitz, Benjamin; Yang, Changhuei, SCIENTIFIC REPORTS, v.4, 2014-11

5
Method for auto-alignment of digital optical phase conjugation systems based on digital propagation

Jang, Mooseok; Ruan, Haowen; Zhou, Haojiang; Judkewitz, Benjamin; Yang, Changhuei, OPTICS EXPRESS, v.22, no.12, pp.14054 - 14071, 2014-06

6
Model for estimating the penetration depth limit of the time-reversed ultrasonically encoded optical focusing technique

Jang, Mooseok; Ruan, Haowen; Judkewitz, Benjamin; Yang, Changhuei, OPTICS EXPRESS, v.22, no.5, pp.5787 - 5807, 2014-03

7
Optical focusing inside scattering media with time-reversed ultrasound microbubble encoded light

Ruan, Haowen; Jang, Mooseok; Yang, Changhuei, NATURE COMMUNICATIONS, v.6, 2015-11

8
Optical phase conjugation (OPC)-assisted isotropic focusing

Jang, Mooseok; Sentenac, Anne; Yang, Changhuei, OPTICS EXPRESS, v.21, no.7, pp.8781 - 8792, 2013-04

9
Optical phase conjugation assisted scattering lens: variable focusing and 3D patterning

Ryu, Jihee; Jang, Mooseok; Eom, Tae Joong; Yang, Changhuei; Chung, Euiheon, SCIENTIFIC REPORTS, v.6, 2016-04

10
Optical Phase Conjugation with Less Than a Photon per Degree of Freedom

Jang, Mooseok; Yang, C; Vellekoop, IM, PHYSICAL REVIEW LETTERS, v.118, no.9, 2017-03

11
Recent advances in wavefront shaping techniques for biomedical applications

Yu, Hyeonseung; Park, Jongchan; Lee, KyeoReh; Yoon, Jonghee; Kim, KyungDuk; Lee, Shinwha; Park, Yong-Keun, CURRENT APPLIED PHYSICS, v.15, no.5, pp.632 - 641, 2015-05

12
Review of endomicroscopic imaging with coherent manipulation of light through an ultrathin probe

Oh, Jaeyeon; Lee, Chunghyeong; Song, Gookho; Jang, Mooseok, JOURNAL OF OPTICAL MICROSYSTEMS, v.3, no.1, 2023-01

13
Scattering Optical Elements: Stand-Alone Optical Elements Exploiting Multiple Light Scattering

Park, Jongchan; Cho, Joong-Yeon; Park, Chunghyun; Lee, Kyeo Reh; Lee, Heon; Cho, Yong-Hoon; Park, Yong Keun, ACS NANO, v.10, no.7, pp.6871 - 6876, 2016-07

14
Wavefront shaping: A versatile tool to conquer multiple scattering in multidisciplinary fields

Yu, Zhipeng; Li, Huanhao; Zhong, Tianting; Park, Jung-Hoon; Cheng, Shengfu; Woo, Chi Man; Zhao, Qi; et al, INNOVATION, v.3, no.5, 2022-09

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